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Simultaneous hydrogen production and utilization via coupling of Fischer-Tropsch synthesis and decalin dehydrogenation reactions in GTL technology

机译:通过GTL技术中的费-托合成和十氢化萘脱氢反应同时生产和利用氢气

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摘要

A thermally coupled membrane dual-type reactor (TCMDR) has been proposed for simultaneous hydrogen production and utilization in gas-to-liquid technology (GTL). Decalin dehydrogenation reaction is coupled with Fischer-Tropsch synthesis (FTS) reaction to improve the heat transfer between endothermic and exothermic sides. Furthermore, Pd-Ag and Hydroxy Sodalite membrane layers are assisted in TCMDR to improve the mass transfer between exothermic/endothermic side and permeation side. Some of the produced hydrogen via decalin dehydrogenation reaction is utilized in FTS reaction and the other is extracted and stored. The modeling results show 95% hydrogen production and 5% hydrogen utilization in FTS reactions in the exothermic reaction side of TCMDR configuration. The performance of TCMDR is compared with the one of conventional reactor (CR) and fluidized-bed membrane dual-type reactor (FMDR). Moreover, the gasoline yield in TCMDR increases about 17% and 29% in comparison with the one in FMDR and CR, respectively. The enhancement in gasoline and hydrogen yields demonstrates the superiority of TCMDR to the previous reactors.
机译:已经提出了一种热耦合膜双反应器(TCMDR),用于在气液技术(GTL)中同时生产和利用氢气。十氢化萘脱氢反应与费-托合成(FTS)反应相结合以改善吸热和放热侧之间的传热。此外,在TCMDR中还辅助了Pd-Ag和羟基钠钙石膜层,以改善放热/吸热侧和渗透侧之间的传质。通过十氢化萘脱氢反应产生的部分氢气用于FTS反应,另一部分则提取并储存。模拟结果显示,在TCMDR配置的放热反应侧,FTS反应中的氢气产生量为95%,氢的利用率为5%。将TCMDR的性能与常规反应器(CR)和流化床膜双型反应器(FMDR)之一进行了比较。此外,与FMDR和CR中的相比,TCMDR中的汽油产率分别提高了约17%和29%。汽油和氢气产率的提高证明了TCMDR优于之前的反应堆。

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