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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Economical and green biodiesel production process using river snail shells-derived heterogeneous catalyst and co-solvent method
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Economical and green biodiesel production process using river snail shells-derived heterogeneous catalyst and co-solvent method

机译:经济和绿色生物柴油生产过程采用河蜗牛壳衍生的异质催化剂和共同溶剂方法

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摘要

River snail shells-derived CaO was used as a heterogeneous catalyst to synthesize biodiesel via transesterification of palm oil with methanol. The shell materials were calcined in air at 600-1000 degrees C for 3 h. Physicochemical properties of the resulting catalysts were characterized by TGA-DTG, XRD, SEM, BET, XRF, FT-IR and TPD. CaO catalyzed transesterification mechanism of palm oil into biodiesel was verified. The effects of adding a co-solvent on kinetic of the reaction and %FAME yield were investigated. %FAME yield of 98.5% +/- 1.5 was achieved under the optimal conditions of catalyst/oil ratio of 5 wt.%; methanol/oil molar ratio of 12: 1; reaction temperature of 65 degrees C; 10% v/v of THF in methanol and reaction time of 90 min. The results ascertained that river snail shells is a novel raw material for preparation of CaO catalyst and the co-solvent method successfully decreases the reaction time and biodiesel production cost. (C) 2016 Elsevier Ltd. All rights reserved.
机译:河蜗牛壳衍生的CaO被用作异质催化剂,通过棕榈油与甲醇的酯交换来合成生物柴油。 壳材料在空气中以600-1000℃煅烧3小时。 通过TGA-DTG,XRD,SEM,BET,XRF,FT-IR和TPD表征所得催化剂的物理化学性质。 验证了棕榈油进入生物柴油的Cao催化剂晶体化机制。 研究了加入共溶剂对反应动力学和%名称产量的影响。 在5重量%的催化剂/油比的最佳条件下实现98.5%+/- 1.5的%名称产率。 甲醇/油摩尔比为12:1; 反应温度为65℃; 甲醇的10%v / v THF和90分钟的反应时间。 结果确定河蜗牛壳是一种新型原料,用于制备CaO催化剂,共溶剂方法成功降低了反应时间和生物柴油生产成本。 (c)2016 Elsevier Ltd.保留所有权利。

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