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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Experimental exergy analysis of transesterification in biodiesel production
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Experimental exergy analysis of transesterification in biodiesel production

机译:生物柴油生产中酯交换的实验漏洞分析

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摘要

Exergy flow analysis is applied to account wastes, determine the exergetic efficiency, compare substitutes and other types of energy sources and also define economic and environmental policies for resource use. The present study focuses on the exergy flow analysis of biodiesel production by esterification and transesterification of waste cooking canola oil to achieve benefits such as reducing material and energy consumptions and improving energy and exergy efficiencies. The input amounts of esterification for all the runs were kept constant, while the runs of transesterification were carried out in a variety of mass and energy input values as the experimental variables. The thermodynamics analysis was applied to determine exergy input and output of the system for the experimental runs. Impacts of experiment variables, including methanol:oil molar ratio, potassium hydroxide concentration and the reaction temperature of transesterification were evaluated on exergy efficiency and exergy loss in the transesterification. The maximum exergy efficiency (91.7%) and the minimum exergy loss (4320 kJ/kg biodiesel) were achieved at methanol:oil molar ratio of 8:1, potassium hydroxide concentration of 1 wt% and the reaction temperature of 55 degrees C. Excessive use of methanol and catalyst reduced the yield and the exergy efficiency through increasing exergy loss by waste materials. (C) 2020 Elsevier Ltd. All rights reserved.
机译:Adergy流量分析适用于考虑废物,确定锻炼效率,比较替代品和其他类型的能源,并确定资源使用的经济和环境政策。本研究侧重于酯化和酯化油菜油的酯化和酯交换的酯化和酯化酯化,实现了降低材料和能量消耗,提高能源和漏出的效率的效果。所有运行的酯化的输入量保持恒定,而酯交换的运行是在各种质量和能量输入值中进行的,作为实验变量。应用热力学分析来确定用于实验运行的系统的漏洞输入和输出。实验变量的影响,包括甲醇:油摩尔比,氢氧化钾浓度和酯交换的反应温度评估在酯交换中的声透和透射损失。在甲醇中实现最大的高效效率(91.7%)和最小漏洞(4320kJ / kg生物柴油):油摩尔比为8:1,氢氧化钾浓度为1wt%,反应温度为55℃。过度使用甲醇和催化剂通过增加废料损失来降低产量和漏洞效率。 (c)2020 elestvier有限公司保留所有权利。

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