4.6 Article

Annealing and TMOS coating on PSF/ZTC mixed matrix membrane for enhanced CO2/CH4 and H2/CH4 separation

期刊

ROYAL SOCIETY OPEN SCIENCE
卷 9, 期 6, 页码 -

出版社

ROYAL SOC
DOI: 10.1098/rsos.211371

关键词

gas separation; mixed matrix membrane; polysulfone-zeolite templated carbon; annealing; coating

资金

  1. Kementerian Riset Teknologi dan Pendidikan Tinggi Indonesia [135/SP2H/LT/DPRM/IV/2017]
  2. Penelitian Dasar by the Kementerian Pendidikan dan Kebudayaan Indonesia [797/PKS/ITS/2021]
  3. Pertamina
  4. Shibaura Institute of Technology
  5. Pembangunan Perumahan Company

向作者/读者索取更多资源

The research aims to improve separation performance by altering membrane surfaces. Results show that selective improvement was significantly enhanced after specific treatments, mainly due to changes in membrane structure making it denser and smoother, enhancing adhesion between the polymer matrix and filler particles.
Recently, natural gas (mostly methane) is frequently used as fuel, while hydrogen is a promising renewable energy source. However, each gas produced contains impurity gases. As a result, membrane separation is required. The mixed matrix membrane (MMM) is a promising membrane. The huge surface area and well-defined pore structure of zeolite templated carbon (ZTC)-based MMM allow for effective separation. However, the interfacial vacuum in MMM is difficult to avoid, contributing to poor separation performance. This research tries to improve separation performance by altering membrane surfaces. MMM PSF/ZTC was modified by annealing at 120, 150, and 190 degrees C; coating using 0.01, 0.03, and 0.05 mol tetramethyl orthosilicate (TMOS); and a combination of both, i.e. annealing at 190 degrees C and coating using 0.03 mol TMOS. MMM PSF/ZTC successfully significantly improved CO2/CH4 selectivity by a combination of annealing at 190 degrees C and coating 0.03 mol TMOS from 1.37 to 5.90 (331%), and H-2/CH4 selectivity by coating with 0.03 mol TMOS from 4.58 to 65.76 (1378%). The enhancement of selectivity was due to structural changes to the membrane that became denser and smoother, which SEM and AFM observed. In this study, annealing and coating treatments are the methods investigated for improving the polymer matrix and filler particle adhesion.

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