News plant explosion next to the Japanese Dai Ichi Fukushima nuclear power to make news and a lot of questions about the possible consequences of exposure to radiation. The radiation from nuclear plants to be ionizing radiation, the kind that can damage human tissue irritation. Levels can Signifiant exposure to ionizing radiation (which is a large dose, or the amount of small doses in a row) caused the so-called radiation sickness or radiation poisoning. This can be symptoms of exposure, ranging from mild to severe. These include fatigue, nausea, vomiting, weakness, diarrhea, bruising and drought, and loss of hair, skin burns, ulcers, bloody stool, bleeding from the nose and mouth, and even out skin rupture. The treatment usually involves cleansing - to remove radioactive particles much on the outside of the body as possible. Will remove your clothes on the Elimination of usually about 90% of the particles and increase the skin with soap and water will remove them. If necessary, and treatment of various oral and injections given to the damaged bone marrow and internal organs. Can of chemicals such as iodine, DTPA and Prussian blue to help in the extraction and removal of radioactive particles from the body. May be some patients who suffer from severe bone murgpampoene that person's ability to make concessions damage the blood and require blood transfusions. Although the treatment is often more complex, and hopefully, it will give you a basic understanding of the subject.

Showing posts with label nuclear. Show all posts
Showing posts with label nuclear. Show all posts
Nuclear reactor explosion
It is not skilful engineering or clever reactor design that precludes a nuclear explosion at a nuclear power plant, it is the laws of physics.
The materials in a nuclear reactor core and the uranium enrichment level make impossible a nuclear explosion of the type for which nuclear weapons are designed. Despite this, repeatedly we have heard talk of nuclear explosions in the media from observers, pundits, anti-nuclear activists and journalists.An explosion at a nuclear reactor is not a nuclear explosion and can never be. Power plant grade uranium contains the fissile form of uranium, the uranium-235 isotope, at just a few percent, the majority is non-fissile U238. Compare that to weapons grade uranium which has to contain 80% or more of U235. Moreover, a nuclear weapon requires that a critical mass of the radioactive material be forced together quickly in a relatively small volume. This cannot happen in a nuclear plant, the low concentration of fissile U235 means it can never reach an explosively critical mass of fissile material but there is also no process that could force it together into a small volume quickly, anyway.
The same applies to the mixed oxide type reactor that use plutonium oxide and uranium oxide. It should be noted that plutonium is generated by the normal operation of a uranium-using power plant, although again it is the wrong ratio of isotopes for a nuclear weapon.
Essentially, the fuel concentration in a power plant is far too low to build the high-energy neutron stream needed to cause an explosive chain reaction. As to nucleear meltdown. The term nuclear meltdown is laden with China Syndrome style drama, but it does not lead to a nuclear explosion; a lot of heat is produced, and the nuclear fuel melts (happens at about 2700 Celsius). That’s it. Moreover, the melting process leads to less fissile material being in close contact when it spreads and melts through the floor of the reactor and the rock beneath. Incidentally, the hypothetical limit on depth the molten fuel could penetrate is about 15-20 metres, not the Earth’s core. Inevitably, the chain reaction that generates the heat slows of its own accord.
None of this is to say that what has happened in Japan is any less of a tragedy, it is just that phrases like nuclear meltdown and nuclear explosion used in this context in no way help, they spread fear, give tabloid headline writers scaremongering fodder, and are being hijacked repeatedly for personal agendas. Conventional explosions do occur, as we’ve learned this week from tragic events in Japan. But, these are not nuclear explosions. There is a risk of particles of radioactive material entering the atmosphere or the ocean, but this does not amount to the impact of an actual nuclear explosion.
The materials in a nuclear reactor core and the uranium enrichment level make impossible a nuclear explosion of the type for which nuclear weapons are designed. Despite this, repeatedly we have heard talk of nuclear explosions in the media from observers, pundits, anti-nuclear activists and journalists.An explosion at a nuclear reactor is not a nuclear explosion and can never be. Power plant grade uranium contains the fissile form of uranium, the uranium-235 isotope, at just a few percent, the majority is non-fissile U238. Compare that to weapons grade uranium which has to contain 80% or more of U235. Moreover, a nuclear weapon requires that a critical mass of the radioactive material be forced together quickly in a relatively small volume. This cannot happen in a nuclear plant, the low concentration of fissile U235 means it can never reach an explosively critical mass of fissile material but there is also no process that could force it together into a small volume quickly, anyway.
The same applies to the mixed oxide type reactor that use plutonium oxide and uranium oxide. It should be noted that plutonium is generated by the normal operation of a uranium-using power plant, although again it is the wrong ratio of isotopes for a nuclear weapon.
Essentially, the fuel concentration in a power plant is far too low to build the high-energy neutron stream needed to cause an explosive chain reaction. As to nucleear meltdown. The term nuclear meltdown is laden with China Syndrome style drama, but it does not lead to a nuclear explosion; a lot of heat is produced, and the nuclear fuel melts (happens at about 2700 Celsius). That’s it. Moreover, the melting process leads to less fissile material being in close contact when it spreads and melts through the floor of the reactor and the rock beneath. Incidentally, the hypothetical limit on depth the molten fuel could penetrate is about 15-20 metres, not the Earth’s core. Inevitably, the chain reaction that generates the heat slows of its own accord.
None of this is to say that what has happened in Japan is any less of a tragedy, it is just that phrases like nuclear meltdown and nuclear explosion used in this context in no way help, they spread fear, give tabloid headline writers scaremongering fodder, and are being hijacked repeatedly for personal agendas. Conventional explosions do occur, as we’ve learned this week from tragic events in Japan. But, these are not nuclear explosions. There is a risk of particles of radioactive material entering the atmosphere or the ocean, but this does not amount to the impact of an actual nuclear explosion.
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