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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Glycerol for renewable acrolein production by catalytic dehydration
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Glycerol for renewable acrolein production by catalytic dehydration

机译:用于催化脱水生产可再生丙烯醛的甘油

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摘要

The significant surge in biodiesel production by transesterification of edible or non-edible oils have caused surplus of glycerol in the market. With its characteristics, unique structure, renewability, and bio-availability, glycerol has tremendous potential to be transformed to higher value-added chemicals. This article provides a comprehensive and critical review of glycerol dehydration to acrolein in both petroleum-and bio-based processes. Acrolein has enormous industrial applications as a significant chemical intermediate for acrylic acid, DL-Methionine and superabsorbent polymer production. The current development of several precursors on suitable support such as heteropoly acids, zeolites, mixed metal oxides, and pyrophosphates in creating superior catalytic properties for both liquid- and gas-phase processes has been discussed. The acidity and textural properties of various catalysts, as significant variables affecting acrolein yield and selectivity, are evaluated separately. Techno-economical evaluation on dehydration of petroleum- and bio-based glycerol to acrolein proved that the bio-based processes are more feasible compared to the conventional petroleum-based process. In addition, various proposed mechanisms for catalytic dehydration of glycerol to acrolein have been examined. Particularly, catalyst coking and few crude glycerol applications have been identified as the main drawbacks for immediate industrialization arid commercialization of glycerol dehydration to acrolein.
机译:通过食用油或非食用油的酯交换反应,生物柴油产量的大幅增长已引起市场上甘油的过剩。由于甘油的特性,独特的结构,可更新性和生物利用度,甘油具有转化为高附加值化学品的巨大潜力。本文提供了石油和生物工艺中甘油脱水为丙烯醛的全面而严格的综述。丙烯醛作为丙烯酸,DL-蛋氨酸和超吸收性聚合物生产的重要化学中间体,在工业上具有广泛的应用。讨论了在合适的载体(例如杂多酸,沸石,混合的金属氧化物和焦磷酸盐)上的几种前体的当前开发,以为液相和气相方法提供优异的催化性能。作为影响丙烯醛收率和选择性的重要变量,分别评估了各种催化剂的酸度和质构性质。石油和生物基甘油脱水为丙烯醛的技术经济评估证明,与传统的石油基工艺相比,生物基工艺更为可行。另外,已经研究了各种建议的甘油催化脱水为丙烯醛的机理。特别地,已经发现催化剂焦化和少量粗甘油的应用是立即工业化和甘油脱水为丙烯醛的商业化的主要缺点。

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