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Featured researches published by Tzu-Hsiang Weng.


international conference on chemistry and chemical engineering | 2010

Enhanced O 2 /N 2 separation performance of poly(phenylene oxide)/SBA-15/carbon molecule sieve multilayer mixed matrix membrane using SBA-15 zeolite particles

Tzu-Hsiang Weng; Ming-Yen Wey; Hui-Hsin Tseng

Multilayer composite membranes were composed using large-pore mesoporous silica molecular sieve SBA-15, PPO polymer, and CMS/Al<inf>2</inf>O<inf>3</inf> substrate. The SBA-15 was used at different aging temperatures to transform into different crystal sizes. Membranes were characterized by field emission scanning electron microscopy (FESEM) to observe the morphology and cross-sectional images. FESEM images of these composite membranes indicate the existence of voids between the PPO/SBA-15 layer and CMS/Al<inf>2</inf>O<inf>3</inf> if 110°C SBA-15 is added. The permeability and selectivity of PPO/SBA-15/CMS/Al<inf>2</inf>O<inf>3</inf> membranes with different aging temperatures of SBA-15 were also investigated. The selectivity for O<inf>2</inf>/N<inf>2</inf> separation increased remarkably from 6.2 to 8.8, which corresponded to the increase in aging temperature of SBA-15 for the PPO/SBA-15/CMS/Al<inf>2</inf>O<inf>3</inf> composite membrane from 90 to 110°C, respectively. This phenomenon confirms that blockage and reduced mobility of polymer chains as a result of mixing the aging temperature of SBA-15 at 110°C with a PPO matrix may significantly improve the gas separation performance of composite membranes.


International Journal of Hydrogen Energy | 2009

Preparation and characterization of multi-walled carbon nanotube/PBNPI nanocomposite membrane for H2/CH4 separation

Tzu-Hsiang Weng; Hui-Hsin Tseng; Ming-Yen Wey


Microporous and Mesoporous Materials | 2008

A comparison of carbon/nanotube molecular sieve membranes with polymer blend carbon molecular sieve membranes for the gas permeation application

Popuri Srinivasa Rao; Ming-Yen Wey; Hui-Hsin Tseng; Itta Arun Kumar; Tzu-Hsiang Weng


Desalination | 2009

Preparation and characterization of carbon molecular sieve membranes for gas separation—the effect of incorporated multi-wall carbon nanotubes

Hui-Hsing Tseng; Itta Arun Kumar; Tzu-Hsiang Weng; Chi-Yuan Lu; Ming-Yen Wey


International Journal of Hydrogen Energy | 2010

Fabrication and characterization of poly(phenylene oxide)/SBA-15/carbon molecule sieve multilayer mixed matrix membrane for gas separation

Tzu-Hsiang Weng; Hui-Hsin Tseng; Ming-Yen Wey


Journal of Membrane Science | 2011

Effect of SBA-15 texture on the gas separation characteristics of SBA-15/polymer multilayer mixed matrix membrane

Tzu-Hsiang Weng; Hui-Hsin Tseng; Ming-Yen Wey


International Journal of Hydrogen Energy | 2008

Preparation and characterization of PPSU/PBNPI blend membrane for hydrogen separation

Tzu-Hsiang Weng; Hui-Hsin Tseng; Ming-Yen Wey


Microporous and Mesoporous Materials | 2013

SBA-15/CMS composite membrane for H2 purification and CO2 capture: Effect of pore size, pore volume, and loading weight on separation performance

Hui-Hsin Tseng; Arun Kumar Itta; Tzu-Hsiang Weng; Yi-Ling Li


International Journal of Hydrogen Energy | 2013

Development of CMS/Al2O3-supported PPO composite membrane for hydrogen separation

Tzu-Hsiang Weng; Hui-Hsin Tseng; Guo-Liang Zhuang; Ming-Yen Wey


Journal of Applied Polymer Science | 2009

Effects of crosslinking modification on the O2/N2 separation characteristics of poly(phenyl sulfone)/poly(bisphenol A‐co‐4‐nitrophthalic anhydride‐co‐1,3‐phenylenediamine) blend membranes

Tzu-Hsiang Weng; Hui-Hsin Tseng; Ming-Yen Wey

Collaboration


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Hui-Hsin Tseng

Chung Shan Medical University

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Ming-Yen Wey

National Chung Hsing University

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Itta Arun Kumar

National Chung Hsing University

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Arun Kumar Itta

National Chung Hsing University

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Chi-Yuan Lu

National Chung Hsing University

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Guo-Liang Zhuang

National Chung Hsing University

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Hui-Hsing Tseng

Chung Shan Medical University

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Popuri Srinivasa Rao

National Chung Hsing University

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Yi-Ling Li

Chung Shan Medical University

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