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RECENT ADVANCES IN CATALYTIC OXIDATION IN SUPERCRITICAL WATER

机译:超临界水中催化氧化的最新进展

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This article summarizes recent research in homogeneous and heterogeneous catalytic oxidation in supercritical water. We consider both selective partial oxidation for chemical synthesis and complete oxidation for waste destruction. Recent advances in selective catalytic oxidation in supercritical water center around the conversion of p-xylene to terephthalic acid catalyzed homogeneously by MnBr_2. Terephthalic acid yields of > 90 mol% can be achieved from reactions at 400℃. Using water as the reaction medium provides genuine opportunities for both a more economical and more environmentally benign terephthalic acid production process. Recent advances in complete oxidation via catalysis in supercritical water include the demonstration of heteropolyacids as effective homogeneous oxidation catalysts, and alkali carbonates and carbons as effective heterogeneous catalysts. Additionally, progress has been made in screening transition metal oxide catalysts and determining the reaction-induced chemical and physical changes that take place in the hydrothermal environment. Bulk MnO_2 is a good catalyst for complete oxidation because it combines high activity, hydrothermal stability, activity maintenance, and resistance to metal leaching under reaction conditions.
机译:本文总结了超临界水中均相和非均相催化氧化的最新研究。我们既考虑用于化学合成的选择性部分氧化,也考虑用于废物破坏的完全氧化。在超临界水中选择性催化氧化的最新进展集中在MnBr_2均匀催化的对二甲苯向对苯二甲酸的转化上。在400℃下反应可得到对苯二甲酸的产率> 90mol%。使用水作为反应介质为更经济,更环境友好的对苯二甲酸生产工艺提供了真正的机会。通过在超临界水中催化完全氧化的最新进展包括证明杂多酸作为有效的均相氧化催化剂,碱金属碳酸盐和碳作为有效的多相催化剂。另外,在筛选过渡金属氧化物催化剂和确定在水热环境中发生的反应引起的化学和物理变化方面已经取得了进展。块状MnO_2是完全氧化的良好催化剂,因为它兼具高活性,水热稳定性,活性维持性和在反应条件下对金属浸出的抵抗力。

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