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Control of steam input to the pyrolysis-gasification of waste plastics for improved production of hydrogen or carbon nanotubes

机译:控制蒸汽输入到废塑料的热解 - 气化以改善氢或碳纳米管的产生

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摘要

Carbon nanotubes (CNTs) have been proven to be possible as high-value by-products of hydrogen production from gasification of waste plastics. In this work, steam content in the gasification process was investigated to increase the quality of CNTs in terms of purity. Three different plastics-low density polyethylene (LDPE), polypropylene (PP) and polystyrene (PS) were studied in a two stage pyrolysis-gasification reactor. Plastics samples were pyrolysed in nitrogen at 600°C, before the evolved gases were passed to a second stage where steam was injected and the gases were reformed at 800°C in the presence of a nickel-alumina catalyst. To investigate the effect that steam plays on CNT production, steam injection rates of 0, 0.25, 1.90 and 4.74gh-1 were employed. The CNTs produced from all three plastics were multiwalled CNTs with diameters between 10 and 20nm and several microns in length. For all the plastic samples, raising the steam injection rate led to increased hydrogen production as steam reforming and gasification of deposited carbon increased. High quality CNTs, as observed from TEM, TPO and Raman spectroscopy, were produced by controlling the steam injection rate. The largest yield for LDPE was obtained at 0gh-1 steam injection rate, whilst PP and PS gave their largest yields at 0.25gh-1. Overall the largest CNT yield was obtained for PS at 0.25gh-1, with a conversion rate of plastic to CNTs of 32wt%.
机译:碳纳米管(CNTs)已被证明是废塑料气化过程中产生氢气的高价值副产品。在这项工作中,研究了气化过程中的蒸汽含量,以提高CNT的纯度。在两级热解气化反应器中研究了三种不同的塑料-低密度聚乙烯(LDPE),聚丙烯(PP)和聚苯乙烯(PS)。将塑料样品在600°C的氮气中热解,然后将逸出的气体传递到第二阶段,在第二阶段中注入蒸汽,并在镍-氧化铝催化剂存在下在800°C下将气体重整。为了研究蒸汽对CNT生产的影响,采用了0、0.25、1.90和4.74gh-1的蒸汽注入速率。由所有三种塑料生产的CNT是直径为10到20nm且长度为几微米的多壁CNT。对于所有塑料样品,随着蒸汽重整和沉积碳气化的增加,提高蒸汽注入速率会导致氢气产量增加。从TEM,TPO和拉曼光谱学中观察到,通过控制蒸汽注入速率可以生产出高质量的CNT。 LDPE的最大产量是在0gh-1蒸汽注入速率下获得的,而PP和PS的最大产量是0.25gh-1。总体上,在0.25gh-1时PS可获得最大的CNT产率,塑料到CNT的转化率为32wt%。

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    Acomb JC; Wu C; Williams PT;

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  • 年度 2014
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  • 正文语种 en
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