Showing posts with label Uranium. Show all posts
Showing posts with label Uranium. Show all posts

Wednesday, November 4, 2009

EPA, federal, state, Navajo Nation hold second summit to address uranium contamination on the Navajo Nation

Release date: 11/03/2009

Contact Information: Margot Perez-Sullivan, 415.947.4149 Perezsullivan.margot@epa.gov

GALLUP– Today, the U.S. Environmental Protection Agency, along with four other federal agencies, the Navajo Nation, congressional staff, academia, state, tribal and local government representatives, community members and nongovernment organizations are meeting to discuss the progress of the five-year plan to address uranium contamination on the Navajo Nation. The five-year plan, requested by the U.S. House of Representatives’ Committee on Oversight and Government Reform, is the first comprehensive strategy to address uranium-related contamination issues throughout the Navajo Nation, which spans three states and is roughly the size of West Virginia.

The conference is being held at the Gallup Inn 2915 W. Historic Highway 66 in New Mexico, and runs through Thursday, November 8. Members of the media are welcome to attend. To receive a copy of the agenda and to RSVP, please contact Margot Perez-Sullivan, perezsullivan.margot@epa.gov or 415.990.1176.

For more information on abandoned uranium mines on the Navajo Nation, please visit: http://www.epa.gov/region09/waste/sfund/navajo-nation/index.html

Monday, November 2, 2009

Letter: Sen. Creigh Deeds ( Martinsville Bulletin)

Folks, your election is tomorrow. The future of Virginia is in the balance in a way it never has. McDonnell has said he favors uranium mining. At least Deeds is willing to hold off an opinion until more is known about the dangers. The safety and beauty of the Commonwealth cannot be a loose gamble...uranium is forever.

Sunday, November 1, 2009

As a candidate for governor, I’ve laid out a comprehensive plan to meet our future energy needs and reduce Virginia ’s dependence on foreign oil. This means pursuing a range of alternative and renewable energy options, ranging from wind power to clean coal technology to nuclear power. Investments in alternative and renewable energy will create jobs, attract the best and brightest minds to Virginia , and lead to a brighter future for the Commonwealth.

Right now we have a moratorium in Virginia on mining uranium, the fuel used in nuclear power plants. While I believe nuclear power should be part of a comprehensive approach to energy here in the commonwealth, I also strongly believe that the moratorium on uranium mining should remain in place until scientists determine that uranium mining does not pose a risk to the health and safety of any Virginian.

The climate of Southside Virginia poses particular challenges to the safe mining of uranium. Because it often rains, there is a risk that radioactive material produced by uranium mining and processing could leach into groundwater. If such leaching occurred, it could contaminate water supplies and endanger Virginians all over Southside, from Danville to Virginia Beach . I will not let this happen on my watch as governor.

Before considering uranium mining and processing here in Virginia , we should await the results of a nonpartisan, scientific study on its potential risks. As important as alternative energy sources are to our future, protecting the health and safety of all Virginians must remain our paramount concern.

As your governor, I will ensure that our energy future is not only plentiful and clean, but also safe for all Virginians.

Sen. Creigh Deeds
Bath County

http://www.martinsvillebulletin.com/article.cfm?ID=21163

Friday, October 9, 2009

Bulky waste prompts EnergySolutions to seek license updates

By Judy Fahys

The Salt Lake Tribune

Updated: 10/09/2009

EnergySolutions Inc. wants to bring in large pipes and other discards from the cleanup of an old Manhattan Project site that are contaminated with Special Nuclear Material.

And federal nuclear regulators don't see why the company shouldn't. The U.S. Nuclear Regulatory Commission has issued a formal "finding of no significant impact" for the proposal and are seeking public comment on the project through Nov. 6.

The regulators say not only is the project in line with the company's existing state and federal permits, but it also could reduce the risk of accidents and injuries by allowing fewer cross-country trips of the radiation-tainted waste. They want to clear the way for the state Division of Radiation Control to allow the shipments.

"Our analysis basically says it looks like [the latest proposal] would have no significant environmental impact," said NRC spokesman David McIntyre.

The Special Nuclear Materials, or SNM, EnergySolutions wants to take is waste from the government-owned K-25 gaseous diffusion plant, which was built to enrich uranium for atomic bombs at Oak Ridge, Tenn. The waste has its own class of rules because certain forms of the uranium and plutonium in it can, if too concentrated, cause a spontaneous nuclear explosion.

EnergySolutions originally made its request on SNM in 2006. The Salt Lake City nuclear services company needs to change its governing agreement with the NRC because the pipes and other large pieces of SNM-contaminated waste are bigger than currently allowed.

NRC engineers have been studying the request to make sure the larger packages won't put excessive amounts of SNM in too-close proximity. They also wanted to check that the special disposal practices proposed by EnergySolutions will indeed keep the water-soluble contamination from leaking off the grounds of the company's Tooele County disposal site, about 80 miles west of Salt Lake City.

Once federal regulators sign off on the proposal, state regulators also will have to review it and agree to change EnergySolutions' license before the shipments would be allowed.

A public hearing is possible in Utah, said state radiation officer John Hultquist, whose office already has seen and commented on the company's plans.

"We trust the system that develops the rules and regulations for the nuclear industry and EnergySolutions fully complies with these rules and regulations," said Mark Walker, a company spokesman. "EnergySolutions is a world leader in the processing, transportation and disposal of nuclear material and the company safely manages these materials."

The EnergySolutions site began accepting SNM waste in the 1990s, even before its state license allowed it. In 1997, regulators fined the company -- then called Envirocare of Utah -- $80,000 over the lapse. The company obtained a Radiation Control Division license soon after to dispose of the material, and state legislators passed a bill in 2004 that further raised the limits for the concentration of the SNM allowed.

http://www.sltrib.com/news/ci_13527069

Sunday, September 13, 2009

Mining study’s scope should be broader

Thanks, Katie, for yet another well-written, well-considered letter on this most serious of issues. For reasons I still cannot fathom, the Commonwealth still doesn't seem to 'get it' that the uranium studies will look at U mining all over the state, not just Pittsylvania Co., and that if they ever gets off the ground, will not be site-specific, they will be state-wide. Get ready, Virginia...you're about to go from one of the loveliest states in the country to one of the most lethal and least desirable to live in...all for the greed of a few. Listen to Katie...

Lynchburg News and Advance
September 13, 2009

Most people are understandably confused about the uranium studies. Will the National Academy of Sciences undertake a uranium technical study funded solely by a mining company? Del. Terry Kilgore, chairman of the Virginia Coal and Energy Commission, doesn’t know. No one knows. We know even less about the uranium socio-economic study.

A governing board will decide whether NAS will do the technical study. This board has not yet made a decision, or even discussed Del. Kilgore’s very recent request for a study. The board must also determine whether accepting 100 percent of the funding — however indirectly — from a uranium mining company is consistent with the board’s responsibility to safeguard the academy’s unique reputation for independent, unbiased scientific research.

Del. Kilgore has held open the possibility that other organizations (besides Virginia Uranium, Inc.) will contribute money for the technical study, but so far no one has. It’s not clear whether any organization has been solicited to contribute. So far no legislator has offered to ask the legislature for funding to cover even a small portion of the cost. If it’s important to the state to do this study, why are our legislators unwilling to pay for even a token part of it?

Though second in the time sequence, the uranium socioeconomic study is arguably the more important of the two studies. The technical study will address the safety issue by providing legislators with evidence regarding whether uranium mining, milling, and tailings storage are being done safely elsewhere under conditions comparable to those in Virginia. It should also identify knowledge gaps. The socioeconomic study will address the issue of whether uranium mining is something we want in our state. It should provide evidence about how introducing the uranium industry affects the overall health, economic well-being, and quality of life in communities.

Perception, as well as science, plays a critical role in whether introducing this industry is a good idea. The state policy decision depends not only on the safety question, but also on the much larger and less tangible question of what life we want for our communities.

KATIE WHITEHEAD
Chatham
Chairwoman, Dan River Basin Association Mining Task Force

http://www2.newsadvance.com/lna/news/opinion/letters_to_the_editor/article/letters_to_the_editor_for_sunday_september_13_2009/19414/P10/

Saturday, September 12, 2009

Uranium [Prices] May Fall on Possible U.S. Disposal, Rio Says

Let's go over this one more time...there is no shortage of U, especially in the US. And according to this, if the US unloads its surplus (the opposite of shortage, you know) prices will drop world-wide. It gonna be one HUGE dump to have that effect! But that's the amount of surplus U the US has. Sooo...VUI, listen up: we don't need your uranium and you're not going to make much money from it anyway. Let's just leave it where it is.

By Anna Stablum and Edmond Lococo

Sept. 10 (Bloomberg) -- A U.S. government sale of uranium may drive prices lower over the next few years, said Clark Beyer, managing director of Rio Tinto Uranium Ltd.

A possible U.S. Department of Energy sale “is weighing on everybody’s mind,” Beyer said in an interview in London today. “If they are going to push a large volume into the spot market in the next year or two, then prices will go lower.” Rio Tinto Group is the world’s largest uranium producer.

The uranium market will have a surplus next year for the first time in at least three years as producers increase output faster than demand rises for the nuclear fuel, the London-based World Nuclear Association said in a report today. Secondary sources such as stockpiles will supply 18,711 metric tons in 2010 compared with 17,620 tons this year, the report showed.

“The Department of Energy has from time to time used uranium barter arrangements to fund cleanup work,” Jen Stutsman, a department spokeswoman, said today in an e-mail. “In order to avoid undue market disruption, DOE intends to stay within the 10 percent limit on domestic uranium sales or exchanges as laid out in the Department’s Uranium Management Plan.”

The sale or transfer of U.S. stockpiles to USEC Inc., the biggest domestic supplier of enriched uranium, may add 10 percent to U.S. fuel supplies in 2009 and next year, Max Layton, an analyst at Macquarie Bank Group Ltd. in London, said in an Aug. 10 report. The Department of Energy in July denied a loan guarantee to complete construction of the American Centrifuge plant in Ohio.

Sales Options

“The DOE has been talking about selling uranium and using it as payment for decommission services,” Beyer said, adding one possible plan would be to sell a fixed dollar amount of uranium every quarter. “It would be much better if the DOE appointed a marketing manager who could sell the material on a long-term basis.”

Uranium prices will fall 25 percent this year to an average of $48 a pound and slide as low as $40 by December, Layton said yesterday. The metal for immediate delivery was at $45 a pound as of Sept. 7, according to Roswell, Georgia-based Ux Consulting Co. Uranium rose to a record $136 in July 2007.

Projects in Africa and other “high-cost areas” may have “difficulties getting into production,” Beyer said. He declined to say a price needed to encourage new supply, saying it depended on each particular project.

To contact the reporters on this story: Anna Stablum in London at astablum@bloomberg.net; Edmond Lococo in Boston at elococo@bloomberg.net.

Last Updated: September 10, 2009 18:10 EDT

http://www.bloomberg.com/apps/news?pid=20601081&sid=aAI7WnbY4HHw

Wednesday, August 12, 2009

Ore From Last Uranium Boom Still Scattered on Colorado Land


Herald Denver Bureau

Tuesday, August 11, 2009

PARADOX - From the road, it looks like a pile of gray rocks. But a closer inspection reveals flakes of yellow and lime green - telltale signs of uranium ore.

The pile and others like it make up some of the 5,000 tons of uranium ore that remains on the surface from Colorado's last boom, according to a Department of Energy environmental study.

Five thousand tons of rock is only a few months of production from a mid-sized mine, but it's enough to concern Travis Stills, a Durango lawyer leading the legal challenge to the Energy department's plan to lease Colorado land for uranium mining.

The Office of Legacy Management, which issues leases on federal uranium lands, cleaned up all its old mine sites by 2001, according to court filings by Andrew Smith, a Justice department lawyer who is representing the OLM.

Piles of waste rock at uranium mines could cause trouble if water runs off them into creeks, said Angelique Diaz, an environmental engineer for the Environmental Protection Agency's Denver office. The piles are radioactive and give off radon gas, but not in significant quantities, Diaz said.

The Colorado Division of Reclamation, Mining and Safety cleans mines that were abandoned before 1977, using mostly federal dollars but also money from state taxes on gas, oil and coal production.

With 17,000 abandoned mines in Colorado, the priority goes to open mine shafts that might be dangerous for hikers, said Loretta Pineda, director of the abandoned mines program.

"I do have some environmental funding, but it's pretty limited," Pineda said.

The BLM has asked the state to put several old mines in the Paradox Valley on its list, Pineda said. She had a project on tap near Uravan a few years ago, but it was put on hold when people started staking claims in the area. Anyone who opened a new mine would have to clean up the old pollution first.

For Stills, the cleanup of the old mines should happen now.

"Five thousand tons of uranium ore sitting on the surface should be somebody's priority," he said.

http://durangoherald.com/sections/News/2009/08/11/Ore_from_last_uranium_boom_still_scattered_on_Colorado_land/

Tuesday, August 11, 2009

Virginia Energy Closes Final Tranche of Private Placement Financing

Tuesday, August 11, 2009
Virginia Energy Closes Final Tranche of Private Placement Financing News Release: 09-16

Virginia Energy Resources Inc. (TSX.V: VAE) is pleased to announce
completion of the final tranche of it's previously announced non-brokered
private placement financing announced May 14, 2009. Each Unit will comprise
one common share at a price of 50 cents per share, and one-half of one share
purchase warrant. Each whole warrant is exercisable at 60 cents per share
for a five-year period.

The warrants will have an acceleration clause whereby if the Company's shares trade at or greater than $2.00 for 10 consecutive days, the remaining exercise period may be reduced, at the election of the Company and upon notice to the warrant holders, to 25 days. A total of 4,155,600 common shares and
2,077,800 warrants were issued under this placement, for a gross
consideration of $2,077,800 and will be subject to a hold period of 4 months
and 1 day. Finder's fee and commissions will be payable to qualified third
party agents.

A portion of this proposed financing will be applied to increasing the Company's equity position in VA Uranium Holdings Inc., which initial transaction was announced in a Company new release dated Dec. 22, 2008 wherein Santoy
and a private corporation, Virginia Uranium Ltd. agreed to a business
combination by way of a Plan of Arrangement, which closed July 21, 2009. The amalgamated corporation is Virginia Energy Resources Inc.

Virginia Uranium Ltd. owns an interest in the Coles Hill uranium deposit
located in southern Virginia. Coles Hill, considered to be one of the largest undeveloped uranium deposits in the United States, had been advanced
through to the feasibility stage in 1982 and has now been investigated by
220 drill holes. It has an estimated measured and indicated resource of 119
million pounds of U3O8 (at a cut-off grade of 0.025 per cent U3O8) based on
a National Instru-ment 43-101 technical report on the Coles Hill property
prepared for Santoy Resources by Behre Dolbear and Company Ltd., Marshall
Miller and Associates Inc., and PAC Geological Consultant Inc. (Dr. Peter Christopher, P.Eng.) dated Feb. 2, 2009, and revised April 29, 2009. This
report is available on SEDAR and on Virginia Energy Resources' website.

On Behalf of the Board of Directors
Virginia Energy Resources Inc.

"Norm Reynolds"

Norm Reynolds, President & CEO

~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

Santoy Resources Ltd. is pleased to announce the closure of their merger
with Virginia Uranium Limited. Our new company will be called Virginia Energy Resources Inc. and will trade under the ticker symbol VAE effective Friday
July 24. We are currently in the process of transitioning Santoy's website
to the newly formed Virginia Energy Resources Inc. website.


The company is focused on discovering and developing high-grade uranium
deposits and on exploration for coal throughout North America. The
company has an experienced management team which is supported by
a veteran Board of Directors who have been directly involved with the
discovery and development of three major gold discoveries in Canada
that have subsequently been put into production (Eskay Creek, Snip and
Brewery Creek mines); of coal and coalbed methane projects in Western
Canada; of producing "green power" projects throughout Canada; of
conventional oil & gas discoveries throughout North and South America;
and of taking uranium discoveries through to feasibility study.

The Company files its continuous disclosure documents on www.sedar.com
and provides a link to SEDAR under the "INVESTORS" tab.

Tuesday, August 4, 2009

VT Edition: Tom Zoellner on Uranium

This is from the Vermont Public Radio. On their site, linked below, you can listen to a podcast or an MP3 or stream of the discussion of this book, Uranium: War, Energy, and the Rock That Changed The World by Tom Zoellner. Fascinating!

Monday August 3, 2009
Jane Lindholm


The element uranium is thought to be the most deadly element found in the earth's crust. Throughout history it's been used for many destructive purposes, yet it's also been touted as the future of clean energy. We learn more about the power and uses of uranium, and examine how it's shaped world events with Vermont author Tom Zoellner. He's the author of the new book, Uranium: War, Energy, and the Rock that Reshaped the World.

http://www.vpr.net/news_detail/85491/

Monday, August 3, 2009

Drunk Driver Caused Accident Involving Radioactive Cargo, Police Say

More about the truck accident in WV. The uranium hexfluoride being carried by the tractor trailer could have caused serious damage had the tank been breached. The emphasis on the description of U hexfluoride is mine; the link to the Argonne National Laboratory is in the original article.

August 2, 2009

SUMMERS COUNTY, W.Va. (WSAZ) -- The entire Town of Sandstone and surrounding areas were evacuated after a tractor trailer carrying radioactive material caught fire, but tests have confirmed that there is no danger.

It happened at midnight Sunday morning on I-64 at the 139 mile marker, which is near the Sandstone exit in Summers County.

A news release from the West Virginia State Police says the driver of a pickup truck headed west on I-64 was drunk when he ran off the road and struck a guardrail, causing his truck to roll over through the median, landing in the shoulder of the east bound lanes. The driver of the tractor trailer was headed east and locked up his brakes to avoid the debris from the pickup truck that was left in the road. The tractor trailer then veered to the right and hit a rock embankment, overturned and caught fire.

The tractor trailer was carrying a corrosive material that has been determined to be radioactive.

Just before 3:30 a.m., HAZMAT crews reached the scene and determined that the container holding the material was not damaged and none of the material leaked. The crews also tested the air around the wreck and found no contamination.

A 911 dispatcher says the evacuation of the town was a precaution at the time, and residents are now allowed to return to their homes.

Cpl. Z.M. Duke with the Hinton Detachment of the West Virginia State Police tells WSAZ.com that the chemical inside the truck was Uranium hexafluoride. He says it was a large container holding 32,000 pounds of the material. The truck was headed to Portsmouth, Virginia, for export. It was not known from where the truck was coming.

According to a Web site run by the Argonne National Laboratory, Uranium hexfluoride (UF6) is the chemical form of uranium that is used during the uranium enrichment process.

Here is information from the Web site about how the chemical reacts with air and water:

    Uranium hexafluoride does not react with oxygen, nitrogen, carbon dioxide, or dry air, but it does react with water or water vapor. For this reason, UF6 is always handled in leak tight containers and processing equipment. When UF6 comes into contact with water, such as water vapor in the air, the UF6 and water react, forming corrosive hydrogen fluoride (HF) and a uranium-fluoride compound called uranyl fluoride (UO2F2).

Here are the health dangers of UF6, according to the same site:

    In addition, if UF6 is released to the atmosphere, the uranium compounds and HF that are formed by reaction with moisture in the air can be chemically toxic. Uranium is a heavy metal that, in addition to being radioactive, can have toxic chemical effects (primarily on the kidneys) if it enters the bloodstream by means of ingestion or inhalation. HF is an extremely corrosive gas that can damage the lungs and cause death if inhaled at high enough concentrations.

Duke says about 100 people left their homes and went to Summers County Middle School during the precautionary evacuation period, and that process went relatively smoothly.

The truck driver was not seriously hurt. He was taken to the hospital and later and returned to the scene, according to the 911 dispatcher. The driver of the pickup truck was also not seriously hurt, but was cited for driving under the influence. No names have been released yet.

I-64 east was shut down in the area most of the day Sunday, but was re-opened at about 6:54 p.m. I-64 west and Route 20 in the area of the accident were also closed for hours, but were re-open earlier in the day.

Emergency crews from Raleigh and Kanawha counties responded to assist with the situation.

http://www.wsaz.com/home/headlines/52277727.html

Sunday, August 2, 2009

Wreck Closes I-64 Near Sandstone; Truck Was Carrying Radiocative Material

By Jim Balow

SANDSTONE, W.Va. -- Eastbound traffic on Interstate 64 in Summers County was still closed Sunday evening, and police briefly evacuated the town of Sandstone early Sunday morning after a truck carrying radioactive material rolled over and caught fire.

No one was killed or seriously injured in the accident, which occurred at about midnight east of the Sandstone interchange, police said.

According to a news release from State Police in Hinton, a westbound pickup truck veered onto the shoulder of the Interstate, struck a guardrail and rolled through the median onto the shoulder of the eastbound lanes, spewing debris across the road.

Soon afterward, the driver of an eastbound semi tractor-trailer saw the debris, hit his brakes, veered to the right, struck a rock embankment and flipped over, catching fire.

The truck was carrying a container with about 16 tons of uranium hexaflouride, The Associated Press reported. No radioactivity leaked after the accident, the Summers County dispatcher said.

Police diverted eastbound traffic on I-64 between onto W.Va. 20 between the Sandstone and Green Sulphur Springs exits, the dispatcher said. Westbound lanes were closed briefly after the accident to clear a downed power line, and later Sunday evening to move the semi truck.

The drivers of both trucks were treated for minor injuries at Summers County Appalachian Regional Hospital in Hinton and later released, a Summers County dispatcher said.

The driver of the pickup was found to be intoxicated at the time of the crash and was cited by the Summers County Sheriff's Department.

About 100 people in the Sandstone area were evacuated to Summers County Middle School in Hinton or to nearby Fayette County, but returned to their homes several hours later.

Emergency workers were still cleaning up debris late Sunday the dispatcher said. The cleanup efforts could last until Monday.

The accident created long delays for motorists heading eastbound on I-64, police said. Parkways employees set up mobile signs at three locations on the West Virginia Turnpike to warn drivers about the detour, a dispatcher said -- southbound at the toll barrier near Pax, northbound just north of Princeton and just east of the split near Beckley.

http://wvgazette.com/News/200908020126

Wednesday, July 29, 2009

Thank you, Mister Secretary

BY NORMAN W. REYNOLDS

Published: July 26, 2009

U.S. Energy Secretary Steven Chu could not have picked a better spot than Pittsylvania County to sound his ringing call for “restarting” our nation’s nuclear energy program, as well as endorsing Virginia’s state-sanctioned study to assess the safety and feasibility of mining and milling uranium in the commonwealth.

The setting for Chu’s speech at a local farm last Saturday was just 10 miles south of the Coles Hill uranium site and 50 miles south of the City of Lynchburg, one of the most dynamic hubs of advanced nuclear technology in Virginia. Coles Hill is where Virginia Uranium proposes to mine and mill the largest known undeveloped uranium deposit in the United States.

Speaking to concerns that have been raised about mining in Virginia, Chu — a Nobel laureate in physics — explained that in “any kind of mining, whether it’s uranium, coal or nickel, or you name it, it has to be done in a way that protects the environment and protects the people. … there’s a study going on as to whether uranium mining in Virginia is going to do that. … we will wait for the results of that study.”

The Virginia Coal and Energy Commission is working with the National Academy of Sciences to conduct an independent study to address concerns of Virginians about safety to people, livestock, crops and the environment.

The secretary’s position on the uranium potential at Coles Hill seemed to reflect that of his boss, President Barack Obama. When the president was campaigning in Virginia last year, The Roanoke Times carried the following report:

“According to an e-mail from his Virginia communications director, Obama supports a proposed study of the (Coles Hill) site to evaluate the potential environmental effects of mining. But, he adds, ‘Virginia has the potential to be a national leader in uranium mining, and development of uranium resources in Pittsylvania County could create hundreds of jobs in that part of the state.’”

On the larger subject of using nuclear energy to power America, Chu told the local audience of about 275 people that the Obama administration and the U.S. Department of Energy are “very supportive of restarting the nuclear power industry,” adding that he believes it can be done safely.

Secretary Chu’s comments echo those heard from various Virginia officials over the past two years, starting with the Virginia Energy Plan released in the fall of 2007. In addition to numerous references to the massive uranium deposit in Southside Virginia, the energy plan states:

“There are sufficient resources to support a uranium mining industry in Pittsylvania County with enough to meet the fuel needs of Virginia’s current generation. Significant work to assess the risk from mining and need for regulatory controls must be completed before any decision can be made whether such mining should take place.”

For those of us who have worked long and hard on the Coles Hill project, it is gratifying that the nation’s highest energy official saw fit to come to Pittsylvania County and to endorse the scientific study and to state so unequivocally the Obama administration’s high commitment to getting nuclear back on track in the United States. We look forward to moving ahead hand in hand with such enlightened thinking.

We haven’t the slightest doubt that all aspects of the nuclear cycle — from mining to operating reactors — can be done as safely as any other industrial undertaking. When the same safety issues were studied by the state 25 years ago, scientists found that under well-defined guidelines our project could go forward safely. I am confident that similar findings will be reached this go-around.

What Dr. Chu is talking about goes straight to the heart of energy independence for our nation. Yes, we need to move ahead on all fronts that make sense. But let us keep in mind that of the 55 million pounds of uranium needed to operate nuclear facilities for one year in this country, over 50 million pounds are imported. That is a frightening statistic in a world as unpredictable as the one in which we are living.

We should be grateful for the enlightened approach expressed by Secretary Chu. And we should support sensible efforts to achieve greater energy independence, including the full development of our nuclear resources.

* Reynolds is president and chief executive officer of Virginia Uranium Inc., as well as Virginia Energy Resources.

http://www.godanriver.com/gdr/news/opinion/community_voices/article/thank_you_mister_secretary/12811/

Thursday, July 23, 2009

Uranium Mining and Extreme Flooding in Virginia








(Figures 1-3, modified for size, are above. #1- uppermost, #2 - middle, #3 - bottom. They are from the USGS, Circular 1245. Links for Figures 4-5 are below the text document and are from the Piedmont Environmental Council.)


Uranium Mining and Extreme Flooding in Virginia

The Need for a Sediment Transport/Water Quality Model and PMP Failure Analysis

by

Thomas M. Leahy


July 1, 2009


Extreme Flooding in Virginia

Figure 1 is a map of the United States showing the location of approximately 23,000 past and present USGS stream flow gauges. Figure 2 is the same map showing only those stream flow gauges (about 3,000) that have recorded extreme flooding events. The screening criteria that the USGS used to define an extreme flooding event was 100 to 300 cubic feet per second (cfs) per square mile for small water sheds (less than 1000 square miles) and 50 to 100 cfs per square mile for large watersheds (1,000 squaremiles and greater). The average stream flow for watersheds in Virginia and adjacent states is about 1.0 cfs per square mile. Therefore, Figure 2 shows the locations where stream flows have been recorded that were at least 50 to 300 times greater than the average normalized stream flow in Virginia.

For the contiguous 48‐states, Figure 2 shows that other than the west coast, extreme flooding occurs mostly in the southeast quadrant (south of the 40th parallel and east of the 100th meridian). Moisture for the precipitation that fuels these events is provided by the warm waters of the Gulf of Mexico and the Atlantic Ocean. These floods can be represented by three primary clusters.

The first is the central mid‐west and lower Mississippi Valley which includes eastern Kansas and Oklahoma, Missouri, Arkansas, Louisiana, Mississippi, and western Tennessee and Alabama. These regions have been nicknamed Tornado and Dixie Alleys due to the frequency and magnitude of tornados that result from intense thunderstorms known as super-cells, formed by the collision of cool dry Canadian air with warm humid Gulf of Mexico air.

The other two clusters of extreme flooding events are southern Texas and the eastern ridge of the Appalachian/Blue Ridge Mountain chain from Georgia to Maine, including a distinct concentration in Virginia. The USGS determined that these regions are prone to extreme flooding because topography provided by mountain ranges and escarpments can rapidly lift moisture laden air into the cooler upper atmosphere:

“Within the eastern conterminous United States, the pattern of large flows closely corresponds to the proximity of subtropical moisture derived from the Gulf of Mexico and the Atlantic Ocean. Finer‐scale patterns within this region, however, are clearly linked to topography. Orographic lifting of moisture from the Gulf of Mexico triggers convective instability and has caused concentrations of large floods at topographic features such as the Balcones Escarpment in south central Texas, the Ozark Mountains of western Missouri, and along the eastern edge of the Appalachians on the eastern seaboard. The important role of topographic relief is also illustrated by the lack of exceptional discharges in Florida, and along the coastal plain of the southern and eastern tier States. Despite being closest to the moisture sources and subject to frequent landings of major hurricanes, these relatively flat areas have few stations that have recorded flows exceeding the large‐flow criteria . . .”
--Large Floods in the United States: Where They Happen and Why, USGS Circular 1245, 2003, p.9. Emphasis added.

Figure 2 also shows that there are very few extreme flow events in the western states or in the northern mid‐west. Where they do occur, they are mostly confined to very small watersheds. This is the result of a lack of an available moisture source and/or cooler air temperatures, both of which limit the moisture content in the air.

Probable Maximum Precipitation [PMP] in Virginia

The screening criteria for identifying the extreme flows depicted in Figure 2 ranged from 50 to 300 cfs per square mile. However, depending upon duration, a Probable Maximum Precipitation (PMP) event in Virginia and surrounding areas will deluge an area with 1,000 to 7,000 cfs per square mile.

Figure 3 is the same as Figure 2, except that the locations of storms with precipitation approaching the PMP have been shown. Figure 3 also includes the location of the proposed Coles Hill uranium mine, in Pittsylvania County, VA. In the eastern US, the locations of the near‐PMP events mimic the location of the extreme flooding events identified by the USGS: Tornado and Dixie Alleys, southern Texas, and the eastern ridge of the Appalachian and Blue Ridge Mountains.

In fact, Figure 3 shows a string of at least 8 near‐PMP storms east of the Blue Ridge Mountains from North Carolina to Maine. These events occurred along a corridor that cuts a path right through the uranium ore deposits in Pittsylvania County and the ore deposits in four counties west of Fredericksburg.

Two of the storms occurred in Virginia ‐ one in 1969 in Nelson County about 60 miles from the Pittsylvania uranium deposits (Figure 4), and the other in 1995 in Madison County, one of the four counties west of Fredericksburg where uranium ore deposits have been identified (Figure 5).

The Need for a Sediment Transport and Water Quality Model and Failure Analysis

As a consequence of the topographic relief provided by the Blue Ridge Mountains and the subtropical moisture provided by the Gulf of Mexico and the Atlantic Ocean, the Piedmont region in Virginia just east of the Blue Ridge Mountains is prone to extreme flooding and has a much higher likelihood of experiencing catastrophic precipitation events than many other areas in the country. However, this is also the same location of the uranium deposits in Pittsylvania County and west of Fredericksburg.

Stakeholders concerned about the potential impacts of uranium mining have asked to be shown locations and examples of uranium mines and mill tailing cells that occur in areas that have similar climate, geography, and population density as Virginia. This may be problematic ‐ there may not be any other locations where uranium mines and milling operations, an unlimited source of hot humid air, topographic/orographic lifting potential, and high population density all intersect.

Even if a uranium mine and milling operation located in a relatively wet climate (i.e., 45‐inches per year of precipitation) could be identified, that location might not be prone to extreme precipitation events due to its particular meteorological and physiographic characteristics. It is even less likely that a uranium mine or milling operation will be indentified that has ever experienced a PMP event similar to the two that have occurred in Virginia (about thirty inches of rain in six‐hours).

Therefore, it is important to assess what the potential consequences would be if a storm similar to the Nelson County or Madison County storms were to strike a mining and milling operation and transport a significant load of mill tailings downstream to the receiving rivers and reservoirs. This will require an engineering study that includes a sediment transport and water quality model.

The model must be able to accept as input, various precipitation events ranging from severe hurricanes and nor’easters that strike Virginia relatively frequently to a probable maximum precipitation (PMP) event. The modeling of the fragmentation of a mill tailing dewatering facility, storage area, or confining cell will be a difficult task, subject to much debate. So, initially, the model should be designed to accept as input, assumptions of various amounts of mill tailings that might be released as the result of a catastrophic precipitation or flood event that would strike the proposed Cole’s Hill mining operation.

The model would then predict the downstream transport and fate of the mill tailings in terms of location and quantity beginning with the Banister River, through Kerr Reservoir, through Lake Gaston and Roanoke Rapids, and downstream through the Roanoke River and flood plains, and into Albemarle Sound.

After the model has determined the location and quantity of the transported mill tailings, a water quality component will predict the increased radioactivity and other contamination that will result in the downstream waters for any given amount of mill tailings released. The water quality parameters that will be considered are gross alpha, gross beta, radium isotopes, radon, and uranium. Other toxic substances typically associated with mill tailings will also be considered.

The model will also include an assessment of how long the increased radioactivity or other contamination would persist given normal weather and flow patterns.

Figure 4: http://www.pecva.org/anx/index.cfm/1,557,2133,0,html/Properties-with-Former-Uranium-Mining-Leases-and-Downstream-Water-Supplies-Southside-Region

Figure 5: http://www.pecva.org/anx/ass/library/19/downstreamflow_counties_wtr.pdf

Wednesday, July 22, 2009

NWS confirms Campbell tornado

Yep, this is exactly where we need a uranium mine, mill, and tailings heap...right in the center of a little tornado alley. Imagine all the places that radioactive sand and rock could blow!

By Dave Thompson

Published: July 18, 2009

The National Weather Service confirmed that, in addition to two tornadoes that touched down in Pittsylvania County mid-day Friday, a tornado also struck the Brookneal area of Campbell County.

The twister, according to meteorologists, was an EF-0 scale, with winds between 85 and 90 mph.

Meteorologist William Perry said the tornado uprooted some trees a few miles northwest of Brookneal, and that a microburst did damage to a few structures in that area.

Appalachian Power Company’s Web site reported no outages Saturday, and representatives did not immediately return phone messages left Saturday evening.

Daisy Pridgen, with Dominion Virginia Power, said at the storm’s height, about 3,300 people in southern Campbell County were without power.

As of 8:45 p.m. Saturday, Pridgen said 500 customers were still without power but estimated they would all have their power restored by this morning.

Perry said for this time of year, this storm system was unusual and was aided by the cooler temperatures in the area.

The last time tornadoes touched down in the area, Perry said, was in May of 2008, when twisters were confirmed in Henry, Pittsylvania and Appomattox counties.

http://www2.newsadvance.com/lna/news/local/article/nws_confirms_campbell_tornado/17815/

UNLV prof to Congress: Mining contaminates Colorado River

Tuesday, July 21, 2009 | 4:13 p.m.

Click to enlarge photo

This April 2008 photo provided by the Center for Biological Diversity shows a mining claim staked north of the Grand Canyon in the area that Interior Secretary Ken Salazar has withdrawn for protection from new claims. The Interior Department announced Monday it is temporarily barring the filing of new mining claims, including for uranium, on nearly 1 million acres near the Grand Canyon.

Restarting uranium mining near the Grand Canyon poses a contamination risk to the Colorado River, serving more than 25 million people in western states, a UNLV hydrology professor told a congressional committee today.

David Kreamer, a UNLV professor, said that assuming renewed uranium mining would have little or no effect on the river and surrounding springs is "unreasonable" and cannot be supported by past investigations and research.

Kreamer and his students have been conducting studies on springs in the Grand Canyon for 25 years and he told the House Natural Resources Committee's parks subcommittee that past mining activities have polluted a spring that feeds the Colorado River and that pollution is expected to continue if more mining occurs.

The committee is hearing a bill by Rep. Raul Grijalva, D-Ariz., that would permanently bar new claims filed on 1.1 million acres of federal lands north and south of the canyon. Renewed interest in building nuclear power plants as alternative energy sources has spurred a surge in uranium mining claims in the area, Grijalva said.

As many as 10,000 mining claims exist on neighboring federal lands for all hard-rock exploration and some 1,100 uranium mining claims exist within five miles of the canyon.

Neither the proposed bill nor Interior Secretary Ken Salazar's announcement Monday that he is barring new claims on public lands for two years while a study is conducted would stop mining on existing claims.

Kreamer said his research found uranium levels three times above the Environmental Protection Agency's recommended limit on water supplies in Horn Creek, a canyon creek that runs into the Colorado. He said that the uranium polluted the creek's water from mining that stopped more than 10 years ago.

The potential for uranium reaching the Colorado River poses a risk for water consumers in California, Nevada and Arizona, said Kay Brothers, deputy general manager of the Southern Nevada Water Authority. Las Vegas draws 90 percent of its water from the Colorado River, she said.

Two scientists said modern mining has improved environmental protection and new mining development shouldn't stop because of old practices.

Most of the uranium claims have been staked in the Arizona Strip, an area just north of the Grand Canyon National Park notable for its superior uranium ore.

Uranium mining stopped 20 years ago as the price of uranium for nuclear energy, weapons and medicine went into freefall. The nuclear industry believes mining should be restarted as the price of uranium has climbed to about $55 a pound.

http://www.lasvegassun.com/news/2009/jul/21/unlv-professor-congress-uranium-mining-contaminate/

Thursday, July 16, 2009

Santoy Amends Private Placement Financing Terms

Thu. July 16, 2009

VANCOUVER, BRITISH COLUMBIA, Jul 16, 2009 (Marketwire via COMTEX) -- SANRF | Quote | Chart | News | PowerRating --

Santoy Resources Ltd. (TSX VENTURE:SAN) is announcing, in the context of the market, a re-pricing of the proposed non-brokered private placement financing announced May 14, 2009, subject to regulatory approval. Each Unit will comprise one common share at a price of 10 cents per share, and one-half of one share purchase warrant. Each whole warrant is exercisable at 12 cents per share for a five-year period.

The warrants will have an acceleration clause whereby if the Company's shares trade at or greater than 40 cents for 10 consecutive days, the remaining exercise period may be reduced, at the election of the Company and upon notice to the warrant holders, to 25 days. The securities issued under this placement will be free trading as a consequence of an Exchange exemption due to the prospective level disclosure in the Company's Information Circular dated April 24, 2009 setting out the Plan of Arrangement with Virginia Uranium Ltd. This private placement will be completed by close of business on July 16, 2009.

A portion of this proposed financing will be applied to increasing the Company's equity position in VA Uranium Holdings Inc., which initial transaction was announced in a Company news release dated Dec. 22, 2008 wherein Santoy and a private corporation, Virginia Uranium Ltd. have agreed to a business combination by way of a Plan of Arrangement, now scheduled to close July 21, 2009. Virginia Uranium Ltd. owns an interest in the Coles Hill uranium deposit located in southern Virginia.

Coles Hill, considered to be one of the largest undeveloped uranium deposits in the United States, had been advanced through to the feasibility stage in 1982 and has now been investigated by 220 drill holes. It has an estimated measured and indicated resource of 119 million pounds of U3O8 (at a cut-off grade of 0.025 per cent U3O8) based on a National Instrument 43-101 technical report on the Coles Hill property prepared for Santoy Resources by Behre Dolbear and Company Ltd., Marshall Miller and Associates Inc., and PAC Geological Consultant Inc. (Dr. Peter Christopher, P.Eng.) dated Feb. 2, 2009, and revised April 29, 2009. This report is available on SEDAR and on Santoy Resources' website at www.santoy.ca.

On Behalf of the Board of Directors

SANTOY RESOURCES LTD.

R. K. Netolitzky, President & CEO

SOURCE: Santoy Resources Ltd.

Santoy Resources Ltd.
Ron Netolitzky
President
(604) 669-4799
Santoy Resources Ltd.
Tony Perri
Investor Relations, Manager
(604) 669-4799
(604) 669-2543 (FAX)
www.santoy.ca
For full details on Banco Santander Chile (SAN) click here. Banco Santander Chile (SAN) has Short Term PowerRatings of 4. Details on Banco Santander Chile (SAN) Short Term PowerRatings is available at This Link.

http://www.tradingmarkets.com/.site/news/Stock%20News/2425465/

Uranium Incident at B&W Leads to Alert

posted 07/16/09 6:29 pm

Lynchburg, VA - An incident at Babcock and Wilcox Wednesday night caused the Nuclear Regulatory Commission to have safety experts in Atlanta and Maryland to monitor the situation at the Lynchburg plant.

The NRC says the alert- classified as the lowest level of emergency- started around 7:45 p.m.

A news release states B & W staff noticed that a saw used to cut fuel components leaked oil that contained an unknown amount of highly enriched uranium into a receptacle.

Investigators figured out only a small amount of uranium was in the oil. They cleaned it up, then declared the alert over at 12:35 this morning.

The NRC is reviewing the incident.

PRESS RELEASE FROM THE NUCLEAR REGULATORY COMMISSION:

The Nuclear Regulatory Commission manned Incident Response Centers in Atlanta and Rockville, Md., Wednesday night, dispatched its resident inspector and called in criticality safety experts to monitor an alert declared at B&W Nuclear Operations Group in Lynchburg, Va. An alert is the lowest level of NRC emergency classifications for fuel facilities such as B&W.

The NRC staff continued to monitor the incident, which began at 7:45 p.m. Wednesday until its successful resolution at 12:35 a.m. Thursday.

B&W staff activated the facility’s Emergency Operations Center after identifying a potential criticality issue in the Uranium Recovery area. A criticality can occur when highly enriched uranium comes together in sufficient quantity or in a container of correct shape to initiate a chain reaction resulting in either a “burst” or a sustained release of radiation.

A saw used to cut fuel components was found to have discharged oil which contained an unknown amount of highly enriched uranium into a receptacle. The facility identified that the situation represented a loss of safety controls for the uranium and declared an alert. The NRC’s resident inspector for B&W responded to the site and state officials were also advised of the incident.

“Since the amount of uranium in the oil was unknown, it was important to take a conservative approach,” said NRC Region II Administrator Luis Reyes.

After the facility staff analyzed the material, it was determined that only a small amount of uranium was in the oil. Based on measurements and analysis, B&W determined that control over the material was re-established and exited the alert at 12:35 a.m. Thursday.

The NRC has begun to review the incident and will soon determine what special inspections or other regulatory actions are needed.

http://www.wset.com/news/stories/0709/641055.html

Saturday, July 11, 2009

From NunnGlow's FAQ's - - FAQ 3 - Don't we need uranium to fuel cheap, clean nuclear power?

Massachusetts Institute of Technology's (MIT) 2003 study and a 2004 University of Chicago study concurred that nuclear power is much more expensive than natural gas or coal for electrical production (MIT's estimated cost of electricity for coal was 4.2kWh/ natural gas 3.8-5.6 kWh/nuclear power 6.7kWh). The MIT study concluded "The potential impact on the public from safety or waste management failure and the link to nuclear explosives technology are unique to nuclear energy among energy supply options. These characteristics and the fact that nuclear is more costly, make it impossible today to make a credible case for the immediate expanded use of nuclear power."

Brice Smith's book "Insurmountable Risks: The Dangers of Using Nuclear Power to Combat Global Climate Change" (http://www.ieer.org/reports/insurmountablerisks/bricestmt.html) offers facts, figures, reports, and studies that show uranium and its radiation cannot be an answer to greenhouse gas reduction. In addition, for all the potential dangers nuclear energy will expose us to, it will have little effect on global climate stabilization.

Peter Bradford, a former Commissioner of the U.S. Nuclear Regulatory Commission, reports that, even if we were to triple today's worldwide nuclear capacity, it would only be equivalent to one third of what we can currently do to decrease greenhouse gas omission through energy efficiency and conservation. (See the nuclear power debate between Bradford, Patrick Moore, and Jim Riccio of Greenpeace USA at http://www.nirs.org/videodebate.htm)

Dr. Helen Caldicott writes in her book Nuclear Power is Not the Answer on page viii: “Nuclear power is not “clean and green,” as the industry claims, because large amounts of traditional fossil fuels are required to mine and refine the uranium needed to run nuclear power reactors, to construct the massive concrete reactor buildings, and to transport and store the toxic radioactive waste created by the nuclear process. Burning of this fossil fuel emits significant quantities of carbon dioxide (CO2)– the primary “greenhouse gas”- into the atmosphere. In addition, large amounts of the now-banned chlorofluorocarbon (as CFC gas) are emitted during the enrichment of uranium. CFC gas is not only 10,000 to 20,000 times more efficient as an atmospheric heat trapper (“greenhouse gas”) than CO2, but it is a classic “pollutant” and a potent destroyer of the ozone layer.”

It is exciting to hear our legislators want Colorado to become an economic hub for RENEWABLE energy. Let us move toward that goal and leave uranium in-situ, in its original place in the earth. A quick profit for a few individuals will have negative impacts, not just in northern Colorado, but globally.

http://www.nunnglow.com/faqs/faq3.html

Friday, July 10, 2009

U.S. to jump-start domestic isotope production

Sheldon Alberts, Washington Correspondent, Canwest News Service

Published: Friday, July 10, 2009

WASHINGTON - A Senate committee on Friday approved $20 million U.S. in spending to allow the United States to begin domestic production of medical isotopes, a response to global supply shortages being caused by the shutdown of Canada's nuclear reactor at Chalk River, Ont.

The money is included in a $34-billion Senate appropriations bill for fiscal year 2010. It marks the first proposed commitment of U.S. government funds to meet American demand for Molybdenum-99, the radioisotope used in medical imaging and cancer diagnosis.

Until its shutdown, Ontario's Chalk River reactor was the world's largest producer of medical isotopes.

Until its shutdown, Ontario's Chalk River reactor was the world's largest producer of medical isotopes.

The committee recognizes the shortfall in supplies of isotope Molybdenum-99 for the use in medical treatments, and provides $20,000,000 to advance the creation of a domestic supply of this isotope," the legislation says.

The effort by U.S. lawmakers to jump-start U.S. production follows signals from the Obama administration earlier this week that it will need up to $120 million over four years to fund the project.

"It's certainly gratifying, because it is exactly the kind of action we were asking for," said Alan Kuperman, director of the Nuclear Proliferation Prevention Program at the University of Texas in Austin.

Kuperman was among a group of American medical and non-proliferation experts who last month wrote Congress. urging them to speed ahead with U.S. production of medical isotopes in response to the May 15 shutdown of the aging NRU reactor at Chalk River, which is the world's largest isotope producer.

Prime Minister Stephen Harper said in June it's likely Canada will "get out of the business" of supplying isotopes by 2016 - and U.S. production could make that plan a certainty.

Even before a leak of heavy water forced the Chalk River reactor shutdown, the U.S. government had been eyeing the possibility of developing its own isotope production, using low-enriched uranium. Isotopes are produced from bomb-grade uranium at Chalk River.

The likeliest candidates for U.S. production facilities include one at the University of Missouri, and another proposed in Virginia by the private firm, Babcock & Wilcox.

"The recent supply interruptions (in Canada) have really accelerated that process and given it the political momentum," Kuperman said.

In a presentation to the National Academies this week, an official from the National Nuclear Security Administration said the U.S. - which gets about 60 per cent of its isotopes from Canada - was facing a "supply crisis" because of the Chalk River closure.

It was initially estimated that the NRU reactor would be closed only for three months, but Atomic Energy of Canada Ltd. this week said repairs could take until late 2009.

Separate from the funding proposed by the U.S. Senate, a House of Representatives committee is reportedly recommending $12 million in first-year funding for isotope production. The two pieces of legislation will need to be reconciled before final approval of the isotope production funding.

"Regardless of what the amount ends up being, the most important thing is that the House, Senate and the Obama administration have expressed support for this," Kuperman said.

While the U.S. is spending cash to figure out a solution to the isotope-supply crisis, the Canadian government is waiting to hear from a three-person expert panel. That panel, appointed last month, will report to Natural Resources Minister Lisa Raitt this fall, and has been asked by the government to suggest what paths Ottawa could take to secure a reliable, long-term supply of medical isotopes.

The federal government did give Atomic Energy of Canada Ltd. an additional $351 million in this year's budget, some of which was to be used to upgrade the facilities at its Chalk River Laboratories.

That money was allocated before the NRU broke down, and no new money has so far been designated for new isotope production.

McMaster University officials told a House of Commons committee last month that a research reactor at the Hamilton university could be producing all the medical isotopes Canada needs - and then some - in as little as 18 months.

But the reactor's manager, Christopher Heysel, said a speedy transformation of the McMaster reactor from a multi-purpose research machine to a high-volume isotope producer needs co-operation of other "stakeholders," including AECL, the federal government, and the nuclear-safety regulator. The transformation would be relatively cheap, as well, costing the federal government just $30 million over five years, Heysel said.

With files from David Akin

http://www2.canada.com/nanaimodailynews/news/story.html?id=1779211

Monday, July 6, 2009

Commemoration set for uranium spill site

Published Monday, July 6, 2009 4:27 PM MDT

The Multicultural Alliance for a Safe Environment, a coalition of community groups affected by uranium mining and committed to renewable energy development, announces the 30th anniversary commemoration of the Church Rock uranium tailings spill on July 16.

The purposes of the event are to remember and honor the Dine communities that were affected by the largest release of radioactive waste in U.S. history, and to reaffirm the Navajo Nation's ban on uranium mining and processing, as set forth in the Dine Natural Resources Protection Act of 2005.

A prayer walk will be held on State Route 566 from Red Water Pond Road next to the Northeast Church Rock Mine to the site of the spill across from the United Nuclear Corp. mill site and ending at the King Family Ranch on Old Churchrock Mine Road at SR 566 - a distance of about five miles. Prayers for healing will offered at the start of the walk and at the spill site. The walk will end at the King Ranch with a press conference where Navajo Nation elected officials will reaffirm the Navajo Nation ban on uranium mining.

The Church Rock Spill occurred when an earthen tailings dam at the UNC Church Rock Uranium Mill spilled on the morning of July 16, 1979. The mill's radioactive fluids spilled into the Puerco River in New Mexico and traveled downstream to Chambers, Ariz. According to MASE, more radiation was released in the spill than in the Three Mile Island reactor accident, which occurred in March of that same year, and the spill ranks second only to the 1986 Chernobyl reactor meltdown in the amount of radiation released. The spill, combined with more than 20 years of discharges of untreated and poorly treated uranium mine water, has contributed to long-term contamination of the Puerco River in New Mexico and Arizona.

Commemorating the Church Rock spill is a reminder that the burden of the uranium legacy is still being carried by the Dine people and communities throughout the Grants Mineral Belt. A formal cleanup plan for the Northeast Church Rock Mine was issued in June, 27 years after the mine closed. Red Water Pond Road residents living next to the mine will have to move temporarily this later this year as more work is done to remove contamination from their community. Full reclamation of the Old Church Rock Mine across from the King Ranch remains to be done. MASE groups from Laguna Pueblo to Milan to Church Rock continue to press federal and state agencies for a comprehensive plan to address the uranium legacy.

http://www.cibolabeacon.com/articles/2009/07/06/news/doc4a526ab32b8bf380862945.txt

Thursday, July 2, 2009

Case Studies in Environmental Medicine Uranium Toxicity: Who Is at Risk of Exposure to Uranium?

From the Centers for Disease Control (CDC) and ATSDR, comes this component of a Continuing Education program for health-care providers. It speaks to the inadequacies of past protective efforts but recognizes that there remain serious exposure risks because no fail-safe protections exist. Sections marked in red are my emphases.

ATSDR


Learning Objectives
Upon completion of this section, you will be able to identify the populations most heavily exposed to uranium and describe who is at risk for uranium exposure.

Introduction
The occupations most heavily exposed to uranium are those employed in mining and milling operations, or in uranium enrichment and processing activities.

Communities living near Department of Energy (DOE) facilities and mining sites and those living in areas where naturally occurring uranium levels are elevated are most at risk for significant environmental exposure.

Past Occupational Exposures
In the past, uranium exposure has been associated mainly with mining and milling of the raw material, with workers engaged in uranium enrichment, and processing (DOE sites). In the 1980s, the United States stopped recycling and reprocessing uranium for antiproliferation purposes (other than for military fuel), increasing the need for mining and material production.

Past Para-occupational Exposures
In the past, industrial hygiene practices may not have been adequate to protect workers from bringing contamination home with them, resulting in possible exposures to family members. At DOE sites in the 1950s, in particular, workers often did not know the hazards they were working with due to the secrecy of the atomic weapon projects. While it is expected that workers became more aware of the industrial hazards after the end of World War II, industrial hygiene practices in general did not improve significantly until the mid-1970s.

In addition, some releases from DOE facilities during the 1950s and 1960s may have exposed nearby communities to elevated levels of radiation, including uranium.

Current Occupational Exposures
Very little mining or processing of uranium for the purpose of fuel or weapons development is currently underway. Occupational activities with potential for uranium exposure include workers
  • involved in using armor-piercing weapons,
  • decommissioning uranium-contaminated areas (e.g., handling wastes or debris suspected of containing uranium while decommissioning uranium contaminated areas),
  • processing nuclear fuel,
  • maintenance and/or repair activities at applicable U.S. government facilities,
  • mining or milling of uranium, silver, phosphorus, coal, etc.,
  • producing phosphate fertilizer,
  • operating power plants,
  • repairing, storing, transporting and using uranium weapons,
  • working with gyroscope, helicopter rotor counterbalances, or control surfaces of aircraft containing uranium metal weights, or
  • using uranium-containing glazes as artists, hobbyists, and glass workers.


Direct Domestic Exposures
As noted earlier, the most common non-occupational exposures are primarily a result of drinking water, eating food, and breathing air contaminated by naturally occurring uranium sources.
Communities located near contaminated sites may be exposed through accidental releases during remediation activities. Essentially no uranium is released from nuclear power plants because of the fuel assembly design and the chemical and physical nature of the uranium oxide fuel [ATSDR 2008b].

Background Exposures
Background exposures to uranium occur throughout the United States and the world because uranium is a naturally occurring element in the soil, water, and air. Average daily ingestion of uranium (both food and water) is estimated to be 3 micrograms (µg)/day in the United States. According to the Third National Report on Human Exposure to Environmental Chemicals, urine uranium levels were measured in a subsample of the National Health and Nutrition Examination Survey (NHANES) participants aged 6 years and older during 1999-2002.

The 95th percentile of urinary uranium concentrations was 0.034 µg/gram (gram) creatinine in the 1999-2000 survey years and 0.040 µg/g creatinine in the 2001-2002 survey years for the U.S. population aged 6 years and older [CDC 2009].

Key Points
Populations most heavily exposed to uranium are those employed in mining and milling operations, or in uranium enrichment and processing activities.

The most common nonoccupational exposures occur from exposure to naturally occurring uranium sources such as contaminated well water.

Communities located near mining sites or other potential sources of uranium contamination may also be at risk.

http://www.atsdr.cdc.gov/csem/uranium/u_whosat-risk.html