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Potassium transfer characteristics during co-combustion of rice straw and coal

机译:稻草秸秆与煤中钾的钾传递特性

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摘要

Co-combustion experiments of rice straw with K, Si-riched rice straw and coal were conducted in a horizontal tube furnace at 600-1000 degrees C. Potassium migration and transformation during co-combustion was investigated via analysis of combustion products by Inductively Coupled Plasma (ICP), X-ray powder diffraction (XRD), Scanning Electron Microscope (SEM) and thermodynamic calculation software respectively. Results indicated that high temperature improved the release of K to the gaseous phase and promoted the generation of insoluble K compounds in the bottom ash. Kin the rice straw mainly formed KCl, K2SiO3, while in both coal combustion and co-combustion" was in the form of aluminosilicate. At 1000 degrees C, a serious melting phenomenon was observed in ash of rice straw, bringing a decrease of K release while co-combustion could relieve this condition via increasing the melting temperature of ash effectively. The primary chemistry reaction during the co-combustion was Al migrated from coal ash to rice straw ash, forming relatively steady and high-melting point potassium aluminosilicate rather than potassium sulfate reported before. Furthermore, KCl(g) and K2CO3 were important predecessors to form K2SO4 and K2SiO3 in combustion by theory analysis. (C) 2017 Elsevier Ltd. All rights reserved.
机译:用K,Si-Righed稻草和煤与K,Si-Righed稻草和煤的共燃燃烧实验在600-1000摄氏度的水平管炉中进行。通过电感耦合等离子体分析燃烧产物的燃烧过程中的迁移和转化。 (ICP),X射线粉末衍射(XRD),扫描电子显微镜(SEM)和热力学计算软件。结果表明,高温改善了K至气相的释放,并促进了底灰中不溶性k化合物的产生。 Kin稻草主要形成KCl,K2SIO3,煤气燃烧和共燃烧的同时是硅铝酸盐的形式。在1000℃下,在稻草的灰烬中观察到严重的熔化现象,降低k释放虽然共燃烧可以通过有效地提高灰分的熔化温度来缓解这种情况。共燃烧过程中的主要化学反应是从煤灰迁移到稻草灰,形成相对稳定和高熔点的铝硅酸钾而不是钾之前报道的硫酸盐。此外,KCl(g)和K2CO3是通过理论分析燃烧形成K2SO4和K2SIO3的重要前身。(c)2017年Elsevier有限公司保留所有权利。

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