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Energy, water and process technologies integration for the simultaneous production of ethanol and food from the entire corn plant

机译:能源,水和工艺技术集成,可从整个玉米工厂同时生产乙醇和食品

摘要

This paper presents simultaneous integration of different technologies such as the traditional dry-grind process to obtain ethanol from grain with the gasification of the corn stover followed by either syngas fermentation or catalytic mixed alcohols synthesis. The optimal integrated process when using the entire corn plant (18 kg/s of grain and 10.8 kg/s of stover) is the one in which the dry-grind technology to process corn grain is integrated with the catalytic path for the corn stover due to the improved integration of energy, requiring only 17 MW of energy, 50 MW of cooling and 1.56 gal/gal of freshwater, for an ethanol production cost of 1.22 $/gal. However, the production cost decreases as we only use stover to produce ethanol, while the grain is used for food due to the lower cost of the stover and the more favorable energy balance of the ethanol production process from gasification.
机译:本文介绍了不同技术的同时集成,例如传统的干磨工艺,通过玉米秸秆的气化从谷物中获得乙醇,然后进行合成气发酵或催化混合醇合成。使用整个玉米工厂(18千克/秒谷物和10.8千克/秒秸秆)时的最佳集成过程是将玉米谷物的干磨技术与玉米秸秆的催化路径整合在一起的过程为了改善能源整合,仅需要17兆瓦的能源,50兆瓦的冷却和1.56加仑/加仑的淡水,乙醇的生产成本为1.22美元/加仑。但是,由于仅使用秸秆生产乙醇,生产成本降低了,而谷物则用于食品,这是因为秸秆成本较低,并且气化乙醇生产过程的能量平衡更为有利。

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