K
Kozo Koide
Researcher at Shizuoka University
Publications - 20
Citations - 791
Kozo Koide is an academic researcher from Shizuoka University. The author has contributed to research in topics: Bubble & Mass transfer coefficient. The author has an hindex of 12, co-authored 20 publications receiving 760 citations.
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Gas holdup and volumetric liquid-phase mass transfer coefficient in solid-suspended bubble columns
TL;DR: In this paper, the effects of column dimensions, gas velocity and the properties of liquid and solid particles on the gas holdup eG and the volumetric liquid-phase mass transfer coefficient kLa in the solid-suspended bubble column of liquid-solid batch operation were studied experimentally.
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Oxidative degradation of aqueous phenol effluent with electrogenerated fenton''s reagent
TL;DR: In this article, a novel process of an oxidative degradation of aqueous phenol effluent with hydrogen peroxide produced by electroreduction of oxygen dissolved in the effluent was studied.
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Gas holdup and volumetric liquid-phase mass transfer coefficient in bubble column with draught tube and with gas dispersion into annulus
TL;DR: In this article, the gas holdup e and the volumetric liquid-phase mass transfer coefficient kLa were studied experimentally in a bubble column with a draught tube and with gas dispersion into the tube.
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Effects of surface-active substances on gas holdup and gas-liquid mass transfer in bubble column
TL;DR: In this article, the effects of surfactants and antifoam agent on the gas holdup e, the liquid-phase mass transfer coefficient kL and the volumetric liquid phase transfer coefficient KLa in a bubble column were studied experimentally.
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Gas holdup and volumetric liquid-phase mass transfer coefficient in solid-suspended bubble column with draught tube
TL;DR: In this paper, the effects of column dimensions, gas velocity and properties of the liquid and the solid particles on the gas holdup eG and the volumetric liquid-phase mass transfer coefficient kLa in a solid suspended bubble column with a draught tube and a conical bottom were studied experimentally in a liquid-solid batch operation.