Prediction of Lysozyme Separation by Polyelectrolyte Precipitation in Mechanically Agitated MSMPR Reactor
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概要
- 論文の詳細を見る
In lysozyme precipitation by polyacrylic acid (PAA) with different molecular weights, the lysozyme separation was predicted using Smoluchowskis collision theory and the micromixing limitation model, plus the model predictions were compared with the experimental data from an MSMPR reactor. Since, in Smoluchowskis theory, ideal mixing was assumed in the solution, the lysozyme separation was only predicted to depend on the PAA properties, such as the PAA dosage and its molecular weights. However, in the micromixing limitation model, the lysozyme separation was represented as being affected by the operational conditions, including the mean residence time and the mixing intensity, in addition to the PAA properties. The difference between the lysozyme separations predicted by each model significantly increased at short residence time and low agitation speed. When compared with the experimental data obtained with various PAA properties and operational conditions, the degree of the lysozyme separation predicted by the micromixing limitation model was found to be in better consistency with the experimental data than that done by Smoluchowskis theory because the operational conditions as well as the PAA properties were included in describing the lysozyme-PAA combination in the reactor.
- 社団法人 化学工学会の論文
著者
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HIRASAWA Izumi
Department of Applied Chemistry, School of Science and Engineering, Waseda University
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Kim W‐s
Yonsei Univ. Seoul Kor
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Kim Woo-sik
Department Of Chemical Engineering Kyunghee University
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Kim Hyun-seok
Department Of Chemical Engineering Institution Of Materials Science And Technology Kyunghee Universi
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Kim Hyoun-soo
Department Of Chemical Engineering Institution Of Materials Science And Technology Kyunghee Universi
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Hirasawa I
Waseda Univ. Tokyo Jpn
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Hirasawa Izumi
Department Of Applied Chemistry Graduate School Of Advanced Science And Engineering Waseda Universit
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KIM WOON-SOO
Department of Chemical Engineering, Myongji University
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Kim Woo-sik
Department Of Chemical Engineering Ilri Kyung Hee University
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