首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Direct synthesis of H2O2 in methanol at low pressures over Pd/C catalyst: Semi-continuous process
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Direct synthesis of H2O2 in methanol at low pressures over Pd/C catalyst: Semi-continuous process

机译:在Pd / C催化剂上低压低压下直接在甲醇中合成H2O2:半连续过程

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摘要

The production of H2O2 via direct synthesis has been studied in depth over the last decades, due to the possibilities given by the discovery of active catalysts based on nanotechnology and selective active metals. However, the process is also complicated because of the coexistence of three phases, where mass transfer between gas and liquid (solvent) limits the concentration of O2 and H2 in contact with the solid catalyst sites, and subsequently the final H2O2 productivity. High pressures are normally used to enhance mass transfer by increasing the solubility. In this work, we explore the influence of low pressures, in order to optimise the reaction reducing mechanical requirements. Pressures from 0.1 to 0.9 MPa in a semi-continuous reactor have been tested, obtaining H2O2 concentrations up to 1.33 wt.% and a selectivity from 44.9% to 69.0%. A nano-Pd/C commercial catalyst and methanol as solvent have been used.
机译:由于基于纳米技术的活性催化剂和选择性活性金属的发现所带来的可能性,在过去几十年中已经对通过直接合成生产H2O2进行了深入研究。然而,由于三相的共存,该方法也很复杂,其中气相和液相(溶剂)之间的传质限制了与固体催化剂位点接触的O2和H2的浓度,以及最终的H2O2生产率​​。通常使用高压通过增加溶解度来增强传质。在这项工作中,我们探索了低压的影响,以优化降低反应的机械要求。已经测试了半连续反应器中从0.1到0.9 MPa的压力,获得了高达1.33 wt。%的H2O2浓度和44.9%到69.0%的选择性。已经使用了纳米Pd / C市售催化剂和甲醇作为溶剂。

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