4.7 Article Proceedings Paper

A novel bio-cellulose membrane and modified adsorption approach in CO2/H2 separation technique for PEM fuel cell applications

期刊

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
卷 42, 期 45, 页码 27630-27640

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijhydene.2017.05.148

关键词

Membrane gas separation; Polyetherimide; Polymer membrane; Adsorbent; PEM fuel cell

资金

  1. Ministry of Science and Technology of Taiwan [MOST 104-2622-E-035-028-CC2, MOST 104-2915-I-035-501]
  2. Universiti Kebangsaan Malaysia-Sime Darby Research (UKM-SDR) [KK-2014-013]

向作者/读者索取更多资源

In this study, the membrane and the adsorption technologies approach are developed and used as a separation technique to separate carbon dioxide (CO2) and hydrogen (H-2) gas mixture from biohydrogen dark fermentation. For a real application, the effect of CO2 impurity in the H-2 fuel (i.e., the gas output from separation techniques) toward the PEM fuel cell performance was studied. Hence, a novel synthesized membrane made of glassy polymers, polyetherimide (PEI) coated bio-cellulose nanofibers and a coconut shell activated carbon (CAC) as adsorbents carriers were used. For the membrane separation technique, the bio-cellulose nanofiber is coated with PEI at varying concentration from 3 to 15 wt.%. The effect of PEI concentrations on the gas permeability and selectivity were observed. Meanwhile, for the adsorption separation technique, the performance of activated carbon was tested by using 0.6 L single column adsorber unit. The characterization of both developed membrane and adsorbent were analyzed including their morphologies and the physical properties. From the results, at 3 wt.% PEI coating, the CO2 permeability was 16.72 Barrer and corresponding selectivity of CO2/H-2 was 0.15. Moreover, the adsorbents carriers showed a better adsorption capacity for CO2 removal at which 77.17 mg of CO2/g of adsorbent in a lower flow rate of feed gas at 0.5 L/min. In the case of PEM fuel cell, the performance would decrease with the increase of CO2 impurity in H-2. Therefore, the results presented on this paper are the initial findings generated for the biohydrogen separation technology for the future portable power of PEM fuel cell application. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.

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