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Comparison of direct transesterification of algal biomass under supercritical methanol and microwave irradiation conditions

机译:超临界甲醇和微波辐射条件下藻类生物质直接酯交换反应的比较

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摘要

In this comparative study, direct conversion of algal biomass into biodiesel using supercritical methanol (SCM) and microwave-assisted (MW) transesterifkation methods was investigated. Wet algal biomass was used as feedstock in the supercritical methanol process and dry algal biomass for the microwave-assisted transesterification. Experimental runs were designed using a response surface methodology and the process parameters such as wet/dry algae to methanol ratio, reaction temperature, reaction time and catalyst concentrations were optimized for both processes. The microwave-assisted approach improves extractions of algae significantly, with a higher efficiency, reduced extractive-transesterifica-tion time and increased yield. While the non-catalytic supercritical methanol method produces highly purified extracts (free of harmful solvents and catalyst residues), and reduces energy consumption in separation and purification steps. The algal biodiesel samples from SCM and MW processes were compared using FT-IR and TGA analysis methods to identify the functional group attributions and thermal stability of the biofuel samples, respectively. The transmission electron microscopy (TEM) analysis of algal biomass and lipid extracted algae (LEA) and energy requirements for the two processes are also presented.
机译:在这项比较研究中,研究了使用超临界甲醇(SCM)和微波辅助(MW)酯交换法将藻类生物质直接转化为生物柴油。湿藻生物质在超临界甲醇工艺中用作原料,干藻生物质用于微波辅助酯交换反应。使用响应表面方法设计了实验运行,并且针对这两个过程优化了工艺参数,例如湿/干藻与甲醇的比例,反应温度,反应时间和催化剂浓度。微波辅助方法可显着改善藻类的提取效率,并提高提取效率,减少酯交换时间并提高产量。非催化超临界甲醇法可产生高度纯化的提取物(不含有害溶剂和催化剂残留物),并减少了分离和纯化步骤中的能耗。使用FT-IR和TGA分析方法对来自SCM和MW工艺的藻类生物柴油样品进行了比较,分别确定了生物燃料样品的官能团归属和热稳定性。还介绍了藻类生物质和脂质提取藻类(LEA)的透射电子显微镜(TEM)分析以及这两个过程的能量需求。

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