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Alkaline Pretreatment of Sweet Sorghum Bagasse for Bioethanol Production

机译:甜高粱蔗渣的碱性预处理用于生产生物乙醇

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摘要

Lignocellulosic material, which consist mainly of cellulose, hemicelluloses and lignin, are among the most promising renewable feedstocks for the production of energy and chemicals. The bagasse residue of sweet sorghum can be utilized as raw material for alternative energy such as bioethanol. Bioethanol production consists of pretreatment, saccharification, fermentation and purification process. The pretreatment process was of great importance to ethanol yield. In the present study, alkaline pretreatment was conducted using a steam explosion reactor at 1300C with concentrations of NaOH 6, and 10% (kg/L) for 10, and 30 min. For ethanol production separated hydrolysis and fermentation (SHF) and simultaneous saccharification and fermentation (SSF) process were conducted with 30 FPU of Ctec2 and Htec2 enzyme and yeast of Saccharomyces cerevisiae. The results showed that maximum cellulose conversion to total glucose plus xylose were showed greatest with NaOH 10% for 30 min. The highest yield of ethanol is 96.26% and high concentration of ethanol 66.88 g/L were obtained at SSF condition during 48 h process. Using SSF process could increase yields and concentration of ethanol with less energy process. Article History: Received January 16th 2016; Received in revised form May 25th 2016; Accepted June 28th 2016; Available online How to Cite This Article: Sudiyani, Y., Triwahyuni, E., Muryanto, Burhani, D., Waluyo, J. Sulaswaty, A. and Abimanyu, H. (2016) Alkaline Pretreatment of Sweet Sorghum Bagasse for Bioethanol Production. Int. Journal of Renewable Energy Development, 5(2), 113-118. http://dx.doi.org/10.14710/ijred.5.2.113-118
机译:木质纤维素材料主要由纤维素,半纤维素和木质素组成,是用于生产能源和化学品的最有希望的可再生原料之一。甜高粱的甘蔗渣残渣可以用作替代能源的原料,例如生物乙醇。生物乙醇的生产包括预处理,糖化,发酵和纯化过程。预处理过程对乙醇收率至关重要。在本研究中,使用蒸汽爆炸反应器在1300℃,浓度为NaOH 6和10%(kg / L)的条件下进行碱预处理10分钟和30分钟。为了生产乙醇,使用30 FPU的Ctec2和Htec2酶以及酿酒酵母进行分离的水解和发酵(SHF)以及同时的糖化和发酵(SSF)工艺。结果显示最大的纤维素转化为总葡萄糖加木糖的最大转化率是用NaOH 10%处理30分钟。乙醇的最高收率为96.26%,在SSF条件下48 h的过程中获得了高浓度的乙醇66.88 g / L。使用SSF工艺可以以较少的能源工艺提高乙醇的收率和浓度。文章历史记录:2016年1月16日收到;于2016年5月25日收到修订版; 2016年6月28日接受;在线提供如何引用本文:Sudiyani,Y.,Triwahyuni,E.,Muryanto,Burhani,D.,Waluyo,J.Sulaswaty,A.和Abimanyu,H.(2016)甜高粱甘蔗渣用于生物乙醇生产的碱性预处理。诠释Journal of Renewable Energy Development,5(2),113-118。 http://dx.doi.org/10.14710/ijred.5.2.113-118

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