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Thermo-gravimetric Analysis (TGA) of combustion and gasification of Styrene-Butadiene Copolymer (SBR)

机译:苯乙烯 - 丁二烯共聚物燃烧和气化的热重分析(TGA)(SBR)

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An investigation has been initiated to determine the effects of various atmospheres (6.9% O_2/N_2, 21% O_2/N_2 (air), 30% O_2/N_2, 3% H_2/N_2 and pure N_2) on the efficiency of gasifying or combusting rubber waste to produce synthesis gas or generate steam or power. This paper reports on the findings from a series of TGA experiments at various heating rates on styrene-butadiene copolymer (SBR), which is the main starting component for tire manufacturing. The results indicate that oxygen enhanced atmospheres have a significant effect on increasing combustion efficiency at the tested heating rates. A hydrogen-spiked atmosphere, surprisingly, did not have a significant effect on the gasification rates of SBR at any heating rate; in addition, this atmosphere resulted in a carbon residual that remained in the sample carrier, something that was not observed in the other atmospheres, including pure nitrogen. An unexpected result of the N_2-O_2 tests was the development of a plateau in the mass-loss versus temperature curves, at temperatures near 500°C.
机译:调查已经开始,以确定各种气氛的影响(6.9%O_2 / N_2,21%O_2 / N_2(空气),30%O_2 / N_2,3%H_2 / N_2和纯N_2)上气化或燃烧的效率橡胶废弃物生产合成气体或产生蒸汽或电力。这从在不同的升温速率对苯乙烯 - 丁二烯共聚物的一系列实验的TGA(SBR),其是用于轮胎的制造的主要起始成分的调查结果文件报告。结果表明,氧增强大气压对在所测试的加热速率增加燃烧效率的显著效果。甲氢掺入气氛,令人惊讶的,并没有对任何加热速率SBR的气化速率的显著效果;此外,这种气氛造成对该保留在样品载体,即未在其它气氛观察到,包括纯氮气东西碳残留。所述N_2-O_2测试的一个意想不到的结果是在质量损失对温度曲线的平稳段的发展,在接近500℃的温度。

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