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Characteristics of a CaSO4 oxygen carrier for chemical-looping combustion: reaction with polyvinylchloride pyrolysis gases in a two-stage reactor

机译:用于化学循环燃烧的CaSO4氧气载体的特性:在两级反应器中与聚氯乙烯热解气体反应

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摘要

Chemical-looping combustion (CLC), which is a promising technique that includes an inherent separation of CO2 may reduce the generation of dioxins in municipal solid waste (MSW) disposal because in a CLC system, no free oxygen is available for incineration process. Polyvinylchloride (PVC) and kitchen garbage are the main chlorine substances in MSW. The reaction between PVC pyrolysis gas and a calcium (Ca)-based oxygen carrier was investigated in a two-stage reactor in this study. The thermal decomposition and reduction/oxidation cycle behaviors of the oxygen carrier were investigated by analyzing methane (CH4) using a thermogravimetric analyzer (TGA). The characteristics of CaSO4/Fe2O3 oxygen carrier were determined by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The results showed that the addition of Fe2O3 into CaSO4 can enhance the reaction rate, and also that the CaSO4/Fe2O3 oxygen carrier showed a good heat stability at the temperature of 900 degrees C. The reduction/oxidation cycles confirmed that the decomposition of the CaSO4/Fe2O3 oxygen carrier is usually accompanied by some side reactions. These side reactions could cause the loss of their regeneration ability. The CaSO4/Fe2O3 oxygen carrier successfully reacted with PVC pyrolysis gas in a two-stage reactor and the complete reaction ratio of m(PVC) to m(oxygen carrier) is 8. The research documented herein provides a useful reference for the utilization of MSWs.
机译:化学循环燃烧(CLC)是一项很有前途的技术,其中包括固有的CO2分离,可减少城市固体废物(MSW)处置中二恶英的产生,因为在CLC系统中,没有游离氧可用于焚烧过程。聚氯乙烯(PVC)和厨房垃圾是城市生活垃圾中的主要氯物质。在此研究的两阶段反应器中研究了PVC热解气体与钙(Ca)基氧气载体之间的反应。通过使用热重分析仪(TGA)分析甲烷(CH4),研究了氧载体的热分解和还原/氧化循环行为。通过X射线衍射(XRD)和扫描电子显微镜(SEM)确定CaSO4 / Fe2O3氧载体的特性。结果表明,向CaSO4中添加Fe2O3可以提高反应速率,并且CaSO4 / Fe2O3氧载体在900℃的温度下表现出良好的热稳定性。还原/氧化循环证实了CaSO4的分解/ Fe2O3氧载体通常伴有一些副反应。这些副反应可能导致其再生能力的丧失。 CaSO4 / Fe2O3氧载体在两级反应器中成功与PVC热解气体反应,m(PVC)与m(氧载体)的完全反应比为8。本文记录的研究为MSW的利用提供了有用的参考。

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