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Syngas production from waste tires using a hybrid filtration reactor under different gasifier agents

机译:在不同气化剂下使用混合过滤反应器从废轮胎生产合成气

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This paper investigates the syngas production in a hybrid filtration reactor composed of aleatory waste tires particles and alumina spheres. Parameters as reaction wave temperature, propagation rate and gaseous and solid emissions products were measured as a function of gasifier agents (air and steam) and natural gas presence. Hydrogen and carbon monoxide concentrations in the reaction products were determined by gas chromatography and solid emissions by X-ray spectrometry. Downstream reaction zone propagation was observed in all experiments yielding high reaction temperature (1,100-1,500 K) responsible of: (1) generating H-2 and CO as main products of the process for different gasifier agents and natural gas presence, and (2) decreased solid particles emissions in comparison with temperatures below 1,100 K. X-ray spectrometry with total reflection was able to detect peaks of Zn and Fe, thought to originate from waste tires particles as well as from reactors insulation material. It was detected that pure air had the best performance as a gasifier agent.
机译:本文研究了由废旧轮胎颗粒和氧化铝球组成的混合过滤反应器中的合成气生产。测量了作为反应波温度,传播速率以及气体和固体排放产物的参数,这些参数是气化剂(空气和蒸汽)和天然气存在的函数。通过气相色谱法测定反应产物中的氢气和一氧化碳浓度,并通过X射线光谱法测定固体排放物。在所有实验中均观察到下游反应区扩散,从而产生高反应温度(1,100-1,500 K),其原因是:(1)生成H-2和CO作为工艺的主要产物,用于不同的气化剂和天然气的存在,以及(2)与低于1100 K的温度相比,减少了固体颗粒的排放。具有全反射的X射线光谱仪能够检测到Zn和Fe的峰,认为这是由于废轮胎颗粒以及反应堆绝缘材料引起的。据检测,纯净空气作为气化剂具有最佳性能。

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