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Characteristics and application of co-pyrolysis of coal/biomass blends with solid heat carrier

机译:煤/生物质掺合物与固体载热体共热解的特性及应用

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摘要

A series of experiments on co-pyrolysis of subbituminous coal/corn stalk blends with solid heat carrier (boiler ash) were carried out in a bench-scale moving bed pyrolyzer with different biomass blending ratios at different temperatures. Deviation of gaseous, liquid and char products yields between experimental values and calculated ones was discussed. Some characteristics of char and char-ash after co-pyrolysis were investigated, such as elemental analysis, heat value, ash melting point and ash composition. Results indicated that with increasing blending ratio of corn stalk and temperature, both gas and tar yields increased. Gas heat value decreased with increasing corn stalk blending ratio while increased with rising temperature. Compared with coal pyrolysis alone, more light-oil and water were found during the co-pyrolysis process. The char-ash showed little impact on boiler combustion ash at the blending ratio of biomass less than 30%. Application of co-pyrolysis in a polygeneration system was evaluated environmentally and economically. (C) 2015 Elsevier B.V. All rights reserved.
机译:在具有不同生物量混合比的台式移动床热解器中,在不同温度下,对亚烟煤/玉米秸秆共混物与固体热载体(锅炉灰分)进行共热解的一系列实验。讨论了气态,液态和炭产物产率在实验值与计算值之间的偏差。研究了共热解后的炭和炭灰的一些特征,如元素分析,热值,灰熔点和灰组成。结果表明,随着玉米秸秆配比和温度的增加,天然气和焦油产量均增加。气体热值随玉米秸秆混合比的增加而降低,而随温度升高而升高。与仅煤热解相比,在共热解过程中发现了更多的轻油和水。当生物质的混合比小于30%时,炭灰对锅炉燃烧灰几乎没有影响。共热解在多联产系统中的应用已在环境和经济方面进行了评估。 (C)2015 Elsevier B.V.保留所有权利。

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