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Optimization of in situ hydrogenolysis of glycerol to propylene glycol and ethanol

机译:甘油原位氢解制丙二醇和乙醇的工艺优化

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摘要

Alternative ways of converting crude glycerol from biodiesel production to value-added products are in high demand to solve the issue of increasing glycerol surplus. Propylene glycol (PG) and ethanol are examples of valuable chemicals that had been successfully produced from glycerol through in situ hydrogenolysis in our previous studies. This study aimed to determine the optimum conditions for maximizing the yields of PG and ethanol through in situ hydrogenolysis of glycerol. Depending on the targeted products, the optimum process conditions, obtained through statistical analysis and experimentally confirmed with a high PG yield of 47.2%mol, were 220℃, 51 min and 1.0:1.0 water to glycerol mass ratios (WGMR). However, the complex reactions involved in the production of ethanol lead to inconclusive results for the optimization. The key to maximizing the PG yield from in situ hydrogenolysis of glycerol is to operate the system at mild reaction temperatures (e.g., 220℃) at which the further conversion of PG to ethanol is slowed. Meanwhile, a 1:1 mixture of water and glycerol minimizes the side reactions and improves the PG formation. The ethanol production alone from glycerol does not seem economically justified for large scale production due to its low yield. However, co-production of PG and ethanol might be a viable solution.
机译:迫切需要将粗甘油从生物柴油生产转化为增值产品的替代方法,以解决增加甘油过剩的问题。丙二醇(PG)和乙醇是在我们以前的研究中通过原位氢解由甘油成功生产的有价值的化学物质的例子。这项研究旨在确定通过甘油原位氢解使PG和乙醇产量最大化的最佳条件。根据目标产品,通过统计分析获得的最佳工艺条件为220℃,51分钟和1.0:1.0的水甘油质量比(WGMR),通过实验确定,PG的高收率为47.2%mol。但是,乙醇生产中涉及的复杂反应导致无法确定最优化结果。使甘油原位氢解产生的PG产率最大化的关键是在较慢的反应温度(例如220℃)下操作该系统,在该温度下PG的进一步转化为乙醇的速度变慢。同时,水与甘油的1:1混合物可最大程度减少副反应并改善PG的形成。由于甘油的低收率,仅由甘油生产乙醇似乎在经济上不适合大规模生产。但是,联产PG和乙醇可能是可行的解决方案。

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  • 来源
    《Biofuels》 |2014年第5期|569-577|共9页
  • 作者

    Randy L. Maglinao; B. Brian He;

  • 作者单位

    Bio-Energy Center, Montana State University-Northern, PO Box 7751 Havre, MT 59501, USA;

    Biological and Agricultural Engineering, University of Idaho, PO Box 442060, Moscow, Idaho 83844-2060, USA;

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  • 正文语种 eng
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