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Experimental study on conversion path of sulfur in coal slime preheating combustion

机译:煤粘液预热燃烧中硫的转化路径的实验研究

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摘要

Abstract In this study, coal slime was mainly utilized to conduct experiments on a 30?kW preheating combustion test rig to analyze the conversion pathway of sulfur during the experiment, aiming at reducing slime pollution, controlling sulfur emission reasonably, and providing theoretical support for the preheating combustion technology. The results showed that after the coal slime was preheated, a large number of elements were released. The maximum release rates for?H and S were 94.0% and 73.3%, respectively. The released S was converted into the sulfur-containing gases like H2S, COS, CS2, and the rest existed in the solid in the five forms of mercaptan, thiophene, sulfoxide, sulfone, and sulfate. Besides, during the combustion process, the gas was oxidized continuously and finally converted into SO2, leaving only the sulfate in the fly ash. In the preheating combustion process, 26.7% of the S was released from the coal, 73.3% of the S was retained in the semi-coke, and the final SO2 emission concentration of combustion was 959?ppm.
机译:摘要在这项研究中,煤粘液主要用于在30 kW预热燃烧测试钻机上进行实验,以分析实验期间硫的转化途径,旨在减少粘液污染,合理地控制硫酸盐,并为理论支持提供理论支持预热燃烧技术。结果表明,在预热煤粘液后,释放了大量元素。 h和s的最大释放率分别为94.0%和73.3%。释放的S被转化为含硫的气体,例如H2S,COS,CS2,其余的在固体中存在于五种形式的默西坦,硫代,硫苯,亚磺氧化物,硫酸盐和硫酸盐中。此外,在燃烧过程中,气体被连续氧化并最终转化为SO2,仅将硫酸盐留在粉煤灰中。在预热燃烧过程中,煤炭从煤中释放了26.7%,其中73.3%的s保留在半科克中,最终的SO2燃烧浓度为959?ppm。

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