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小麦秸秆的微波热解:产物分布与生成机理。

Microwave pyrolysis of wheat straw: product distribution and generation mechanism.

机构信息

National engineering Laboratory of coal-fired pollution reduction, Shandong Provincial Key Lab of Energy Carbon Reduction & Resource Utilization, Shandong University, No. 17923 Jingshi Road, Jinan 250061, PR China.

National engineering Laboratory of coal-fired pollution reduction, Shandong Provincial Key Lab of Energy Carbon Reduction & Resource Utilization, Shandong University, No. 17923 Jingshi Road, Jinan 250061, PR China.

出版信息

Bioresour Technol. 2014 Apr;158:278-85. doi: 10.1016/j.biortech.2014.01.094. Epub 2014 Jan 31.

Abstract

Microwave pyrolysis of wheat straw is studied, combined with analysis of products, the distribution and generation pathway of products are investigated. Only a small amount of volatiles released when microwave pyrolysis of pure straw. Mixtures of adding CuO and Fe3O4 can pyrolyze, and the majority in pyrolysis products is in liquid-phase. Severe pyrolysis occur after adding carbon residue, the CO content in pyrolysis gas products is high, and the maximum volume content of H2 can exceed 35 vol.%. The high-temperature is helpful for increasing the yield of combustible gas in gaseous products, in particular the H2 production, but also helpful for improving the conversion of sample. Pyrolysis is carried out layer by layer from the inside to outside. As the internal material firstly pyrolyze and pyrolysis products released pass through the low temperature zone, the chance of occurrence of secondary reactions is reduced.

摘要

研究了小麦秸秆的微波热解,结合产物分析,考察了产物的分布和生成途径。当纯秸秆进行微波热解时,只有少量挥发物释放。添加 CuO 和 Fe3O4 的混合物可以进行热解,并且大部分热解产物处于液相中。添加碳残渣后会发生严重热解,热解气产物中的 CO 含量高,最大体积含量的 H2 可超过 35 vol.%。高温有利于增加气态产物中可燃气体的产率,特别是 H2 的生成,也有利于提高样品的转化率。热解从内到外逐层进行。由于内部物质首先热解并且释放的热解产物通过低温区,因此二次反应的发生机会减少。

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