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利用同步冷却和微波加热的快速堿催化微藻油脂转酯化制备生物柴油及其优化。

Rapid alkali catalyzed transesterification of microalgae lipids to biodiesel using simultaneous cooling and microwave heating and its optimization.

机构信息

Department of Bioprocess Engineering, Faculty of Chemical Engineering, c/o Institute of Bioproduct Development (IBD), Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia.

Department of Bioprocess Engineering, Faculty of Chemical Engineering, c/o Institute of Bioproduct Development (IBD), Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia.

出版信息

Bioresour Technol. 2014 Dec;174:311-5. doi: 10.1016/j.biortech.2014.10.015. Epub 2014 Oct 18.

Abstract

Biodiesel with improved yield was produced from microalgae biomass under simultaneous cooling and microwave heating (SCMH). Nannochloropsis sp. and Tetraselmis sp. which were known to contain higher lipid species were used. The yield obtained using this novel technique was compared with the conventional heating (CH) and microwave heating (MWH) as the control method. The results revealed that the yields obtained using the novel SCMH were higher; Nannochloropsis sp. (83.33%) and Tetraselmis sp. (77.14%) than the control methods. Maximum yields were obtained using SCMH when the microwave was set at 50°C, 800W, 16h of reaction with simultaneous cooling at 15°C; and water content and lipid to methanol ratio in reaction mixture was kept to 0 and 1:12 respectively. GC analysis depicted that the biodiesel produced from this technique has lower carbon components (<19 C) and has both reasonable CN and IV reflecting good ignition and lubricating properties.

摘要

在同时冷却和微波加热 (SCMH) 下,从微藻生物质中生产出产率提高的生物柴油。使用了已知含有更高脂质种类的盐生杜氏藻和球等鞭金藻。将使用这种新技术获得的产率与传统加热 (CH) 和微波加热 (MWH) 作为对照方法进行比较。结果表明,使用新型 SCMH 获得的产率更高;盐生杜氏藻(83.33%)和球等鞭金藻(77.14%)均高于对照方法。当微波设置为 50°C、800W、16 小时反应并同时在 15°C 下冷却时,使用 SCMH 可获得最大产率;反应混合物中的水含量和脂质与甲醇的比例分别保持在 0 和 1:12。GC 分析表明,该技术生产的生物柴油具有较低的碳成分(<19 C),且具有合理的 CN 和 IV,反映出良好的点火和润滑性能。

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