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Effect of the Light Alkane Content of Natural Gas on the Production of Hydrogen and Coke During the Dry Reform

机译:干法重整过程中天然气中轻链烷烃含量对氢气和焦炭生产的影响

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Dry reforming of ethane and propane were carried out with a nickel catalyst (3.92% by weight/γ-Al2O3) to characterize the effects of fed light alkanes on the reforming process of natural gas. Conversions of individual alkanes, representing 74.7% for ethane and 96.0% for propane at 1073 K, promoted hydrogen yields of 43.6% and 66.0%, respectively. The conversion (81%) of a natural gas promoted a 95% hydrogen yield, where about 20% had been obtained from the light alkanes. The reaction steps from alkane dry reforming where hydrogen was produced (alkane cracking) provided carbon formation with a yield of 23%. A kinetics evaluation, based on experimental evidence that indicated two different sets of reaction steps for both ethane and propane processes, enabled the identification of the specific reaction rates of the cracking steps for each alkane.? Reaction steps in the reforming process were considered as competitive reactions and the specific cracking reaction rates of both light alkanes were used to quantify the kinetic selectivities of hydrogen, calculated as 95.42% for ethane and 76.99% for propane.
机译:用镍催化剂(3.92%(重量)/γ-Al2O3)进行乙烷和丙烷的干重整,以表征进料的轻烷烃对天然气重整过程的影响。单个烷烃的转化率(在1073 K下代表乙烷的74.7%和丙烷的96.0%)分别提高了氢气产率(43.6%)和66.0%。天然气的转化率(81%)促进了95%的氢气产率,其中从轻烷烃中获得了约20%的氢气。来自产生氢气(烷烃裂化)的烷烃干重整的反应步骤提供了碳形成,产率为23%。根据实验证据进行的动力学评估表明,乙烷和丙烷工艺都有两组不同的反应步骤,可以确定每种烷烃裂解步骤的特定反应速率。重整过程中的反应步骤被认为是竞争性反应,两种轻烷烃的特定裂化反应速率均用于量化氢气的动力学选择性,乙烷的乙烷选择性为95.42%,丙烷为76.99%。

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