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MODELING OF LOW-TEMPERATURE REDUCTION OF METAL OXIDE IN HYDROGEN TREATMENT SYSTEM FOR SEVERE ACCIDENTS IN NUCLEAR POWER PLANTS

机译:核电站严重事故氢处理系统中金属氧化物低温降低的建模

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At the Fakushima Daiichi nuclear power plant, zirconium in the fuel rod cladding reacted with water vapor at elevated temperatures due to a loss of cooling water, resulting in the production of a large amount of hydrogen. This hydrogen leaked from the reactor vessel and accumulated in the top of reactor building, eventually leading to an explosion. A hydrogen treatment system that re-oxidizes hydrogen to water vapor is one of the effective methods to prevent such an explosion. A prominent re-oxidation method is via a fixed bed reactor packed with metal oxide pellets. The advantages of this method are its relatively fast oxidation rate without external oxygen/air injection. In this study, experiments and complementary numerical calculations were performed on the hydrogen re-oxidation reaction by metal oxides. The oxidation of hydrogen by copper oxide is modeled by 5 interacting, elementary reactions consisting of 6 chemical species. Experiments were performed using two packed bed set-ups, with measurement of inlet/outlet gas composition and pre/post-analysis of solid composition used to determine constants of the individual reaction rates for numerical calculations. From these reaction constants, the temporal behavior of the outlet gas was predicted.
机译:在Fakushima Daiichi核电站,燃料棒包层中的锆在升高的温度下与水蒸气反应,由于冷却水损失,导致生产大量氢气。该氢从反应器容器中泄漏并积聚在反应堆建筑物的顶部,最终导致爆炸。将氢气重新氧化到水蒸气的氢处理系统是防止这种爆炸的有效方法之一。突出的重新氧化方法是通过填充金属氧化物粒料的固定床反应器。该方法的优点是其具有相对较快的氧化速率,无需外部氧气/空气喷射。在该研究中,对通过金属氧化物进行氢再氧化反应进行实验和互补数值计算。通过氧化铜氧化氢的氧化由5个相互作用,基本反应组成,由6种化学物质组成。使用两个填充床设置进行实验,具有入口/出口气体组成的测量和用于确定单个反应速率的常数的固体组合物的预/后分析,用于数值计算。从这些反应常数,预测出口气体的时间行为。

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