首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Solid carbon production and recovery from high temperature methane pyrolysis in bubble columns containing molten metals and molten salts
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Solid carbon production and recovery from high temperature methane pyrolysis in bubble columns containing molten metals and molten salts

机译:含有熔融金属和熔盐的气泡柱中高温甲烷热解的固体碳生产和回收

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摘要

We study methane pyrolysis in a bubble column reactor consisting of a layer of molten NiBi alloy, and a molten salt layer floating on the metal layer. The molten metal is a pyrolysis catalyst; the molten salt layer is added for removing contaminants from the carbon product. Methane is introduced at the bottom of the reactor and the rising bubbles contain reactant and product gases together with metal vapor and flakes of solid carbon. When the bubbles rise through the molten salt layer the metal vapor condenses producing dense liquid metal droplets, which sink to the metal phase; the low-density carbon rises to the top of the salt layer. The carbon generated from the single-phase molten NiBi reactor has a different structure from that produced in the two-phase NiBi/salt reactor. The amount of metal in the carbon product is less than 5 wt %, in the two-phase reactor, compared to 83 wt % in the NiBi single-phase reactor. After subsequent purification steps one obtains solid carbon with less than 2 wt % salt contamination and no detectable metal contamination. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们研究由一层熔融NiBi合金组成的泡沫柱反应器中的甲烷热解,以及漂浮在金属层上的熔盐层。熔融金属是热解催化剂;加入熔融盐层以从碳产物中除去污染物。在反应器的底部引入甲烷,并且上升气泡含有反应物和产物气体与金属蒸汽和固体碳的薄片。当气泡通过熔盐层升高时,金属蒸汽凝结产生致密的液态金属液滴,其沉入金属相;低密度碳上升到盐层的顶部。由单相熔融NiBI反应器产生的碳具有不同的结构,从两相NIBI /盐反应器中产生的结构不同。在两相反应器中,碳产物中金属的量小于5wt%,而Nibi单相反应器中的83wt%。后续纯化后,步骤1获得具有小于2wt%的盐污染的固体碳,无可检测的金属污染。 (c)2019年elestvier有限公司保留所有权利。

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