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Catalytic Conversion of Biomass-Derived Ethanol to Liquid Hydrocarbon Blendstock: Effect of Light Gas Recirculation

机译:生物质乙醇催化转化为液态烃调和原料:轻气再循环的影响

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摘要

We describe a light gas recirculation (LGR) method to increase the liquid hydrocarbon yield with a reduced aromatic content from catalytic conversion of ethanol to hydrocarbons. The previous liquid hydrocarbon yield is similar to 40% from one-pass ethanol conversion over the V-ZSM-5 catalyst at 350 degrees C and atmospheric pressure, where the remaining similar to 60% yield is light gas hydrocarbons. In comparison, the liquid hydrocarbon yield increases to 80% when a simulated light gas hydrocarbon stream is co-fed at a rate of 0.053 mol g(-1) h(-1) with ethanol as a result of the conversion of most of the light olefins. The LGR also significantly improves the quality of the liquid hydrocarbon blendstock by reducing the aromatic content and overall benzene concentration. For 0.027 mol g(-1) h(-1) light gas mixture co-feeding, the average aromatic content in liquid hydrocarbons is 51.5% compared to 62.5% aromatic content in the ethanol only experiment. The average benzene concentration decreases from 3.75 to 1.5%, which is highly desirable because the United States Environmental Protection Agency (U.S. EPA) limits the benzene concentration in gasoline to 0.62%. As a result of a low benzene concentration, the blend wall for ethanol-derived liquid hydrocarbons changes from similar to 18 to 43%. The remaining light paraffins and olefins can be further converted to valuable benzene, toluene, and xylenes (BTX) products (94% BTX in the liquid) over Ga-ZSM-5 at 500 degrees C. Thus, the LGR is an effective approach to convert ethanol to liquid hydrocarbons with a higher liquid yield and low aromatic content, especially a low benzene concentration, which could be blended with gasoline in a much higher ratio than ethanol or ethanol-derived hydrocarbon blendstock.
机译:我们描述了一种轻质气体再循环(LGR)方法,可通过降低乙醇催化转化为碳氢化合物的芳烃含量来提高液态碳氢化合物的收率。先前的液态烃产率类似于在350℃和大气压下通过V-ZSM-5催化剂通过乙醇进行单程乙醇转化的40%,其中其余类似于60%的产率是轻质烃。相比之下,当模拟轻质气态烃物流与乙醇以0.053 mol g(-1)h(-1)的速率共同进料时,液态烃的收率提高到80%。轻质烯烃。 LGR还通过降低芳族含量和总苯浓度,显着提高了液态烃调合原料的质量。对于0.027 mol g(-1)h(-1)轻质气体混合物共同进料,液态烃中的平均芳烃含量为51.5%,相比之下,仅乙醇实验的芳烃含量为62.5%。平均苯浓度从3.75降低到1.5%,这是非常理想的,因为美国环境保护署(U.S. EPA)将汽油中的苯浓度限制为0.62%。由于苯浓度低,乙醇衍生的液态烃的混合壁从相似的18%变为43%。剩余的轻质石蜡和烯烃可以在500摄氏度的Ga-ZSM-5上进一步转化为有价值的苯,甲苯和二甲苯(BTX)产品(液体中BTX含量为94%)。因此,LGR是一种有效的方法将乙醇转化为液态烃,具有较高的液体收率和较低的芳族含量,尤其是低苯浓度,与乙醇或乙醇衍生的烃类混合原料的混合比例高得多。

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  • 来源
    《Energy & fuels》 |2016年第12期|10611-10617|共7页
  • 作者单位

    Oak Ridge Natl Lab, Energy & Transportat Sci Div, Oak Ridge, TN 37831 USA;

    Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA|Univ Tennessee, Bredesen Ctr Interdisciplinary Res, 821 Volunteer Blvd, Knoxville, TN 37996 USA;

    Oak Ridge Natl Lab, Biosci Div, Oak Ridge, TN 37831 USA;

    Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA|Univ Tennessee, Bredesen Ctr Interdisciplinary Res, 821 Volunteer Blvd, Knoxville, TN 37996 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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