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Production of solid fuel biochar from waste biomass by low temperature pyrolysis

机译:通过低温热解由废物生物质生产固体燃料生物炭

摘要

Low temperature pyrolysis was employed to produce solid fuel biochars from woody (pine wood) and non-woody biomass (coconut fiber) in the present study. Chemical evolution of biomass under pyrolysis conditions was determined and fuel qualities of the biochars were evaluated including energy densities, ash-related problems and combustion behaviors. The results showed that dehydration reaction of the biomass had same preference with decarboxylation reaction under pyrolysis conditions. The hemicellulose and cellulose in non-woody biomass showed faster decomposition than those in woody biomass. The biochars derived from coconut fiber showed lower energy densities and energy yields than those from pine wood under identical conditions. All major ash forming metals originally contained in raw biomass were accumulated in the resultant biochars and more serious slagging and fouling problems were present during combustion of pyrolytic biochars compared to raw biomass. The reactivity of biomass decreased and the main mass loss shifted to elevated temperature zone with the increasing pyrolysis temperature, indicating increased thermal efficiency and environmental benefits were achievable during biochar combustion compared to raw biomass combustion. Taking into account combustion characteristics and energy yield, optimal pyrolysis temperatures for solid fuel production were around 300 degrees C for coconut fiber and 330 degrees C for pine wood. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本研究中,采用低温热解从木质(松木)和非木质生物质(椰子纤维)生产固体燃料生物炭。确定了生物质在热解条件下的化学演化,并评估了生物炭的燃料质量,包括能量密度,灰分相关问题和燃烧行为。结果表明,在热解条件下,生物质的脱水反应与脱羧反应具有相同的优先级。非木质生物质中的半纤维素和纤维素显示出比木质生物质中的半纤维素和纤维素更快的分解速度。在相同条件下,源自椰子纤维的生物炭显示出比松木更低的能量密度和能量产率。与原始生物质相比,原始生物质中最初包含的所有主要形成灰分的金属都积累在生成的生物炭中,并且在热解生物炭燃烧期间存在更严重的结渣和结垢问题。随着热解温度的升高,生物质的反应性降低,主质量损失转移至高温区,这表明与原始生物质燃烧相比,生物炭燃烧可提高热效率和环境效益。考虑到燃烧特性和能量产率,用于固体燃料生产的最佳热解温度对于椰子纤维约为300摄氏度,对于松木约为330摄氏度。 (C)2015 Elsevier Ltd.保留所有权利。

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    Liu Zhengang; Han Guanghua;

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  • 年度 2015
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