Seshimo Masahiro, Liu Bo, Lee Hey Ryeon, Yogo Katsunori, Yamaguchi Yuichiro, Shigaki Nobuyuki, Mogi Yasuhiro, Kita Hidetoshi, Nakao Shin-Ichi
Inorganic Membranes Research Center, Research Institute of Innovative Technology for the Earth (RITE), 1-7 Hikaridai, Seika-cho, Souraku-gun, Kyoto 619-0237, Japan.
Steel Research Laboratry, JFE Steel Corporation, 1 Kokan-cho, Fukuyama 721-8510, Japan.
Membranes (Basel). 2021 Jun 30;11(7):505. doi: 10.3390/membranes11070505.
We successfully demonstrated the effect of a membrane reactor for methanol synthesis to improve one-pass CO conversion. An Si-rich LTA membrane for dehydration from a methanol synthesis reaction field was synthesized by the seed-assisted hydrothermal synthesis method. The HO permselective performance of the membrane showed 1.5 × 10 mol m s Pa as HO permeance and around 2000 as selectivity of HO/MeOH at 473 K. From the results of membrane reactor tests, the CO conversion of the membrane reactor was higher than that of the conventional packed-bed reactor under the all of experimental conditions. Especially, at 4 MPa of reaction pressure, the conversion using the membrane reactor was around 60%. In the case of using a packed-bed reactor, the conversion was 20% under the same conditions. In addition, the calculated and experimental conversion were in good agreement in both the case of the membrane reactor and packed-bed reactor.
我们成功证明了膜反应器对甲醇合成的作用,以提高单程一氧化碳转化率。通过种子辅助水热合成法合成了一种用于甲醇合成反应场脱水的富硅LTA膜。该膜对水的渗透选择性性能在473K时显示出水渗透通量为1.5×10⁻⁷mol·m⁻²·s⁻¹·Pa⁻¹,水/甲醇选择性约为2000。从膜反应器测试结果来看,在所有实验条件下,膜反应器的一氧化碳转化率均高于传统填充床反应器。特别是在4MPa反应压力下,使用膜反应器时的转化率约为60%。在使用填充床反应器的情况下,相同条件下转化率为20%。此外,膜反应器和填充床反应器的计算转化率与实验转化率均吻合良好。