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- W2899897401 startingPage "269" @default.
- W2899897401 abstract "This chapter presents plastic waste treatment by chemical recycling techniques that convert plastic waste into fuel and other valuable products. The status, challenges, competitive technologies, and opportunities for further research in plastic waste gasification are explored in the chapter. Pyrolysis and plasma gasification are identified as the competitive technologies to gasification. The chapter also discusses different types of reactor for plastic waste gasification and pyrolysis, and operating conditions affecting their performances in laboratory, pilot, and industrial scales. The operating parameters that are common to the discussed chemical plastic recycling processes are temperature, pressure, type of feedstock, and catalysts. Currently, there are several reactor types available for conversion of plastics. However, the commercialization of the thermo-chemical conversion processes is still in progress and much investigation is required to design more robust systems. The use of heterogeneous catalysts in pyrolysis is a promising technique because they can be optimized to increase the yield of desired products and at lower temperatures. Catalysts are also used in copyrolysis of plastic wastes and biomass to produce certain desired products. Product distribution in terms of gas, char, tar, and oil from various investigators is presented in this chapter. Another interesting aspect covered in the chapter is cogasification of plastic waste with biomass and/or coal." @default.
- W2899897401 created "2018-11-16" @default.
- W2899897401 creator A5029710655 @default.
- W2899897401 creator A5087084424 @default.
- W2899897401 creator A5090521065 @default.
- W2899897401 date "2019-01-01" @default.
- W2899897401 modified "2023-10-01" @default.
- W2899897401 title "Gasification of Plastic Solid Waste and Competitive Technologies" @default.
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- W2899897401 doi "https://doi.org/10.1016/b978-0-12-813140-4.00010-8" @default.
- W2899897401 hasPublicationYear "2019" @default.