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Effects of plastic wastes on coal pyrolysis behaviour and the structure of semicokes

机译:塑料废料对煤热解行为和半焦结构的影响

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Recently, plastic wastes of different structures and origins (agriculture, municipal, electronic, automobile) have been proposed as minor components of coal blends for metallurgical coke manufacture in order to contribute to the protection of the environment and natural resources. Since an adequate development of coal fluidity in high-temperature carbonization is a prerequisite for producing a graphitizable carbon material of high quality, this paper investigates the role of HDPE, PP, PET and a mixture containing these three thermoplastics in the formation of semicokes, an intermediate carbon material in the transformation of coal to coke. These plastic wastes blended with a bituminous coal in amounts of 1, 2 and 5 wt.% cause a decrease in coal fluidity as measured by the Gieseler plastometer, the extent of the reduction being dependent on the amount, the structure and the thermal behaviour of the plastic waste added. Model hydrocarbons have been used to explain the differences in the fluidity of the blends with HDPE and PP. Evidence of the incorporation of HDPE into the carbon matrix of semicokes comes from diffuse reflectance infrared spectroscopy and scanning electron microscopy as well as from the study of the evolution of volatile products in the post-plastic stage of coal by thermogravimetry coupled to mass spectrometry. The non-agglomeration of blends with PET is clearly observed by SEM and optical microscopy, the latter revealing the isotropic nature of the resultant semicoke.
机译:近来,已经提出了不同结构和来源的塑料废物(农业,市政,电子,汽车)作为冶金焦炭生产用煤混合物的次要成分,以有助于保护环境和自然资源。由于高温碳化过程中煤流动性的充分发展是生产高质量可石墨化碳材料的先决条件,因此本文研究了HDPE,PP,PET和包含这三种热塑性塑料的混合物在形成半焦,中间碳材料可以将煤转化为焦炭。这些塑料废料与1、2和5 wt。%的烟煤掺混,导致通过吉塞勒塑性仪测量的煤流动性下降,减少的程度取决于煤的量,结构和热行为。添加的塑料废料。模型烃已用于解释与HDPE和PP共混物流动性的差异。将HDPE掺入半焦碳基质中的证据来自漫反射红外光谱法和扫描电子显微镜,以及通过热重分析法和质谱法研究的煤在塑化后的挥发性产物的演变。 SEM和光学显微镜清楚地观察到了共混物与PET的不凝聚现象,后者揭示了所得半焦的各向同性性质。

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