Al-Salem S M, Antelava A, Constantinou A, Manos G, Dutta A
Environment & Life Sciences Research Centre, Kuwait Institute for Scientific Research, P.O. Box: 24885, Safat, 13109, Kuwait.
Division of Chemical & Petroleum Engineering, School of Engineering, London South Bank University, London, SE1 0AA, UK.
J Environ Manage. 2017 Jul 15;197:177-198. doi: 10.1016/j.jenvman.2017.03.084. Epub 2017 Apr 4.
Plastic plays an important role in our daily lives due to its versatility, light weight and low production cost. Plastics became essential in many sectors such as construction, medical, engineering applications, automotive, aerospace, etc. In addition, economic growth and development also increased our demand and dependency on plastics which leads to its accumulation in landfills imposing risk on human health, animals and cause environmental pollution problems such as ground water contamination, sanitary related issues, etc. Hence, a sustainable and an efficient plastic waste treatment is essential to avoid such issues. Pyrolysis is a thermo-chemical plastic waste treatment technique which can solve such pollution problems, as well as, recover valuable energy and products such as oil and gas. Pyrolysis of plastic solid waste (PSW) has gained importance due to having better advantages towards environmental pollution and reduction of carbon footprint of plastic products by minimizing the emissions of carbon monoxide and carbon dioxide compared to combustion and gasification. This paper presents the existing techniques of pyrolysis, the parameters which affect the products yield and selectivity and identify major research gaps in this technology. The influence of different catalysts on the process as well as review and comparative assessment of pyrolysis with other thermal and catalytic plastic treatment methods, is also presented.
由于其多功能性、重量轻和生产成本低,塑料在我们的日常生活中发挥着重要作用。塑料在建筑、医疗、工程应用、汽车、航空航天等许多领域变得不可或缺。此外,经济增长和发展也增加了我们对塑料的需求和依赖,这导致塑料在垃圾填埋场堆积,对人类健康、动物构成风险,并引发环境污染问题,如地下水污染、卫生相关问题等。因此,可持续且高效的塑料废物处理对于避免此类问题至关重要。热解是一种热化学塑料废物处理技术,它可以解决此类污染问题,同时回收宝贵的能源以及石油和天然气等产品。塑料固体废物(PSW)的热解由于在环境污染方面具有更好的优势,并且与燃烧和气化相比,通过最大限度地减少一氧化碳和二氧化碳的排放来降低塑料产品的碳足迹,因此变得越来越重要。本文介绍了现有的热解技术、影响产物产率和选择性的参数,并确定了该技术的主要研究差距。还介绍了不同催化剂对该过程的影响,以及热解与其他热法和催化塑料处理方法的综述和比较评估。