首页> 外文期刊>American Chemical Society, Division of Fuel Chemistry, Preprints >PRODUCTION OF HIGH-GRADE CARBONACEOUS MATERIALS AND FUEL HAVING SIMILAR CHEMICAL AND PHYSICAL PROPERTIES FROM LOW GRADE CARBONACEOUS RESOURCES BY DEGRADATIVE SOLVENT EXTRACTION
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PRODUCTION OF HIGH-GRADE CARBONACEOUS MATERIALS AND FUEL HAVING SIMILAR CHEMICAL AND PHYSICAL PROPERTIES FROM LOW GRADE CARBONACEOUS RESOURCES BY DEGRADATIVE SOLVENT EXTRACTION

机译:通过降解溶剂萃取从低级碳资源生产高阶碳材料和具有类似化学和物理性质的燃料

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摘要

It is without question that effective methods are requested to utilize low grade carbonaceous resources such as low rank coal, peat, biomass waste, etc. as energy resource, chemical feed stocks, and so on. The low grade resources have many drawbacks to be overcome for their effective utilization such as high moisture content, high ash content, low heating value, non-uniformity, and so on. Overcoming these drawbacks, the authors have recently proposed a degradative solvent extraction method which treats such low grade carbonaceous resources in a non-hydrogen donor at around 350 °C, under pressure, using a batch autoclave to dewater without phase change, to remove oxygen functional groups, and to produce low-molecular-weight compounds.1−4 The core concept underlying this method involves exposing the entire sample to thermal reactions in a nonpolar solvent at around 350 °C. The anticipated thermal reactions under these conditions include deoxygenation reactions consisting of dehydration and decarboxylation without primary decomposition reactions accompanying the disruption of C−C bonds.
机译:毫无疑问,需要有效的方法来利用低品位碳质资源,例如低品位煤,泥煤,生物质废物等,作为能源,化学原料等。低品位资源由于其有效利用而具有许多缺点,例如高水分含量,高灰分含量,低发热量,不均匀性等。为了克服这些缺点,作者最近提出了一种降解性溶剂萃取方法,该方法可在约350°C的压力下,使用分批高压釜在无相变化的情况下对无氢供体中的此类低品位碳源进行加压脱水,以去除氧官能团。 1−4该方法的核心概念涉及使整个样品在约350°C的非极性溶剂中暴露于热反应。在这些条件下预期的热反应包括由脱水和脱羧作用组成的脱氧反应,而没有伴随C-C键破坏的主要分解反应。

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    Department of Chemical Engineering Kyoto UniversityKyoto 615-8510 Japan;

    Department of Chemical Engineering Kyoto UniversityKyoto 615-8510 Japan;

    Department of Chemical Engineering Kyoto UniversityKyoto 615-8510 Japan;

    Department of Chemical Engineering Kyoto UniversityKyoto 615-8510 Japan;

    The Joint Graduate School of Energy and EnvironmentKing Mongkut’s University of Technology ThonburiBangkok 10140 Thailand;

    The Joint Graduate School of Energy and EnvironmentKing Mongkut’s University of Technology ThonburiBangkok 10140 Thailand;

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  • 入库时间 2022-08-18 02:03:56

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