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Development of hydrophobic platinum catalyst for oxidation of tritium in JAEA

机译:JAEA中氚氧化酸化铂催化剂的研制

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Highlights ? The reaction rate for tritium oxidation was investigated with hydrophobic catalysts. ? The particle size of platinum strongly affected the reaction rate. ? The order of reaction is 0.5 of hydrogen concentration at room temperature in case of a hydrogen content below 100 ppm. Abstract To design a recombiner packed with hydrophobic catalyst for passive tritium oxidation, the development of manufacturing technology for hydrophobic platinum catalyst and the following analysis on reaction rate are essential. This presentation deals with the reaction rate for tritium oxidation over a hydrophobic platinum catalyst at temperature between room temperature and 473 K. Two kinds of hydrophobic platinum catalysts; supported with styrene-divinylbenzene and with silica were used for this test. The results indicate that 1) the particle size of platinum affects the reaction rate, 2) the order of reaction is 0.5 of hydrogen concentration at room temperature in case of a hydrogen content below 100 ppm. The rate-determining step approximation method is applied for the discussion on the reaction mechanism of tritium oxidation over platinum catalyst.
机译:强调 ?研究了疏水催化剂的氧化氚的反应速率。 ?铂的粒度强烈影响反应速率。 ?在氢含量低于100ppm的情况下,反应顺序是室温下的氢浓度为0.5。摘要设计具有用于被动氚氧化的疏水性催化剂的重组器,疏水性铂催化剂的制造技术的发展和以下对反应速率的分析至关重要。该介绍在室温和473k的温度下,涉及疏水铂催化剂的氚氧化反应速率。两种疏水性铂催化剂;用苯乙烯 - 二乙烯基苯和二氧化硅支持该试验。结果表明,1)铂的粒度会影响反应速率,2)在室温下反应量为0.5,在室温下氢含量低于100ppm。速率确定步骤近似方法应用于铂催化剂氚氧化反应机理的探讨。

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