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首页> 外文期刊>Polymer Degradation and Stability >Catalytic and thermal pyrolysis of polycarbonate in a fixed-bed reactor: The effect of catalysts on products yields and composition
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Catalytic and thermal pyrolysis of polycarbonate in a fixed-bed reactor: The effect of catalysts on products yields and composition

机译:固定床反应器中聚碳酸酯的催化和热解:催化剂对产物收率和组成的影响

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摘要

A meaningful and advanced method concerning the management of waste electrical and electronic equipment (WEEE) becomes a necessity, mainly due to their increased production, applications and their short life. Thermal methods have been an attractive option and for this reason the investigation of pyrolysis and catalytic pyrolysis as a potential method for the recycling of polycarbonate (PC) based plastics has been the aim of the current study. Nine different catalysts with variations in properties (such as porosity and acidity/basicity) were introduced in a bench scale pyrolysis system together with the polycarbonate polymeric material and the pyrolysis fractions were collected and analyzed. The liquid product consisted mainly of phenols and substituted phenols as well as the original monomer and, due to the commercial value of these products in the chemical industry, it is expected to enhance the economic viability of the process. Results showed a reduction in the degradation temperature in the presence of all catalytic materials, depending on the pore characteristics and the acidic nature of the solid. It seems that in the presence of the basic catalysts, PC degradation leads to lower molecular weight compounds and high phenolic fractions in the liquid produced. In terms of reduction in the production of the monomer, pore size rather than acidity appears to be the determining factor.
机译:关于废旧电气电子设备(WEEE)的管理的一种有意义且先进的方法成为必要,这主要是由于废旧电气电子设备的增加了产量,增加了其应用范围以及使用寿命较短。热方法一直是一个有吸引力的选择,因此,热解和催化热解作为一种潜在的回收基于聚碳酸酯(PC)的塑料的方法已经成为当前研究的目标。将具有不同性能(例如孔隙率和酸度/碱度)变化的九种不同催化剂与聚碳酸酯聚合物材料一起引入台式热解系统中,并收集和分析热解馏分。液体产物主要由酚和取代的酚以及原始单体组成,由于这些产物在化学工业中的商业价值,有望提高该方法的经济可行性。结果表明,在所有催化材料存在下,降解温度都会降低,具体取决于孔的特性和固体的酸性。似乎在碱性催化剂的存在下,PC降解会导致所生产液体中分子量较低的化合物和较高的酚类馏分。就单体产量的减少而言,孔径而不是酸度似乎是决定因素。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2014年第12期|482-491|共10页
  • 作者单位

    Department of Chemistry, Aristotle University of Thessaloniki, 54124, Thessaloniki, Greece;

    Chemical Process and Energy Resources Institute, Centre for Research and Technology Hellas, 57001, Thermi, Thessaloniki, Greece;

    Chemical Process and Energy Resources Institute, Centre for Research and Technology Hellas, 57001, Thermi, Thessaloniki, Greece,Department of Mechanical Engineering, University of Western Macedonia, 50100, Kozani, Greece;

    Chemical Process and Energy Resources Institute, Centre for Research and Technology Hellas, 57001, Thermi, Thessaloniki, Greece;

    Department of Chemistry, Aristotle University of Thessaloniki, 54124, Thessaloniki, Greece,Chemical Process and Energy Resources Institute, Centre for Research and Technology Hellas, 57001, Thermi, Thessaloniki, Greece;

    Chemical Process and Energy Resources Institute, Centre for Research and Technology Hellas, 57001, Thermi, Thessaloniki, Greece;

    Department of Chemistry, Aristotle University of Thessaloniki, 54124, Thessaloniki, Greece;

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

    Polycarbonate; Pyrolysis; Zeolites; Catalysts; Phenols;

    机译:聚碳酸酯热解;沸石;催化剂;酚类;

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