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Thermal processing of plastics from waste electrical and electronic equipment for hydrogen production

机译:热处理废旧电气和电子设备中的塑料以生产氢气

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Plastic waste from waste electrical and electronic equipment (WEEE) produced from a real-world commercial WEEE recycling centre has been processed using pyrolysis-gasification using a two-stage reaction system to produce hydrogen. In the first stage, the plastic fraction was pyrolysed at 600 ℃ and the evolved pyrolysis gases were passed directly to a second reactor at 800 C and reacted with steam in the presence of a Ni/Al_2O_3 catalyst. In addition, high impact polystyrene (HIPS) and acrylonitrile-butadiene-styrene (ABS) which were the main components of the WEEE plastic were reacted to compare with the WEEE plastic. The results showed that the introduction of steam and the catalyst increased the yield of hydrogen. Increasing the nickel content in the catalyst also resulted in higher hydrogen yield. The comparison of the results of WEEE with those of HIPS and ABS showed that WEEE plastic was mainly composed of ABS. The catalyst, after reaction, showed significant deposition of coke composed of filamentous and layered type carbon. Overall the novel processing of waste plastic from electrical and electronic equipment using a two stage pyrolysis-gasification reactor shows great promise for the production of hydrogen.
机译:由真实的商业WEEE回收中心产生的废弃电子电气设备(WEEE)产生的塑料废物已通过热解气化和两步反应系统进行处理,以产生氢气。在第一阶段中,将塑料级分在600℃下热解,将放出的热解气直接通入800°C的第二反应器,并在Ni / Al_2O_3催化剂存在下与蒸汽反应。此外,作为WEEE塑料主要成分的高抗冲聚苯乙烯(HIPS)和丙烯腈-丁二烯-苯乙烯(ABS)进行了反应,以与WEEE塑料进行比较。结果表明,蒸汽和催化剂的引入增加了氢气的产率。催化剂中镍含量的增加也导致更高的氢产率。 WEEE结果与HIPS和ABS结果的比较表明,WEEE塑料主要由ABS组成。反应后,催化剂显示出由丝状和层状碳组成的焦炭的大量沉积。总体而言,使用两级热解气化反应器对电气和电子设备中的废塑料进行新颖的处理显示出产生氢气的巨大希望。

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