Two-stage electrodialytic concentration of glyceric acid from fermentation broth(BIOCHEMICAL ENGINEERING)
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概要
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The aim of this research was the application of a two-stage electrodialysis (ED) method for glyceric acid (GA) recovery from fermentation broth. First, by desalting ED, glycerate solutions (counterpart is Na^+) were concentrated using ionexchange membranes, and the glycerate recovery and energy consumption became more efficient with increasing the initial glycerate concentration (30 to 130g/l). Second, by water-splitting ED, the concentrated glycerate was electroconverted to GA using bipolar membranes. Using a culture broth of Acetobacter tropicalis containing 68.6g/l of D-glycerate, a final D-GA concentration of 116g/l was obtained following the two-stage ED process. The total energy consumption for the D-glycerate concentration and its electroconversion to D-GA was approximately 0.92kWh per 1kg of D-GA.
著者
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KITAMOTO Dai
Research Institute for Innovation in Sustainable Chemistry, National Institute of Advanced Industria
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Fukuoka Tokuma
Research Institute for Innovation in Sustainable Chemistry, National Institute of Advanced Industria
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Kitamoto Dai
Research Institute For Innovation In Sustainable Chemistry National Institute Of Advanced Science An
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Fukuoka Tokuma
Research Institute For Innovation In Sustainable Chemistry National Institute Of Advanced Science An
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YANAGISHITA Hiroshi
Research Institute for Green Technology, National Institute of Advanced Industrial Science and Techn
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Habe Hiroshi
Research Institute for Innovation in Sustainable Chemistry, National Institute of Advanced Industria
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Shimada Yuko
Department of Chemical Industry, Science University of Tokyo
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ITAGAKI Masayuki
Department of Chemical Industry, Science University of Tokyo
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SAKAKI Keiji
Research Institute for Innovation in Sustainable Chemistry, National Institute of Advanced Industria
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Kitamoto Dai
Research Institute For Innovation In Sustainable Chemistry National Institute Of Advanced Industrial
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Watanabe Kunihiko
Department of Chemical Industry, Science University of Tokyo
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Shimada Yuko
Department Of Chemical Industry Science University Of Tokyo
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Sakaki Keiji
Research Institute For Innovation In Sustainable Chemistry National Institute Of Advanced Industrial
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Habe Hiroshi
Research Institute For Innovation In Sustainable Chemistry National Institute Of Advanced Industrial
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Watanabe Kunihiro
Department Of Chemical Industry Science University Of Tokyo
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Yanagishita Hiroshi
Research Institute For Innovation In Sustainable Chemistry National Institute Of Advanced Industrial
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Yanagishita Hiroshi
Aist Tsukuba Central 5 National Inst. Of Advanced Industrial Sci. And Technol.
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Yanagishita Hiroshi
Research Institute For Green Technology National Institute Of Advanced Industrial Science And Techno
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Watanabe Kunihiko
Department Of Chemical Industry Science University Of Tokyo
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Itagaki Masayuki
Department Of Chemical Industry Science University Of Tokyo
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Watanabe Kunihiko
Department Of Applied Biochemistry Kyoto Prefectural University
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