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微波热解稻草和狼尾草。

Microwave torrefaction of rice straw and Pennisetum.

机构信息

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

出版信息

Bioresour Technol. 2012 Nov;123:1-7. doi: 10.1016/j.biortech.2012.08.006. Epub 2012 Aug 10.

Abstract

Microwave torrefaction of rice straw and pennisetum was researched in this article. Higher microwave power levels contributed to higher heating rate and reaction temperature, and thus produced the torrefied biomass with higher heating value and lower H/C and O/C ratios. Kinetic parameters were determined with good coefficients of determination, so the microwave torrefaction of biomass might be very close to first-order reaction. Only 150W microwave power levels and 10min processing time were needed to meet about 70% mass yield and 80% energy yield for torrefied biomass. The energy density of torrefied biomass was about 14% higher than that of raw biomass. The byproducts (liquid and gas) possessed about 30% mass and 20% energy of raw biomass, and they can be seen as energy sources for heat or electricity. Microwave torrefaction of biomass could be a competitive technology to employ the least energy and to retain the most bioenergy.

摘要

本文研究了微波热解稻草和狼尾草。较高的微波功率水平有助于提高加热速率和反应温度,从而产生具有更高热值、更低 H/C 和 O/C 比的热解生物质。通过良好的确定系数确定了动力学参数,因此生物质的微波热解可能非常接近一级反应。只需 150W 的微波功率水平和 10 分钟的处理时间,就可以获得约 70%的质量产率和 80%的能量产率的热解生物质。热解生物质的能量密度比原始生物质高约 14%。副产物(液体和气体)约占原始生物质质量的 30%和能量的 20%,可视为热能或电能的能源。生物质的微波热解可能是一种具有竞争力的技术,可以用最少的能量并保留最多的生物能。

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