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首页> 外文期刊>Biochemical Engineering Journal >Biodiesel production from soybean soapstock acid oil by hydrolysis in subcritical water followed by lipase-catalyzed esterification using a fermented solid in a packed-bed reactor
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Biodiesel production from soybean soapstock acid oil by hydrolysis in subcritical water followed by lipase-catalyzed esterification using a fermented solid in a packed-bed reactor

机译:通过在亚临界水中水解,然后在填充床反应器中使用发酵固体,由脂肪酶催化的酯化反应,从大豆皂原料酸油生产生物柴油

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摘要

We investigated a new hydroesterification strategy for the production of biodiesel from low-value oil feedstocks: complete hydrolysis of the feedstock to fatty acids in subcritical water, followed by the use of a packed-bed reactor, containing a fermented solid with lipase activity, to convert the fatty acids to their ethyl esters. The fermented solids were produced by cultivating Burkholderia cepacia LTEB11 for 72 h on a 1:1 mixture, by mass, of sugarcane bagasse and sunflower seed meal. The esterification of fatty acids obtained from soybean soapstock acid oil was studied in the packed-bed bioreactor, in a solvent-free system, with the best results being a 92% conversion in 31 h, obtained at 50 C. When the packed-bed reactor was reused in successive 48-h esterification reactions, conversions of over 84% of the fatty acids to esters were maintained for five cycles at 50 C and for six cycles at 45 C. Unlike previous hydroesterification processes that have used lipase-catalyzed hydrolysis followed by chemically-catalyzed esterification, our process does not expose the lipases to contaminants present in low quality feedstocks such as soapstocks. This advantage opens the possibility of operating the packed-bed esterification reactor in continuous mode.
机译:我们研究了一种由低价值石油原料生产生物柴油的新的加氢酯化策略:原料在亚临界水中完全水解为脂肪酸,然后使用填充床反应器,其中包含具有脂肪酶活性的发酵固体,将脂肪酸转化为其乙酯。发酵的固体是通过将洋葱伯克霍尔德菌LTEB11在甘蔗渣和葵花籽粉的1:1质量比混合物上培养72小时而产生的。在无溶剂系统中,在填充床生物反应器中研究了从大豆皂原料酸油获得的脂肪酸的酯化反应,最佳结果是在50℃的31小时内转化率为92%。反应器在连续的48小时酯化反应中重复使用,将超过84%的脂肪酸​​转化为酯在50°C下保持5个循环,在45°C下保持6个循环。与之前使用脂肪酶催化水解的加氢酯化方法不同,通过化学催化的酯化反应,我们的工艺不会将脂肪酶暴露于劣质原料(如肥皂原料)中存在的污染物。该优点打开了以连续模式操作填充床酯化反应器的可能性。

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