Effect of Pretreatment and Composition of Trichoderma Viride and Zymomonas Mobilis Consortium on Bioethanol Production from Leaf Litter

Wulan Fitriani Safari, Mohamad Syafaat
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引用次数: 1

Abstract

Bioethanol is an alternative biofuel that is widely produced in bulk to replace and complement petroleum-based fuels. Bioethanol is produced through the alcoholic fermentation of sucrose or simple sugars. One of the potential source for bioethanol production that has not been studied is leaf litter. Various studies have shown that T. viride and Z. mobilis can be used for bioethanol production, but there has been no report on the production of bioethanol from leaf litter using a consortium of T. viride and Z. mobilis using the SSF method. This study aims to examine the effect of pretreatment and composition of the consortium of T. viride and Z. mobilis on the production of bioethanol from leaf litter. Leaf litter was dried and mashed, then pretreatment was carried out with 32% NH3 solution. The bioethanol production process using the SSF method uses a consortium of T. viride and Z. mobilis with a composition of 5%: 5%, 10%: 5%, 5%: 10% and 10%: 10% (w/v). SSF was carried out for 72 hours at a temperature of 35oC and pH 5. The bioethanol was purified by distillation and the ethanol content was tested with GCMS. Higher levels of bioethanol were found in leaf litter with pretreatment than without pretreatment. The highest ethanol content (0.6721%) was obtained from SSF with consortium composition of T. viride : Z. mobilis (10% : 10%) from leaf litter with pretreatment. Pretreatment and composition of the consortium T. viride and Z. mobilis affect the production of bioethanol from leaf litter.
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绿色木霉和活动单胞菌联合体预处理及组成对凋落叶生产生物乙醇的影响
生物乙醇是一种可替代的生物燃料,广泛批量生产,以取代和补充石油基燃料。生物乙醇是通过蔗糖或单糖的酒精发酵生产的。尚未研究的生物乙醇生产的潜在来源之一是凋落叶。各种研究表明,绿毛霉和黄毛霉可用于生产生物乙醇,但尚未有关于绿毛霉和黄毛霉联合使用SSF方法从凋落叶中生产生物乙醇的报道。本研究旨在研究青霉和野霉联合物的预处理和组成对凋落叶生产生物乙醇的影响。将凋落叶干燥捣碎,用32% NH3溶液进行预处理。使用SSF方法生产生物乙醇的过程使用了绿霉和草霉的联合体,其组成为5%:5%,10%:5%,5%:10%和10%:10% (w/v)。SSF在温度为35℃,pH为5的条件下进行72小时。用蒸馏法纯化生物乙醇,用气相色谱法测定乙醇含量。处理后的凋落叶中生物乙醇含量高于未处理的凋落叶。以凋落叶为原料,以绿草与野草(10%:10%)为组合物,提取的乙醇含量最高,为0.6721%。绿野蓟和野蓟组合的预处理和组成影响凋落叶中生物乙醇的生产。
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