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Effective heterogeneous transition metal glycerolates catalysts for one-step biodiesel production from low grade non-refined Jatropha oil and crude aqueous bioethanol

机译:有效的非均相过渡金属甘油酸酯催化剂,用于从低品位非精制麻疯树油和粗制生物乙醇水溶液一步生产生物柴油

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摘要

The utilization of bioethanol as the alcohol source for biodiesel production is more environmentally advantageous over methanol owing to its lower toxicity, lower flammability and its sustainable supply from renewable agricultural resources. However, as the presence of water in crude bioethanol is the critical factor limiting the biodiesel production process, the energy-intensive and costly purification of bioethanol is necessary for biodiesel application. Manganese glycerolate (MnGly) is reported the first time here as a robust heterogeneous catalyst that exhibited over 90% conversion by using aqueous ethanol containing 80 wt.% of water in the production of fatty acid ethyl ester (FAEE). The employment of 95 wt.% ethanol with respect to water could achieve 99.7% feedstock conversion in 6 hours under the optimal reaction conditions: reaction temperature (150 °C), feedstock-to-ethanol molar ratio (1:20) and catalyst loading (6 wt.%). Commercially available low grade crude bioethanol with the presence of impurities like sugars were applied which demonstrated remarkable catalytic activity in 24 hours. The high water tolerance of MnGly towards biodiesel production could eventually simplify the purification of bioethanol that consumes less energy and production cost.
机译:由于其较低的毒性,较低的可燃性以及可再生农业资源的可持续供应,因此将生物乙醇用作生产生物柴油的醇源比甲醇更具环境优势。然而,由于在粗制生物乙醇中水的存在是限制生物柴油生产过程的关键因素,因此对于生物柴油应用来说,能源密集型且成本高昂的生物乙醇纯化是必需的。甘油甘油锰(MnGly)首次报道是一种坚固的非均相催化剂,在脂肪酸乙酯(FAEE)的生产中,通过使用含水量为80%(重量)的乙醇水溶液,其转化率超过90%。在最佳反应条件:反应温度(150°C),原料与乙醇的摩尔比(1:20)和催化剂载量的最佳反应条件下,相对于水使用95 wt%的乙醇可在6小时内实现99.7%的原料转化率(6重量%)。使用市售的低级粗制生物乙醇,其中存在糖等杂质,在24小时内显示出显着的催化活性。 MnGly对生物柴油生产的高耐水性最终可以简化消耗较少能源和生产成本的生物乙醇的纯化。

著录项

  • 作者

    Lau, PC; Kwong, TL; Yung, KF;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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