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Detailed kinetic modeling of H2S formation during fuel-rich combustion of pulverized coal

机译:煤粉富含燃料燃烧过程中H2S形成的详细动力学建模

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The paper presents a detailed kinetic study on H2S formation during fuel-rich combustion of pulverized coal via tube furnace experiment and kinetic analysis with Chemkin. A new detailed kinetic model involving 34 species and 115 reactions was developed, with emphasis on CS2 as a source for H2S. The novel model was validated using experimental data with respect to the concentration distributions of H-2, CO, H2O, CO2, SO2, H2S, COS and CS2. Sensitivity analysis shows that H2S concentration was very sensitive to reactions (2) H2S + H = SH + H-2, (89) SO2 + CO = SO + CO2, (104) COS + H2O = H2S + CO2, (62) HOSO (+M) = H + SO2 (+M), (103) CS2 + H2O = H2S + COS, etc. Also, SH, S, and SO were the key free radicals for H2S production. Rate of production analysis (ROP) were also performed, which indicate that SH was the most important precursor of H2S. Based on the detailed kinetic model and ROP analysis, the simplified reaction path of H2S formation was constructed. Finally, the new model was compared with the Leeds University sulfur chemistry model. The two models have the same key free radicals and four major elementary reactions. The main difference is that CS2 was a notable source for H2S in our model targeted for coal combustion, and should be given special attention.
机译:本文通过管式炉试验和Chemin分析粉煤煤富含煤粉燃烧过程中H2S形成的详细动力学研究。涉及34种和115个反应的新详细的动力学模型,重点是CS2作为H2S的源。使用实验数据相对于H-2,Co,H 2 O,CO 2,SO2,H 2 S,COS和CS2的浓度分布进行验证新型模型。敏感性分析表明,H 2 S浓度对反应(2)H 2 S + H = SH + H-2,(89)SO2 + CO = SO + CO2,(104)COS + H 2 O = H 2 S + CO2,(62)HOSO (+ M)= H + SO2(+ M),(103)CS2 + H 2 O = H 2 S + COS等。还,SH,S等是H2S生产的关键自由基。还进行了生产分析(ROP),表明SH是H2S最重要的前体。基于详细的动力学模型和ROP分析,构建了H2S形成的简化反应路径。最后,与利兹大学硫化物化学模型进行了比较新模型。这两种型号具有相同的密钥自由基和四个主要的基本反应。主要区别在于,CS2是我们针对煤燃烧的模型中H2S的显着源,应特别注意。

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