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固体塑料废弃物热解油的生产和利用:热解工艺及反应器设计影响的综述。

Production and utilization of pyrolysis oil from solidplastic wastes: A review on pyrolysis process and influence of reactors design.

机构信息

Department of Aeronautical Engineering, Sathyabama Institute of Science and Technology, Chennai City, Tamil Nadu, India; Department of Medicinal and Applied Chemistry, Kaohsiung Medical University (KMU), Kaohsiung City, 807, Taiwan.

Department of Medicinal and Applied Chemistry, Kaohsiung Medical University (KMU), Kaohsiung City, 807, Taiwan; Department of Medical Research, Kaohsiung Medical University Hospital (KMUH), Kaohsiung City, 807, Taiwan.

出版信息

J Environ Manage. 2022 Jan 15;302(Pt B):114046. doi: 10.1016/j.jenvman.2021.114046. Epub 2021 Nov 11.

Abstract

This paper reviews the new progress, challenges and barriers on production of pyrolysis oil from the plastic waste. Among the different processes thermal and catalytic are the potential methods to produce oil. Since the global plastic production increased over years the accumulation of plastic waste increases. Thus, converting the waste plastics into useful energy is very essential to avoid the environmental concerns. Initially the thermal pyrolysis process and its advantage on production of pyrolysis oil were discussed. During the thermal decomposition the waste plastic had been converted into the products such as gas, crude oil and solid residues. Secondly, the catalytic process and its recent trends were discussed. In addition, the factors affecting the catalytic pyrolysis process had been evaluated. Furthermore, the optimized concentration of catalyst subjected to the higher yield of fuel with low hydrocarbon content was found. The pyrolysis oil produced from the catalytic process has higher heating values, lower density and lower viscosity compared to thermal process. In addition, the application of pyrolysis oil on the diesel engines had been discussed. The effects of pyrolysis oil on combustion and emission characteristics were observed. This review summarizes the potential advantages and barriers of both thermal and catalytic process. Further, the optimized solutions and applications of pyrolysis oil are suggested for sustainability of the process. Besides the introduction of the pyrolysis oil were viable without making major modification to the existing engine design.

摘要

本文综述了从塑料废物中生产热解油的新进展、挑战和障碍。在不同的工艺中,热解和催化是生产油的潜在方法。由于多年来全球塑料产量的增加,塑料废物的积累也在增加。因此,将废塑料转化为有用的能源对于避免环境问题非常重要。本文首先讨论了热解过程及其在生产热解油方面的优势。在热分解过程中,废塑料转化为气体、粗油和固体残渣等产物。其次,讨论了催化过程及其最新趋势。此外,还评估了影响催化热解过程的因素。进一步发现,在较高的燃料产率和较低的碳氢化合物含量下,催化剂的优化浓度为。与热解过程相比,催化过程生产的热解油具有更高的热值、更低的密度和更低的粘度。此外,还讨论了热解油在柴油发动机上的应用。观察了热解油对燃烧和排放特性的影响。本文总结了热解和催化过程的潜在优势和障碍。进一步提出了优化解决方案和热解油的应用建议,以实现工艺的可持续性。此外,热解油的引入无需对现有发动机设计进行重大修改即可实现。

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