Adsorption Characteristics of Chlorhexidine onto Activated Carbon for Medical Waste Water Treatment
Adsorption removal of chlorhexidine, one of the disinfectants by activated carbon was discussed from standpoints of equilibrium amount adsorbed and adsorption rate for medical waste water treatment. From the results of correlation between adsorption characteristics for chlorhexidine and properties o...
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Published in | SEIKATSU EISEI (Journal of Urban Living and Health Association) Vol. 37; no. 6; pp. 249 - 255 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
Osaka Urban Living and Health Association
10.11.1993
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Abstract | Adsorption removal of chlorhexidine, one of the disinfectants by activated carbon was discussed from standpoints of equilibrium amount adsorbed and adsorption rate for medical waste water treatment. From the results of correlation between adsorption characteristics for chlorhexidine and properties of activated carbon, it was assumed that the dominant properties for the amount of chlorhexidine adsorbed were the surface area and the micropore volume of activated carbon. And it was assumed that the dominant properties for the adsorption rate was the pore volume (20Å <radius<100Å) of activated carbon. |
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AbstractList | Adsorption removal of chlorhexidine, one of the disinfectants by activated carbon was discussed from standpoints of equilibrium amount adsorbed and adsorption rate for medical waste water treatment. From the results of correlation between adsorption characteristics for chlorhexidine and properties of activated carbon, it was assumed that the dominant properties for the amount of chlorhexidine adsorbed were the surface area and the micropore volume of activated carbon. And it was assumed that the dominant properties for the adsorption rate was the pore volume (20Å <radius<100Å) of activated carbon. |
Author | KAWASAKI, Naohito TANADA, Seiki NAKAMURA, Takeo IMAKI, Masahide MIYOSHI, Tamotsu HARA, Tsukasa |
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References | 6) Tanada, M., Miyoshi, T., Nakamura, T. and Tanada, S.: Adsorption Removal of Cresol by Granular Activated Carbon for Medical Waste Water Treatment, Bull. Environ. Contam. Toxicol., 45, 170-176 (1990 11) Giusti, D. M., Conway, R. A. and Lawson, C. T.: Activated Carbon Adsorption of Petrochemicals, J. Water Pollut. Contr. Fed., 46, 947-965 (1974 5) Nakamura, T., Miyoshi, T., Tanada, S. and K. Boki.: Adsorption Removal of Phenol and Cresol by Surface-Modified Activated Carbon for Treatment of Effluent from Hospitals, Jpn. J. Hyg., 41, 945-950 (1987 12) Puri, B. R., Bhardwaj, S. S. and Gupta, U.: Adsorption of Phenol from Aqueous Solutions by Carbon in Relation to their Specific Surface Area, J. Indian Chem. Soc., 53, 1095-1098 (1976 1) Shimura, N.: Waste Water Regulation in Hospital, Yosui to Haisui, 21, 747-752 (1979 7) Dollimore, D. and Heal, G. R.: An Improved Method for the Calculation of Pore Size Distribution from Adsorption Date, J. Appl. Chem., 14, 109-114 (1964 13) Coughlin, R. W. and Ezra, F. S.: Role of Surface Acidity in the Adsorption of Organic Pollutants on the Surface of Carbon, Environm. Sci. Tech., 2, 291-297 (1968 9) Urano, K. and Nakai, T.: Intraparticle Diffusivities in Liquid Phase Adsorption under Nonlinear Equilibrium, Nippon Kagaku-kaishi, 1486-1491 (1976 2) Sayama, N.: Basic Experimental Studies on the Treatment of Cresol, Phenol and Formalin, Jpn. J. Hyg., 34, 733-742 (1980 16) Yagi, T., Shimizu, K., Uchimoto, K. and Maeda, S.: Adsorption Kinetics of Various Hydrocarbons on Silica Gels, Kogyo Kagaku Zasshi, 68, 335-338 (1965 14) Asakawa, T., Ogino, K. and Yamabe, K.: Influence of Surface-Chemical Structure of Carbon on Adsorption of Phenol, Bull. Chem. Soc. Jpn., 58, 2009-2014 (1985 17) Urano, K. and Kiyoura, R.: Adsorption Characteristics of the Coals in Aqueous Solutions, Kogyo Kagaku Zasshi, 73, 1921-1927 (1970 3) Sayama, N.: Treatment of Cresol with Trickling Tower Plant, Jpn. J. Hyg., 35, 670-675 (1980 8) Brunauer, S., Emmett, P. H. and Teller, E.: Adsorption of Gases in Multimolecular Layers, J. Am. Chem. Soc., 60, 309-319 (1938 4) Sayama, N.: Treatment of Benzalkonium Chloride and Chlorhexidine, Jpn. J. Hyg., 35, 869-873 (1981 15) Nakai, T., Tatsumi, K., Sato, Y. and Yumoto, H.: Adsorption Treatment of Waste Water from a Synthetic Dye Factory, Mizu Shori Gijutsu, 19, 31-40 (1978 10) Hassler, J. W.: In “Activated Carbon”, p 356, Chemical Publishing Company, New York (1963 |
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Title | Adsorption Characteristics of Chlorhexidine onto Activated Carbon for Medical Waste Water Treatment |
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