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Effect of molten salts on the structure, morphology and electrical conductivity of PET-derived carbon nanostructures

机译:熔融盐对PET碳纳米结构结构,形态和电导率的影响

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摘要

The effective disposal and/or utilization of polyethylene terephthalate ((C_(10)H_8O_4)_n, PET) waste plastics are currently global problems that need to be addressed urgently. The current research examines the molten salt-based thermal treatment of PET waste, as a new approach to tackle this challenge. The effect of various molten salts, comprising KCl, MgCl_2, ZnCl_2, NaCl, KF and NaF on the structural and morphological evolution of PET upon heating in air to 1300 °C is investigated. PET is transformed into carbon materials with different characteristics, including graphene-like nanosheets and porous nanostructures, with different electrical conductivity values, depending on the type of salt employed. The melting and evaporation points, as well as the cation size of the salt, are found to have a significant influence on the morphology and the crystallization level of the carbon products, based on which the characteristics of PET-derived carbons are regulated. Accordingly, the crystallinity and graphitization degree of the carbon materials obtained in NaF, KF and NaCl are found to be considerably greater than those obtained in ZnCl_2, MgCl_2 and KCl. The possible mechanism involved in the conversion of PET into carbon nanostructures in the molten salt environment is discussed. The results obtained provide insights into molten salt conversion of PET into carbon materials with different properties for various applications.
机译:对苯二甲酸乙二醇酯的有效处理和/或利用((C_(10)H_8O_4)_N,PET)废塑料目前是全球性问题,需要迫切地解决。目前的研究检查了宠物浪费的熔盐的热处理,作为解决这一挑战的新方法。研究了各种熔盐,包括KCl,MgCl_2,ZnCl_2,NaCl,KF和NaF对PET在空气中加热至1300℃的结构和形态学中的影响。 PET转化为具有不同特性的碳材料,包括石墨烯纳米片和多孔纳米结构,其具有不同的电导率值,这取决于所用的盐的类型。发现熔融和蒸发点以及盐的阳离子尺寸对碳产物的形态和结晶水平产生显着影响,基于该碳产物的形态和结晶水平。因此,发现在NAF,Kf和NaCl中获得的碳材料的结晶度和石墨化程度显着大于ZnCl_2,MgCl_2和Kcl中得到的那些。讨论了涉及PET转化为熔盐环境中碳纳米结构的可能机制。得到的结果为PET的熔融盐转化为各种应用的不同性质提供了对PET的熔融盐转化物的见解。

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