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Pyrolysis of Polystyrene Waste: A Review

机译:聚苯乙烯废物的热解:综述

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摘要

The manufacturing of polystyrene around the globe has escalated in the past years due to its huge applications in various areas. The perpetual market needs of polystyrene led the polystyrene wastes accretion in the landfill causing environmental deterioration. The soaring need for polystyrene also led to the exhaustion of petroleum, a non-renewable energy source, as polystyrene is a petroleum-derived product. Researchers from around the world have discovered a few techniques to take care of the polystyrene scraps, namely recycling and energy recovery techniques. Nevertheless, there are demerits involved with recycling techniques, such as they call for huge labor expenses in the separation process and cause water pollution, thereby decreasing the process sustainability. Owing to these demerits, the researchers have focused their attention on the energy recovery technique. Since petroleum is the main ingredient of polystyrene synthesis, the restoration of liquid oil from polystyrene via the pyrolysis method is a promising technique as the recovered oil has greater calorific value as compared to commercially available fuel. The present paper surveys the pyrolysis technique for polystyrene and the important process parameters that control the end product, like oil, gas, and char. The chief process parameters that are discussed in this review paper include the type of reactors, temperature, residence time, pressure, catalyst types, type of fluidizing gases, and their flow rate. A more recent technique of utilizing a solvent to perform pyrolysis and the effect of various process conditions on the product yield have been discussed. Apart from this, various outlooks to optimize the liquid oil recovery from polystyrene are also reviewed.
机译:由于其在各个领域的巨大应用,过去几年,全球各地的聚苯乙烯的制造升级。聚苯乙烯的永久市场需求LED聚苯乙烯损害垃圾填埋场造成环境劣化的堆积。对于聚苯乙烯的飙升也导致了石油的耗尽,不可再生能源,因为聚苯乙烯是石油衍生的产物。来自世界各地的研究人员已经发现了一些方法来照顾聚苯乙烯废料,即回收和能量回收技术。然而,回收技术有缺点,例如他们要求分离过程中的巨额劳动力费用并导致水污染,从而降低过程可持续性。由于这些缺点,研究人员将注意力集中在能量回收技术上。由于石油是聚苯乙烯合成的主要成分,因此通过热解法从聚苯乙烯恢复液体油是一种希望的技术,因为与市售燃料相比,回收的油具有更大的热值。本文调查聚苯乙烯的热解技术和控制最终产品的重要工艺参数,如油,气体和炭。本文讨论的主要过程参数包括反应器,温度,停留时间,压力,催化剂类型,流化气体类型的类型,流动速率及其流速。探讨了利用溶剂进行热解的更新技术,并讨论了各种工艺条件对产物产量的影响。除此之外,还综述了优化来自聚苯乙烯液体油回收的各种前景。

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