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Production of bio-oil from fast pyrolysis of biomass using a pilot-scale circulating fluidized bed reactor and its characterization

机译:使用中试规模循环流化床反应器从生物质快速热解生产生物油及其表征

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To circumvent the adverse impacts arising from an excessive use of fossil fuels, bioenergy and chemical production from a carbon neutral resource (biomass) has drawn considerable attention over the last two decades. Among various technical candidates, fast pyrolysis of biomass has been considered as one of the viable technical routes for converting a carbonaceous material (biomass) into biocrude (bio-oil). In these respects, three biomass samples (i.e., sawdust, empty fruit bunch, and giant Miscanthus) were chosen as a carbon substrate for the pyrolysis process in this study. A pilot-scale circulating fluidized bed reactor was employed for the pyrolysis work, and biocrude from the fast pyrolysis process at 500 degrees C were characterized because the maximum yield of biocrude (60 wt% of the original sample mass) was achieved at 500 degrees C. The physico-chemical properties of biocrude were measured by the international standard/protocol (ASTM D7544 and/or EN 16900 test method) to harness biocrude as bioenergy and an initial feedstock for diverse chemicals. All measurements in this study demonstrated that the heating value, moisture content, and ash contents in biocrude were highly contingent on the type of biomass. Moreover, characterization of biocrude in this study significantly suggested that additional unit operations for char and metal removal must be conducted to meet the fuel standard in terms of biocrude as bioenergy.
机译:为了避免因过度使用化石燃料而产生的不利影响,近二十年来,碳中和资源(生物质)的生物能源和化学生产受到了广泛关注。在各种技术候选物中,生物质的快速热解已经被认为是将碳质材料(生物质)转化为生物原油(生物油)的可行技术路线之一。在这些方面,本研究选择了三种生物质样品(即木屑,空果串和巨型芒草)作为热解过程的碳底物。中试规模的循环流化床反应器用于热解工作,其特征是在500摄氏度下通过快速热解过程获得的生物粗品的特征在于,在500摄氏度下获得了最大的生物粗品收率(原始样品质量的60 wt%)通过国际标准/协议(ASTM D7544和/或EN 16900测试方法)测量了生物原油的理化性质,以利用生物原油作为生物能源和各种化学品的初始原料。这项研究中的所有测量结果都表明,生物原油中的热值,水分含量和灰分含量高度取决于生物质的类型。此外,在这项研究中对生物原油的表征显着表明,必须进行额外的除焦和去除金属的装置操作,才能将生物原油作为生物能源满足燃料标准。

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