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Investigation of oxy-fuel combustion for methane and acid gas in a diffusion flame    

文献类型:期刊文献

中文题名:Investigation of oxy-fuel combustion for methane and acid gas in a diffusion flame

作者:Songling Guo[1];Xun Tao[1];Fan Zhou[1];Mengyan Yu[1];Yufan Wu[1];Yunfei Gao[1];Lu Ding[1];Fuchen Wang[1]

机构:[1]Institute of Clean Coal Technology,East China University of Science and Technology,Shanghai 200237,China

年份:2024

卷号:65

期号:1

起止页码:106

中文期刊名:Chinese Journal of Chemical Engineering

外文期刊名:中国化学工程学报(英文版)

收录:CSTPCD;;Scopus;CSCD:【CSCD2023_2024】;PubMed;

基金:supported by the National Natural Science Foundation of China(21978092).

语种:英文

中文关键词:Acid gas;Methane;Oxy-fuel combustion;Oxidation;Chemical analysis;Carbon sulfides

摘要:Co-combustion of methane(CH4)and acid gas(AG)is required to sustain the temperature in Claus reaction furnace.In this study,oxy-fuel combustion of methane and acid gas has been experimentally studied in a diffusion flame.Three equivalence ratios(ER=1.0,1.5,2.0)and CH_(4)-addition ratios(CH_(4)/AG=0.3,0.5,0.7)were examined and the flame was interpreted by analyzing the distributions of the temperature and species concentration along central axial.CH_(4)-AG diffusion flame could be classified into three sections namely initial reaction,oxidation and complex reaction sections.Competitive oxidation of CH_(4)and H_(2)S was noted in the first section wherein H_(2)S was preferred and both were mainly proceeding decomposition and partial oxidation.SO_(2)was formed at oxidation section together with obvious presence of H2 and CO.However,H2 and CO were inclined to be sustained under fuel rich condition in the complex reaction section.Reducing ER and increasing CH4/AG contributed to higher temperature,H_(2)S and CH_(4)oxidation and CO_(2)reactivity.Hence a growing trend for CH_(4)and AG to convert into H_(2),CO and SO_(2)could be witnessed.And this factor enhanced the generation of CS2 and COS in the flame inner core by interactions of CH4 and CO_(2)with sulfur species.COS was formed through the interactions of CO and CO_(2)with sulfur species.The CS_(2)production directly relied on reaction of CH_(4)with sulfur species.The concentration of COS was greater than CS_(2)since CS_(2)was probably inhibited due to the presence of H_(2).COS and CS_(2)could be consumed by further oxidation or other complex reactions.

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