Showing posts with label hardrock mining. Show all posts
Showing posts with label hardrock mining. Show all posts

Saturday, September 12, 2009

Manufacturing Thirst: The Hidden Water Costs of Our Industrial Economy


Comment: Uranium mining and milling in Virginia will ruin our water and make our wells go dry!

Manufacturing Thirst: The Hidden Water Costs of Our Industrial Economy
Author: Kari Lydersen
Published on Oct 28, 2008 - 9:44:38 AM

The Cananea Consolidated Copper Company - one of the world's largest open pit copper mines, run by Grupo Mexico - forms a beautifully surreal landscape. Carefully sculpted red and gold curves of earth hug pools of brilliant turquoise. Before the vast expanse of the mine flies a huge Mexican flag, a symbol of pride in the mine's significant contribution to the country's economy.

Cananea is often referred to as the cradle of the Mexican Revolution, in reference to a workers' uprising there in 1906. It has been a hotbed of militant labor activism ever since; the powerful miners' union has been on strike since July 2007.

Among locals, the mine's reputation as a source of social injustices - including the displacement of residents, the exploitation and endangerment of miners, and political repression - is well known.

The overuse and contamination of water in the copper extraction is another destructive, though perhaps less obvious, effect of the mine.

Copper mining and refining is a water-intensive process, and the mine draws liberally from the nearby Sonora and San Pedro aquifers and rivers, using at least 18 million cubic meters of water per year. Because of the mine, the San Pedro aquifer's depletion has exceeded its recharge annually since 1984, according to Anne Browning-Aiken of the Udall Center in Arizona.


The aquifer is reaching critically low levels and, as a result, the Sonora River's flow has been greatly reduced, a situation particularly disturbing for the downstream city of Hermosillo, which depends on the river for its very existence. Farmers in the arid region, who rely on irrigation to grow their crops, are now competing with the mine for water.

The rampant waste of freshwater for general public use - lawn watering, the creation of suburban fake lakes, excessive bathing and household washing - has been well documented, as has the politically charged use of water in US agriculture. But the use and abuse of water in various parts of the global industrial economy is often overlooked. From the mining of raw materials for manufacturing to energy production, to the manufacturing process itself, the US industrial economy uses a significant amount of water every year.

Exact numbers for the amount of water used outside of agriculture or home consumption are difficult to come by. The US Geological Survey (USGS) estimates that industry uses about five percent of all the water in the US, but does not include mining or electricity generation in that figure. A report from Dow Chemical puts the figure much higher, at around 20 percent. And perhaps more importantly, neither number takes into account the volume of water pollution that occurs in the course of industrial processes.

At the very least, it's clear that every year, billions of gallons of water are used - not to grow food or to meet physical human needs - but to quench our society's thirst for the modern conveniences and technological devices we have come to rely on.

NO WATER IN THE PIPES

One place to see the consequences of industry's thirst is in Ciudad Juarez, a major maquiladora (factory) zone located just south of El Paso, TX, where workers labor around the clock to produce goods and components for export around the world. The maquila industry exploded after implementation of the North American Free Trade Agreement (NAFTA) in 1994, and though it has since leveled off, factories in Mexican border towns like Juarez, Tijuana, and Reynosa still churn out products and parts (mostly for US citizens) that suck up or pollute much of the local water supply in the process.

Juarez is in the middle of a desert, so dry that little vegetation grows and spring winds sweep currents of stinging dust across shantytowns and scrubby fields. The once-proud Rio Bravo/Rio Grande, which flows through Juarez and forms part of the US-Mexico border, has been reduced to a slow, polluted stream. The Hueco Bolson aquifer, which supplies Juarez and El Paso, is at imminent risk of being pumped dry, according to local experts, and already over-pumping has led to the incursion of brackish groundwater that contaminates the fresh supply. The Hueco Bolson is sucked up by both the maquilas themselves and the households of the city, which mushroomed from a small border town to a sprawling, chaotic metropolis of three million people as workers streamed north for jobs. Public infrastructure was not built to accommodate the massive population influx, leading to the ad hoc development of informal sewage and wastewater disposal - and massive water contamination.

Despite the obvious lack of water, plans are in the works to create a new industrial zone in the parched section of Juarez known as Lomas de Poleo.

For the past few years, residents of this area have been terrorized by private security guards hired by the Zaragoza brothers, who own large local beer distributorships and dairies, and plan to develop additional factories. Most of the Lomas de Poleo residents came from southern and central Mexico to eke out an existence of subsistence farming, raising a few animals and plants on the dry, dusty land, and they refuse to leave their fields. Zaragoza strongmen have put a barbed wire fence around the brothers' development and burned down several nearby houses; at least one man has been killed and several injured in clashes with the guards. Ironically, as part of their push to displace the 30-some families who remain, the Zaragozas have shut off water to the area and often won't let trucks carrying bottled water in to make their deliveries.

"Now we have no water in the pipes," says Salvador Aguero, 56, who has lived in Lomas de Poleo with his elderly mother and family for 26 years. "The rich are robbing our lands. They always make their money taking resources from the poor."

Similar problems involving access to clean water often occur in the Tijuana region. In 2003, I visited the Colonia Chilpancingo shantytown in Tijuana where many maquila workers live. There I met Lourdes Lujan, who showed me a small stream filled with trash and glistening with oily residue. When she was a child, the stream was a fresh, rushing torrent that they would play in. Now it is barely moving and filthy. "The water was clear; it was beautiful. Now, look …" she said, shaking her head. "Kids shouldn't go near it."

A 1999 report by the Southern California Ecosystems Research Project blamed the lack of infrastructure in Tijuana and the maquila industry for destroying regional water supplies. "Surface and groundwater supplies are threatened along the US-Mexico border due to the dumping of raw sewage, agricultural runoff, and industrial and hazardous waste pollution," the report says. "All streams and rivers in the border region have suffered deterioration of water quality due to the lack of adequate municipal wastewater collection and treatment systems."

WATER EQUALS POWER

Nothing gets manufactured without electricity - and manufacturing electricity often requires water. Power generation is the thirstiest sector of the industrial economy, slurping up 195 billion gallons per day, according to the USGS. While about a third of this is saline (either ocean water or brackish groundwater), the rest is freshwater from lakes and rivers.

About 70 percent of US electricity comes from coal and nuclear plants, each of which produce power by heating water to make steam, which spins a turbine. Typical coal-burning or nuclear power plants have "open" or "closed" cooling systems. Closed systems reuse the same water multiple times and therefore require much less water. An open system runs water just once through the plant and then returns it to the source. In plants that use "once-through" water systems, the water is returned to the lake, ocean, or river it came from about 30 degrees warmer. This increase in water temperature can cause fish kills, algae blooms, or otherwise greatly alter the natural biological makeup of the water body. Meanwhile, the intake pipes for such open cooling systems can be lethal for fish and aquatic microorganisms; electricity plants must sometimes be shut down when the pipes are clogged by fish, debris, or ice.

Nuclear energy is an especially water-intensive technology. A 1,400-megawatt nuclear reactor requires enough water to fill 5,000 Olympic swimming pools per year, according to a 2006 Australian study. The study, commissioned by the Queensland government, warns that the country's severe drought could be exacerbated by building more nuclear power plants, which use about 25 percent more water than coal plants. The Union of Concerned Scientists calls nuclear power plants' need for water "insatiable."

The mining of the coal and uranium needed to feed these electricity stations is also highly destructive to local water sources.

Until it was shut down by a lawsuit in 2005, the infamous Peabody Western Coal Company used precious groundwater from the dry Navajo and Hopi Nations to mix with pulverized coal and piped the slurry all the way from its Black Mesa mine in Arizona 275 miles to the Mohave Generating Station in Nevada.

In Appalachia, many residents are no longer able to drink from their wells because blasting for coal has fractured their water tables and left their wells dangerously contaminated.

In 2003, Maria Gunnoe, a West Virginia mother who gained national attention for her activism against coal strip-mining, found her well contaminated from runoff from two nearby containing ponds storing waste from coal processing – waste that included selenium, lime, arsenic, and other toxins.

"I had a 55-gallon fish tank, and I changed the water and this albino catfish I had had for eight years died instantly," she said. "The water was all green. This happened overnight. When I turned on the shower, the smell was so awful I couldn't take it. My kids and I all got skin reactions."

Gunnoe started buying bottled water for all their household needs, to the tune of $250 a month. To add insult to injury, the road to her house was so damaged from blasting at the mine that she had to walk long distances to carry the heavy store-bought water home.

And once-lovely Appalachian river valleys have been "in-filled" with waste from mountaintop removal mining. That is, the rivers essentially have been filled up with jumbled earth and ore sliced off to get at the lucrative coal seams. Regional activists have been fighting a loophole in the Clean Water Act that currently allows this destruction to occur.

Uranium mining poses similar environmental risks. Record-high prices for uranium in the past year mean that companies are hoping once again to mine uranium in the American Southwest, home to a thriving uranium industry from the 1940s to the 1980s. Much of the mining was done on or near Navajo land, and many of the miners were Navajos. The government is still processing compensation claims for miners suffering from lung cancer and other diseases caused by uranium exposure. Navajo Larry King remembers seeing his cows' coats turn yellowish and their hooves brittle, and even seeing them keel over and die after drinking from uranium-contaminated wells on his land.

"Before, even people drank water from the windmill," says King, referring to the well that is pumped by wind power. "We bathed in it and everything. Then they told us it wasn't good for humans, so we had to start hauling water from Gallup. But some families still let their livestock drink there. They're drinking uranium."

King remembers the day in 1979 when the Rio Puerco River, which runs by his land, was inundated with 90 million gallons of radioactive uranium-laden liquid from a waste pond after a barricade burst.

"Cattle drank from the wash, and they just started dropping dead for a few years," he says. "Even now I find bones there."


This time around, companies want to use a method called "in situ recovery." Instead of hauling the uranium-laced ore out of the ground, they would inject water into uranium-laced aquifers, mobilizing the uranium so it can be pumped out along with the water. Companies aiming to use this process say they will use reverse osmosis to clean the water to its original baseline condition. But critics are doubtful. Eric Jantz, a lawyer challenging the Nuclear Regulatory Commission's decision to allow in situ mining in New Mexico's Navajo country, says there is a "100 percent chance" the aquifer will be radioactively contaminated from in situ mining.

Like coal and uranium mining, oil extraction can also require vast amounts of water. With the current oil crunch, companies are taking extreme measures to squeeze every last drop of oil from sources that previously would have been considered unprofitable or inefficient. In older oil fields, water is often injected into the wells to help pry the last sticky remnants out of the ground.

One of the most water-intensive petroleum extraction methods occurs in the gooey tar sands of Alberta, where it takes three to six barrels of water to harvest each barrel of oil, a process that sucks Canadian rivers and aquifers dry. Low river levels have already been attributed to tar sand excavation, and the industry is only in its nascent stages. As the Canadian organization Global Research put it in a December 2007 article: "While Canada has more water than any other country - it is the Saudi Arabia of water - polluting the planet's largest supply of freshwater for a short-term burst of energy production is one of the most insane behaviors imaginable."

CLOUDING THE WATER

Most manufacturing processes use some amount of water. While the USGS doesn't quantify exact water use by industry, USGS hydrologist Molly Maupin says, "We know that petroleum refineries and paper and pulp mills, as well as steel manufacturing facilities, are known to use an awful lot of water."

But even more significant, in many cases, is the effect on underground aquifers, lakes, or rivers that aren't directly used in the manufacturing. Effluent and wastewater discharged from industries and mining operations - or leaking from inadequate waste and industrial storage facilities - can contaminate large amounts of groundwater or surface water. The examples are countless. And in the cases where groundwater-based municipal systems and private wells or bodies of water tapped for drinking water are affected, the health ramifications can be severe.


Cancers, birth defects, low birth weights, neurological effects, and other serious health problems have long been attributed to relatively small amounts of toxins in drinking water, not to mention water-based toxins moving through the food chain, as in the neurotoxin mercury concentrated in fish. These cases often involve some kind of environmental injustice, as industry and its environmental effects concentrate in poor and minority communities.

One example of water-related environmental racism is the largely African-American town of Tallevast, FL, where residents suffer extraordinarily high rates of cancer. Residents and advocates believe the disease is linked to a Lockheed Martin beryllium plant that apparently contaminated the drinking water supply with chemicals, including trichloroethylene (TCE), found at 10,000 times beyond acceptable state drinking water standards.

''I feel cheated,'' resident Laura Ward told the Miami Herald. "The treatment we have gotten in this community is deplorable." Ward was one of the first residents to learn of the contamination, and only after she saw an oil rig drilling a nearby monitoring well; she and other residents weren't notified of the risk until well into the testing process.

Although the lack of a smokestack could give the impression that high-tech companies are "green," computers, cell phones, MP3 players, and other gadgets are a significant source of water use and pollution in the US and abroad.

In 1981, waste from IBM and Fairchild Semiconductor's tech operations in California's Silicon Valley were found to be leaking TCE and freon from storage tanks into the groundwater used for drinking water. The area was eventually included in a Superfund site, and the contaminants were blamed by many as the cause of disproportionate numbers of birth defects. The discovery of the IBM-Fairchild leakage in the early 1980s led to a closer examination of high-tech waste, and the eventual expenditure of over $200 million by tech companies to clean up messes that were affecting local groundwater.

Surprisingly, the US county with the most sites listed on the Superfund National Priorities List is not in the post-industrial Midwest or under-regulated South, but in the Silicon Valley. Santa Clara County had 23 listed sites as of 2004; 19 of those were linked to high-tech companies, including Hewlett Packard and Intel.

The Silicon Valley Toxics Coalition notes that water contamination and use for the tech industry is much worse in developing nations, where there is little regulation or environmental oversight. The International Food Policy Research Institute (IFPRI), a Washington-based think tank, projects that by 2025, "Industrial water demand will increase significantly in developing countries and…a major shift will occur: Industrial water demand in the developing world will exceed the demand in developed countries." This, along with increasing agricultural and household demand, will vastly accelerate the already burgeoning crisis in food prices, the Institute predicts.

IFPRI Senior Scientist Tingju Zhu says developing countries usually use much more water to create the same amount of gross domestic product as developed countries; in other words, their water use is more intensive and less efficient.

As globalization brings increased consumer wealth to India, China, and other developing countries, the hunger for manufactured goods likely will keep growing. But just as many citizens of these countries are for the first time able to enjoy some of the material benefits US citizens have long taken for granted, they will also bear the brunt of the environmental and health effects of the production of these goods, including the depletion of freshwater sources and water contamination.

"As part of globalization, the transfer of resource-intensive manufacturing industry from the developed world to developing countries such as China and southeast Asian countries did cause dramatic water use increase in industrial sectors," Zhu says. "It is quite possible that there can be water shortages for agricultural and domestic users in arid and semi-arid regions or in dry years in developing countries, as a result of increased industrial water demand."

--
Kari Lydersen is a staff writer at The Washington Post out of the Midwest bureau, and freelances for various publications. She is author of Out of the Sea and Into the Fire: Latin American-US Immigration in the Global Age (Common Courage Press, 2005) and co-author of Shoot an Iraqi: Life, Art and Resistance Under the Gun (City Lights, 2008). www.karilydersen.com.

Originally published in the Autumn 2008 edition of Earth Island Journal: (www.earthisland.org)

http://yubanet.com/california/Manufacturing-Thirst.php

Monday, June 15, 2009

Students Protest Against Canadian Mining Company in Tibet



Comment: We do not want the Canadian uranium companies either!!

Published Mar 5, 2009 by ■ Chris V. Thangham

Canadian company Hunter Dickinson/Continental Minerals (HDI) is planning to set up large-scale mining operations in the Occupied Tibet area.

Many worry this will displace the local Tibetans and replace them with the mainland Chinese.

China has occupyed Tibet for more than 50 years, and it claims the territory belonged to them thousands of years ago. This month will mark the 50-year anniversary of the exile of the Tibetan leader, the Dalai Lama.

The Chinese are worried there will be more riots this year, similar to last year's protests. China has sent more troops to the troubled area. While there is no end in sight for local Tibetans, others like Hunter Dickinson/Continental Minerals (HDI) are trying to profit in a major way.

HDI plans to mine gold and copper in central Tibet. It will destroy the environment in that area and affect the local Tibetans. Soon, workers from mainland China will fill the mining area and displace the ethnic population in Tibet.

A group is now protesting HDI’s actions in Tibet. Seven pro-Tibet protesters from the “Students for a Free Tibet” group disrupted a Toronto mining convention earlier this week. It is shown in the video posted above.

Kunga Tsering, president of the Canadian-Tibetan Joint Action Committee, one of the protesters, said in a statement:

"It's unconscionable for a Canadian company to be operating inside Tibet when Tibetans are facing a brutal military clampdown and the most repressive conditions in three decades,"

Ron Thiessen, chair of Continental Minerals and a partner in the Hunter Dickinson (HDI) project responded and told The Star:

“We respect everyone’s right to make statements...We’re not mining yet (in Tibet), we hope to be.”

Other Canadian companies participating in Tibet are Bombardier, Power Corporation and Nortel, who are helping build a railway line between China and Tibet.

http://www.digitaljournal.com/article/268546

Saturday, June 13, 2009

Superfund money to clean 'mouth of the beast'

Comment: Not exactly California Dreamin is it! The Superfund Site has been around for years and now the EPA is trying to clean up the mess left from corporate greed. Will our Children see Virginia become a Superfund state because of the greed of uranium mining and Mt. Top Removal?

Peter Fimrite, Chronicle Staff Writer
Friday, June 12, 2009

Rick Sugarek knows not to splash through the puddles inside "the mouth of the beast."

That is what he calls the gaping wound near Redding known to everybody else as the Iron Mountain Mine, which is widely regarded by scientists as one of the most polluted places in the world.

The project manager for the Environmental Protection Agency said he once dropped a pen in some running water inside the mine and when he recovered it, it was coated in copper. The water is so acidic that droplets eat holes in blue jeans and dissolve the stitching on boots, much like battery acid.

Sugarek stood Thursday in a shaft once known as the Richmond Mine. It is the source of the toxic stew that has polluted the Sacramento River and its tributaries for more than a century, killed thousands of fish and turned a once-majestic mountain into a hellish breeding ground for nasty bacterial slime that helps create what geologists say is the "world's worst water."

But on this day Sugarek was full of hope, despite the dismal surroundings. The EPA was recently awarded $20.7 million in federal stimulus funds to clean up the heavy metals that have flowed into and accumulated at the bottom of the Keswick Reservoir for decades, threatening fish if not people. Sugarek said the metals have settled to the bottom and do not affect the quality of the drinking water.

The money, combined with $10 million already budgeted for the project, will pay for construction of three pumping stations, piping and the hydraulic dredging of the 170,000 cubic yards of fine toxic metals that to this day coat the bottom of the Spring Creek arm of the reservoir.

Separating out the solids
"What we're trying to deal with now is the 50 years of stuff that has accumulated at the bottom of the reservoir since it was built," said Sugarek, who has been working at the Toxic Superfund site for 20 years. "This is an important management area for California's water supply, and toxic chemicals are flowing down."

Sugarek said the idea is to clean up the site, not restore the ecosystem, so other areas are not contaminated. He said a storm could stir up the sludge in reservoir. The plan then is to dredge the area over the next 18 months, pump the fine sediments up to a treatment center that will separate out the solids. The toxic sediments will then be dried out and dumped into a 12-acre pit on nearby federal land. The pit will be lined with thick plastic sheets and then covered and planted over.

Prospecting in 1860s
The work is expected to employ as many as 300 people over three years. In the end, Sugarek hopes, the threat to waterways, including the Sacramento River, should have ended.

The trouble began in the 1860s when gold and silver prospectors first discovered the mountain, about 9 miles northwest of Redding.

Poisonous runoff
The real damage began when a company called Mountain Copper took over the 4,400-acre mine in the 1890s and began to supply sulfuric acid to refineries in the Bay Area. At the turn of the century, it was the largest copper mine in California, and a small city of laborers lived on the mountain. Twenty cavities the size of office buildings were drilled into the mountain.
Much of the work on the Richmond Mine occurred during World War II, leaving the entire mountain scarred.

The mining operation turned to rubble what was originally a 200-foot-thick by 3,000-foot-long underground deposit of pyrite, exposing it to oxygen, water and bacteria that combined to create the poisonous runoff. Water that flowed out of the shaft where the pyrite lay formed bluish blocks of acid salt, which deer sometimes used as salt licks.

The Bureau of Reclamation built an earthen dam in 1963 to block the steady flow of sludge, but it would often overflow during heavy winter rains and the copper and metals would get into the Sacramento River.

The mine was finally abandoned in 1966 and collapsed in on itself shortly after that. The problem, it seemed, only got worse.

Lethal blend of copper, iron

Tens of thousands of fish have been killed since then. By the time the EPA took over management of the area in the 1980s, a ton of acidic water and heavy metals a day were flowing into the river, Sugarek said. The water in the debris dam was blood red from a mixture of iron and copper.

Desperate, the EPA built the Slick Rock Creek Retention Dam in 2004, which captured 98 percent of the sludge. The sludge is dried and dumped in the open pit mine on top of the mountain. Now the EPA is concentrating on the leftover mess.

But money cannot completely resolve the problem. Researchers recently found six unique strains of bacteria that live in a bed of pink slime that is part of a little-understood biochemical cycle that devours iron, produces sulfuric acid, and creates a nightmarish broth of copper, zinc and arsenic. That toxic broth will continue pouring out of the mine forever, or until someone figures out a way to neutralize the chemical and biological reactions, scientists say.

"We spent a good deal of time trying to see if we could shut it down, and our conclusion was that we couldn't," said Sugarek, adding that the only hope is for some future innovation or new technology. "We know we can continue what we are doing for 100 years. The estimate is that it will take the mountain about 3,000 years to use up all the pyrite."

The damp, dark passage where Sugarek stood Thursday was nothing compared with the hellish alien environment deeper inside the mine. There, chemical reactions drive temperatures up to 130 degrees, the water is almost pure sulfuric acid, and stalactites and stalagmites of acid salt cover the walls.

Dissolving aluminum, skin

"If you go back 1,500 feet, the temperature is 100 degrees, you start to see the acid salts and it smells like sulfur," Sugarek said. "You don't want to use an aluminum ladder because it will just dissolve."

A NASA scientist once sent a robot into the bowels of the mine. It did not return, Sugarek said. Nobody that he knows of has been killed, but Sugarek said a worker testing the water above the debris dam suffered "some exfoliation of the skin" after his rubber raft was punctured and he was forced to swim to safety.

Little help from owner
The elderly owner of the property, Ted Arman, who bought the 3,500-foot mountain from the last mining company for $100,000, has not been much help, proposing a resumption of mining in addition to construction of a 200-foot-tall marble statue of Jesus Christ.

Sugarek said rockslides and dam failures are still concerns.

"We have shut the leak off," he said. "What we're worried about is that a discharge from the debris dam during a big storm could cause an environmental disaster."

E-mail Peter Fimrite at pfimrite@sfchronicle.com.

http://sfgate.com/cgi-bin/article.cgi?f=/c/a/2009/06/12/MN9Q185QAK.DTL


http://www.sfgate.com/cgi-bin/article.cgi?f=/c/a/2009/06/11/MN9Q185QAK.DTL

Monday, April 27, 2009

Court Victory Forces Canada to Report Pollution Data for Mines

Comment: think our Northern Neighbors have safe mining - NO!!

Friday April 24, 2009 11:31 AM

TORONTO – MiningWatch Canada and Ecojustice are hailing a landmark decision from the Federal Court of Canada released late yesterday that will force the federal government to stop withholding data on one of Canada’s largest sources of pollution – millions of tonnes of toxic mine tailings and waste rock from mining operations throughout the country.

The Federal Court sided with the groups and issued an Order demanding that the federal government immediately begin publicly reporting mining pollution data from 2006 onward to the National Pollutant Release Inventory (NPRI). The strongly worded decision describes the government’s pace as “glacial” and chastises the government for turning a “blind eye” to the issue and dragging its feet for “more than 16 years”.

“This is a huge decision for environmental justice in Canada,” said Ecojustice lawyer Justin Duncan. Fellow lawyer Marlene Cashin added, “The court has unequivocally upheld the right of Canadians to know when the health of their communities and the environment is under threat from one of the country’s largest sources of toxic pollution.”

The lawsuit was filed in Federal Court in 2007 on behalf of MiningWatch Canada and Great Lakes United by Ecojustice (formerly Sierra Legal Defence Fund). The lawsuit alleged that the Minister of Environment broke the law when he failed to collect and report this pollution information from mines in Canada under the NPRI.

“This is a victory that should be celebrated from Smithers to Voisey’s Bay,” said MiningWatch Canada spokesman Jamie Kneen. “The public has a right to know what kind of toxic liabilities are being created every day. It’s always been bizarre to us that the mining industry should not face the same reporting requirements as every other industrial sector, and we’re pleased that the Court agreed with us.”

In stark contrast, since 1998, the U.S. government has required mining companies to report all pollutants under the American equivalent of the NPRI, the Toxics Release Inventory (TRI). In 2005, the 72 mines reporting to the TRI released more than 500 million kilograms of mine tailings and waste rock – accounting for 27% of all U.S. pollutants reported. With yesterday’s court decision, pollution data from Canada’s 80 metal mining facilities will now similarly have to be reported under the NPRI.

“Canadians living in places like Sudbury, with mining operations in their backyards, were blindfolded while millions of kilograms of carcinogens and heavy metals accumulated in tailings ponds and waste rock piles across the country,” said John Jackson of Great Lakes United. “With this decision, the blindfold comes off and citizens can truly hold these companies to account for their pollution and the environmental and health dangers they pose.”

For further information please visit www.ecojustice.ca or contact:
Justin Duncan, Ecojustice (416) 573-4258 (cell)
Marlene Cashin, Ecojustice (416) 368-7533 ext. 31
John Jackson, Great Lakes United (519) 744-7503
Jamie Kneen, MiningWatch Canada (613) 761-2273 (cell)

http://www.miningwatch.ca/index.php?/npri/NPRI_victory_federal_court

Friday, April 3, 2009

Senate Introduces Mining Reform Bill

— By Josh Harkinson Thu April 2, 2009 1:30 PM PST

Senator Jeff Bingaman of New Mexico has just introduced a mining reform bill in the Senate, bringing Congress one step closer to updating the nation's most outdated public lands law, the General Mining Law of 1872.

A similar bill from House stalled in the Senate last year, where Majority leader Harry Reid, the son of a gold miner, has been a powerful ally of the hard rock minerals industry.

Mining companies are still allowed to remove minerals from public lands without paying a cent in federal royalties.

As I reported in a recent profile of Reid, Nevada remains an anachronism in a region that is becoming much less tolerant of the America's most polluting industry.

Bingaman's bill is less progressive than a similar House measure, but might win key support from Reid and moderate Republicans.

According to Velma Smith, the manager of the Pew Campaign for Responsible Mining, the bill proposes reducing the House's proposed 8 percent royalty to something between 2 and 5 percent, to be set at the discretion of the Department of Interior.

It would also impose a reclamation fee of .3 to 1 percent.

In what's been a keen interest of Bingaman's, the bill also asks the National Academy of Sciences to perform a study on uranium mining.

Smith says uranium, which is the only energy mineral overseen by the mining law, may be moved to a leasing system.

Environmentalists have been concerned that mining on any one of 1,200 uranium mining claims along the Colorado River could pollute the water supply for Las Vegas and Southern California.(dah, it has already polluted the rivers!)

In other important respects, the Senate and House bills are the same.

Both call for stricter environmental permitting of mines, better ways for lands to be set off-limits to mining, and more financial assurances that mining companies will clean up after themselves.

The cost of cleaning up abandoned mines in the U.S. is now estimated to be at least $32 billion.

Will Reid support the bill? "I really don’t know," Smith says.

"My sense was that Senator Bingaman's office took a long time vetting this with a lot of people.

I don’t see this as an extreme bill by any means.

So I think there’s a chance for the industry and environmentalists to come together."(dah, don't think so, corp wants money and heck with people!)

Sunday, February 15, 2009

Stimulus bill expected to restart mine cleanup

Perhaps mine cleanup will eventually produce the hundreds of jobs that VUI/Santoy claim their mine will bring to the area? GV

By JOAN LOWY, Associated Press Writer Joan Lowy, Associated Press Writer – Sun Feb 15, 8:18 am ET

WASHINGTON – When the Beal Mountain mine opened in 1988 near Butte, Mont., its owner promoted open-pit cyanide leaching for extracting gold from ore as modern and environmentally friendly.


Pegasus Gold Corp., a Canadian company, extracted nearly 460,000 ounces of gold over a decade before closing the mine and declaring bankruptcy in 1998.

It left behind a 70-acre, cyanide-contaminated leach pond with a leaky liner and tons of rubble that sends selenium-laced runoff into streams, threatening cutthroat trout and other fish. The $6.2 million reclamation bond posted by the company doesn't come close to covering the full cost to clean up the mine, which could total nearly $40 million.

"There is a real ticking time bomb up there," said Josh Vincent, president of a Trout Unlimited chapter near the mine, which sits on U.S. Forest Service land.


Efforts to clean up one of the West's most enduring and dangerous legacies — tens of thousands of abandoned hardrock mines, many dating to the 19th century — should get a boost from the economic stimulus bill awaiting President Barack Obama's signature.

The final bill, approved by the House and Senate on Friday, contains more than $1.5 billion for construction and maintenance projects in the Bureau of Land Management, the National Park Service and the Forest Service. That includes addressing pollution and safety hazards caused by abandoned mines on public lands.


The three agencies together spent about $25 million on mine cleanup in the budget year that ended last Sept. 30, according to the staff of Sen. Dianne Feinstein, D-Calif., one of the lawmakers who sought the money.

Projects ranging from repairing trails to replacing equipment also are eligible for the money, so there is no guarantee the money will be spent on mine cleanup. The bill says preference is supposed to go to projects that generate most jobs.

Advocates for cleaning up abandoned mines say the work is a strong job-generator.

"These much needed funds will create thousands of jobs, reduce water pollution, eliminate public safety threats, and restore fish and wildlife habitat in rural communities across the country," said Lauren Pagel, policy director for Earthworks, an environmental group focused on mining issues.


The Government Accountability Office estimates there are at least 161,000 abandoned hardrock mines in Alaska and 11 other western states, plus South Dakota. Open mine shafts and decaying structures pose safety hazards, contaminants are polluting streams and groundwater, and piles of tailings tinged with arsenic have been left behind.

The Environmental Protection Agency estimates it could cost as much as $50 billion to clean up all the nation's abandoned hardrock mines.

Anti-tax groups questioned whether mine clean up merits funds at all, considering that the bill is intended to jump-start the economy. Cleanups are temporary and unlikely to have any lasting economic effect, said Pete Sepp, a spokesman for the National Taxpayers Union, which advocates for less government spending.


"It's not like anyone is going to dig in these mines ever again," he said.
A report last year by the Interior Department's inspector general said abandoned mines on BLM and National Park Service land are exposing people to dangerous contaminants such as arsenic, lead and mercury. Other dangers include deadly gases, collapsing mine walls and explosive chemicals.

Among the dangers outlined in the report: all-terrain vehicle riders falling into abandoned mine shafts.


In 2007, a 13-year-old girl was killed and her 10-year-old sister seriously injured when the all-terrain vehicle they were riding ran off a trail and fell into a 125-foot mine shaft a short distance from a BLM campground near Chloride, Ariz.

At the Mojave National Preserve in California, investigators found mine shafts along roads that were large enough to swallow cars.


"The potential for more deaths and injuries is ominous," the report said.