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废轮胎的蒸汽气化:工艺温度对产率和产物组成的影响。

Steam gasification of waste tyre: influence of process temperature on yield and product composition.

机构信息

UTTP NANO - C.R. ENEA Portici, P.le E. Fermi, 1 Loc. Granatello, 80055 Portici (NA), Italy.

出版信息

Waste Manag. 2013 Mar;33(3):672-8. doi: 10.1016/j.wasman.2012.05.041. Epub 2012 Jun 30.

Abstract

An experimental survey of waste tyre gasification with steam as oxidizing agent has been conducted in a continuous bench scale reactor, with the aim of studying the influence of the process temperature on the yield and the composition of the products; the tests have been performed at three different temperatures, in the range of 850-1000°C, holding all the other operational parameters (pressure, carrier gas flow, solid residence time). The experimental results show that the process seems promising in view of obtaining a good quality syngas, indicating that a higher temperature results in a higher syngas production (86 wt%) and a lower char yield, due to an enhancement of the solid-gas phase reactions with the temperature. Higher temperatures clearly result in higher hydrogen concentrations: the hydrogen content rapidly increases, attaining values higher than 65% v/v, while methane and ethylene gradually decrease over the range of the temperatures; carbon monoxide and dioxide instead, after an initial increase, show a nearly constant concentration at 1000°C. Furthermore, in regards to the elemental composition of the synthesis gas, as the temperature increases, the carbon content continuously decreases, while the oxygen content increases; the hydrogen, being the main component of the gas fraction and having a small atomic weight, is responsible for the progressive reduction of the gas density at higher temperature.

摘要

采用蒸汽作为氧化剂对废轮胎进行了连续的中试规模气化实验研究,目的是研究工艺温度对产物产率和组成的影响。在 850-1000°C 的三个不同温度下进行了测试,同时保持所有其他操作参数(压力、载气流速、固体停留时间)不变。实验结果表明,该工艺有望获得高质量的合成气,表明较高的温度会导致更高的合成气产量(86wt%)和更低的炭产率,这是由于温度升高促进了固-气相间的反应。较高的温度会导致更高的氢气浓度:氢气含量迅速增加,达到高于 65%v/v 的值,而甲烷和乙烯的浓度则在整个温度范围内逐渐降低;一氧化碳和二氧化碳则在最初增加后,在 1000°C 时几乎保持恒定浓度。此外,就合成气的元素组成而言,随着温度的升高,碳含量不断降低,而氧含量增加;氢气是气体部分的主要成分,分子量较小,是导致气体密度在较高温度下逐渐降低的原因。

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