徐 青, 凌长明, 李 军. 生活垃圾的微波裂解特性[J]. 农业工程学报, 2012, 28(25): 192-196.
    引用本文: 徐 青, 凌长明, 李 军. 生活垃圾的微波裂解特性[J]. 农业工程学报, 2012, 28(25): 192-196.
    Xu Qing, Ling Changming, Li Jun. Property of microwave pyrolysis of municipal solid waste[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(25): 192-196.
    Citation: Xu Qing, Ling Changming, Li Jun. Property of microwave pyrolysis of municipal solid waste[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(25): 192-196.

    生活垃圾的微波裂解特性

    Property of microwave pyrolysis of municipal solid waste

    • 摘要: 为了研究生活垃圾的微波裂解特性,采用微波设备对城市生活垃圾(MSW)进行裂解处理。研究了温度对裂解产物、产气规律和气体组分的影响规律。结果表明:垃圾在微波炉内裂解时升温速率很快,微波裂解加快了垃圾完成裂解的时间。在该研究范围内当裂解温度由400℃升高到600℃时,固体产物的质量由55%减少到26%,液体产物的产生量由21.52%增加到27.83%,裂解气的质量回收率由12%升高到35%。利用气质联用设备对所得产物进行分析,裂解气主要含有H2、CO、CO2、CH4和CnHm等气体成分,随温度升高,甲烷含量逐渐增大,CnHm含量500℃最高,H2在温度低于450℃时析出量很低,550℃之后H2体积分数迅速增加。该研究结果可为垃圾的资源化利用提供参考。

       

      Abstract: To understand the property of microwave pyrolysis of municipal solid waste, microwave pyrolyzer made by our lab was introduced in this study. The effects of microwave pyrolysis temperature on pyrolysis products, regulation of gas yield and the composition of the gas were investigated. The results showed that the temperature of municipal solid waste under microwave pyrolysis was quickly increased. Microwave pyrolysis of municipal solid waste exhibited short pyrolysis time. The solid component was decreased from 55% to 26%, the liquid component was increased from 21.52% to 27.83%, the pyrolytic gas component was increased from 12% to 35% with microwave pyrolysis temperature increased from 400℃ to 600℃. The gaseous products were composed of hydrogen, carbon monoxide, methane, carbon dioxide and hydrocarbon, et al. Methane content was increased with the increasing of temperature. The content of hydrocarbon reached at the top in 500℃. Hydrogen content was low in 450℃, and quickly improved with the temperature above 550℃.Those results obtained from microwave pyrolysis provide foundational data for the new utilization of municipal solid waste resources.

       

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