Intensified biodiesel production from waste cooking oil and flow pattern evolution in small-scale reactors

IF 2.5 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
D. Tsaoulidis, Eduardo Garciadiego-Ortega, P. Angeli
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引用次数: 0

Abstract

In this paper, the transesterification reaction of waste cooking oil (WCO) with methanol using KOH as catalyst to produce biodiesel was performed in a micro-reactor (1 mm ID) using a cross-flow inlet configuration. The effects of different variables such as, methanol-to-oil molar ratio, temperature, catalyst concentration, and residence time on biodiesel yield, as well as the associated flow patterns during the transesterification reaction were investigated and the relationship between flow characteristics and mass transfer performance of the system was examined. The work reveals important aspects and the links between the hydrodynamic behaviour and the mass transfer performance of the intensified reactors. It was found that high yield (>90%) of biodiesel can be achieved in one-stage reaction using cross-flow micro-reactors for a wide range of conditions, i.e., methanol-to-oil molar ratio: 8–14, catalyst concentration: 1.4%–1.8% w/w, temperature: 55°C–60°C, and residence times: 55–75 s.
利用废弃食用油强化生产生物柴油及其在小型反应器中的流型演变
本研究以KOH为催化剂,在1 mm径的微反应器中,采用交叉流入口配置,对废食用油(WCO)与甲醇的酯交换反应制备生物柴油进行了研究。考察了醇油摩尔比、温度、催化剂浓度、停留时间等因素对生物柴油产率的影响,以及酯交换反应过程中相关的流动模式,考察了流动特性与体系传质性能的关系。这项工作揭示了强化反应器的流体力学行为和传质性能之间的重要方面和联系。结果表明,在醇油摩尔比为8 ~ 14、催化剂浓度为1.4% ~ 1.8% w/w、温度为55℃~ 60℃、停留时间为55 ~ 75 s的条件下,跨流微反应器一期反应可获得生物柴油的高产率(bbb90 %)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.50
自引率
0.00%
发文量
0
审稿时长
13 weeks
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