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Direct Synthesis of Hydrogen Peroxide from Oxygen and Hydrogen Using Carbon Dioxide as an Environmentally Benign Solvent and Its Application in Green Oxidation

机译:以二氧化碳为环境良性溶剂由氢氧直接合成过氧化氢及其在绿色氧化中的应用

摘要

Based on the concept of green chemistry, a new green chemistry metric was developed with the consideration of both quantity and quality (hazard) of chemicals involved in the synthesis of a chemical product. This new metric was used to evaluate the greenness of various synthetic methods in this study. Hydrogen peroxide (H2O2), a widely used green oxidant, is currently produced by an anthraquinone auto-oxidation (AO) process. This AO process is not environmentally benign because it generates wastes, uses large volumes of organic solvents, and has low efficiency and high energy consumption. Direct synthesis of H2O2 from O2 and H2 is a green technology to replace the AO process since it is the most atomic-efficient method by which H2O2 can be synthesized. Compressed CO2 has the potential to replace the conventional solvents used in this direct synthesis process. In this study, a method was developed to measure the amount of directly synthesized H2O2 in compressed CO2 over precious metal loaded titanium silicalite (TS-1) molecular sieve by using a selected indicator to react immediately with the in situ generated H2O2. The experimental results proved, for the first time, that H2O2 could be effectively generated from O2 and H2 using CO2 as the solvent. This in situ generated H2O2 in CO2 was then used in the epoxidation of propylene to propylene oxide (PO). A PO yield over 20% with vital selectivity was achieved, for the first time, using compressed CO2 as the solvent and small amounts of polar co-solvents. The addition of a selected weak base inhibitor effectively suppressed a number of common side-reactions, including the hydrogenation of propylene, the hydrolysis of PO and the reaction between PO and methanol.The oxidation of cyclohexene by in situ generated H2O2 in compressed CO2¡ªan alternative and green approach to the synthesis of adipic acid was also explored using precious metal loaded TS-1 and W-MCM-41 (a silicate mesoporous molecular sieve). Experimental results showed that the oxidation of cyclohexene by in situ generated H2O2 in CO2 was limited by the small pore size of TS-1, while W-MCM-41 was an effective catalyst in carrying out this reaction.
机译:基于绿色化学的概念,考虑到化学产品合成中涉及的化学物质的数量和质量(危害),开发了一种新的绿色化学指标。此新指标用于评估本研究中各种合成方法的绿色程度。过氧化氢(H2O2)是一种广泛使用的绿色氧化剂,目前是通过蒽醌自氧化(AO)工艺生产的。这种AO工艺对环境没有好处,因为它会产生废物,使用大量有机溶剂,并且效率低,能耗高。由O2和H2直接合成H2O2是一种替代AO工艺的绿色技术,因为它是合成H2O2的最原子高效的方法。压缩的CO2有潜力替代直接合成过程中使用的常规溶剂。在这项研究中,开发了一种方法,该方法通过使用选定的指示剂立即与原位生成的H2O2反应,来测量载有贵金属的钛硅沸石(TS-1)分子筛上压缩的CO2中直接合成的H2O2的量。实验结果首次证明,以CO2为溶剂,可以由O2和H2有效生成H2O2。然后将这种在CO2中原位生成的H2O2用于将丙烯环氧化为环氧丙烷(PO)。使用压缩的CO2作为溶剂和少量的极性助溶剂,首次实现了具有至关重要的选择性的PO收率超过20%。加入精选的弱碱抑制剂可有效抑制许多常见的副反应,包括丙烯的加氢,PO的水解以及PO与甲醇的反应。在压缩的CO2中原位生成H2O2氧化环己烯还使用载有贵金属的TS-1和W-MCM-41(硅酸盐介孔分子筛)探索了另一种绿色合成己二酸的方法。实验结果表明,原位生成的H2O2在CO2中氧化环己烯的过程受到TS-1小孔径的限制,而W-MCM-41是有效的催化剂。

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    Chen Qunlai;

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  • 年度 2008
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