九州大学 · 工学
Hayashi教授の研究室は、ポリイミド膜のカーボナイゼーションを応用した炭素分子ふnow膜(CMS膜)の開発に注力しています。特に、アルミナ支持体上に形成したBPDA-pp'ODA系ポリイミド膜を高温処理することで、エチレン・エタンやプロピレン・プロパンの分離に優れた透過性能と選択性を実現しています。酸化処理や熱履歴の制御による膜の耐久性向上や、反応条件の最適化による分離性能の向上も重要な研究テーマです。
Figures are computed from collected data and may differ slightly.
A BPDA−pp‘ODA polyimide film was formed on the outer surface of a porous alumina support tube (outside diameter, 2.4 mm; inside diameter, 1.8 mm; void fraction, 0.48; and average pore size, 140 nm) and was then carbonized at an optimized temperature of 700 °C. Membranes prepared by repeating this process two and three times respectively exhibited permeances of approximately 1 × 10-8 mol·m-2·s-1·Pa-1 for C2H4 and 2 × 10-9 mol·m-2·s-1·Pa-1 for C2H6 at 100 °C. Permeances to C3H6 and C3H8 at 100 °C
ADVERTISEMENT RETURN TO ISSUEPREVArticleNEXTSimultaneous Improvement of Permeance and Permselectivity of 3,3',4,4'-Biphenyltetracarboxylic Dianhydride-4,4'-Oxydianiline Polyimide Membrane by CarbonizationJun-ichiro Hayashi, Masatake Yamamoto, Katsuki Kusakabe, and Shigeharu MorookaCite this: Ind. Eng. Chem. Res. 1995, 34, 12, 4364–4370Publication Date (Print):December 1, 1995Publication History Published online1 May 2002Published inissue 1 December 1995https://doi.org/10.1021/ie00039a028RIGHTS &
A BPDA-pp‘ODA polyimide film was formed on the outer surface of a porous alumina support tube and was then carbonized in an inert atmosphere at 600−900 °C. The resulting carbon molecular sieving (CMS) membranes were oxidized in O2−N2 mixtures at 300 °C or in CO2 at 800−900 °C, and the permeation properties were determined. The O2 oxidation increased both permeances and permselectivities. The CMS membranes were exposed to air at 100 °C for 1 month, and their resistance to oxidation was determined
This study was carried out for the purpose of experimentally establishing the variation with heating rate of the extent of bridge breaking relative to that of cross-linking, which is a reasonable explanation of the heating rate effect on the tar yield in pyrolysis of low rank coals. A brown coal was pyrolyzed slowly at a heating rate of 0.167 K s-1 and rapidly at 2−3 × 103 K s-1. The yield of tar in the rapid pyrolysis increased with temperature and leveled off at 923 K and 26 mol-C per 100 mol-
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