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Study of carbon black obtained by pyrolysis of waste scrap tyres

机译:废旧轮胎热解炭黑的研究

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Waste scrap tyres were thermally decomposed under various conditions. Decompositions were followed by the TGA method. Specific heating regimes were tested to obtain optimal structural properties of resulting pyrolytic carbon black produced by pyrolysis of scrap tyres and the process was characterized in temperature interval from 380 to 1,200 C and heating rate 10, 20 and 50 C min-1 under nitrogen atmosphere. The original scrap tyres and pyrolytic carbon black were characterized by Raman and Fourier transform infrared spectroscopy methods. Textural properties were also determined. Effect of temperature and heating rate on process of pyrolysis of scrap tyres was observed. Shifting of temperature of maximum pyrolysis rate to lower value and spreading of DTG peak is caused by increasing heating rate. Temperature 570 C was sufficient for total scrap tyres pyrolysis. Graphitic and disordered structure was distinguished in the formed carbon black by Raman spectroscopy. With increasing temperature, heating rate and weight loss, the amount of the graphitic structure was reduced at the expense of disordered structure. Destruction of nonporous scrap tyres and formation of porous structure took place at higher temperature. Porous carbon black is formed above 380 C, specific surface area increased up to 88 m2 g~(-1).
机译:废旧轮胎在各种条件下热分解。用TGA法进行分解。测试了特定的加热方式以获得通过废轮胎热解产生的热解炭黑的最佳结构性能,并在氮气气氛下,在380至1,200 C的温度区间和10、20和50 C min-1的加热速率下表征了该工艺。通过拉曼和傅里叶变换红外光谱法对原始废轮胎和热解炭黑进行了表征。还确定了质地特性。观察了温度和升温速率对废轮胎热解过程的影响。最大热解速率的温度移至较低值,而DTG峰扩展是由升温速率增加引起的。 570°C的温度足以使整个废轮胎热解。通过拉曼光谱法在形成的炭黑中区分出石墨状和无序的结构。随着温度,加热速率和重量损失的增加,石墨结构的量减少,以无序结构为代价。无孔废轮胎的破坏和多孔结构的形成在较高温度下发生。 380℃以上形成多孔炭黑,比表面积增加到88 m2 g〜(-1)。

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