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In-situ experimental study of CO2 gasification of char particles on molten slag surface

机译:熔渣表面焦炭颗粒CO2气化的原位实验研究

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摘要

In an entrained-flow gasifier, the captured char particles, which were prolonged the residence time on the molten slag surface, continued to react with the gaseous reactant and affected the carbon conversion of a gasifier. In this paper, we applied a high temperature stage microscope (HTSM) and an ImageJ software to study the gasification characteristics of char particles with CO2 on the molten slag. The results showed that the gasification reaction of char particles on the molten slag was promoted significantly, compared to the original char gasification. The section area of chars on the molten slag surface shrank obviously, and the time for the complete carbon conversion on slag was nearly the half of the results without slag. A high value of reactivity index was measured for the char samples on the molten slag. The heat transfer interactions between the slag and the char lead to a high particle temperature on the molten slag. The heat transfer rate between the slag and the char particle was dominant for the promotion of the endothermic reaction. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在气流床气化炉中,被捕获的焦炭颗粒被延长了在熔渣表面上的停留时间,继续与气态反应物反应并影响了气化炉的碳转化率。在本文中,我们使用高温台显微镜(HTSM)和ImageJ软件来研究焦炭颗粒与CO2在熔融矿渣上的气化特性。结果表明,与原始焦炭气化相比,焦炭颗粒在熔渣上的气化反应得到了显着促进。熔融炉渣表面上的焦炭截面积明显缩小,炉渣上完全碳转化的时间几乎是无炉渣结果的一半。对于熔融炉渣上的焦炭样品,测得的反应性指数较高。炉渣与炭之间的传热相互作用导致熔融炉渣上的颗粒温度升高。炉渣与炭颗粒之间的传热速率是促进吸热反应的主导。 (C)2015 Elsevier Ltd.保留所有权利。

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