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Simultaneous production of lactic acid and propylene glycol from glycerol using solid catalysts without external hydrogen

机译:使用不带外部氢的固体催化剂从甘油同时生产乳酸和丙二醇

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摘要

Development of value-added chemicals from glycerol, the co-product with.biodiesel, is imperative in sustaining the biodiesel industry. Combined usage of a solid base and a copper-based catalyst provided a catalytic pathway to convert glycerol to racemic lactic acid. A new pathway was found that during the glycerol-to-lactic acid conversion, hydrogen was formed, which could be used in situ to generate propylene glycol catalyzed by the copper-based catalyst. This new pathway was attested by results of systematically experimental study investigating the synergistic functions of a base catalyst (CaO, MgO, or SrO) and a copper-based dehydrogenation catalyst (Cu, CuO, Cu2O, or Cu2Cr2O5). Different combinations of catalysts and reaction conditions provided a tunable range for the yield of lactic acid and propylene glycol. Emphasis was put on the combined use of CuO and CaO due to their inexpensive availability and ease of recyclability; at optimal reaction conditions, the yield of lactic acid reached 52 mol% together with 31 mol% yield of propylene glycol. (C) 2015 Elsevier B.V. All rights reserved.
机译:从甘油与生物柴油的副产品中开发增值化学品对维持生物柴油行业至关重要。固体碱和铜基催化剂的组合使用提供了将甘油转化为外消旋乳酸的催化途径。发现了一条新的途径,即在甘油到乳酸的转化过程中,形成了氢气,该氢气可以原位用于生成铜基催化剂催化的丙二醇。该新途径已通过系统性实验研究的结果得到证实,该实验研究了碱性催化剂(CaO,MgO或SrO)和铜基脱氢催化剂(Cu,CuO,Cu2O或Cu2Cr2O5)的协同功能。催化剂和反应条件的不同组合为乳酸和丙二醇的产率提供了可调范围。由于CuO和CaO的价格便宜且易于回收,因此着重于CuO和CaO的组合使用。在最佳反应条件下,乳酸的产率达到52mol%,而丙二醇的产率为31mol%。 (C)2015 Elsevier B.V.保留所有权利。

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