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首页> 外文期刊>Journal of the American Oil Chemists' Society >Optimization of biodiesel production using a magnetically stabilized fluidized bed reactor.
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Optimization of biodiesel production using a magnetically stabilized fluidized bed reactor.

机译:使用磁稳定流化床反应器优化生物柴油生产。

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摘要

A biodiesel production process using magnetically stabilized fluidized bed reactor (MSFBR) has been developed based on the refined cottonseed oil. The reactant flow rate and magnetic field intensity effects on the nanometer magnetic catalyst behavior in the column were investigated. Orthogonal experiments (L4(2)3) were applied to optimize the best transesterification reaction conditions. Reaction temperature, methanol to oil molar ratio, and reactant flow rate were the main factors to influence transesterification conversion efficiency. These three factors chosen for the present investigation were based on the results of single-factor tests. The optimum transesterification reaction conditions of cottonseed oil were determined in MSFBR as follows: methanol to oil molar ratio 8:1, 40 cm3 min-1 reactant flow rate, 225 Oe magnetic field intensity and reaction temperature of 65 degrees C, the conversion efficiency reached 97% in 100 min. The cold filter plugging point and kinematic viscosity of cottonseed oil biodiesel were higher than that described by Chinese specifications of biodiesel because of the special fatty acid profiles of cottonseed oil. The activity stability of the nanometer magnetic solid catalyst in MSFBR was much better than that in the autoclave stirred reactor (ASR).
机译:基于精制棉籽油,已经开发了使用磁稳定流化床反应器(MSFBR)的生物柴油生产工艺。研究了反应物流速和磁场强度对色谱柱中纳米磁性催化剂行为的影响。采用正交实验(L 4 (2) 3 )优化最佳酯交换反应条件。反应温度,甲醇与油的摩尔比和反应物流速是影响酯交换反应转化效率的主要因素。本研究选择的这三个因素是基于单因素测试的结果。在MSFBR中确定棉籽油的最佳酯交换反应条件为:甲醇与油的摩尔比为8:1,反应物流速为40 cm 3 min -1 ,225 Oe磁场强度和反应温度为65摄氏度,转化效率在100分钟内达到97%。由于棉籽油的特殊脂肪酸特性,棉籽油生物柴油的冷滤器堵塞点和运动粘度高于中国生物柴油规格中所述的值。纳米磁性固体催化剂在MSFBR中的活性稳定性比在高压釜搅拌反应器(ASR)中更好。

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