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Investigation on thermal and trace element characteristics during co-combustion biomass with coal gangue

机译:生物质与煤gang石共燃过程中的热和微量元素特征研究

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The thermochemical behaviors during co-combustion of coal gangue (CG), soybean stalk (SS), sawdust (SD) and their blends prepared at different ratios have been determined via thermogravimetric analysis. The simulate experiments in a fixed bed reactor were performed to investigate the partition behaviors of trace elements during co-combustion. The combustion profiles of biomass was more complicated than that of coal gangue. Ignition property and thermal reactivity of coal gangue could be enhanced by the addition of biomass. No interactions were observed between coal gangue and biomass during co-combustion. The volatilization ratios of trace elements decrease with the increasing proportions of biomass in the blends during co-combustion. Based on the results of heating value, activation energy, base/acid ratio and gaseous pollutant emissions, the blending ratio of 20-30% biomass content is regarded as optimum composition for blending and could be applied directly at current combustion application with few modifications. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过热重分析确定了煤石(CG),大豆秸秆(SS),木屑(SD)及其混合物以不同比例混合燃烧时的热化学行为。在固定床反应器中进行了模拟实验,以研究共燃烧过程中微量元素的分配行为。生物质的燃烧曲线比煤石的燃烧曲线复杂。添加生物质可以提高煤property石的着火性和热反应性。在共燃过程中,煤石与生物质之间没有相互作用。共混过程中,微量元素的挥发率随掺合物中生物质比例的增加而降低。根据热值,活化能,碱/酸比和气态污染物排放的结果,生物量含量为20-30%的混合比例被认为是最佳的混合成分,无需改动即可直接用于当前燃烧应用。 (C)2014 Elsevier Ltd.保留所有权利。

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