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Production of Bioethanol from Bagasse with A Simultaneous Saccarification and Fermentation (SSF) Process Using Crude Cellulase from Phanerochaete chrysosporium

机译:使用来自Phanerochaete Chrysosporium的粗纤维素酶的同时性纤维化和发酵(SSF)过程,从甘蔗渣和发酵(SSF)过程中生产生物乙醇

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Bagasse is a solid waste from the sugar industry, which contains lignocellulose that can be used as an alternative energy source to replace fossil fuels. Lignocellulose in bagasse consists of cellulose, hemicellulose, and lignin where those three components can be degraded by crude cellulase enzymes produced by fungus Phanerochaete chysosporium to become bioethanol. The purpose of this research was to determine the effect of fermentation time and the amount of crude cellulase enzymes added to the bioethanol levels which is produced by the SSF method, and to determine the best operating conditions of the variables used. This research was carried out through the following stages: bagasse pretreatment by drying and reducing size, analyzing the cellulose, himicellulose and lignin levels in bagasse, production crude cellulase using Phanerochaete chysosporium, and production bioethanol using the SSF method. The variables used in the study were fermentation time (48, 72, and 96 hours), and the amount of crude cellulase added (5,10,20, 30,40, and 50% by weight). The results showed that the longer fermentation time and the greater crude cellulase added, the higher level of bioethanol produced, where the highest bioethanol level of 9.22% was obtained at the addition of 50% crude cellulase, and fermentation time of 96 hours
机译:Bagasse是糖业的固体废物,含有木质纤维素,可用作替代化石燃料的替代能源。甘蔗渣中的木质纤维素由纤维素,半纤维素和木质素组成,其中三种组分可以通过由真菌植物氏菌核孢菌素产生的粗纤维素酶降解,使其成为生物乙醇。该研究的目的是确定发酵时间和添加到通过SSF方法产生的生物乙醇水平的粗纤维素酶的效果,并确定所用变量的最佳操作条件。该研究通过以下阶段进行:通过干燥和减少粒度的粒子,分析甘蔗渣中的纤维素,优质纤维素酶,使用SSF方法的生产生物乙醇,分析纤维素,热纤维素和木质素水平的粒子。该研究中使用的变量是发酵时间(48,72和96小时),加入粗纤维素酶的量(5,10,20,30,40和50重量%)。结果表明,加入较高的发酵时间和较大的粗纤维素酶,制备的较高水平的生物乙醇水平,在加入50%粗纤维素酶的加入下获得9.22%的最高生物乙醇水平,并在96小时的发酵时间

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