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Single phase blend: An advanced microwave process for improved quality low-cost biodiesel production from kitchen food waste

机译:单相混合:先进的微波方法,可提高厨房食物垃圾生产的优质低成本生物柴油生产

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摘要

Accumulation and disposal of kitchen food waste is a substantial environmental issue due to the absence of appropriate reuse techniques. The present study developed a low-cost biodiesel production method and used Taguchi optimization technique to improve FAME yield. A single phase blend (oil, co-solvent and solvent mixture) was prepared and subjected to microwave irradiation to accelerate the initial slow reaction rate. Transesterification was carried out in a closed vessel under various temperature-pressure conditions. The reaction parameters were optimized through Taguchi model. Maximum FAME yield of 96.89 wt% was achieved at microwave cell pressure: 2.2 MPa, temperature: 170 degrees C, reaction time: 4 min and catalyst concentration: 0.5 wt% with single phase blend ratio 1:6:30 (oil: co-solvent: methanol). Methyl tert-butyl ether (MTBE) was used as co-solvent that contributed to maximum FAME conversion and produced glycerol tert-butyl ether (GTBE), a useful fuel additive as a byproduct. Improved cetane number observed for the kitchen food waste derived biodiesel signifies the fuel of superior fatty acid structure. Maximum 85 wt% GTBE conversion was attained at 200 degrees C temperature and cell pressure 3.9 MPa at 10 min reaction time. Microwave irradiation method consumed 2.7% lesser energy than conventional heating method. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于没有适当的再利用技术,厨房食物废物的积累和处置是一个很大的环境问题。本研究开发了一种低成本的生物柴油生产方法,并采用了Taguchi优化技术来提高了名称产量。制备单相混合物(油,共溶剂和溶剂混合物)并进行微波辐射,以加速初始缓慢的反应速率。在各种温度压力条件下在封闭容器中进行酯交换。通过Taguchi模型优化反应参数。在微波电池压力下实现96.89wt%的最大名称产率:2.2MPa,温度:170℃,反应时间:4分钟和催化剂浓度:0.5wt%,单相混合比1:6:30(油:共同溶剂:甲醇)。使用甲基叔丁基醚(MTBE)作为共溶剂,其有助于最大名称转化并制备甘油叔丁基醚(GTBE),作为副产物的有用燃料添加剂。为厨房食品废物衍生生物柴油观察到改善的十六烷值表示脂肪酸结构的燃料。在10分钟的反应时间下,在200摄氏度和细胞压力3.9MPa下,最大85wt%GTBE转化率。微波辐射方法比传统的加热方法消耗2.7%的能量。 (c)2018 Elsevier B.v.保留所有权利。

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