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Superstructure optimization of bioethanol production from corn stover

机译:玉米秸秆的二氧乙醇生产优化

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Bioethanol is a liquid fuel that can be produced from various raw materials.The first generation of bioethanol which are starch and sugar has begun to decline as these materials are considered to be the food sources for human as well as animals.However,the rise of production of bioethanol from the second generation which are the lignocellulosic materials has been proven to give a lot of benefits to mankind instead.Various technologies were studied in order to design an optimal processing route for bioethanol production from lignocellulosic biomass.A superstructure on the available process technologies which include the three main technologies,the prefreatment,sugar conversion,separation and purification was first developed before screening it down to a final superstructure.All of the data have been used in this study were collected from open literature and followed by the selection and development of the models required in order to solve the generic models and problems by using an optimization software,the Generic Algebraic Modelling System(GAMS).The optimization results indicate that the optimal processing route in producing bioethanol from lignocellulosic biomass include the technologies of steam explosion,dilute acid followed by fermentation,beer and dehydration of ethanol on zeolite for each process interval with maximum yield of 2238.4 kg/h.
机译:生物乙醇是一种可以由各种原料生产的液体燃料。由于这些材料被认为是人类以及动物的食物来源,第一代是淀粉和糖的生物乙醇已经开始下降。然而,随着人类和动物的食物来源。然而,崛起从第二代中生成的生物乙醇是从甘蓝纤维素材料的生成,以给予人类的许多益处。研究了各种技术,以设计从木质纤维素生物量的生物乙醇生产的最佳加工途径。在可用过程中的上层建筑在将其筛选到最终的上部结构之前首先制定三种主要技术,预先处理,糖转化,分离和纯化。在本研究中已使用的数据已从开放文献中收集并进行选择,然后选择和选择通过使用OPTI来解决通用模型和问题所需的模型的开发Mization软件,通用代数建模系统(Gams)。优化结果表明,从木质纤维素生物量产生生物乙醇中的最佳加工途径包括蒸汽爆炸,稀酸的技术,然后在沸石上发酵,啤酒和乙醇脱水间隔最大收率2238.4 kg / h。

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