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Determination of HCl and VOC Emission from Thermal Degradation of PVC in the Absence and Presence of Copper, Copper(II) Oxide and Copper(II) Chloride

机译:在铜,铜(II)氧化铜(II)氯(II)氯化铜的情况下PVC热降解HCl和VOC发射的测定

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摘要

Polyvinyl chloride (PVC) has played a key role in the development of the plastic industry over the past 40 years. Thermal degradation of PVC leads to formation of many toxic pollutants such as HCl, aromatic and volatile organic carbon vapors. Thermal degradation of PVC and PVC in the present of copper, cupric oxide and copper(II) chloride were investigated in this study using a laboratory scale electrical furnace. HCl and Cl- ion were analyzed by a Dionex ion chromatograph and VOCs compounds were analyzed using GC or GC-MS. The results showed that HCl plus Cl- ion and benzene formed about 99% and 80% respectively in the first step of thermal degradation under air atmosphere. The presence of cupric oxide increases the percentage of short chain hydrocarbons more than 184% and decreases the amount of the major aromatic hydrocarbon and HCl plus Cl- ion to 90% and 65% respectively. The total aromatic hydrocarbon emitted less than when atmosphere was air and difference was statistically significant (Pvalue<0.000)
机译:聚氯乙烯(PVC)在过去40年来在塑料行业的发展中发挥了关键作用。 PVC的热降解导致形成许多有毒污染物,如HCl,芳族和挥发性有机碳蒸气。本研究采用实验室秤电炉在本研究中研究了PVC和PVC在本研究中的热降解。通过Dionex离子色谱仪分析HCl和Cl-离子,使用GC或GC-MS分析VOCS化合物。结果表明,HCl加离子和苯分别在空气气氛下热降解的第一步骤中分别形成约99%和80%。氧化铜的存在增加了超过184%的短链烃的百分比,并降低了主要芳烃和HCl加密量分别为90%和65%。散热的总芳烃小于气氛空气和差异差异有统计学意义(pvalue <0.000)

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