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Process design of continuous biodiesel production by reactive distillation: Comparison between homogeneous and heterogeneous catalysts

机译:反应蒸馏连续生产生物柴油的工艺设计:均相和非均相催化剂的比较

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Biodiesel production by reactive distillation processing is an attractive option to overcome the thermodynamic limitations inherently associated with conventional processes. Process simulations of transesterification of soybean oil and methanol were performed using the commercial package Aspen Plus (R). Four different continuous processes were designed and simulated by using homogeneous alkali-based catalysts and heterogeneous acid-based catalysts in both conventional reactor/distillation and reactive distillation. Effects of important operating and design parameters on performance of each process were analyzed and optimum conditions were determined. The proposed homogeneous alkali-catalyzed RD for biodiesel production did not only eliminate the requirement of separation and purification of the products but also improved the biodiesel yield at reduced methanol in the feed and at lower energy consumption in comparison with the conventional approach of sequential reaction and distillation. It was demonstrated that the heterogeneous magnesium methoxide, instead of homogeneous catalyst, offered significant benefits such as reaching less number of unit operations, reducing energy consumption, and not requiring neutralization, waste water disposal or salt waste processing. The energy requirement of the reactive distillation process catalyzed by magnesium methoxide was about 153 kWh/t biodiesel or 139.2 kWh/t biodiesel with an allocated purity of 98 wt% to glycerol by-product. 2015 Elsevier B.V. All rights reserved.
机译:通过反应蒸馏工艺生产生物柴油是克服常规工艺固有的热力学限制的有吸引力的选择。使用商业包装Aspen Plus(R)对大豆油和甲醇进行酯交换反应的过程模拟。通过在常规反应器/蒸馏和反应性蒸馏中使用均相碱基催化剂和非均相酸基催化剂,设计和模拟了四个不同的连续过程。分析了重要的操作和设计参数对每个过程性能的影响,并确定了最佳条件。与常规的顺序反应和分离方法相比,拟议的用于生物柴油生产的均相碱催化RD不仅消除了分离和纯化产物的要求,而且还提高了原料中甲醇含量的降低和能耗的降低,从而提高了生物柴油的产率。蒸馏。事实证明,多相甲醇镁代替均相催化剂具有显着的优势,例如减少了单元操作的次数,减少了能源消耗,并且不需要中和,废水处理或盐分处理。由甲醇镁催化的反应蒸馏过程的能量需求约为153 kWh / t生物柴油或139.2 kWh / t生物柴油,甘油副产物的纯度为98 wt%。 2015 Elsevier B.V.保留所有权利。

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