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Production of bioethanol and other bio-based materials from sugarcane bagasse: Integration to conventional bioethanol production process

机译:从甘蔗渣中生产生物乙醇和其他生物基材料:与常规生物乙醇生产工艺的整合

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摘要

Ethanol maybe produced using sugarcane bagasse as raw material through the Organosolv process with dilute acid hydrolysis, thus increasing ethanol production with the same cultivated sugarcane area. In this work simulations of bioethanol production from sugarcane juice and bagasse are carried out using software UniSim Design. A typical large scale production plant is considered: 1000 m~3/day of ethanol is produced using sugarcane juice as raw material. A three-step hydrolysis process (pre-hydrolysis of hemicellulose, Organosolv delignification and cellulose hydrolysis) of surplus sugarcane bagasse is considered. Pinch analysis is used to determine the minimum hot utility obtained with thermal integration of the plant, in order to find out the maximum availability of bagasse that can be used in the hydrolysis process, taking into consideration the use of 50% of generated sugarcane trash as fuel for electricity and steam production. Two different cases were analyzed for the product purification step: conventional and double-effect distillation systems. It was found that the double-effect distillation system allows 90% of generated bagasse to be used as raw material in the hydrolysis plant, which accounts for an increase of 26% in bioethanol production, considering exclusively the fermentation of hexoses obtained from the cellulosic fraction.
机译:可以使用甘蔗渣作为原料通过稀酸水解的Organosolv工艺生产乙醇,从而在相同的种植甘蔗面积下提高乙醇产量。在这项工作中,使用UniSim Design软件对甘蔗汁和蔗渣中生物乙醇的生产进行了模拟。考虑一个典型的大规模生产工厂:以甘蔗汁为原料生产1000 m〜3 / day的乙醇。考虑了剩余甘蔗渣的三步水解过程(半纤维素的预水解,有机溶剂脱木质素和纤维素水解)。捏分析用于确定通过工厂热集成获得的最小热利用率,以便找出可用于水解过程的甘蔗渣的最大可用性,并考虑使用50%产生的甘蔗废料作为原料。电力和蒸汽生产的燃料。针对产品纯化步骤分析了两种不同的情况:常规蒸馏系统和双效蒸馏系统。已发现,双效蒸馏系统可将90%生成的蔗渣用作水解工厂的原料,这仅考虑了从纤维素馏分中获得的己糖的发酵,就可将生物乙醇产量提高26%。 。

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