首页> 外文会议>International thermal treatment technologies(IT3) amp; hazardous waste combustors (HWC) joint conference 2009 >An investigation into the syngas production enhancement from municipal solid waste gasification under various CO_2 concentration atmospheres
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An investigation into the syngas production enhancement from municipal solid waste gasification under various CO_2 concentration atmospheres

机译:不同CO_2浓度气氛下城市垃圾气化合成气产量的研究。

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Developing environmentally benign and energy efficient ways for the handling and disposal of Municipal Solid Waste (MSW) is becoming more of a concern and waste management issues are becoming more evident. The MSW gasification process to produce syngas is a promising candidate for MSW disposal while yielding a versatile product. Due to the heterogeneous nature of MSW, experimental work has yet to elucidate the mechanism responsible for final gaseous production. Currently, the MSW gasification process has been characterized thermo-gravimetrically under various heating rates and experimental atmospheres, which enables the optimization of syngas production and char burnout. This preliminary data shows that with any concentration of carbon dioxide in the atmosphere the residual char drops from about 20% of the original mass (in an inert atmosphere) to about 5%, corresponding to a significant amount of carbon monoxide production (a 20mg sample with 100ml/min of purge gas showed 0.7% CO at 825℃). To extend this understanding to a more practical level, MSW samples have been tested in a Drop Tube Reactor (DTR) at a temperature range of 500 to 1000℃ and at various atmospheres with carbon dioxide concentrations of 0% to 30%. The release of all chemicals from the reactor has been determined using GC/MS and μ-GC, which enables the generation ofrndata for understanding the overall MSW gasification process. Additionally, the enhancement of syngas under various carbon dioxide atmospheres may provide a methodology for Green House Gas (GHG) reduction.
机译:开发用于处理和处置城市固体废物(MSW)的环境友好和节能的方法变得越来越令人关注,废物管理问题也越来越明显。用于生产合成气的MSW气化工艺是MSW处置的有前途的候选者,同时可产生多种用途的产品。由于城市固体废弃物的异质性,实验工作尚未阐明导致最终气体产生的机理。目前,MSW气化过程已在各种加热速率和实验气氛下进行了热重分析,从而能够优化合成气的生产和烧焦。初步数据表明,在大气中任何浓度的二氧化碳下,残留的焦炭从原始质量的约20%(在惰性气氛中)下降到约5%,这对应于大量的一氧化碳产生(20mg样品100 ml / min的吹扫气体在825℃时显示0.7%的CO)。为了将这种理解扩展到更实际的水平,已经在滴管反应器(DTR)中在500至1000℃的温度范围以及二氧化碳浓度为0%至30%的各种气氛下对MSW样品进行了测试。已使用GC / MS和μ-GC确定了反应器中所有化学品的释放量,这使得能够生成rndata来了解整个MSW气化过程。另外,在各种二氧化碳气氛下增强合成气可以提供减少温室气体(GHG)的方法。

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