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Process simulation of modified dry grind ethanol plant with recycle of pretreated and enzymatically hydrolyzed distillers' grains

机译:预处理和酶水解酒糟回收利用的改进型干磨乙醇装置的过程模拟

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Distillers' grains (DG), a co-product of a dry grind ethanol process, is an excellent source of supplemental proteins in livestock feed. Studies have shown that, due to its high polymeric sugar contents and ease of hydrolysis, the distillers' grains have potential as all additional source of fermentable sugars for ethanol fermentation. The benefit of processing the distillers' grains to extract fermentable sugars lies in an increased ethanol yield without significant modification in the current dry grind technology. Three different potential configurations of process alternatives in which pretreated and hydrolyzed distillers' grains are recycled for an enhanced overall ethanol yield are proposed and discussed in this paper based on the liquid hot water (LHW) pretreatment of distillers' grains. Possible limitations of each proposed process are also discussed. This paper presents a compositional analysis of distillers' grains, as well as a simulation of the modified dry grind processes with recycle of distillers' grains. Simulated material balances for the modified dry grind processes are established based on the base case assumptions. These balances are compared to the conventional dry grind process in terms of ethanol yield, compositions of its co-products, and accumulation of fermentation inhibitors. Results show that 14% higher ethanol yield is achievable by processing and hydrolyzing the distillers' grains for additional fermentable sugars, as compared to the conventional dry grind process. Accumulation of fermentation by-products and inhibitory components in the proposed process is predicted to be 2-5 times higher than in the conventional dry grind process. The impact of fermentation inhibitors is reviewed and discussed, The final eDDGS (enhanced dried distillers' grains) from the modified processes has 30-40%, greater protein content per mass than DDGS, and its potential as a value-added process is also analyzed. While the case studies used to illustrate the process simulation are based oil LHW pretreated DG, the process simulation itself provides a framework for evaluation of the impact of other pretreatments. (C) 2007 Elsevier Ltd. All rights reserved.
机译:酒糟(DG)是干磨乙醇工艺的副产品,是牲畜饲料中补充蛋白质的极好来源。研究表明,由于其高聚合糖含量和易于水解的作用,酒糟具有作为乙醇发酵所有其他可发酵糖来源的潜力。处理酒糟提取可发酵糖的好处在于,乙醇产量的增加无需对现有干磨技术进行重大改动。本文提出了三种不同的工艺替代方案,其中对经过预处理和水解的酒糟进行了循环利用,以提高乙醇的总收率,并基于酒糟的液体热水(LHW)预处理进行了讨论。还讨论了每个提议过程的可能局限性。本文介绍了酒糟的成分分析,以及利用酒糟循环利用改进的干磨过程的模拟。修改后的干磨过程的模拟物料平衡是根据基本情况假设建立的。将这些平衡与常规干磨工艺的乙醇收率,其副产物的组成以及发酵抑制剂的积累进行了比较。结果表明,与传统的干磨工艺相比,通过加工和水解酒糟中的其他可发酵糖,可以使乙醇的收率提高14%。预计拟议过程中发酵副产物和抑制性成分的积累比常规干磨过程高2-5倍。审查和讨论了发酵抑制剂的影响,经过改良的过程产生的最终eDDGS(增强的干酒糟)的含量为30-40%,每质量的蛋白质含量高于DDGS,还分析了其作为增值过程的潜力。虽然用于说明过程模拟的案例研究是基于油LHW预处理的DG,但过程模拟本身为评估其他预处理的影响提供了框架。 (C)2007 Elsevier Ltd.保留所有权利。

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