首页> 外文期刊>Journal of Cleaner Production >Partial oxidation treatment of waste polyvinyl chloride in critical water: Preparation of benzaldehyde/acetophenone and dechlorination
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Partial oxidation treatment of waste polyvinyl chloride in critical water: Preparation of benzaldehyde/acetophenone and dechlorination

机译:临界水中废聚氯乙烯的部分氧化处理:苯甲醛/苯乙酮的制备和脱氯

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In this work, a partial oxidation treatment process in critical water was developed for high-efficiency dechlorination of waste polyvinyl chloride and the recovery of high value-added chemical feedstock. The partial oxidation treatment of waste polyvinyl chloride was performed at the temperature range of 200-400 degrees C with the mass ratio of 32 (waste polyvinyl chloride-to-oxygen). Fourier Transform Infrared Spectroscopy and Gas Chromatography-Mass Spectrometer were utilized to characterize solid residue and oil products. The chlorine in aqueous phase was measured by ion chromatography to determinate the dechlorination efficiency. The results indicated that 85.5% of the chlorine in waste polyvinyl chloride could be transferred into aqueous phase at 250 degrees C, and approximately 95% could be transferred at 300 degrees C. The temperature of critical water had a significant effect on chemical composition of oil products of waste polyvinyl chloride after the partial oxidation treatment. Two important chemical feedstock, benzaldehyde and acetophenone, could be selectively prepared from waste polyvinyl chloride by the partial oxidation treatment in critical water at lower temperature condition. The summation of the relative peak area of benzaldehyde and acetophenone from the results of Gas Chromatography-Mass Spectrometer could reach 91.74% and 91.68% at 300 degrees C and 350 degrees C. The further increase of partial oxidation treatment temperature could enhance the reactivity of oxygen involved in the system and initiate more side reactions, resulting in that many impurity compounds were generated, includingphenol/phenol derivatives, naphthalene, aliphatic alkanol, and cyclanone. The purity of benzaldehyde and acetophenone in oil products decreased when the partial oxidation treatment temperature exceeded 350 degrees C, and the additional value of decomposition products was lowered. This result showed that the partial oxidation treatment of waste polyvinyl chloride in critical water was beneficial for both dechlorination and resources recovery. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项工作中,开发了关键水中的部分氧化处理工艺,以对废聚氯乙烯进行高效脱氯并回收高附加值的化学原料。在200-400℃的温度范围内以32的质量比(废聚氯乙烯与氧气)进行废聚氯乙烯的部分氧化处理。傅里叶变换红外光谱和气相色谱-质谱仪用于表征固体残留物和石油产品。通过离子色谱法测量水相中的氯以确定脱氯效率。结果表明,废聚氯乙烯中的氯有85.5%可以在250摄氏度下转移到水相中,约95%可以在300摄氏度下转移到水相中。临界水的温度对油的化学成分有显着影响部分氧化处理后的废聚氯乙烯产品。在低温条件下,通过在临界水中进行部分氧化处理,可以从废聚氯乙烯中选择性地制备出两种重要的化学原料苯甲醛和苯乙酮。气相色谱-质谱联用仪测得的苯甲醛和苯乙酮的相对峰面积之和在300°C和350°C下分别达到91.74%和91.68%。参与该系统并引发更多的副反应,导致产生了许多杂质化合物,包括苯酚/苯酚衍生物,萘,脂肪族链烷醇和环酮。当部分氧化处理温度超过350℃时,石油产品中的苯甲醛和苯乙酮的纯度降低,分解产物的附加值降低。该结果表明,临界水中废聚氯乙烯的部分氧化处理对脱氯和资源回收均有利。 (C)2018 Elsevier Ltd.保留所有权利。

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