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Featured researches published by Kyosuke Komiya.


Green Chemistry | 2003

A novel non-phosgene polycarbonate production process using by-product CO2 as starting materialPresented at The First International Conference on Green & Sustainable Chemistry, Tokyo, Japan, March 13?15, 2003.

Shinsuke Fukuoka; Mamoru Kawamura; Kyosuke Komiya; Masahiro Tojo; Hiroshi Hachiya; Kazumi Hasegawa; Muneaki Aminaka; Hirosige Okamoto; Isaburo Fukawa; Shigenori Konno

Asahi Kasei Corp. has succeeded in the development of a new green process for producing an aromatic polycarbonate based on bisphenol-A (hereafter usually abbreviated as PC) without using phosgene and methylene chloride. The new PC production process is the worlds first to use carbon dioxide (CO2) as a starting material. Until Asahi Kaseis new process was revealed, all of the PC in the world has been produced using carbon monoxide (CO) made from cokes or lower hydrocarbons and oxygen as a starting material. Furthermore, more than about 93% of the PC has been produced by the so-called “phosgene process” which uses phosgene made from CO and chlorine (Cl2) as a monomer. However, the phosgene process inherently involves a number of environmental and economic shortcomings in addition to the high toxicity of phosgene itself and the high carcinogenic probability of methylene chloride itself. Asahi Kaseis new process enables high-yield production of the two important products for our citizens’ lives, high-quality PC and high-purity monoethylene glycol (MEG), starting from ethylene oxide (EO), carbon dioxide (CO2) and bisphenol-A. This new technology not only overcomes the environmental and economic problems existing in the phosgene process, but also achieves resource conservation, and energy conservation. Furthermore, the new process contributes to the earth environment by the reduction of CO2 emissions (173 tons per thousand tons of product PC). Commercial application of the new process was carried out at the 50,000 ton year−1 PC plant of Chimei-Asahi Corporation, a joint venture between Asahi Kasei Corporation and Chi Mei Corporation, which was newly constructed in Taiwan and has been successfully operating since June 2002. In recognition of the outstanding advance in ecological and sustainable performance that this technology represents, Japans Minister of Economy, Trade and Industry conferred the Green and Sustainable Chemistry Award of 2003 on us. Furthermore, the Chairman of Japan Chemical Industry Association also conferred the 35th Japan Chemical Industry Association Award of 2003 on us as an outstanding chemical technology. An outline of this new non-phosgene PC process embodying the spirit of Green and Sustainable Chemistry is given here.


Green Chemistry | 2003

A novel non-phosgene polycarbonate production process using by-product CO2 as starting material

Shinsuke Fukuoka; Mamoru Kawamura; Kyosuke Komiya; Masahiro Tojo; Hiroshi Hachiya; Kazumi Hasegawa; Muneaki Aminaka; Hirosige Okamoto; Isaburo Fukawa; Shigenori Konno


Archive | 1989

Porous, crystallized, aromatic polycarbonate prepolymer, a porous, crystallized aromatic polycarbonate, and production methods

Isaburo Fukawa; Shinsuke Fukuoka; Kyosuke Komiya; Yoro Sasaki


Catalysis Surveys From Asia | 2010

A Novel Non-Phosgene Process for Polycarbonate Production from CO2: Green and Sustainable Chemistry in Practice

Shinsuke Fukuoka; Isaburo Fukawa; Masahiro Tojo; Kazuhiro Oonishi; Hiroshi Hachiya; Muneaki Aminaka; Kazumi Hasegawa; Kyosuke Komiya


Archive | 1998

Method for producing an aromatic polycarbonate

Hiroshi Hachiya; Kyosuke Komiya


Archive | 1999

System and process for producing polycondensation polymer

Kyosuke Komiya; Muneaki Aminaka


Archive | 1998

Process for producing aromatic carbonates

Masahiro Tojo; Kazuhiro Oonishi; Kyosuke Komiya


Archive | 1996

Process for the producing of aromatic carbonate

Kyosuke Komiya; Masahiro Tojo; Shinsuke Fukuoka


Archive | 1997

Method for producing an aromatic polycarbonate having improved melt stability

Kyosuke Komiya; Shinsuke Fukuoka


Archive | 1997

Polycarbonate comprising different kinds of bonding units and process for the preparation thereof

Hiroshi Hachiya; Kyosuke Komiya; Miyuki Kazunori

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Hiroshi Hachiya

Shibaura Institute of Technology

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