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Effect of hydrocarbon fractions, N₂ and CO₂ in feed gas on hydrogen production using sorption enhanced steam reforming: Thermodynamic analysis

机译:原料气中烃组分,N 2和CO 2对使用吸附增强蒸汽重整制氢的影响:热力学分析

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摘要

H₂ yield and purity from sorption enhanced steam reforming (SE-SR) are determined by temperature, S:C ratio in use, and feed gas composition in hydrocarbons, N₂ and CO₂. Gases with high hydrocarbons composition had the highest H₂ yield and purity. The magnitude of sorption enhancement effects compared to conventional steam reforming (C-SR), i.e. increases in H₂ yield and purity, and drop in CH₄ yield were remarkably insensitive to alkane (C1-C3) and CO₂ content (0.1-10 vol%), with only N₂ content (0.4-70 vol%) having a minor effect. Although the presence of inert (N₂) decreases the partial pressure of the reactants which is beneficial in steam reforming, high inert contents increase the energetic cost of operating the reforming plants. The aim of the study is to investigate and demonstrate the effect of actual shale gas composition in the SE-SR process, with varied hydrocarbon fractions, CO₂ and N₂ in the feedstock.
机译:吸附增强蒸汽重整(SE-SR)产生的H 2产率和纯度取决于温度,使用中的S:C比以及烃,N 2和CO 2中的进料气组成。具有高碳氢化合物组成的气体具有最高的H 2收率和纯度。与常规蒸汽重整(C-SR)相比,即,H 2收率和纯度增加,CH 3收率下降,吸附增强作用的幅度对烷烃(C1-C3)和CO 2含量(0.1-10%(体积))非常不敏感。 ,只有N 2含量(0.4-70%(体积))影响较小。尽管惰性气体(N 2)的存在降低了反应物的分压,这对蒸汽重整是有利的,但是高的惰性含量会增加操作重整设备的能源成本。该研究的目的是研究和证明实际的页岩气成分在SE-SR工艺中的作用,其中原料中的烃含量,CO 2和N 2有所变化。

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