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Production and application of carbon nanotubes, as a co-product of hydrogen from the pyrolysis-catalytic reforming of waste plastic

机译:碳纳米管的生产和应用,作为来自废塑料的热解 - 催化重整的氢的副产物

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摘要

Hydrogen production from waste plastics is an important alternative for managing waste plastics. This work addresses a promising technology for co-producing high value carbon nanotubes (CNTs) in addition to the production of hydrogen; thus significantly increasing the economic feasibility of the process. Catalyst design is a critical factor to control the production of hydrogen and CNTs. NiMnAl catalysts, prepared by a co-precipitation method, with different metal molar ratios were developed and investigated using a two-stage fixed-bed reactor. It was found that the NiMnAl catalyst with the higher Mn content produced a higher yield of carbon (57.7 wt.%). Analysis of the carbon on the NiMnAl catalysts showed it to consist of ∼90 wt.% of carbon nanotubes. The CNTs were recovered from the catalyst and added at 2 wt.% to LDPE plastic to form a composite material. The tensile and flexural strength and the tensile and flexural modulus of the CNT composite material were significantly improved by the addition of the recovered CNTs. Thus it is suggested that cost-effective CNTs could be produced from waste plastics as by-product of the production of hydrogen, enhancing the potential applications of CNTs in the composite industry.
机译:废塑料制氢是管理废塑料的重要替代方法。这项工作提出了一种有前景的技术,除了生产氢气外,还可以共同生产高价值的碳纳米管(CNT)。因此大大增加了该方法的经济可行性。催化剂设计是控制氢和碳纳米管生产的关键因素。通过共沉淀法制备的具有不同金属摩尔比的NiMnAl催化剂已开发并使用两级固定床反应器进行了研究。发现具有较高Mn含量的NiMnAl催化剂产生较高的碳收率(57.7重量%)。在NiMnAl催化剂上对碳的分析表明,它由〜90 wt。%的碳纳米管组成。从催化剂中回收CNT,并以2重量%将其添加到LDPE塑料中以形成复合材料。通过添加回收的CNT,CNT复合材料的拉伸和弯曲强度以及拉伸和弯曲模量显着提高。因此,建议可以由废塑料作为氢气生产的副产品生产具有成本效益的CNT,从而增强CNT在复合材料工业中的潜在应用。

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