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通过添加锯末提高废橡胶热解油的质量

Quality improvement of pyrolysis oil from waste rubber by adding sawdust.

作者信息

Wang Wen-liang, Chang Jian-min, Cai Li-ping, Shi Sheldon Q

机构信息

MOE Key Laboratory of Wooden Material Science and Application, College of Material Science and Technology, Wood Science and Technology, Beijing Forestry University, 100083 Beijing, China.

MOE Key Laboratory of Wooden Material Science and Application, College of Material Science and Technology, Wood Science and Technology, Beijing Forestry University, 100083 Beijing, China.

出版信息

Waste Manag. 2014 Dec;34(12):2603-10. doi: 10.1016/j.wasman.2014.08.016. Epub 2014 Sep 13.

Abstract

This work was aimed at improving the pyrolysis oil quality of waste rubber by adding larch sawdust. Using a 1 kg/h stainless pyrolysis reactor, the contents of sawdust in rubber were gradually increased from 0%, 50%, 100% and 200% (wt%) during the pyrolysis process. Using a thermo-gravimetric (TG) analyzer coupled with Fourier transform infrared (FTIR) analysis of evolving products (TG-FTIR), the weight loss characteristics of the heat under different mixtures of sawdust/rubber were observed. Using the pyrolysis-gas chromatography (GC)-mass spectrometry (Py-GC/MS), the vapors from the pyrolysis processes were collected and the compositions of the vapors were examined. During the pyrolysis process, the recovery of the pyrolysis gas and its composition were measured in-situ at a reaction temperature of 450 °C and a retaining time of 1.2s. The results indicated that the efficiency of pyrolysis was increased and the residual carbon was reduced as the percentage of sawdust increased. The adding of sawdust significantly improved the pyrolysis oil quality by reducing the polycyclic aromatic hydrocarbons (PAHs) and nitrogen and sulfur compounds contents, resulting in an improvement in the combustion efficiency of the pyrolysis oil.

摘要

这项工作旨在通过添加落叶松木屑来提高废橡胶的热解油质量。使用一台1 kg/h的不锈钢热解反应器,在热解过程中,橡胶中木屑的含量从0%、50%、100%逐步增加到200%(重量百分比)。采用热重(TG)分析仪结合傅里叶变换红外(FTIR)对热解产物进行分析(TG-FTIR),观察了不同木屑/橡胶混合物在加热过程中的失重特性。利用热解-气相色谱(GC)-质谱联用仪(Py-GC/MS)收集热解过程中的蒸汽并检测其成分。在热解过程中,在450℃的反应温度和1.2秒的停留时间下原位测量热解气的回收率及其成分。结果表明,随着木屑百分比的增加,热解效率提高,残余碳减少。添加木屑显著改善了热解油质量,降低了多环芳烃(PAHs)以及氮和硫化合物的含量,从而提高了热解油的燃烧效率。

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