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Kinetics of thermal de-chlorination of PVC under pyrolytic conditions

机译:热解条件下PVC热脱氯的动力学

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摘要

Although PVC-containing wastes are an important potential source of energy they are frequently disposed in landfill. In thermal treatment processes such as pyrolysis and gasification, the presence of poly(-vinyl chloride) (PVC), a compound with 56.7% of chlorine, may cause problems concerned with environmental protection, as consequence of the formation of hydrochloric acid, chlorine gas and dioxins, as well as corrosion phenomena of the reactor/equipment materials. Thus, a possible solution may involve a previous removal of the chlorine from PVC containing waste through a pyrolysis process at low temperatures before the material being submitted to a subsequent thermal treatment, for energetic valorization. In this work, a kinetic model for the thermal decomposition of PVC has been developed, in view of its de-chlorination. DTA/TGA testing at different temperatures indicated a first order reaction and an activation energy of 133,800 J/mol. An almost completed de-chlorination reaction was obtained at 340 ℃ under an inert atmosphere. The resulted material is a C_nH_n type polymer with potential to be used in an energy recovery process. Validation test performed at laboratory scale indicate that the temperature of 340 ℃ enables the removal of ~99.9% of the chlorine present in PVC. The chloride can be fixed in the form of an aqueous solution of HCI or calcium chloride, driving to an alternative full process with environmental benefits and reduction of the costs associated to the PCV - containing materials/wastes management.
机译:尽管含PVC的废物是重要的潜在能源,但它们经常被处置在垃圾填埋场中。在热解和气化等热处理过程中,聚氯乙烯(PVC)是一种含氯为56.7%的化合物,它的存在会由于形成盐酸,氯气而引起环保问题。和二恶英,以及反应器/设备材料的腐蚀现象。因此,一种可能的解决方案可能包括先在低温下通过热解过程从含PVC的废物中除去氯,然后再对该材料进行后续的热处理,以进行能量平衡。在这项工作中,考虑到PVC的脱氯作用,已经开发了PVC热分解的动力学模型。在不同温度下的DTA / TGA测试表明一级反应和133,800 J / mol的活化能。在惰性气氛下于340℃几乎完成了脱氯反应。所得材料是具有在能量回收过程中使用的潜力的C_nH_n型聚合物。在实验室规模上进行的验证测试表明,340℃的温度可以除去PVC中约99.9%的氯。氯化物可以以HCl或氯化钙的水溶液形式固定,从而推动了另一种全过程的实施,具有环境效益,并降低了与含PCV的物料/废物管理相关的成本。

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  • 来源
    《Waste Management》 |2012年第5期|p.847-851|共5页
  • 作者单位

    CVR - Centra para a Valorizacao de Residues (Center for Waste Valorization), Cuimaraes, Portugal,CT2M - Centre for Mechanical and Materials Technologies, Mechanical Engineering Department of Minho University, Cuimaraes, Portugal;

    CT2M - Centre for Mechanical and Materials Technologies, Mechanical Engineering Department of Minho University, Cuimaraes, Portugal;

    CT2M - Centre for Mechanical and Materials Technologies, Mechanical Engineering Department of Minho University, Cuimaraes, Portugal;

    CT2M - Centre for Mechanical and Materials Technologies, Mechanical Engineering Department of Minho University, Cuimaraes, Portugal;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    de-chlorination; PVC; pyrolysis; kinetics;

    机译:脱氯;PVC;热解;动力学;

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