THE MICROBIAL DEGRADABILITY OF ANILINE IN RIVER WATER AND AN ATTEMPT TO USE THE LEVEL OF THE BIODEGRADABILITY AS AN INDICATOR OF WATER-POLLUTION

被引:3
作者
OSAKI, Y
MATSUEDA, T
NAGASE, M
OGO, A
TAKAHASHI, K
机构
[1] Fukuoka Environmental Research Center, Dazaifu, Fukuoka 818-01, 39 Mukaeda, Mukaisano
来源
EISEI KAGAKU-JAPANESE JOURNAL OF TOXICOLOGY AND ENVIRONMENTAL HEALTH | 1991年 / 37卷 / 05期
关键词
MICROBIAL DEGRADATION; CULTIVATION METHOD; ANILINE; WATER POLLUTION; RIVER WATER; INDICATION;
D O I
10.1248/jhs1956.37.411
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The microbial degradation of 6 chemicals in river water samples was tested using the cultivation method (Handai Method). Since aniline showed a regional difference, its microbial degradability was investigated in detail using the modified Handai Method to evaluate the possibility of its indication of water pollution caused by organic substances. The results were as follows. n-Butylacrylate was easy biodegradable and Diazinon was degraded to some degree. The microbial degradability of aniline in river water was different. The biodegradation rate increased slowly in unpolluted river water from rural areas, but increased rapidly in polluted river water from urban areas. Additionally, the biodegradation of aniline in these test samples was assumed to tend to be slightly higher in summer than in winter. This suggested that the microbial degradability of aniline in urban river water could be an indicator of water pollution because of the close correlation with the degree of water quality.
引用
收藏
页码:411 / 417
页数:7
相关论文
共 15 条
  • [1] Sugiyama T., Oba K., Fujiwara K., Ann. Rept. Inst. Food Microbiol. Chiba Univ., 25, (1972)
  • [2] Paris D.F., Wolfe N.L., Appl. Environ. Microbiol, 53, (1987)
  • [3] Lyons C.D., Katz S., Bartha R., Appl. Environ. Microbiol, 48, (1984)
  • [4] Goonewardena N., Goto M., Nasu M., Takubo Y., Nishihara T., Kondo M., Eisei Kagaku, 36, (1990)
  • [5] Kondo M., Nishihara T., Shimamoto T., Watabe K., Fujii M., Eisei Kagaku, 34, (1988)
  • [6] Chemicals in the Environment, pp. 203-220, (1987)
  • [7] Japanese Industrial Standard-Testing Methods for Industrial Waste Water-JIS K 0101, Japanese Industrial Standard Committee, (1978)
  • [8] Japanese Industrial Standard-Testing Methods for Industrial Waste Water-JIS K 0102, Japanese Industrial Standard Committee, (1978)
  • [9] Kondo M., Nishihara T., Shimamoto T., Koshikawa T., Iio T., Sawamura R., Tanaka K., Eisei Kagaku, 34, (1988)
  • [10] Fushiwaki Y., Urano K., Water Res., 22, (1988)