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涡旋流介导的湿微藻生物质直接酯交换法制备生物柴油。

Vortex fluidic mediated direct transesterification of wet microalgae biomass to biodiesel.

机构信息

Centre for Marine Bioproducts Development, Flinders University, South Australia 5042, Australia; Medical Biotechnology, College of Medicine and Public Health, Flinders University, South Australia 5042, Australia.

Centre for Marine Bioproducts Development, Flinders University, South Australia 5042, Australia; Medical Biotechnology, College of Medicine and Public Health, Flinders University, South Australia 5042, Australia; Institute for NanoScale Science and Technology, College of Science and Engineering, Flinders University, South Australia 5042, Australia.

出版信息

Bioresour Technol. 2018 Oct;266:488-497. doi: 10.1016/j.biortech.2018.06.103. Epub 2018 Jul 5.

Abstract

A bottleneck in the production of biodiesel from microalgae is the dewatering and lipid extraction process which is the dominant energy penalty and cost. A novel biodiesel production platform based on vortex fluidic device (VFD)-assisted direct transesterification (DT) of wet microalgal biomass of Chloroparva pannonica was developed and evaluated. Fatty acid extraction and fatty acid to FAME conversion efficiencies were used at different parameter settings to evaluate performance of the processing technology in confined and continuous mode. A response surface method based on Box-Behnken experimental design was used to determine the effects of water content, the ratio of biomass to methanol and residence time in the VFD. Average extraction efficiencies were 41% and conversion efficiencies >90% with the processing technology showing a broad tolerance to parameter settings. The findings suggest that VFD-assisted DT is a simple and effective way to produce biodiesel directly from wet microalgae biomass at room temperature.

摘要

从微藻生产生物柴油的一个瓶颈是脱水和脂质提取过程,这是主要的能量损失和成本。本文开发并评估了一种基于旋流流道装置(VFD)辅助的湿微藻Chloroparva pannonica 直接酯交换(DT)的新型生物柴油生产平台。在不同的参数设置下,使用脂肪酸提取和脂肪酸到 FAME 的转化率效率来评估该加工技术在封闭和连续模式下的性能。采用基于 Box-Behnken 实验设计的响应面法来确定水含量、生物质与甲醇的比例和在 VFD 中的停留时间的影响。平均提取效率为 41%,转化率效率>90%,该工艺对参数设置具有广泛的容忍度。研究结果表明,VFD 辅助 DT 是一种在室温下直接从湿微藻生物质生产生物柴油的简单有效的方法。

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