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Pyrolysis of plastic waste for production of heavy fuel substitute: A techno-economic assessment

机译:塑料废料的热解以生产重燃料替代品:技术经济评估

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Pyrolysis is widely seen as a promising technology for converting plastic waste into a wax/oil product which can be used as a heavy fuel oil substitute or as raw material by the petrochemical industry. A pyrolysis plant with a capacity of 100 kg/h plastic waste is modelled in the process simulation software Aspen HYSYS. The production costs of the pyrolysis fuel product is estimated at 0.87/kg which is 58% higher than current market prices; therefore, a scaling-up analysis is also carried out to determine the plant capacity for which the pyrolysis process is economically feasible. The fuel production costs of the scaled-up cases considered are approximately 2.2-20.8 times lower than the existing market prices of residual fuel oil, indicating their economic feasibility. For the 1000 kg/h and 10,000 kg/h plant capacity cases the facility needs to operate approximately four years and one year respectively, to recover the capital investment, while the 100,000 kg/h case produces revenue and has a positive NPV within year one. A sensitivity analysis is also carried out revealing that the fuel production rate is the most sensitive parameter for the 100 kg/h plant, as well as the scaled-up plants. (C) 2018 Elsevier Ltd. All rights reserved.
机译:热解被广泛认为是将塑料废料转化为蜡/油产品的有前途的技术,蜡/油产品可以用作重质燃料油的替代品或石化工业的原料。在过程模拟软件Aspen HYSYS中模拟了一个处理能力为100 kg / h废塑料的热解工厂。热解燃料产品的生产成本估计为0.87 / kg,比目前的市场价格高58%。因此,还进行了放大分析,以确定热解工艺在经济上可行的工厂产能。所考虑的按比例扩大案例的燃料生产成本比现有的剩余燃料油市场价格低约2.2-20.8倍,表明了其经济可行性。对于1000 kg / h和10,000 kg / h的工厂产能案例,工厂需要分别运行大约四年和一年,以收回资本投资,而100,000 kg / h的案例产生收入并在第一年内产生正NPV 。还进行了敏感性分析,揭示了对于100 kg / h的工厂以及规模化工厂,燃料生产率是最敏感的参数。 (C)2018 Elsevier Ltd.保留所有权利。

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