汽油之类的燃料来自塑料垃圾的热解和加氢处理

Balázs Hegedüs, Zsolt Dobó
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引用次数: 4

摘要

塑料废弃物的回收利用是降低环境污染、实现循环经济要求的理想途径。然而,能源利用是另一种可能性,含有塑料的城市固体废物通常被燃烧以产生热量和电力。热解是处理塑料垃圾的一种有吸引力的方法,它有可能产生适合作为运输燃料的液态碳氢化合物。介绍了全球产量最大的聚乙烯、聚丙烯和聚苯乙烯三种塑料及其混合物的热解结果。实验在实验室规模的间歇式反应器中进行。裂解油通过蒸馏进一步加工,得到类似汽油和柴油的碳氢化合物(210°C和350°C的蒸馏切割)。采用气相色谱-质谱法对汽油馏分进行了分析,并与欧盟汽油标准进行了比较。结果发现,PE、PP和PS的油中含有标准汽油中存在的化合物。PS在热解前或热解后与PE和PP混合,得到的结果更接近标准要求,因为PS热解产生的主要是芳香族成分。由于标准汽油的烯烃含量达到18 Vol%,因此也使用Pd基催化剂进行加氢。加氢过程显著减少了双键的数量,导致烯烃含量降低。结果表明,通过对PE、PP、PS等废旧塑料混合物进行热解制备适合类汽油燃料提取的热解油是一种可行的方法,该产物进一步加氢可提供低烯烃含量的汽油燃料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gasoline like fuel from plastic waste pyrolysis and hydrotreatment
Recycling of plastic waste is desirable to lower environmental pollution and fulfil the requirements of circular economy. Energetic utilization is another possibility, however, municipal solid waste containing plastics is usually combusted to generate heat and electricity. An attractive way of dealing with plastic waste is pyrolysis, which has the potential of producing liquid hydrocarbons suitable as a transportation fuel. The pyrolysis results of three plastics produced in the largest amount globally, namely polyethylene, polypropylene and polystyrene as well as their mixtures are presented. The experiments were performed in a laboratory scale batch reactor. The pyrolysis oils were further processed by distillation to provide gasoline and diesel like (distillation cuts at 210 and 350 °C) hydrocarbons. The gasoline fractions were analysed by GC-MS and the composition was compared with the EU gasoline standard. It was found that the oils from PE, PP and PS contain compounds present in standard gasoline. Mixing PS with PE and PP before the pyrolysis, or the oils afterward produces much closer results to standard requirements as PS pyrolysis generates mostly aromatic content. As standard maximizes the olefin content of gasoline to 18 Vol%, hydrogenation was also performed using Pd based catalyst. The hydrogenation process significantly reduced the number of double bonds resulting in low olefin content. Results show that the pyrolysis of plastic waste mixtures containing PE, PP and PS is a viable method to produce pyrolysis oil suitable for gasoline-like fuel extraction and further hydrogenation of the product can provide gasoline fuels with low olefin content.
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