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On a fine structure of turbulence in the atmospheric mixing layer
1975
Yokoyama, O. | Gamo, M. | Yamamoto, S. | Sugawara, K. | Yoshikado, H. (National Research Inst. for Pollution and Resources, Kawaguchi, Saitama (Japan))
Airplane measurements of the energy dissipation rate in the atmospheric layer for heights up to 1.5-2 km above a flat plain
1975
Gamo, M. | Yokoyama, O. | Yamamoto, S. (National Research Inst. for Pollution and Resources, Kawaguchi, Saitama (Japan))
Studies on oxidation catalysts of NO from flue gas
1975
Studies on the treatment of wastewaters from the towel dyeing industry
1975
Takechi, H. | Kagawa, S. | Senba, K. | Kurosaka, S. (Ehime-ken. Industrial Research Inst., Matsuyama (Japan))
Effect of the inorganic coagulant for the dyeing waste water treatment with ozone
1975
Yasutome, K. | Takiguchi, T. | Shimizu, S. | Nakano, S. | Sato, A. | Kayanuma, S. (Yamanashi-ken. Textile Research Inst., Fujiyoshida (Japan))
Treatment of waste water from deresinning process of coniferous wood
1975
Mitsui, I. (Nagano-ken. Industrial Research Inst. (Japan))
Comparison of wind tunnel diffusion experiments and field experiments
1976
Mizuno, T. (National Research Inst. for Pollution and Resources, Kawaguchi, Saitama (Japan))
Practical studies on the catalytic reduction of NOx with NH3
1975
Detection of norovirus from food borne outbreaks of gastroenteritis in Nagano Prefecture [Japan]
2004
Tokutake, Y.(Nagano-ken. Research Inst. for Health and Pollution (Japan)) | Nakamura, Y. | Yokouchi, A. | Muramatsu, K. | Nishio, O.
Treatment of human excreta in mountainous area by anaerobic digestion and seepage spray method
2004
Suzuki, T.(Nagano-ken. Research Inst. for Health and Pollution (Japan)) | Murakami, R. | Ishikawa, T.
A research on a treatment system of human excreta provided for the use in mountainous areas was carried out. The system was composed of two treatment processes, an anaerobic digestion and a seepage spray process. Vertical distributions of chemical components were observed in the anaerobic digestion tank, because the top of the tank was covered with water permeable phase and rain water was penetrated into the tank. Comparing the amount of inflow into and of evapotranspiration from the system, about 70% of the inflow was overflowed from the seepage spray tank, under the assumption that the whole rain water fallen on the system was permeated into it.
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