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城市生活垃圾催化气化制取富氢气体的研究
  • 期刊名称:环境工程
  • 时间:0
  • 页码:97-101
  • 语言:中文
  • 分类:X705[环境科学与工程—环境工程] TQ546[化学工程—煤化学工程]
  • 作者机构:[1]华中科技大学环境科学与工程学院,武汉430074
  • 相关基金:国家自然科学基金项目(20876066);湖北省科技攻关项目(2007AA204B01);湖北省农业科技成果转化基金(2008GB2D100208).
  • 相关项目:外热式城市生活垃圾裂解催化制氢过程机理研究
中文摘要:

采用下吸式固定床气化炉,以煅烧白云石为催化剂水蒸气气化城市生活垃圾(MSW)有机组分,在气化温度为750-950℃,S/M(水蒸气和垃圾物料进料质量比)为0.57-1.28时,探讨了催化剂种类、气化温度和S/M等因素对富氢气体成分、产氢率、潜在产氢率、低位热值和碳转化率等的影响。较高气化温度有利于富氢气体的生成,增加碳转化率和产气率,但会降低富氢气体的热值;在实验条件下,富氢气体中H2体积分数最高达53.29%,产氢率达到7.13-46.52mol/kg,潜在产氢率为55.48-90.11mol/kg;镍基催化剂催化效果优于煅烧白云石,能大幅增加H2含量,使焦油在850℃以上完全分解。

英文摘要:

In the present study the catalytic gasification of MSW to produce hydrogen-rich gas in a laboratory scale using downstream fixed bed gasifier with calcined dolomite catalyst was investigated. The influences of the catalysts, gasifier temperature and steam to MSW ratio (S/M) on the gas composition, hydrogen yield, potential hydrogen yield, etc. were studied over the temperature range of 750- 950 ℃, with steam to MSW ratio (S/M) in the range of 0.57- 1.28. Over the ranges of experimental conditions examined, higher temperature favored higer H2 content, and increased carbon conversion efficiency, gas yield, but decreased LHV of hydrogen-rich gas. The highest content of H2 was 53.29%, hydrogen yield ranged from 7.13 to 46.52 mol/kg, and hydrogen potential yield varied from 55,48- 90.11 mol/kg. Nickel-based catalyst and calcined dolomite revealed significant catalytic performance, and significantly increased H2 content and completely decomposed tar.

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