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首页> 外文期刊>Journal of Oleo Science >Enhanced Enzymatic Preparation of Biodiesel Using Ricinoleic Acid as Acyl Donor: Optimization Using Response Surface Methodology
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Enhanced Enzymatic Preparation of Biodiesel Using Ricinoleic Acid as Acyl Donor: Optimization Using Response Surface Methodology

机译:蓖麻油酸作为酰基供体的生物酶增强酶法制备:使用响应面法的优化

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摘要

Castor oil methyl ester is a kind of biodiesel from castor oil. However, in those previous methods for biodiesel preparation using castor oil as feedstock, glycerol was the main by-product, which had a strong blocking effect on the immobilized enzyme activity and affected the mass transfer of reaction system. For avoiding the negative effect of glycerol on the enzymatic esterification, biodiesel was prepared using ricinoleic acid (RA) as acyl donor. Enzyme screening was also studied, and the effects of reaction temperature, molar ratio of ricinoleic acid and methanol, enzyme load, and reaction time, on the preparation of castor methyl ester were also evaluated. Response surface methodology (RSM) was used to optimize the interaction effect of reaction variables (reaction temperature (30-70℃), enzyme load (2-7%; relative to the weight of total substrates), molar ratio of methanol to ricinoleic acid (2:1-10:1), and reaction time (0.5-2.5 h)) on the acid value (AV) and the degree of esterification (DE). Validation of the RSM model was verified by the good agreement between the experimental and the predicted values of AV and DE. The optimum preparation conditions were as follows: reaction temperature, 48.2℃; enzyme load, 5.8%; molar ratio of methanol to ricinoleic acid, 5.56:1; reaction time, 2.36 h. Under these conditions, the AV and DE of the esterification reaction are 10.36±1.05 mgKOH/g and 94.03±0.60%, respectively. The relationship between initial reaction rate and temperature was also established, and the activation energy (Ea) of the enzymatic esterification is 33.87 KJ/mol.
机译:蓖麻油甲酯是一种由蓖麻油制成的生物柴油。然而,在那些以前以蓖麻油为原料制备生物柴油的方法中,甘油是主要的副产物,对固定化酶的活性有很强的阻断作用,并影响反应体系的传质。为避免甘油对酶促酯化反应的不利影响,使用蓖麻油酸(RA)作为酰基供体制备了生物柴油。还研究了酶的筛选,并考察了反应温度,蓖麻油酸与甲醇的摩尔比,酶的负载量和反应时间对蓖麻酸酯制备的影响。用响应面法(RSM)优化反应变量(反应温度(30-70℃),酶负荷(2-7%;相对于总底物的重量)),甲醇与蓖麻油酸的摩尔比的相互作用效果(2:1-10:1)和反应时间(0.5-2.5 h))的酸值(AV)和酯化度(DE)。通过实验值与AV和DE的预测值之间的良好一致性来验证RSM模型的有效性。最佳制备条件为:反应温度48.2℃;反应温度48.2℃。酶负荷5.8%甲醇与蓖麻油酸的摩尔比为5.56∶1。反应时间2.36小时。在这些条件下,酯化反应的AV和DE分别为10.36±1.05mgKOH / g和94.03±0.60%。建立了初始反应速率与温度的关系,酶促酯化反应的活化能(Ea)为33.87 KJ / mol。

著录项

  • 来源
    《Journal of Oleo Science》 |2016年第9期|785-795|共11页
  • 作者

    Ping Wang; Shangde Sun;

  • 作者单位

    Lipid Technology and Engineering, School of Food Science and Engineering, Henan University of Technology, Lianhua Road 100, Zhengzhou 450001, Henan Province, P. R. CHINA;

    Lipid Technology and Engineering, School of Food Science and Engineering, Henan University of Technology, Lianhua Road 100, Zhengzhou 450001, Henan Province, P. R. CHINA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biodiesel; esterification; lipase; ricinoleic acid; response surface methodology;

    机译:生物柴油酯化脂肪酶蓖麻油酸;响应面法;

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