Preparation of high-efficiency ceramic planar membrane and its application for water desalination
Abstract Highly efficient Si3N4 ceramic planar membrane for water desalination process using membrane distillation was prepared by the dual-layer phase inversion tape casting and sintering method. In comparison with typical phase inversion tape casting method, the green tape was formed using Si3N4 s...
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doaj-e55cd162b2104a2692489efdb2d2c3ba2020-11-24T21:36:39ZengSpringerOpenJournal of Advanced Ceramics2226-41082227-85082018-03-017211712310.1007/s40145-018-0263-7Preparation of high-efficiency ceramic planar membrane and its application for water desalinationShan Tao0Yan-Dong Xu1Jian-Qiang Gu2Hamidreza Abadikhah3Jun-Wei Wang4Xin Xu5Sinopec Northwest Oilfield Branch, Research Institute of Petroleum EngineeringSinopec Northwest Oilfield Branch, Research Institute of Petroleum EngineeringCAS Key Laboratory of Materials for Energy Conversion, Department of Materials Science and Engineering, University of Science and Technology of ChinaCAS Key Laboratory of Materials for Energy Conversion, Department of Materials Science and Engineering, University of Science and Technology of ChinaCAS Key Laboratory of Materials for Energy Conversion, Department of Materials Science and Engineering, University of Science and Technology of ChinaCAS Key Laboratory of Materials for Energy Conversion, Department of Materials Science and Engineering, University of Science and Technology of ChinaAbstract Highly efficient Si3N4 ceramic planar membrane for water desalination process using membrane distillation was prepared by the dual-layer phase inversion tape casting and sintering method. In comparison with typical phase inversion tape casting method, the green tape was formed using Si3N4 slurry on the top and graphite slurry on the bottom. After consuming away the graphite structure, a ceramic membrane consisting of a two-layered structure (skin and finger-like layers) was obtained. The skin layer was relatively tight, and thus could act as a functional layer for separation, while the finger-like layer contained straight open pores with a diameter of 100 μm, acting as a support with low transport resistance. For comparison, typical Si3N4 ceramic membrane was fabricated by phase inversion technique without graphite substrate, resulting in a three-layered structure (skin, finger-like, and sponge layers). After membrane modification from hydrophilic to hydrophobic with polymer derived nanoparticle method, the water desalination performance of the membranes was tested using the sweeping gas membrane distillation (SGMD) with different NaCl feed solutions. With the increase of salt content from 4 to 12 wt%, the water flux decreased slightly while rejection rate maintained over 99.99%. Comparing with typical three-layered Si3N4 membrane, an excellent water flux enhancement of over 83% was resulted and the rejection rate remained over 99.99%.http://link.springer.com/article/10.1007/s40145-018-0263-7dual-layer phase inversion tape castinggraphitefull-inorganic hydrophobic membranemembrane distillation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shan Tao Yan-Dong Xu Jian-Qiang Gu Hamidreza Abadikhah Jun-Wei Wang Xin Xu |
spellingShingle |
Shan Tao Yan-Dong Xu Jian-Qiang Gu Hamidreza Abadikhah Jun-Wei Wang Xin Xu Preparation of high-efficiency ceramic planar membrane and its application for water desalination Journal of Advanced Ceramics dual-layer phase inversion tape casting graphite full-inorganic hydrophobic membrane membrane distillation |
author_facet |
Shan Tao Yan-Dong Xu Jian-Qiang Gu Hamidreza Abadikhah Jun-Wei Wang Xin Xu |
author_sort |
Shan Tao |
title |
Preparation of high-efficiency ceramic planar membrane and its application for water desalination |
title_short |
Preparation of high-efficiency ceramic planar membrane and its application for water desalination |
title_full |
Preparation of high-efficiency ceramic planar membrane and its application for water desalination |
title_fullStr |
Preparation of high-efficiency ceramic planar membrane and its application for water desalination |
title_full_unstemmed |
Preparation of high-efficiency ceramic planar membrane and its application for water desalination |
title_sort |
preparation of high-efficiency ceramic planar membrane and its application for water desalination |
publisher |
SpringerOpen |
series |
Journal of Advanced Ceramics |
issn |
2226-4108 2227-8508 |
publishDate |
2018-03-01 |
description |
Abstract Highly efficient Si3N4 ceramic planar membrane for water desalination process using membrane distillation was prepared by the dual-layer phase inversion tape casting and sintering method. In comparison with typical phase inversion tape casting method, the green tape was formed using Si3N4 slurry on the top and graphite slurry on the bottom. After consuming away the graphite structure, a ceramic membrane consisting of a two-layered structure (skin and finger-like layers) was obtained. The skin layer was relatively tight, and thus could act as a functional layer for separation, while the finger-like layer contained straight open pores with a diameter of 100 μm, acting as a support with low transport resistance. For comparison, typical Si3N4 ceramic membrane was fabricated by phase inversion technique without graphite substrate, resulting in a three-layered structure (skin, finger-like, and sponge layers). After membrane modification from hydrophilic to hydrophobic with polymer derived nanoparticle method, the water desalination performance of the membranes was tested using the sweeping gas membrane distillation (SGMD) with different NaCl feed solutions. With the increase of salt content from 4 to 12 wt%, the water flux decreased slightly while rejection rate maintained over 99.99%. Comparing with typical three-layered Si3N4 membrane, an excellent water flux enhancement of over 83% was resulted and the rejection rate remained over 99.99%. |
topic |
dual-layer phase inversion tape casting graphite full-inorganic hydrophobic membrane membrane distillation |
url |
http://link.springer.com/article/10.1007/s40145-018-0263-7 |
work_keys_str_mv |
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