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玉米秸秆微波热解的催化和大气效应。

Catalytic and atmospheric effects on microwave pyrolysis of corn stover.

机构信息

Graduate Institute of Environmental Engineering, National Taiwan University, 71 Chou-Shan Rd., Taipei 106, Taiwan, ROC.

出版信息

Bioresour Technol. 2013 Mar;131:274-80. doi: 10.1016/j.biortech.2012.12.177. Epub 2013 Jan 4.

Abstract

Corn stover, which is one of the most abundant agricultural residues around the world, could be converted into valuable biofuels and bio based products by means of microwave pyrolysis. After the reaction at the microwave power level of 500W for the processing time of 30min, the reaction performance under N2 atmosphere was generally better than under CO2 atmosphere. This may be due to the better heat absorbability of CO2 molecules to reduce the heat for stover pyrolysis. Most of the metal-oxide catalysts effectively increased the maximum temperature and mass reduction ratio but lowered the calorific values of solid residues. The gas most produced was CO under N2 atmosphere but CO2 under CO2 atmosphere. Catalyst addition lowered the formation of PAHs and thus made liquid products less toxic. More liquid products and less gas products were generated when using the catalysts possibly due to the existence of the Fischer-Tropsch synthesis.

摘要

玉米秸秆是世界上最丰富的农业废弃物之一,可以通过微波热解转化为有价值的生物燃料和生物基产品。在微波功率为 500W、处理时间为 30min 的条件下反应后,在 N2 气氛下的反应性能通常优于在 CO2 气氛下。这可能是由于 CO2 分子具有更好的热吸收能力,从而减少了秸秆热解所需的热量。大多数金属氧化物催化剂有效地提高了最大温度和质量还原比,但降低了固体残渣的热值。在 N2 气氛下产生的主要气体是 CO,但在 CO2 气氛下是 CO2。催化剂的添加降低了多环芳烃的形成,从而使液体产物的毒性降低。使用催化剂时会产生更多的液体产物和更少的气体产物,这可能是由于费托合成的存在。

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