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Researcher Information

last modified:2024/01/08

Associate Professor KAWANISHI Takuya

Mail Laboratory Website

Faculty, Affiliation

Faculty of Frontier Engineering,Institute of Science and Engineering

College and School Educational Field

Division of Natural Sciences, Graduate School of Natural Science and Technology
Division of Electrical Engineering and Computer Science, Graduate School of Natural Science and Technology
Division of Natural System, Graduate School of Natural Science and Technology
School of Frontier Engineering, College of Science and Engineering

Laboratory

 TEL:076-234-4809 FAX:076-234-4829

Academic Background

【Academic background(Doctoral/Master's Degree)】
The University of Tokyo Doctor Graduate School, Division of Engineering 1990 Accomplished credits for doctoral program
【Academic background(Bachelor's Degree)】
The University of Tokyo 1984
【Degree】
Doctor of Engineering
Master of Engineering

Career

Kanazawa University(1991/01/01-1998/07/31)
Kanazawa University(1998/08/01-)

Year & Month of Birth

1960/05

Academic Society




Soil Science Society of America

Award

Specialities

Environmental dynamic analysis、Statistics、、

Speciality Keywords

Environment, Soil, Mass transport, Heterogeneous media

Research Themes

Transport in multiphase flow in porous media

Remediation of soil and groundwater pollution

Dynamics of chemical substances in water and soil environment

Books

  •  How Highschool Mathematics Serves Your Life. Chikumashobo Ltd. 2007/04
  •  Hayakawa K.(Editorial supervisor), Tang, N.(Chief editor), ... , Van, D. A., Kawanishi, T. ほか Past, Present and Future Environments of Pan-Japan Sea Region MARUZEN PUBLISHING CO. LTD. 2006/09
  •  Arid Land Afforestation against Climate Change CORONA PUBLISHING CO., LTD. 2011/03
  •  Water Environment Handbook Asakura Publishing Co. Ltd. 2006/10
  •  Encyclopedia of Arid Land MARUZEN PUBLISHING CO. LTD. 2009/07

Papers

  •  Maximum likelihood and the maximum product of spacings from the viewpoint of the method of weighted residuals Takuya Kawanishi Computational and Applied Mathematics 39 2020/05/29
  •  Denitrification in shallow groundwater in a coastal agricultural area in Japan. Nutrient Cycling in Agroecosytems
  •  An efficient ethanol concentration process by vapor permeation through asymmetric polyimide membrane. JOURNAL OF MEMBRANE SCIENCE 177 233-239 2000
  •  Enzymatic activity of Chromobacterium viscosum lipase in an AOT/Tween 85 mixed reverse micellar system JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY 74 423-428 1999
  •  Fluid-fluid interfacial area during two and three phase fluid displacement in porous media: a network model study Proceedings of International Conference and Special Seminars on GROUNDWATER QUALITY: Protection and Remediation (GQ’98) Tubingen, Germany, 21-25 September 1998 89-97 1998

show all

  •  Increased activity of Chromobacterium viscosum lipase in AOT reverse micelles in the presence of short chain methoxypolyethylene glycol. JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY 76 844-850 2001
  •  Kinetics of sorption and permeation of water in glassy polyimide JOURNAL OF MEMBRANE SCIENCE 156 11-16 1999
  •  Estimation of soil degradation rate constants from vertical distribution of soil carbon content. JOURNAL OF CHEMICAL ENGINEERING OF JAPAN 36 4 428-434 2003/04
  •  Activity of acetone treated Chromobacterium viscosum lipase in AOT reverse micellar systems in the presence of low molecular weight polyethylene glycol M.M. Zaman, Y. Hayashi, M.M.R. Talukder,T. Kawanishi, BIOCHEMICAL ENGINEERING JOURNAL 29 1 46-54 2006/04
  •  Effects of aprotic solvents on the enzymatic activity of lipase in AOT reverse micelles M.M. Zaman, Y. Hayashi, M.M.R. Talukder, E. Saitoh ,T. Kawanishi BIOCHEMICAL ENGINEERING JOURNAL 30 3 237-244 2006/06
  •  Ultrasonication enhanced hydrolytic activity of lipase in water/isooctane two-phase systems M.M.R. Talukder, M.M. Zaman, Y. Hayashi, J.C. Wu,T. Kawanishi BIOCATALYSIS AND BIOTRANSFORMATION 24 3 189-194 2006/05
  •  Litter and Soil Carbon Dynamics Model in Arid Forest Ecosystems: Application to Sturt Meadows Experiments in Western Australia Kumada, S., Kawanishi, T., Hayashi, Y., Ogomori, K., Kobayashi, Y., Takahashi, N., Saito, M., Hamano, H., Kojima T. and Yamada, K Journal of Ecotechnology Research 12 3 167-170 2006
  •  Damage to and recovery of coastlines polluted with C-heavy oil spilled from the Nakhodka Hayakawa, K., Nomura, M., Nakagawa, T., Oguri, S., Kawanishi, T., Toriba, A., Kizu, R., Sakaguchi, T., Tamiya, E WATER RESEARCH 40 5 981-989 2006/03
  •  Pretreatment of Chromobacterium viscosum lipase with acetone increases its activity in sodium bis-(2-ethylhexyl) sulfosuccinate (AOT) reverse micelles Talukder, M.M.R., Zaman, M.M., Hayashi, Y., Wu, J.C., Kawanishi, T JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY 80 10 1166-1169 2005/10
  •  Enhanced activity and stability of Chromobacterium visocosum lipase in AOT reverse micellar systems by pretreatment with acetone Zaman, M. M., Hayashi, Y., Talukder, M. M. R., Kawanishi, T JOURNAL OF MOLECULAR CATALYSIS B-ENZYMATIC 32 4 149-155 2005/02
  •  Improvement in enzyme activity and stability by addition of low molecular weight polyethylene glycol to sodium bis (2-ethyl-1-hexyl) sulfosuccinate/isooctane reversemicellar system Talukder, M. M. R., Takeyama, T., Hayashi, Y., Wu, J. C., Kawanishi, T., Shimizu, N., Ogino, C APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY 110 2 101-112 2003
  •  A kinetic model for enzymatic reaction in reverse micellar system, involving water-insoluble substrates and enzyme activators Hayashi, Y., Talukder, M. M. R., Takeyama, Wu, J. C., Kawanishi, T., Shimizu, N JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY 78 8 860-864 2003
  •  Activity and stability of Chromobacterium viscosum lipase in modified AOT reverse micelles Talukder, M. M. R., Hayashi, Y., Takeyama, T., Zaman, M. M., Wu, J. C., Kawanishi, T., Shimizu, N JOURNAL OF MOLECULAR CATALYSIS B-ENZYMATIC 22 3 203-209 2003
  •  Structural Investigation of Water Trapped in AOT/isooctane Reverse Micelles Containing PEG by Fourier Transform Infrared Spectroscopy 29 1 124-130 2003
  •  Development of Denitrification Reactor using Hydrogen Generated by Electrolysis Journal of Water and Waste 45 5 2003 2003
  •  Fractal Analysis of Daphnia Motion for Acute Toxicity Bioassay, Shimizu, N., Ogino, C., Kawanishi, T. and Hayashi, Y ENVIRONMENTAL TOXICOLOGY 17 5 441-448 2002/10
  •  Nitrate Removal Rate in a Continuous Column Denitrification Reactor Using Hydrogen Generated by Electrolysis with Carbon Anodes and Stainless Cathodes Dadang, S., Kawanishi, T., Shimizu, N., Hayashi, Y WATER SCIENCE AND TECHNOLOGY 46 11 39-44 2002
  •  Use of nitrogen stable isotope ratio of periphyton for monitoring nitrogen sources in a river system Toda, H., Uemura, Y., Okino, T., Kawanishi, T. and Kawashima, H WATER SCIENCE AND TECHNOLOGY 46 11 431-435 2002
  •  Denitrification in shallow groundwater in a coastal agricultural area in Japan Toda, H., Mochizuki, Y., Kawanishi, T. and Kawashima, H NUTRIENT CYCLING IN AGROECOSYSTEMS 63 2 167-173 2002
  •  The 5-HT1A Receptor against, 8-OH-DPAT, Attenuate Stress-induced Anorexia in Conjunction with the Suppression of Hypothalamic Serotonin Release in Rats Shimizu, N., Hori, T., Ogino, C., Kawanishi, T., Hayashi, Y BRAIN RESEARCH 887 178-182 2000
  •  A kinetic model for enzymatic reactions in a reverse micellar system, involving water-insoluble substrate Hossain, J. M., Hayashi, Y., Shimizu, N. and Kawanishi JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY 67 190-194 1996
  •  Determination of critical micelles concentration of aerosol OT/isooctane reverse micelles by fourier transformed infrared spectroscopy Hossain, J. M., Hayashi, Y., Shimizu, N. and Kawanishi, T JOURNAL OF CHEMICAL ENGINEERING OF JAPAN 29 2 381-384 1996
  •  Reaction mechanism for NOx-aqueous solution -- effect of pH of aqueous solution on absorption rate J. Jpn. Soc. Atomos. Environ 31 2 75-87 1996
  •  Difference in diffusion coefficients of 14NO3--N and 15NO3--N affects the apparent fractionation factor associated with denitrification in soil Kawanishi, T., Hayashi, H., Kihou, N., Yoneyama, T. and Ozaki, Y SOIL SCIENCE AND PLANT NUTRITION 42 2 407-411 1996
  •  Nitrogen removal from soil percolate by using rice straw Journal of Japanese Society on Water Environment 18 12 993-1000 1995
  •  The permeability of a magnetic particle bed suspended magnetically, J. Soc. Powder Technol. Japan 32 8 538-543 1995
  •  Recovery and reuse of manganese dioxide catalyst using ferrosoferric oxide as magnetic substance for hydrogen peroxide treatment Journal of Japan Society on Water Environment 18 7 561-568 1995
  •  Simulation of the transport processes occuted in pouring organic compounds into rapid infiltratior for removing nitrogen from wastewater Journal of Japan Society on Water Environment 18 6 511-517 1995
  •  The rate constant of thermal decomposition of zirconium tetra-n-propoxide in preparation of zirconia film by thermal CVD method 20 5 648-656 1994
  •  Apparent nitrogen isotope fractionation factor through a finite system where denitrification and solute transport simultaneously occur Journal of Japan Society on Water Environment 16 10 685-689 1993
  •  Performance of crossflow cascade packed column at gas velocities above the flooding point of countercurren beds Hayashi, Y., Kawanishi, T., Uda, T., Akiyama, Y. and kageyama, N INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH 32 4 652-656 1993
  •  Dispersion effect on the apparent nitrogen fractionation factor associated with denitrification in soil; evaluation by a mathematical model Kawanishi, T., Hayashi, Y., Kihou, N., Yoneyama, T. and Ozaki, Y SOIL BIOLOGY & BIOCHEMISTRY 25 3 349-354 1993
  •  Numerical analysis of deposition rates of zirconium thin films by thermal chemical vapor deposition JOURNAL OF THE CERAMIC SOCIETY OF JAPAN 100 3 266-271 1992
  •  Dewatering of activated sludge with nonuniform electric field -- improvement in the shape of electrodes Journal of Japan Society on Water Environment 15 9 612-620 1992
  •  Dewatering of activated sludge with coaxial cylindrical electrodes Journal of Japan Society on Water Environment 15 9 600-611 1992
  •  Measurement of denitrification fractionation factor by using column apparatus Japanese Journal of soil Science and Plant Nutrition 62 4 424-426 1991
  •  Removal of nutrients in gray water by oxidation pond -- a study using numerical model Environmenal Science (Tokyo) 4 2 139-143 1991
  •  Small oxydation pond for gray water treatment in rural region Journal of Water and Waste 33 6 34-39 1991
  •  A model for the prediction of seasonal variation of water quality in a small oxidation pond Environmenal Science (Tokyo) 3 4 283-292 1990
  •  Oxygen diffusion rate into trech soil treatment systems and the enhancement of the wastewater feed rate per unit area Japan Journal of Water Pollution Research 13 5 303-310 1990
  •  Mechanisms of biological clogging in soil infiltration treatment systems Japan Journal of Water Pollution Research 13 3 180-188 1990
  •  Oxygen supply in a small oxidation pond Japan Journal of Water Pollution Research 13 2 99-106 1990
  •  Effect of biological clogging on infiltration rate in soil treatment systems Kawanishi, T., Kawashima, H., Chihara, K. and Suzuki, M WATER SCIENCE AND TECHNOLOGY 22 3 101-108 1990
  •  Numerical simulation of a soil infiltration treatment based on balance Kawanishi, T., Kawashima, H., Chihara, K. and Suzuki, M WATER SCIENCE AND TECHNOLOGY 18 391-396 1986
  •  Nitrate Removal from Soil Percolate by a Small Sand Column with Rice Straw 19 1 17-20 1992

Conference Presentations

  • Statistical analysis of geochemical map of Japan---by using extreme value theory.(conference:Annual meeting of Society of Chemical Engineers Japan 2016)(2016/03/13)

Others

Arts and Fieldwork

Patent

Theme to the desired joint research

○Control of Soil and groundwater pollution
○Development of environment-protection technologies using natural purification processes
○Transport in vadoze zone.

Grant-in-Aid for Scientific Research

○「低透水性土壌層および硫黄導入による畑地等地下浸透水からの硝酸態窒素除去技術の開発」(1999-) 
○「物質移動に有効な土壌中気液界面面積の測定とモデルによる推算」(1999-) 
○「低透水性土壌層および硫黄導入による畑地等地下浸透水からの窒素除去技術の開発」(2000-) 
○「物質移動に有効な土壌中気液界面面積の測定とモデルによる推算」(2000-) 
○「抵透水性土壌層および硫黄導入による畑地等地下浸透水からの窒素除去技術の開発」(2001-) 
○「土壌ガススパージング法等における短絡流と汚濁物質の液相拡散距離の解析」(2001-) 
○「土壌水の浸潤・脱水過程における界面形状変化の精密計算と物質輸送解析への応用」(2011-2013) 

Competitive research funding,Contribution

Collaborative research,Consignment study

Classes (Bachelors)

○Introduction to Engineering(2022)
○Introduction to Engineering(2022)
○Chemical Engineering Stoichiometry B(2022)
○Chemical Engineering Stoichiometry A(2022)
○Surface Science A(2022)
○Mathematics in Process Engineering B(2022)
○Electrical Measurements Programming and Exercise(2022)
○Measurement Standards B(2022)
○Electrical Measurements Programming and Exercise(2022)
○Exercise in Process Engineering(2022)
○Measurement Standards A(2022)
○Separation Engineering B(2022)
○Practical Exercise of Material Process(2022)
○Exercise in Process Engineering(2022)
○Practical Exercise of Material Process(2022)
○Separation Engineering A(2022)
○Fundamentals of Transport Phenomena A(2022)
○Chemical Engineering Stoichiometry A(2022)
○Chemical Engineering Stoichiometry B(2022)
○Fundamentals of Transport Phenomena B(2022)
○Introduction to Region-studies(2022)
○Introduction to Region-studies(2022)
○Introduction to Engineering(2017)
○Diffusion Process Engineering(2017)
○Fundamentals of Mathematics in Chemical Engineering 1(2017)
○Fundamentals of Mathematics in Chemical Engineering 2(2017)
○Introduction to Region-studies(2017)
○Fundamental Chemistry 2(2017)
○Practical Exercise of Chemical Engineering(2017)
○Practical Exercise of Biochemical Engineering(2016)
○Guide to Chemical and Biochemical Engineerings(2016)
○Diffusion Process Engineering(2016)
○Fundamentals of Mathematics in Chemical Engineering(2016)
○Chemical and Biochemical Engineering Research 2(2016)
○Fundamentals of Mathematics in Chemical Engineering(2016)
○Chemical and Biochemical Engineering Research 1(2016)
○Practical Exercise of Chemical Engineering(2016)
○Technical English in Engineering B(2016)
○Fundamental Chemistry 2(2016)
○Introduction to Region-studies(2016)
○Introduction of Biochemical Engineering(2016)

Classes (Graduate Schools)

○Analyses of Environmental Systems(2017)
○Analyses of Environmental Systems(2017)
○Advanced Biorefinery(2017)
○Research Skills C(2017)
○Practice of Biorefinery(2017)
○Diffusional Separation Engineering A(2017)
○Basic Chemical Engineering B(2017)
○Diffusional Separation Engineering B(2017)
○Basic Chemical Engineering A(2017)
○Analyses of Environmental Systems(2017)
○Analyses of Environmental Systems(2017)
○Research work in Bioengineering(2016)
○Topics in Biochemical Engineering 1(2016)
○Research Skills D(2016)
○Practice of Biorefinery(2016)
○Research Skills C(2016)
○Topics in Biochemical Engineering 2(2016)
○Diffusional Separation Engineering B(2016)
○Research work in Bioengineering(2016)
○Basic Chemical Engineering A(2016)
○Basic Chemical Engineering B(2016)
○Analyses of Environmental Systems(2016)
○Diffusional Separation Engineering A(2016)
○Advanced Biorefinery(2016)
○Fundamentals of Bioengineering(2016)

International Project

International Students

Lecture themes

Others (Social Activities)

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