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Industrial symbiosis: Corn ethanol fermentation, hydrothermal carbonization, and anaerobic digestion.

机译:工业共生:玉米乙醇发酵,水热碳化和厌氧消化。

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摘要

The production of dry-grind corn ethanol results in the generation of intermediate products, thin and whole stillage, which require energy-intensive downstream processing for conversion into commercial co-products. Alternative treatment methods, specifically hydrothermal carbonization of thin and whole stillage coupled with anaerobic digestion were investigated to determine if they provide an opportunity to recover some of this value. By substantially eliminating evaporation of water, reductions in downstream energy consumption from 65-73% were achieved, while hydrochar, fatty acids, treated process water, and biogas co-products were generated, providing new opportunities for the industry. Processing whole stillage in this manner produced the four co-products, eliminated centrifugation and evaporation, and substantially reduced drying. With thin stillage, all co-products were again produced, as well as a high quality animal feed. Anaerobic digestion of the undiluted aqueous product stream from thin stillage hydrothermal carbonization reduced chemical oxygen demand (COD) in this product stream by more than 90% and converted 83% the initial COD to methane. Internal use of this biogas could entirely fuel the HTC process and reduce natural gas overall usage.
机译:干磨玉米乙醇的生产导致产生中间产物,稀浆和整个釜馏物,这需要能源密集的下游加工过程才能转化为商业副产物。研究了替代处理方法,特别是稀薄和整个釜馏物的热液碳化以及厌氧消化,以确定它们是否提供了机会来恢复该值。通过基本消除水的蒸发,可将下游能源消耗从65-73%降低,同时生成了碳氢化合物,脂肪酸,处理过的工艺用水和沼气副产品,为行业提供了新的机遇。以这种方式处理整个釜馏物产生了四种副产物,消除了离心和蒸发,并大大减少了干燥。用少量的釜馏物,所有副产品以及高质量的动物饲料得以再次生产。稀釜馏水热碳化过程中未稀释的含水产物流的厌氧消化使该产物流中的化学需氧量(COD)降低了90%以上,并将83%的初始COD转化为甲烷。内部使用这种沼气可以完全为HTC工艺提供燃料,并减少天然气的总体使用量。

著录项

  • 作者

    Wood, Brandon M.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Alternative Energy.;Energy.;Engineering.
  • 学位 M.S.
  • 年度 2012
  • 页码 78 p.
  • 总页数 78
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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