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首页> 外文期刊>Membranes >Techno-Economic Assessment in a Fluidized Bed Membrane Reactor for Small-Scale H 2 Production: Effect of Membrane Support Thickness
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Techno-Economic Assessment in a Fluidized Bed Membrane Reactor for Small-Scale H 2 Production: Effect of Membrane Support Thickness

机译:用于小规模H 2生产的流化床膜反应器中的技术经济评估:膜载体厚度的影响

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This paper investigates the influence of the support material and its thickness on the hydrogen flux in Palladium membranes in the presence of sweep gas in fluidized bed membrane reactors. The analysis is performed considering both ceramic and metallic supports with different properties. In general, ceramic supports are cheaper but suffer sealing problems, while metallic ones are more expensive but with much less sealing problems. Firstly, a preliminary analysis is performed to assess the impact of the support in the permeation flux, which shows that the membrane permeance can be halved when the H 2 diffusion through the support is considered. The most relevant parameter which affects the permeation is the porosity over tortuosity ratio of the porous support. Afterward, the different supports are compared from an economic point of view when applied to a membrane reactor designed for 100 kg/day of hydrogen, using biogas as feedstock. The stainless steel supports have lower impact on the hydrogen permeation so the required membrane surface area is 2.6 m 2 compared to 3.6 m 2 of the best ceramic support. This ends up as 5.6 €/kg H [email?protected] and 6.6 €/kg H [email?protected] for the best stainless steel support, which is 3% lower than the price calculated for the best ceramic support.
机译:本文研究了在流化床膜反应器中存在吹扫气的情况下,载体材料及其厚度对钯膜中氢通量的影响。考虑具有不同特性的陶瓷和金属载体进行分析。通常,陶瓷支撑件较便宜,但存在密封问题,而金属支撑件较贵,但密封问题少得多。首先,进行初步分析以评估载体对渗透通量的影响,这表明当考虑通过载体的H 2扩散时,膜的渗透率可以减半。影响渗透的最相关参数是多孔载体的孔隙率与曲折率。然后,从经济角度比较不同的支持物,将其应用于以沼气为原料的设计用于每天处理100千克氢气的膜反应器时,从经济角度进行比较。不锈钢载体对氢渗透的影响较小,因此所需的膜表面积为2.6 m 2,而最佳陶瓷载体为3.6 m 2。对于最佳的不锈钢支撑,最终价格为5.6欧元/千克H(受电子邮件保护)和6.6欧元/千克H(受电子邮件保护),这比最佳陶瓷支撑的价格低3%。

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