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首页> 外文期刊>The Korean journal of chemical engineering >Comparison of methods for preventing methanol inhibition in enzymatic production of biodiesel
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Comparison of methods for preventing methanol inhibition in enzymatic production of biodiesel

机译:防止酶催化生产生物柴油中甲醇抑制方法的比较

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During the enzymatic production of biodiesel, methanol has a major inhibitory effect on enzyme activity whereas glycerol has a minor effect. Revitalization of the methanol-deactivated enzyme or pre-incubation of enzyme with various chemicals turned out to be unsuccessful. The stepwise feeding of methanol, a widely used conventional method for preventing methanol inhibition, was optimized in terms of the aliquot number and feeding interval to obtain a high conversion rate as well as a high degree of final biodiesel conversion. The use of six feedings of methanol with an equivalent molar ratio of 0.75 at 3-h intervals was found to be the optimal mode for preventing methanol inhibition; a biodiesel conversion rate of approximately 95% could be achieved within 20 h by using this method. Finally, to prevent contact between the undissolved methanol and the enzyme, methanol was pre-dissolved in water or biodiesel and fed to the mixture of soybean oil and the enzyme. This pre-dissolution method completely prevented enzyme inhibition, and a final biodiesel conversion rate of 82.3% was obtained.
机译:在生物柴油的酶促生产过程中,甲醇对酶的活性具有主要的抑制作用,而甘油的作用较小。活化甲醇失活的酶或将酶与各种化学物质进行预温育均未成功。在等分试样数和进料间隔方面,对甲醇的逐步进料(一种广泛使用的防止甲醇抑制的常规方法)进行了优化,以获得高转化率以及最终生物柴油的高度转化率。已经发现,每3小时间隔使用六次等摩尔摩尔比为0.75的甲醇进料是防止甲醇抑制的最佳方式。通过使用这种方法,在20小时内可以实现约95%的生物柴油转化率。最后,为了防止未溶解的甲醇与酶接触,将甲醇预先溶解在水或生物柴油中,然后加到大豆油和酶的混合物中。该预溶解方法完全防止了酶的抑制,最终生物柴油转化率为82.3%。

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