Microwave plasma assisted pyrolysis of refuse derived fuels

P. Khongkrapan, P. Thanompongchart, N. Tippayawong, T. Kiatsiriroat
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引用次数: 16

Abstract

This work combined plasma reactivity and pyrolysis for conversion of solid wastes. Decomposition of refuse derived fuel (RDF) and its combustible components (paper, biomass, and plastic) in an 800 W microwave plasma reactor was investigated at varying argon flow rates of 0.50 to 1.25 lpm for 3 minutes. The characteristic bright light emission of plasma was observed with calculated maximum power density of about 35 W/cm3. The RDF and its components were successfully converted into char and combustible gas. The average char yield was found to be 12–21% of the original mass, with a gross calorific value of around 39 MJ/kg. The yield of the product gas was in the range 1.0–1.7 m3/kg. The combustible gas generated from the pyrolysis of the RDF contained about 14% H2, 66% CO, and 4% CH4 of the detected gas mass, with a heating value of 11 MJ/m3. These products are potentially marketable forms of clean energy.
微波等离子体辅助垃圾衍生燃料的热解
这项工作结合了等离子体反应性和热解转化固体废物。在800w微波等离子体反应器中,以0.50 ~ 1.25 lpm不同的氩气流量持续3分钟,研究了垃圾衍生燃料(RDF)及其可燃组分(纸、生物质和塑料)的分解。在计算出的最大功率密度约为35 W/cm3时,观察到等离子体的特征性亮光发射。将RDF及其组分成功转化为炭和可燃气体。平均炭产率为原始质量的12-21%,总热值约为39 MJ/kg。产物气产率在1.0 ~ 1.7 m3/kg之间。RDF热解产生的可燃气体约占检测气体质量的14% H2、66% CO和4% CH4,热值为11 MJ/m3。这些产品是清洁能源的潜在销售形式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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