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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The effects of catalysts on the conversion of organic matter and bio-fuel production in the microwave pyrolysis of sludge at different temperatures
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The effects of catalysts on the conversion of organic matter and bio-fuel production in the microwave pyrolysis of sludge at different temperatures

机译:催化剂对不同温度微波热解中有机质和生物燃料生产转化的影响

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Adding catalyst could improve the yields and qualities of bio-gas and bio-oil, and realize the oriented production. Results showed that the catalytic gas-production capacities of CaO were higher than those of Fe2O3, and the bio-gas yield at 800 degrees C reached a maximum of 35.1%. Because the polar cracking active sites of CaO reduced the activation energy of the pyrolysis reaction and resulted in high catalytic cracking efficiencies. In addition, the quality of bio-oil produced by CaO was superior to that by Fe2O3, although the bio-oil yield of CaO was relatively weak. The light bio-fuel oriented catalytic pyrolysis could be realized when adding different catalysts. At 800 degrees C, CaO was 45% higher than Fe2O3 in aspect of H-2 production while Fe2O3 was 103% higher than CaO in aspect of CH4 production. Therefore, CaO was more suitable for H-2 production and Fe2O3 was more suitable for CH4 production. (C) 2017 Elsevier Ltd. All rights reserved.
机译:加入催化剂可以改善生物气体和生物油的产率和品质,并实现导向的生产。 结果表明,CaO的催化气体生产能力高于Fe2O3,800℃的生物气产率最高为35.1%。 因为CaO的极性裂化活性位点降低了热解反应的活化能,并导致高催化裂化效率。 此外,Cao产生的生物油的质量优于Fe2O3,尽管CaO的生物油产率相对较弱。 当添加不同的催化剂时,可以实现光生物燃料取向催化热解。 在800℃下,CaO在H-2生产方面高于Fe 2 O 3,而Fe2O3在CH 4生产方面的CAO高于CAO。 因此,CaO更适合于H-2生产,并且Fe2O3更适合于CH 4生产。 (c)2017 Elsevier Ltd.保留所有权利。

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