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Pd-Ag Membrane Coupled to a Two-Zone Fluidized Bed Reactor (TZFBR) for Propane Dehydrogenation on a Pt-Sn/MgAl2O4 Catalyst

机译:Pd-Ag膜耦合至两区流化床反应器(TZFBR)在Pt-Sn / MgAl 2 O 4 催化剂上进行丙烷脱氢

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Several reactor configurations have been tested for catalytic propane dehydrogenation employing Pt-Sn/MgAl2O4 as a catalyst. Pd-Ag alloy membranes coupled to the multifunctional Two-Zone Fluidized Bed Reactor (TZFBR) provide an improvement in propane conversion by hydrogen removal from the reaction bed through the inorganic membrane in addition to in situ catalyst regeneration. Twofold process intensification is thereby achieved when compared to the use of traditional fluidized bed reactors (FBR), where coke formation and thermodynamic equilibrium represent important process limitations. Experiments were carried out at 500–575 °C and with catalyst mass to molar flow of fed propane ratios between 15.1 and 35.2 g min mmol−1, employing three different reactor configurations: FBR, TZFBR and TZFBR + Membrane (TZFBR + MB). The results in the FBR showed catalyst deactivation, which was faster at high temperatures. In contrast, by employing the TZFBR with the optimum regenerative agent flow (diluted oxygen), the process activity was sustained throughout the time on stream. The TZFBR + MB showed promising results in catalytic propane dehydrogenation, displacing the reaction towards higher propylene production and giving the best results among the different reactor configurations studied. Furthermore, the results obtained in this study were better than those reported on conventional reactors.
机译:以Pt-Sn / MgAl 2 O 4 为催化剂,对丙烷催化脱氢的几种反应器进行了测试。 Pd-Ag合金膜与多功能两区流化床反应器(TZFBR)耦合,除了原位催化剂再生外,还通过从反应床中通过无机膜除去氢来提高丙烷转化率。与使用传统流化床反应器(FBR)相比,可实现双重工艺强化,在传统流化床反应器中,焦炭的形成和热力学平衡是重要的工艺限制。实验在500–575°C下进行,催化剂质量与进料丙烷的摩尔流量之比在15.1和35.2 g min mmol -1 之间,采用三种不同的反应器配置:FBR,TZFBR和TZFBR +膜(TZFBR + MB)。 FBR中的结果表明催化剂失活,在高温下更快。相比之下,通过采用具有最佳再生剂流量(稀释氧气)的TZFBR,整个生产过程中流程活性得以维持。 TZFBR + MB在丙烷催化脱氢方面显示出令人鼓舞的结果,使反应向更高的丙烯产量转移,并在所研究的不同反应器配置中获得了最佳结果。此外,在这项研究中获得的结果优于常规反应堆上报告的结果。

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