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U.S. Government Confirms Link Between Earthquakes and Hydraulic Fracturing at Oil Price - 0 views

  • On 5 November an earthquake measuring 5.6 rattled Oklahoma and was felt as far away as Illinois. Until two years ago Oklahoma typically had about 50 earthquakes a year, but in 2010, 1,047 quakes shook the state. Why? In Lincoln County, where most of this past weekend's seismic incidents were centered, there are 181 injection wells, according to Matt Skinner, an official from the Oklahoma Corporation Commission, the agency which oversees oil and gas production in the state. Cause and effect? The practice of injecting water into deep rock formations causes earthquakes, both the U.S. Army and the U.S. Geological Survey have concluded.
  • The U.S. natural gas industry pumps a mixture of water and assorted chemicals deep underground to shatter sediment layers containing natural gas, a process called hydraulic fracturing, known more informally as “fracking.” While environmental groups have primarily focused on fracking’s capacity to pollute underground water, a more ominous byproduct emerges from U.S. government studies – that forcing fluids under high pressure deep underground produces increased regional seismic activity. As the U.S. natural gas industry mounts an unprecedented and expensive advertising campaign to convince the public that such practices are environmentally benign, U.S. government agencies have determined otherwise. According to the U.S. Army’s Rocky Mountain Arsenal website, the RMA drilled a deep well for disposing of the site’s liquid waste after the U.S. Environmental Protection Agency “concluded that this procedure is effective and protective of the environment.”  According to the RMA, “The Rocky Mountain Arsenal deep injection well was constructed in 1961, and was drilled to a depth of 12,045 feet” and 165 million gallons of Basin F liquid waste, consisting of “very salty water that includes some metals, chlorides, wastewater and toxic organics” was injected into the well during 1962-1966.
  • Why was the process halted? “The Army discontinued use of the well in February 1966 because of the possibility that the fluid injection was “triggering earthquakes in the area,” according to the RMA. In 1990, the “Earthquake Hazard Associated with Deep Well Injection--A Report to the U.S. Environmental Protection Agency” study of RMA events by Craig Nicholson, and R.I. Wesson stated simply, “Injection had been discontinued at the site in the previous year once the link between the fluid injection and the earlier series of earthquakes was established.” Twenty-five years later, “possibility” and ‘established” changed in the Environmental Protection Agency’s July 2001 87 page study, “Technical Program Overview: Underground Injection Control Regulations EPA 816-r-02-025,” which reported, “In 1967, the U.S. Army Corps of Engineers and the U.S. Geological Survey (USGS) determined that a deep, hazardous waste disposal well at the Rocky Mountain Arsenal was causing significant seismic events in the vicinity of Denver, Colorado.” There is a significant divergence between “possibility,” “established” and “was causing,” and the most recent report was a decade ago. Much hydraulic fracturing to liberate shale oil gas in the Marcellus shale has occurred since.
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  • According to the USGS website, under the undated heading, “Can we cause earthquakes? Is there any way to prevent earthquakes?” the agency notes, “Earthquakes induced by human activity have been documented in a few locations in the United States, Japan, and Canada. The cause was injection of fluids into deep wells for waste disposal and secondary recovery of oil, and the use of reservoirs for water supplies. Most of these earthquakes were minor. The largest and most widely known resulted from fluid injection at the Rocky Mountain Arsenal near Denver, Colorado. In 1967, an earthquake of magnitude 5.5 followed a series of smaller earthquakes. Injection had been discontinued at the site in the previous year once the link between the fluid injection and the earlier series of earthquakes was established.” Note the phrase, “Once the link between the fluid injection and the earlier series of earthquakes was established.” So both the U.S Army and the U.S. Geological Survey over fifty years of research confirm on a federal level that that “fluid injection” introduces subterranean instability and is a contributory factor in inducing increased seismic activity.” How about “causing significant seismic events?”
  • Fast forward to the present. Overseas, last month Britain’s Cuadrilla Resources announced that it has discovered huge underground deposits of natural gas in Lancashire, up to 200 trillion cubic feet of gas in all. On 2 November a report commissioned by Cuadrilla Resources acknowledged that hydraulic fracturing was responsible for two tremors which hit Lancashire and possibly as many as fifty separate earth tremors overall. The British Geological Survey also linked smaller quakes in the Blackpool area to fracking. BGS Dr. Brian Baptie said, “It seems quite likely that they are related,” noting, “We had a couple of instruments close to the site and they show that both events occurred near the site and at a shallow depth.” But, back to Oklahoma. Austin Holland’s August 2011 report, “Examination of Possibly Induced Seismicity from Hydraulic Fracturing in the Eola Field, Garvin County, Oklahoma” Oklahoma Geological Survey OF1-2011, studied 43 earthquakes that occurred on 18 January, ranging in intensity from 1.0 to 2.8 Md (milliDarcies.) While the report’s conclusions are understandably cautious, it does state, “Our analysis showed that shortly after hydraulic fracturing began small earthquakes started occurring, and more than 50 were identified, of which 43 were large enough to be located.”
  • Sensitized to the issue, the oil and natural gas industry has been quick to dismiss the charges and deluge the public with a plethora of televisions advertisements about how natural gas from shale deposits is not only America’s future, but provides jobs and energy companies are responsible custodians of the environment. It seems likely that Washington will eventually be forced to address the issue, as the U.S. Army and the USGS have noted a causal link between the forced injection of liquids underground and increased seismic activity. While the Oklahoma quake caused a deal of property damage, had lives been lost, the policy would most certainly have come under increased scrutiny from the legal community. While polluting a local community’s water supply is a local tragedy barely heard inside the Beltway, an earthquake ranging from Oklahoma to Illinois, Kansas, Arkansas, Tennessee and Texas is an issue that might yet shake voters out of their torpor, and national elections are slightly less than a year away.
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Tritium leaks hit three-quarters of U.S. nuclear plants [27Jun11] - 1 views

  • Radioactive tritium has leaked from three-quarters of U.S. commercial nuclear power sites, often into groundwater from corroded, buried piping, an Associated Press investigation shows.
  • The number and severity of the leaks has been escalating, even as federal regulators extend the licenses of more and more reactors across America. Tritium, which is a radioactive form of hydrogen, has leaked from at least 48 of 65 sites, according to U.S. Nuclear Regulatory Commission records reviewed as part of the AP's yearlong examination of safety issues at aging nuclear power plants. Leaks from at least 37 of those facilities contained concentrations exceeding the federal drinking water standard — sometimes at hundreds of times the limit.
  • While most leaks have been found within plant boundaries, some have migrated offsite. But none is known to have reached public water supplies. STORY: Regulators weaken safety standards for nuclear reactors At three sites — two in Illinois and one in Minnesota — leaks have contaminated drinking wells of nearby homes, the records show, but not at levels violating the drinking water standard. At a fourth site, in New Jersey, tritium has leaked into an aquifer and a discharge canal feeding picturesque Barnegat Bay off the Atlantic Ocean.
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  • Any exposure to radioactivity, no matter how slight, boosts cancer risk, according to the National Academy of Sciences. Federal regulators set a limit for how much tritium is allowed in drinking water, where this contaminant poses its main health risk. The U.S. Environmental Protection Agency says tritium should measure no more than 20,000 picocuries per liter in drinking water. The agency estimates seven of 200,000 people who drink such water for decades would develop cancer.
  • The tritium leaks also have spurred doubts among independent engineers about the reliability of emergency safety systems at the 104 nuclear reactors situated on the 65 sites. That's partly because some of the leaky underground pipes carry water meant to cool a reactor in an emergency shutdown and to prevent a meltdown. Fast moving, tritium can indicate the presence of more powerful radioactive isotopes, like cesium-137 and strontium-90.
  • So far, federal and industry officials say, the tritium leaks pose no health or safety threat. Tony Pietrangelo, chief nuclear officer of the industry's Nuclear Energy Institute, said impacts are "next to zero." LEAKS ARE PROLIFIC
  • Like rust under a car, corrosion has propagated for decades along the hard-to-reach, wet underbellies of the reactors — generally built in a burst of construction during the 1960s and 1970s. There were 38 leaks from underground piping between 2000 and 2009, according to an industry document presented at a tritium conference. Nearly two-thirds of the leaks were reported over the latest five years
  • For example, at the three-unit Browns Ferry complex in Alabama, a valve was mistakenly left open in a storage tank during modifications over the years. When the tank was filled in April 2010, about 1,000 gallons (3,785 liters) of tritium-laden water poured onto the ground at a concentration of 2 million picocuries per liter. In drinking water, that would be 100 times higher than the EPA health standard. And in 2008, 7.5 million picocuries per liter leaked from underground piping at Quad Cities in western Illinois — 375 times the EPA limit.
  • Subsurface water not only rusts underground pipes, it attacks other buried components, including electrical cables that carry signals to control operations. A 2008 NRC staff memo reported industry data showing 83 failed cables between 21 and 30 years of service - but only 40 within their first 10 years of service. Underground cabling set in concrete can be extraordinarily difficult to replace.
  • Under NRC rules, tiny concentrations of tritium and other contaminants are routinely released in monitored increments from nuclear plants; leaks from corroded pipes are not permitted. The leaks sometimes go undiscovered for years, the AP found. Many of the pipes or tanks have been patched, and contaminated soil and water have been removed in some places. But leaks are often discovered later from other nearby piping, tanks or vaults. Mistakes and defective material have contributed to some leaks. However, corrosion - from decades of use and deterioration - is the main cause. And, safety engineers say, the rash of leaks suggest nuclear operators are hard put to maintain the decades-old systems.
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NHK, Tepco finally confirm steam came up from underground at Reactor No. 1 - Now 4.7 Si... - 0 views

  • FUKUSHIMA, Oct. 17 — Mochizuki of the Fukushima Diary website has provided a summary of an Oct. 15 report by NHK that reveals “it turned out to be true that water vapor (steam) was splashing (erupting) from underground in June” at Fukushima Daiichi’s No. 1 reactor. “According to Tepco, it was splashing from underground in June, but now it’s stopped,” the summary continues. An Oct. 13 measurement in the same location of Reactor No. 1 detected radiation of 4.7 Sv/hr, almost a 20% increase over June’s measurement of 4.0 Sv/hr. Mochizuki finishes by noting, “It is assumed that melted fuel rods are sinking deep underground, which is called China Syndrome.”
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Mainichi: Radiation detected in drinking water from underground source - Over 15 miles ... - 0 views

  • Water underground is contaminated, Fukushima Diary, Dec. 26, 2011: Ministry of the Environment measured cesium from well water at 4 locations in Minamisoma [25 km north of Fukushima plant]. It was about 1.3~14.7 Bq/kg, it was for drinking. The samples were taken in October and November. [...]
  • Babelfish Translation result for http://mainichi.jp/select/weathernews/news/20111227k0000m040028000c.html Headline: Fukushima 1st nuclear plant: From well water 4 places of cesium detection south Soma Source: Mainichi.jp Date: Dec. 26, 2011
  • t announced that the environmental ministry on the 26th, inspected the density of the well underwater radioactive cesium of drinking which in emergency evacuation preparation area (in 9 ends of the month cancellation) inside Fukushima prefecture
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  • detected the small quantity at 4 places of south Soma city. Being maximum, water 1 liter (kilometer) to hit and but with 14.7 Becquerel, below provisional regulation value (1 kilo- hit, 200 Becquerel) of the public welfare Ministry of Labor, the new reference level (same 10 Becquerel) which aims April toward of next year enforcement was exceeded at 3 places. To investigate at 1317 places of the same city and Hirono Cho and Naraha Cho 10, in November, as for the other self-governing community and the like of the same area in the midst of continuation. At 1 places of the same Ku Kitahara as 2 places of south Soma Ichihara Cho Ku Kita Nagano, per 1 liters 11.4~14.7 Becquerel, 1.3 Becquerel were detected with the same Ku 萱 beach. As for detection lower limit value with 5 Becquerel, as for the other well it was non- detection. According to the environmental ministry you say that there is a possibility the earth near the cesium is attached blending. The well with private possession, has informed about the result, almost there is no possibility many people drinking.
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Architect of Reactor 3 warns of massive hydrovolcanic explosion [18Nov11] - 0 views

  • Architect of Fukushima Daiichi Reactor 3, Uehara Haruo, the former president of Saga University had an interview on 11/17/2011. In this interview, he admitted Tepco’s explanation does not make sense, and that the China syndrome is inevitable. He stated that considering 8 months have passed since 311 without any improvement, it is inevitable that melted fuel went out of the container vessel and sank underground, which is called China syndrome.
  • He added, if fuel has reaches a underground water vein, it will cause contamination of underground water, soil contamination and sea contamination. Moreover, if the underground water vein keeps being heated for long time, a massive hydrovolcanic explosion will be caused. He also warned radioactive debris is spreading in Pacific Ocean. Tons of the debris has reached the Marshall Islands as of 11/15/2011.
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Breaking News: Explosion underground? [29Sep11] - 0 views

  • 19:05 9/29/2011(JST) ,there was an earthquake near Fukushima plants. Scale 5+ M5.6 Now there are some aftershocks still.
  • Strange points 1) Though it was a major earthquake,it was scale 5+ only around Fukushima nuc plants. 2) According to Japan Meteorological Agency,the epicenter was “very shallow”.They can’t even specify how deep it was. 3) Though Fukushima city is in the same prefecture,it was only scale 1 there. 4) A lot of the people heard loud brontide,which is rare for normal earthquake.
  • Unconfirmed info (info from Twitter) 1) The epicenter is right under Fukushima plants. 2) From the live streaming video,sometimes you see flash from the buildings. 3) From the live streaming video,steam is coming up from around reactor 4.
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  • Facts 1) Radiation level is increasing. In Futabayama area, 21.48 uSv/h @9/21 → 24.65 uSv/h @9/29 19:01 2) Unusual amount of helicopters and airplanes are flying around in Fukushima. (hovering near Ishimori,Kamiya,etc..)
  • From viewing all those reports, this earthquake seems to be something usual. Considering the fact that melted fuel rods are sinking about 17m deep in the ground, it is possible to think the last earthquake was a hydrovolcanic explosion caused by nuclear fuel touching the underground water vein.
  • “It’s catastrophic. I don’t even want to imagine,but it might have been some kind of explosion of meltouted fuel rods touching underground vein. It was scale 5+ just around the plants but no scale 4 class of earthquake detected in other prefectures.” Tomorrow,Japanese government is lifting the mandatory evacuating area.
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U.S. nuke regulators weaken safety rules [20Jun11] - 0 views

  • Federal regulators have been working closely with the nuclear power industry to keep the nation's aging reactors operating within safety standards by repeatedly weakening standards or simply failing to enforce them, an investigation by The Associated Press has found.Officials at the U.S. Nuclear Regulatory Commission regularly have decided original regulations were too strict, arguing that safety margins could be eased without peril, according to records and interviews.The result? Rising fears that these accommodations are undermining safety -- and inching the reactors closer to an accident that could harm the public and jeopardize nuclear power's future.
  • Examples abound. When valves leaked, more leakage was allowed -- up to 20 times the original limit. When cracking caused radioactive leaks in steam generator tubing, an easier test was devised so plants could meet standards.Failed cables. Busted seals. Broken nozzles, clogged screens, cracked concrete, dented containers, corroded metals and rusty underground pipes and thousands of other problems linked to aging were uncovered in AP's yearlong investigation. And many of them could escalate dangers during an accident.
  • Despite the problems, not a single official body in government or industry has studied the overall frequency and potential impact on safety of such breakdowns in recent years, even as the NRC has extended dozens of reactor licenses.Industry and government officials defend their actions and insist no chances are being taken. But the AP investigation found that with billions of dollars and 19 percent of America's electricity supply at stake, a cozy relationship prevails between industry and the NRC.Records show a recurring pattern: Reactor parts or systems fall out of compliance. Studies are conducted by industry and government, and all agree existing standards are "unnecessarily conservative."
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  • Regulations are loosened, and reactors are back in compliance."That's what they say for everything ...," said Demetrios Basdekas, a retired NRC engineer. "Every time you turn around, they say, 'We have all this built-in conservatism.' "The crisis at the decades-old Fukushima Dai-ichi nuclear facility in Japan has focused attention on nuclear safety and prompted the NRC to look at U.S. reactors. A report is due in July.But the factor of aging goes far beyond issues posed by Fukushima.
  • Commercial nuclear reactors in the United States were designed and licensed for 40 years. When the first were built in the 1960s and 1970s, it was expected that they would be replaced with improved models long before their licenses expired.That never happened. The 1979 accident at Three Mile Island, massive cost overruns, crushing debt and high interest rates halted new construction in the 1980s.Instead, 66 of the 104 operating units have been relicensed for 20 more years. Renewal applications are under review for 16 other reactors.As of today, 82 reactors are more than 25 years old.The AP found proof that aging reactors have been allowed to run less safely to prolong operations.
  • Last year, the NRC weakened the safety margin for acceptable radiation damage to reactor vessels -- for a second time. The standard is based on a reactor vessel's "reference temperature," which predicts when it will become dangerously brittle and vulnerable to failure. Through the years, many plants have violated or come close to violating the standard.As a result, the minimum standard was relaxed first by raising the reference temperature 50 percent, and then 78 percent above the original -- even though a broken vessel could spill radioactive contents."We've seen the pattern," said nuclear safety scientist Dana Powers, who works for Sandia National Laboratories and also sits on an NRC advisory committee. "They're ... trying to get more and more out of these plants."
  • Sharpening the pencilThe AP study collected and analyzed government and industry documents -- some never-before released -- of both reactor types: pressurized water units that keep radioactivity confined to the reactor building and the less common boiling water types like those at Fukushima, which send radioactive water away from the reactor to drive electricity-generating turbines.The Energy Northwest Columbia Generating Station north of Richland is a boiling water design that's a newer generation than the Fukushima plants.Tens of thousands of pages of studies, test results, inspection reports and policy statements filed during four decades were reviewed. Interviews were conducted with scores of managers, regulators, engineers, scientists, whistleblowers, activists and residents living near the reactors at 65 sites, mostly in the East and Midwest.
  • AP reporters toured some of the oldest reactors -- Oyster Creek, N.J., near the Atlantic coast 50 miles east of Philadelphia and two at Indian Point, 25 miles north of New York City on the Hudson River.Called "Oyster Creak" by some critics, this boiling water reactor began running in 1969 and is the country's oldest operating commercial nuclear power plant. Its license was extended in 2009 until 2029, though utility officials announced in December they will shut the reactor 10 years earlier rather than build state-ordered cooling towers. Applications to extend the lives of pressurized water units 2 and 3 at Indian Point, each more than 36 years old, are under NRC review.Unprompted, several nuclear engineers and former regulators used nearly identical terminology to describe how industry and government research has frequently justified loosening safety standards. They call it "sharpening the pencil" or "pencil engineering" -- fudging calculations and assumptions to keep aging plants in compliance.
  • Cracked tubing: The industry has long known of cracking in steel alloy tubing used in the steam generators of pressurized water reactors. Ruptures have been common in these tubes containing radioactive coolant; in 1993 alone, there were seven. As many as 18 reactors still run on old generators.Problems can arise even in a newer metal alloy, according to a report of a 2008 industry-government workshop.
  • Neil Wilmshurst, director of plant technology for the industry's Electric Power Research Institute, acknowledged the industry and NRC often collaborate on research that supports rule changes. But he maintained there's "no kind of misplaced alliance ... to get the right answer."Yet agency staff, plant operators and consultants paint a different picture:* The AP reviewed 226 preliminary notifications -- alerts on emerging safety problems -- NRC has issued since 2005. Wear and tear in the form of clogged lines, cracked parts, leaky seals, rust and other deterioration contributed to at least 26 of the alerts. Other notifications lack detail, but aging was a probable factor in 113 more, or 62 percent in all. For example, the 39-year-old Palisades reactor in Michigan shut Jan. 22 when an electrical cable failed, a fuse blew and a valve stuck shut, expelling steam with low levels of radioactive tritium into the outside air. And a 1-inch crack in a valve weld aborted a restart in February at the LaSalle site west of Chicago.
  • * A 2008 NRC report blamed 70 percent of potentially serious safety problems on "degraded conditions" such as cracked nozzles, loose paint, electrical problems or offline cooling components.* Confronted with worn parts, the industry has repeatedly requested -- and regulators often have allowed -- inspections and repairs to be delayed for months until scheduled refueling outages. Again and again, problems worsened before being fixed. Postponed inspections inside a steam generator at Indian Point allowed tubing to burst, leading to a radioactive release in 2000. Two years later, cracking grew so bad in nozzles on the reactor vessel at the Davis-Besse plant near Toledo, Ohio, that it came within two months of a possible breach, an NRC report said, which could release radiation. Yet inspections failed to catch the same problem on the replacement vessel head until more nozzles were found to be cracked last year.
  • Time crumbles thingsNuclear plants are fundamentally no more immune to aging than our cars or homes: Metals grow weak and rusty, concrete crumbles, paint peels, crud accumulates. Big components like 17-story-tall concrete containment buildings or 800-ton reactor vessels are all but impossible to replace. Smaller parts and systems can be swapped but still pose risks as a result of weak maintenance and lax regulation or hard-to-predict failures.Even mundane deterioration can carry harsh consequences.For example, peeling paint and debris can be swept toward pumps that circulate cooling water in a reactor accident. A properly functioning containment building is needed to create air pressure that helps clear those pumps. But a containment building could fail in a severe accident. Yet the NRC has allowed safety calculations that assume the buildings will hold.
  • In a 2009 letter, Mario V. Bonaca, then-chairman of the NRC's Advisory Committee on Reactor Safeguards, warned that this approach represents "a decrease in the safety margin" and makes a fuel-melting accident more likely.Many photos in NRC archives -- some released in response to AP requests under the federal Freedom of Information Act -- show rust accumulated in a thick crust or paint peeling in long sheets on untended equipment.Four areas stand out:
  • Brittle vessels: For years, operators have rearranged fuel rods to limit gradual radiation damage to the steel vessels protecting the core and keep them strong enough to meet safety standards.But even with last year's weakening of the safety margins, engineers and metal scientists say some plants may be forced to close over these concerns before their licenses run out -- unless, of course, new regulatory compromises are made.
  • Leaky valves: Operators have repeatedly violated leakage standards for valves designed to bottle up radioactive steam in an earthquake or other accident at boiling water reactors.Many plants have found they could not adhere to the general standard allowing main steam isolation valves to leak at a rate of no more than 11.5 cubic feet per hour. In 1999, the NRC decided to allow individual plants to seek amendments of up to 200 cubic feet per hour for all four steam valves combined.But plants have violated even those higher limits. For example, in 2007, Hatch Unit 2, in Baxley, Ga., reported combined leakage of 574 cubic feet per hour.
  • "Many utilities are doing that sort of thing," said engineer Richard T. Lahey Jr., who used to design nuclear safety systems for General Electric Co., which makes boiling water reactors. "I think we need nuclear power, but we can't compromise on safety. I think the vulnerability is on these older plants."Added Paul Blanch, an engineer who left the industry over safety issues, but later returned to work on solving them: "It's a philosophical position that (federal regulators) take that's driven by the industry and by the economics: What do we need to do to let those plants continue to operate?"Publicly, industry and government say that aging is well under control. "I see an effort on the part of this agency to always make sure that we're doing the right things for safety. I'm not sure that I see a pattern of staff simply doing things because there's an interest to reduce requirements -- that's certainly not the case," NRC chairman Gregory Jaczko said in an interview.
  • Corroded piping: Nuclear operators have failed to stop an epidemic of leaks in pipes and other underground equipment in damp settings. Nuclear sites have suffered more than 400 accidental radioactive leaks, the activist Union of Concerned Scientists reported in September.Plant operators have been drilling monitoring wells and patching buried piping and other equipment for several years to control an escalating outbreak.But there have been failures. Between 2000 and 2009, the annual number of leaks from underground piping shot up fivefold, according to an internal industry document.
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Water vapor splashed at reactor 1, 4.7 Sv/h [16Oct11] - 0 views

  • It turned out to be true that water vapor (steam) was splashing (erupting) from underground in June. 10/13/2011, Tepco conducted measurements by robot around where water vapor was splashing. They measured 4.7 Sv/h, where it was 4.0 Sv/h in June. It is located at South east side of the reactor 1. According to Tepco, it was splashing from underground in June, but now it’s stopped. They assume it is the highly contaminated water that fills the basement floor. It is assumed that melted fuel rods are sinking deep underground, which is called China Syndrome. (Source)
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What must be done for melt out.[31Oct11] - 0 views

  • Currently,at least 3 reactors are having melt out. Even Mr.Koide from Kyoyo University,who has been the most insightful advisory of us says, there is no major risk of explosion as long as the fuel rods are underground. Tepco announced they started building the impermeable wall on the sea side of reactor 1~4 on 10/28/2011. They say it takes 2 years to build. However,in Chernobyl,the biggest concern was the explosion underground after melt out. They put tons of human robots to settle it down.
  • They assumed if melted fuel touches the underground water vein,it would cause hydrovolcanic explosion so the entire area of Europe would be uninhabited. Soviet union was also afraid of the contamination of river. They ended up putting 800,000 people to settle it down and they suffer from severe health damage. In Japan,everything is concealed and nobody seems concerned about hydrovolcanic explosion and water contamination though it is likely to be going on already. Though Fukushima had container vessel,now that all of them were destroyed,the situation is similar to Chernobyl.
  • Roughly estimating,Chernobyl needed 800,000 people. In Fukushima,reactor 1~6 are in crisis,which means 800,000×6=4,800,000 people are needed to dedicate their lives. The video below is very insightful. It explains what Soviet did to avoid hydrovolcanic explosion. 600 pilots died. 10,000 coal miners were put (all in 20s or 30s) into digging the hole under the reactor,and at least 2500 of them died before 40s.
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  • In short,we must pay 6 times more price for Fukushima. Yes,nuclear is cheap,and environmentally friendly.
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St. Louis Landfill Fire [13May13] - 0 views

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    Underground landfill near tons of nuclear waste is burning raising serious health and safety concerns...
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Hanford leak getting worse [14Jun13] - 0 views

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    The leak in a massive underground double-shell nuclear waste tank at the Hanford Site has grown significantly since the leak was first announced to the public last fall, according to sources who have seen new inspection video and photographs. The tank -- known as AY-102 -- holds 860,000 gallons of radioactive waste generated during decades of plutonium production at the southeastern Washington reservation
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Plutonium brings no real chance of prosperity [05Dec11] - 0 views

  • The Dec. 2 morning edition of the Mainichi Shimbun ran an article reporting that in 2002, the then administrative vice minister of economy, trade and industry and the chairman and president of Tokyo Electric Power Co. (TEPCO) were nearing an agreement to withdraw from a nuclear fuel recycling project. Nuclear fuel recycling refers to a process of treating spent nuclear fuel from nuclear power stations with chemicals and extracting reusable uranium and plutonium from it. This project has so far been unsuccessful and there are no prospects that the project will work. It was only natural that the government regulator and the power supplier were negotiating a withdrawal from the project. The negotiations came to nothing after top executives of TEPCO were forced to resign over the utility's cover-up of a series of technical problems. Nevertheless, the Mainichi report indicates that a change in Japan's nuclear power policy is not a pipe dream.
  • Furthermore, the Mainichi evening edition of the same day (the morning edition the following day in some areas) reported that the United Kingdom is planning to dispose of some of its surplus plutonium, which it had accumulated as a result of nuclear fuel reprocessing, in an underground repository. This news is of greater significance. Plutonium is generated as a result of burning uranium in nuclear reactors. One gram of the substance has energy equal to that in 1 kiloliter of oil. It can be used as a material for both atomic bombs and fuel for nuclear reactors. The U.K. has steadily accumulated plutonium, but failed to develop fast-breeder nuclear reactors, which had been viewed as the core of the peaceful use of such a substance.
  • The U.K. then attempted to develop technology for the use of plutonium-uranium MOX fuel in thermal reactors at nuclear power stations, a project known in Japan as "pluthermal." However, the country has been unsuccessful in producing such fuel. The same is true with Japan. Areva SA, a nuclear technology company in France, is now manufacturing plutonium-uranium MOX fuel, but questions remain as to its quality. The U.K. ended up being the world's largest holder of surplus plutonium.
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  • The country has consequently decided to bury part of its plutonium in an underground repository that is scheduled to begin operations in 2040. Even if the U.K. says it will bury only "part" of its surplus plutonium, its amount is enough to produce hundreds of atomic bombs. The amount of surplus plutonium that needs to be buried could increase as there is no prospect that the U.K. will be successful in developing technology to use plutonium-uranium MOX fuel in thermal reactors. Moreover, the U.K. will abandon its project to reprocess spent nuclear fuel over the next decade. Behind the decision is the growing awareness that plutonium offers no positives, while also being a terrible nuisance. This is the essence of the story written by Haruyuki Aikawa, a Mainichi correspondent in London.
  • there are no prospects that Japan can build a disposal facility. However, for Japan to call for operations at the Monju prototype fast-breeder nuclear reactor in Fukui Prefecture and the nuclear fuel reprocessing plant in the Aomori Prefecture village of Rokkasho to be carried out as planned, would be like putting the cart before the horse as it appears the country is incapable of building a disposal facility.
  • Plutonium is directly related to security issues.
  • It is not enough for the government to talk only about the dream of "prosperity" built on dependence on nuclear power. Japan's ability to overcome the mess that follows such prosperity is now being tested
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