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Recommended: Fukushima disaster
The final assignment for our online Environmental Chemistry class is to discuss the recent nuclear crisis in Japan. This disaster resulted in many fatalities and many more either homeless or in critical damage (2). The Japanese government raised the rating of the crisis at Fukushima Dai-ichi to a level 7 (1). The scale used, the International Nuclear Events scale (INES) started in 1990 to help educate the public on how important certain events are. The scale’s legend indicates that each level is 10 times more devastating than next lowest level (9). The Fukushima Dai-ichi incident is only the second disaster to be ranked at the highest level (the other being Chernobyl in Ukraine), which means it is a “major accident which releases radioactive material with widespread health and environmental effects” (9) (1). Even though Fukushima and Chernobyl were both classified as the same disaster level, health-wise, Japan has had but a fraction of the ill effects of Ukraine (1). The nuclear power plant at Fukushima Dai-ichi was devastated by an earthquake and tsunami. This power plant is located in the large city of Tokyo where, on the morning of Friday, March 11, a magnitude 9.0 earthquake swept a 230-mile wide path northeast of Tokyo, Japan. This water laden earthquake was ranked fifth largest worldwide since records began (6). In a 225 page report by Tokyo Electric Power Company (TEPCO), it was stated that the earthquake caused holes in the nuclear reactors as big as 2.8-3.9 inches. Although the report is mostly speculator, a consensus has been reached that whatever holes were caused by the earthquake have only grown larger with time. Expert opinion is that the reactor’s containers are badly damaged, and the fuel rods for three reactor... ... middle of paper ... ...les.cnn.com/2011-03-15/world/japan.nuclear.disaster.timeline_1_power-plant-reactor-containment-structure?_s=PM:WORLD>. (7) Lah, Kyung. "Holes Feared in Two Japan Nuclear Reactors." Cable News Network. Turner Broadcasting Systems, Inc., 25 May 2011. Web. 18 July 2011. . (8) "The Science Of Japan's Nuclear Crisis." NPR. National Public Radio. Web. 20 July 2011. . (9) Ward, Victoria. "Japan Nuclear Plant: How Fukushima Crisis Rates on Nuclear Disaster Scale." The Telegraph. Telegraph Media Group Limited, 15 Mar. 2011. Web. 19 July 2011. .
Peter H. Brothers’ “Japans Nuclear Nightmare” compares the movie Godzilla to a devastating period in Japan’s history: The Atomic Age. The bombing of Hiroshima and Nagasaki by the United States destroyed Japan. In this article, Brothers wants to educate the audience and accomplishes this by using ethos and pathos. He uses ethos by appealing to ethics and to show right and wrong to the Japanese culture and community. He also uses the rhetoric of pathos to appeal to the audience’s emotions. Pathos is one of the easier ways to capture the audience and the author does that by using imagery and symbols. Brothers’ connects
Although nuclear technology can be used for good, it can also be used for destruction. One example of this was the bombing of 2 Japanese cities using the a...
Kuznick, Peter J. "The Decision to Risk the Future: Harry Truman, the Atomic Bomb and the Apocalyptic Narrative.” JapanFocus. The Asia-Pacific Journal: Japan Focus, 9 Dec. 2013. Web. 09 Jan. 2014.
Hopefully, with accurate analysis and innovation, my research will teach the world of its past so this disaster doesn’t occur in the future. B - Summary of Evidence Chernobyl (chrn byl) is an uninhibited city in north Ukraine, near the Belarus boundary, on the Pripyat River. Ten miles to the north, in the town of Pripyat, is the Chernobyl nuclear powerstation, site of the worst nuclear reactor disaster in history ("Chernobyl", Columbia Encyclopedia). To specify, on April 26, 1986, Unit Four of the Chernobyl nuclear reactor exploded in Ukraine, injuring human immune systems and the genetic structure of cells, contaminating soils and waterways. Nearly 7 tons of irradiated reactor fuel was released into the environment—roughly 340 million curies.
Nuclear power has always been a controversial issue because of its inherent danger and the amount of waste that the plants produce. Once considered a relatively safe form for generating energy, nuclear power has caused more problems than it has solved. While it has reduced the amount of traditional natural resources (fossil fuels), used to generate power like coal, wood, and oil, nuclear generating plants have become anachronisms. Maintaining them and keeping them safe has become a problem of immense proportion. As the plants age and other technology becomes available, what to do with these “eyesores” is a consuming issue for many government agencies and environmental groups. No one knows what to do about the problem and in many areas of the world, another nuclear meltdown is an accident waiting to happen. Despite a vast array of safety measures, a break in reactor pipe or a leak in a containment vessel, could spell another environmental disaster for the world.
On December 7, 1941 Japan launched a surprise attack on a U.S. naval base at Pearl Harbor in Hawaii with the possibility of forcing the U.S. to join World War II. About 2,400 Americans were dead, 21 ships had been sunk, and 188 aircrafts were destroyed. On August 6 and 9 of 1945, the U.S. retaliated and dropped two atomic bombs called Fat Man and Little Boy on the Japanese cities of Nagasaki and Hiroshima. The U.S. was not justified in dropping the atomic bombs on Japan because of the locations that were bombed, the terms of the Potsdam Declaration, and the lack of previous bomb testing.
I. (Gain Attention and Interest): March 11, 2011. 2:45 pm. Operations at the Fukushima Daiichi Nuclear Power Plant continued as usual. At 2:46 pm a massive 9.0 earthquake strikes the island of Japan. All nuclear reactors on the island shut down automatically as a response to the earthquake. At Fukushima, emergency procedures are automatically enabled to shut down reactors and cool spent nuclear fuel before it melts-down in a catastrophic explosion. The situation seems under control, emergency diesel generators located in the basement of the plant activate and workers breathe a sigh of relief that the reactors are stabilizing. Then 41 minutes later at 3:27 pm the unthinkable occurs. As workers monitored the situation from within the plant, citizens from the adjacent town ran from the coastline as a 49 foot tsunami approached. The tsunami came swiftly and flooded the coastline situated Fukushima plant. Emergency generators were destroyed and cooling systems failed. Within hours, a chain of events led to an explosion of reactor 1 of the plant. One by one in the subsequent days reactors 2, and 3 suffered similar fates as explosions destroyed containment cases and the structures surrounding the reactors (Fukushima Accident). Intense amount...
Flanary, W. (2008). Environment effects of the Chernobyl accident. Retrieved November 1st, 2013 from /http://www.eoearth.org/view/article/152617
The development and usage of the first atomic bombs has caused a change in military, political, and public functionality of the world today. The bombings of Hiroshima and Nagasaki revolutionized warfare by killing large masses of civilian population with a single strike. The bombs’ effects from the blast, extreme heat, and radiation left an estimated 140,000 people dead. The bombs created a temporary resolution that lead to another conflict. The Cold War was a political standoff between the Soviet Union and the United States that again created a new worldwide nuclear threat. The destructive potential of nuclear weapons had created a global sweep of fear as to what might happen if these terrible forces where unleashed again. The technology involved in building the first atomic bombs has grown into the creation of nuclear weapons that are potentially 40 times more powerful than the original bombs used. However, a military change in strategy has came to promote nuclear disarmament and prevent the usage of nuclear weapons. The technology of building the atomic bomb has spurred some useful innovations that can be applied through the use of nuclear power. The fear of a potential nuclear attack had been heightened by the media and its release of movies impacting on public opinion and fear of nuclear devastation. The lives lost after the detonation of the atomic bombs have become warning signs that changed global thinking and caused preventative actions.
There is a range of safety concerns in regards to nuclear power with one of these being the effects of radiation resulting from a nuclear accident. Research shows that there is a link between exposure to radiation and the development of cancer (Zakaib 2011) whist Preston (2012) express’s concerns that people exposed to radiation may not be able to see the effects of radiation exposure for several years as was the case in Chernobyl. Furthermore, people are unable to move back into the vicinity of reactors that have been involved in an incident due to their fear of radiation as is the chase in Fukishima (Cyranoski & Brumfiel 2011) and in the areas surrounding Chernobyl (Berton 2006). Governments are increasingly becoming more stringent in the levels of radiation in which people are exposed to with this evident in Fukishma, where the Japanese government evacuated people living within a 30km radius of the plant (Evacuation Orders and Restricted Areas n.d.). As a result of nuclear accidents and the resulting radiation, support for nuclear power has diminished due to safety concerns.
The Cold War was a time of great tension all over the world. From 1945 to 1989, the United States was the leader and nuclear power and was competing with the Soviet Union to create huge stockpiles of nuclear weapons. However, even though the Cold War ended, nuclear weapons are still a threat. Countries around the world strive to create nuclear power, and they do not promise to use it for peaceful purposes. Some examples of the struggles caused by nuclear weapons include the bombings of Hiroshima and Nagasaki, the Cuban Missile Crisis, and Iran’s recent nuclear weapon program. Surely, nuclear weapons have created conflict all over the world since the Cold War era.
Since its origin in 1948, North Korea has been isolated and heavily armed, with hostile relations with South Korea and Western countries. It has developed a capability to produce short- and medium-range missiles, chemical weapons, and possibly biological and nuclear weapons. In December 2002, Pyongyang lifted the freeze on its plutonium-based nuclear weapons program and expelled IAEA inspectors who had been monitoring the freeze under the Agreed Framework of October 1994. As the Bush administration was arguing its case at the United Nations for disarming Iraq, the world has been hit with alarming news of a more menacing threat: North Korea has an advanced nuclear weapons program that, U.S. officials believe, has already produced one or two nuclear bombs. As the most recent standoff with North Korea over nuclear missile-testing approaches the decompression point, the United States needs to own up to a central truth: The region of Northeast Asia will never be fully secure until the communist dictatorship of North Korea passes from the scene. After threatening to test a new, long-range missile, Pyongyang says it is willing to negotiate with "the hostile nations" opposing it. But whether the North will actually forgo its test launch is anyone's guess. North Korea first became embroiled with nuclear politics during the Korean War. Although nuclear weapons were never used in Korea, American political leaders and military commanders threatened to use nuclear weapons to end the Korean War on terms favorable to the United States. In 1958, the United States deployed nuclear weapons to South Korea for the first time, and the weapons remained there until President George Bush ordered their withdrawal in 1991. North Korean government stateme...
The energy industry is beginning to change. In today’s modern world, governments across the globe are shifting their focuses from traditional sources of power, like the burning coal and oil, to the more complex and scientific nuclear power supply. This relatively new system uses powerful fuel sources and produces little to no emissions while outputting enough energy to fulfill the world’s power needs (Community Science, n.d.). But while nuclear power seems to be a perfect energy source, no power production system is without faults, and nuclear reactors are no exception, with their flaws manifesting in the form of safety. Nuclear reactors employ complex systems involving pressure and heat. If any of these systems dysfunctions, the reactor can leak or even explode releasing tons of highly radioactive elements into the environment. Anyone who works at or near a nuclear reactor is constantly in danger of being exposed to a nuclear incident similar to the ones that occurred at the Chernobyl and Fukushima Daiichi plants. These major accidents along with the unresolved problems with the design and function of nuclear reactors, as well as the economic and health issues that nuclear reactors present serve to show that nuclear energy sources are not worth the service that they provide and are too dangerous to routinely use.
There was a multitude of causes of the disaster in Japan. The first cause was a 9.0 magnitude earthquake that occurred off the coast of Japan. Japan is located in “The Ring of Fire,” an area in the Pacific Ocean that has multiple faults and earthquakes (Pedersen 13). Tectonic plates shifted off the North Pacific coast of Japan and created a massive earthquake. The next cause was a thirty-three foot wall of water that swept over cities and farmland in Japan (Branigan 2). Martin Fackler, a journalist, stated, “The quake churned up a devastating tsunami” (Fackler 3). The tsunami reached speeds of 497 miles per hour while approaching Japan (Fackler 3). The third and final reason of the disaster was that the cooling systems at multiple nuclear power plants failed. At Fukushima, a nuclear power plant in Sendai, Japan, the radioactive rods began to overheat due to the absence of water, which cools it. Explosions occurred at three of the reactors, which spewed radiation into the air (“Comparing nuclear power plant crises”). In conclusion, the earthquake, tsunami, and nuclear power plant issues were the causes of the disaster in Japan, but they also had a myriad of effects.
For decades, the world has been struggling about determining whether or not to utilize nuclear energy. From 1985, when American Cold War fears stifled nuclear technology applications for power, to 2011, when the Japanese Fukishima nuclear incident resulted in many anti-nuclear sentiments, emphasis has never been placed on the potential benefits that nuclear energy poses. These sentiments include the ideas that nuclear power poses numerous threats to people and the environment, including consequences of uranium mining, processing and transport, nuclear weapons proliferation or sabotage, and of radioactive nuclear waste; reactors, due to their complexities, are more likely to fail and cause disasters.