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The role of chemical reactions in the Chernobyl accident

机译:化学反应在切尔诺贝利事故中的作用

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It is shown that chemical reactions played an essential role in the Chernobyl accident at all of its stages. It is important that the reactor before the explosion was at maximal xenon poisoning, and its reactivity, apparently, was not destroyed by the explosion. The reactivity release due to decay of Xe-235 on the second day after the explosion led to a reactor power of 80-110 MW. Owing to this power, the chemical reactions of reduction of uranium, plutonium, and other metals at a temperature of about 2000°C occurred in the core. The yield of fission products thus sharply increased. Uranium and other metals flew down in the bottom water communications and rooms. After reduction of the uranium and its separation from the graphite, the chain reaction stopped, the temperature of the core decreased, and the activity yield stopped.
机译:结果表明,化学反应在切尔诺贝利事故的所有阶段均起着至关重要的作用。重要的是,爆炸前的反应堆处于最大程度的氙中毒状态,并且其反应活性显然不会因爆炸而被破坏。爆炸后第二天,由于Xe-235的腐烂而释放出反应性,导致反应堆功率达到80-110 MW。由于这种能力,堆芯中发生了在约2000°C的温度下还原铀,p和其他金属的化学反应。裂变产物的产率因此急剧增加。铀和其他金属在井底通讯设施和房间中飞散下来。铀还原并从石墨中分离出来后,链反应停止,核的温度降低,活性产率停止。

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