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首页> 外文期刊>Waste Management >Upgrading gas and oil products of the municipal solid waste pyrolysis process by exploiting in-situ interactions between the volatile compounds and the char
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Upgrading gas and oil products of the municipal solid waste pyrolysis process by exploiting in-situ interactions between the volatile compounds and the char

机译:通过利用挥发性化合物与炭之间的原位相互作用来提高城市固体废物热解过程中的天然气和石油产品

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摘要

The gas and oil product derived from municipal solid waste (MSW) pyrolysis was upgraded by utilizing the interaction between the volatile compounds and the char and the mechanism involved is explored. The influences of operation parameters, including interaction temperature, char/volatiles mass ratio (C/ V) and gas hourly space velocity (GHSV) of the volatiles on the distribution and property of the upgraded products were investigated. The results showed that the higher interaction temperature, higher C/V and lower GHSV favored the conversion of condensable volatiles into gas products, thus increasing the gas yield in the outlet stream. The highest gas yield (44.14 wt%) was obtained at 700 ℃ with the natural C/V ratio (0.8) and GHSV, which was twice of the gas yield in the volatiles. The chemical energy portion of gas increased to 8065 kJ/kg_(maw) from 3209 kJ/kg_(msw) at this condition. Syngas with H_2/CO molar ratio of around 2 can be obtained at 700 ℃ with C/V ratio of 0.8 or at 600 ℃ with higher C/V ratios (C/V = 1.5-2.2). Oxygenates and acidity of the reformed oil products decreased; but monoaromatics and light pol-yaromatics concentration increased greatly. Heavy polycyclic aromatic hydrocarbons (PAHs) in the liquid products were degraded after volatiles/hot char interaction. Suitable conditions can be varied and recommended for obtaining different desired high-quality products based on this process.
机译:利用挥发性化合物与焦炭之间的相互作用,提纯了城市生活垃圾热解产生的天然气和石油产品,并探讨了其机理。研究了操作参数,包括相互作用温度,炭/挥发物的质量比(C / V)和挥发物的气时空速(GHSV)对提质产品的分布和性能的影响。结果表明,较高的相互作用温度,较高的C / V和较低的GHSV有利于将可冷凝挥发物转化为气体产物,从而提高了出口物流的气体产率。在700℃时最高的产气率(44.14 wt%)具有天然C / V比(0.8)和GHSV,是挥发物产气的两倍。在此条件下,气体的化学能部分从3209 kJ / kg_(msw)增加到8065 kJ / kg_(maw)。在700℃C / V比为0.8时或在600℃C / V比较高时(C / V = 1.5-2.2),可获得H_2 / CO摩尔比约为2的合成气。重整油产品的含氧量和酸度下降;但是单芳烃和轻多芳烃的浓度大大增加。挥发物/热炭相互作用后,液体产品中的重质多环芳烃(PAH)降解。可以更改合适的条件,并建议根据此过程获得不同的所需高质量产品。

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