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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Economic analysis of fuel ethanol production from winter hulled barley by the EDGE (Enhanced Dry Grind Enzymatic) process
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Economic analysis of fuel ethanol production from winter hulled barley by the EDGE (Enhanced Dry Grind Enzymatic) process

机译:EDGE(Enhanced Dry Grind Enzymatic)工艺在冬季去壳大麦生产燃料乙醇的经济分析

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摘要

A process and cost model was developed for fuel ethanol production from winter barley based on the EDGE (Enhanced Dry Grind Enzymatic) process. In this process, in addition to β-glucanases, which are added to reduce the viscosity of the mash, β-glucosidase is also added to completely hydrolyze the oligomers obtained during the hydrolysis of β-glucans to glucose. The model allows determination of capital costs, operating costs, and ethanol production cost for a plant producing 40. million gallons of denatured fuel ethanol annually. A sensitivity study was also performed to examine the effects of β-glucosidase and barley costs on the final ethanol production cost. The results of this study clearly demonstrate the economic benefit of adding β-glucosidase. Lower ethanol production cost was obtained compared to that obtained without β-glucosidase addition in all cases except one where highest β-glucosidase cost allowance and lowest barley cost were used.
机译:基于EDGE(增强型干磨酶)工艺,开发了一种用于冬季大麦生产燃料乙醇的过程​​和成本模型。在该方法中,除了添加β-葡聚糖酶以降低的粘度外,还添加β-葡糖苷酶以完全水解在将β-葡聚糖水解成葡萄糖时获得的低聚物。该模型可以确定每年生产40,000,000加仑变性燃料乙醇的工厂的资本成本,运营成本和乙醇生产成本。还进行了敏感性研究,以检验β-葡萄糖苷酶和大麦成本对最终乙醇生产成本的影响。这项研究的结果清楚地证明了添加β-葡萄糖苷酶的经济效益。在所有情况下,与不添加β-葡糖苷酶的乙醇生产成本相比,乙醇生产成本较低,除了其中使用最高β-葡糖苷酶成本补贴和最低大麦成本的乙醇生产成本。

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