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Kinetic model on coke oven gas with steam reforming 被引量:1

Kinetic model on coke oven gas with steam reforming
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摘要 The effects of factors such as the molar ratio of H2O to CH4 (n(H2O)/n(CH4)), methane conversion temperature and time on methane conversion rate were investigated to build kinetic model for reforming of coke-oven gas with steam. The results of experiments show that the optimal conditions for methane conversion are that the molar ratio of H2O to CH4 varies from 1.1 to 1.3 and the conversion temperature varies from 1 223 to 1 273 K. The methane conversion rate is more than 95% when the molar ratio of H2O to CH4 is 1.2, the conversion temperature is above 1 223 K and the conversion time is longer than 0.75 s. Kinetic model of methane conversion was proposed. All results demonstrate that the calculated values by the kinetic model accord with the experimental data well, and the error is less than 1.5%. The effects of factors such as the molar ratio of H2O to CH4 (n(H2O)/n(CH4)), methane conversion temperature and time on methane conversion rate were investigated to build kinetic model for reforming of coke-oven gas with steam. The results of experiments show that the optimal conditions for methane conversion are that the molar ratio of H2O to CH4 varies from 1.1 to 1.3 and the conversion temperature varies from 1 223 to 1 273 K. The methane conversion rate is more than 95% when the molar ratio of H2O to CH4 is 1.2, the conversion temperature is above 1 223 K and the conversion time is longer than 0.75 s. Kinetic model of methane conversion was proposed. All results demonstrate that the calculated values by the kinetic model accord with the experimental data well, and the error is less than 1.5%.
出处 《Journal of Central South University of Technology》 EI 2008年第1期127-131,共5页 中南工业大学学报(英文版)
基金 Project(291054) supported by Postdoctoral Fund of China
关键词 coke oven gas steam reforming kinetic model conversion rate 焦炭炉气 蒸气重整 动力学模型 转化率
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  • 1崔洪,徐秀峰,顾永达.煤焦CO_2气化的热重分析研究(Ⅱ)程序升温热重研究[J].煤炭转化,1996,19(3):82-85. 被引量:10
  • 2Ye D P,Agnew J B,Zhang D K.Gasification of a south Australian low-rank coal with carbon dioxide and steam:kinetics and ractivity studies [J].Fuel,1998,77:1 209~ 1 219.
  • 3Mackenzie R C.Differential thermal analysis:fundamental aspect,Vol.1 [M].London:Academic Press,1970.
  • 4Starink M J.The determination of activation energy from linear heating rate experiments:a comparison of the accuracy of isoconversion methods [ J].Thermochimica Acta,2003,404:163 ~176.
  • 5Edwige Sima-Ella,Gang Yuan,Tim Mays.A simple kinetic analysis to determine the intrinsic reactivity of coal chars [ J ].Fuel,2005,84:1 920 ~ 1 925.
  • 6朱廷钰,汤忠,黄戒介,张建民,王洋.煤温和气化特性的热重研究[J].燃料化学学报,1999,27(5):420-423. 被引量:14

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