首页> 外文会议>Annual International Meeting of the American Society of Agricultural and Biological Engineers >Purification and Quality Enhancement of Fuel Ethanol to Produce Industrial Alcohols with Ozonation and Activated Carbon: Method Developments for Quantification of Impurities and their Removal Mechanis
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Purification and Quality Enhancement of Fuel Ethanol to Produce Industrial Alcohols with Ozonation and Activated Carbon: Method Developments for Quantification of Impurities and their Removal Mechanis

机译:燃料乙醇的纯化和质量增强生产具有臭氧化和活性炭的工业醇:用于量化杂质的方法的开发及其去除机械

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The total ethanol production in the United States became over 9 billion gallons/year in 2007. Only about 3% of this is used in producing food-grade alcohol, but this represents a higher value product. The ethanol production process includes corn milling, cooking, saccharification, fermentation, and separation by distillation. To achieve industrial and food-grade quality, additional purification is required. Impurities in ethanol could threaten human health and cause unpleasant flavors. This purification is currently achieved by further distillation. Further distillation is costly and not totally effective in removing all impurities. We have tested an advanced approach to purify ethanol by using ozone, activated carbon, and carbon dioxide. In previous research, we have shown that ozone can remove several undesirable compounds that remain in ethanol after distillation. Also, additional treatment with activated carbon can adsorb ozonolysis byproducts and some non-oxidizable compounds. In this study, we have focused on method development for analysis of volatile by-products using solid phase microextraction (SPME) ofheadspace volatiles and gas chromatography-mass spectrometry (GC-MS). We have also determined which of the mechanisms (ozonation, gas stripping, and activated carbon treatment) is responsible for removal of impurities. To date, we have confirmed up to 100% reduction of particular impurities by ozonation alone, but additional removal of some compounds occurs through gas stripping and GAC adsorption. The cost of the proposed treatment process is expected to be below 0.02 dollars per gallon. It is much lower than the cost of additional distillation, ca. 0.30 dollars per gallon.
机译:2007年美国的乙醇产量总量超过90亿加仑/年。其中只有约3%用于生产食品级酒精,但这代表了更高的价值产品。乙醇生产过程包括玉米碾磨,烹饪,糖化,发酵和通过蒸馏分离。为实现工业和食品级质量,需要额外的净化。乙醇中的杂质可能会威胁人类健康并导致令人不快的口味。目前通过进一步蒸馏实现该纯化。进一步蒸馏成本高,并且在除去所有杂质方面并不完全有效。我们测试了一种先进的方法,通过使用臭氧,活性炭和二氧化碳净化乙醇。在以前的研究中,我们已经表明,臭氧可以在蒸馏后除去几种在乙醇中保留在乙醇中的不希望的化合物。此外,用活性炭的额外处理可以吸附臭氧溶解副产物和一些不可氧化的化合物。在这项研究中,我们专注于使用Headspace挥发物和气相色谱 - 质谱(GC-MS)的固相微萃取(SPME)分析挥发性副产物的方法开发。我们还确定了哪种机制(臭氧,气体剥离和活性炭处理)负责去除杂质。迄今为止,我们通过单独的臭氧确认,通过臭氧化臭氧杂质可减少100%,但通过气体剥离和GAC吸附发生额外的化合物。拟议的治疗过程的成本预计每加仑低于0.02美元。它远低于额外蒸馏,CA的成本。每加仑0.30美元。

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