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Dive into the research topics where Kazuhiro Takamizawa is active.

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Featured researches published by Kazuhiro Takamizawa.


Journal of Fermentation and Bioengineering | 1996

A novel model for continuous fermentation process for Worcestershire sauce production using a trickle bed bioreactor

Tetsuya Fukaya; Yoshiya Furuta; Yukio Ishiguro; Hiroyuki Horitsu; Kazuhiro Takamizawa

Abstract The mass balances of sugar and ethanol were computed on the assumption that the trickle bed bioreactor used was a continuous-flow stirred-tank reactor (CSTR), and simulation of the steady ethanol concentration at various dilution rates was performed using a modified Contois equation. The equation proposed here represents the conventional Contois equation as a particular equation of the modified formula ( m =1.0). The stability of the continuous fermentation in the production of Worcestershire sauce was evaluated, and this process was kinetically analyzed using the modified Contois equation. Neither decrease in yeast activity nor clogging with growth yeasts was observed in the trickle bed bioreactor with comb-shaped ceramic carriers during the fermentation period (about 6 months). From the results of the evaluation of mixing conditions this bioreactor can be regarded as a combination of a plug flow reactor (PFR) in the ceramic part, and a CSTR in the retention part. However, the trickle bed bioreactor could function as a CSTR having the same capacity as the actual volume of the retention part for the fermentation contribution rate of each part of the bioreactor. The observed ethanol concentration and productivity at the steady states were almost the same as the values calculated using the material balance equations of the sugar concentration and the ethanol concentration in a CSTR and the modified Contois equation with m =6.0. Thus, the modified Contois equation ( m =6.0) has been proposed as a design equation for a fermentation process for Worcestershire sauce production. When the modified Contois equation was applied to an acetic acid fermentation process and a plant tissue culture the observed product concentrations at each dilution rate were similar to the calculated values. It has been proved that the modified Contois equation is applicable not only to an alcohol fermentation process for Worcestershire sauce production but also to other fermentation processes and growth reactions.


Journal of Bioscience and Bioengineering | 2000

Isolation and characterization of a tetrachloroethylene dechlorinating bacterium, DPH-1

Yu-Sen Chang; Masahiro Hatsu; Kim Hyun Jung; Yun Yoo; Kazuhiro Takamizawa


日本生物工学会大会講演要旨集 | 2013

2P-005 Isolation and Characterization of a High Currentproducing Novel Bacterial Strain

Samson Viulu; Kohei Nakamura; Akihiro Kojima; Yuki Yoshiyasu; Sakiko Saitou; Kazuhiro Takamizawa


Archive | 2013

Exclusively Xylobiose from Xylan caviae ME-1 Xylanase V, Which Produces Purification and Characterization of Aeromonas

Kazuhiro Takamizawa; Tohru Suzuki; Hiroyuki Horitsu


日本生物工学会大会講演要旨集 | 2012

2Hp09 Study on behavior of bacteria in an Fe(III)-reducing anaerobic microbial enrichment induced with methane

Samson Viulu; Kohei Nakamura; Sakiko Saitou; Kazuhiro Takamizawa


日本生物工学会大会講演要旨集 | 2012

4Ip27 Xylitol Production Using xdhA and ladA Homologous Gene Disrupted Mutants of Aspergillus oryzae KBN616

Asif Mahmud; Noriyuki Kitamoto; Tohru Suzuki; Kohei Nakamura; Kazuhiro Takamizawa


日本生物工学会大会講演要旨集 | 2011

1Ap21 Dehydrogenase (xdhA, xdhC, ladA) Homologous Genes Disrupted Mutants of Aspergillus oryzae KBN616 for Increased Xylitol Production

Asif Mahmud; Noriyuki Kitamoto; Tohru Suzuki; Kohei Nakamura; Kazuhiro Takamizawa


日本生物工学会大会講演要旨集 | 2003

2F11-4 Xylitol dehydrogense genes of Aspergillus oryzae

Ha Tran Lien; Noriyuki Kitamoto; Keiichi Kawai; Kazuhiro Takamizawa; Tohru Suzuki


日本生物工学会大会講演要旨集 | 2000

319 Purification and Characterization of α-L-arabinofuranosidase from Rhizomucor pusillus

A.K.M. Shofiqur Rahman; Shinya Kawamura; Masahiro Hatsu; Kazuhiro Takamizawa


日本生物工学会大会講演要旨集 | 1997

Grouping of xylanase genes of Aeromonas caviae ME-1

Kengo Usui; Keiji Ibata; Tohru Suzuki; Keiichi Kawai; Masahiro Hatsu; Kazuhiro Takamizawa

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Keiichi Kawai

Kyoto Prefectural University

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