참고문헌
- 나진성, 김기태, 김상돈 (2005) 독성 반응곡선을 이용한 수계 주요 오염물질의 혼합독성평가, 대한환경공학회지, 27(1). pp.67-74
- 배연재, 원두희, 이웅재, 승현우 (2003) 하천 생태계에 대한 환경영향평가 기법과 생물다양성 관리시스템의 개발 및 적용, Korean J. Environ. Biol., 21(3), pp. 223-233
- 신재기, 박경미, 황순진, 조경제 (2001) 경안천과 팔당호에서 총세균수의 분포 및 동태, Korean J. Limnol., 34(2), pp.119-125
- 이영옥, 박지은, 신승필, 안영희 (2003) FISH법을 이용한 낙동강 상.중.하류의 세균군집 구조 분석, 한국물환경학회지,19(3), pp,311-320
- 임병란, 홍준석, 안규홍 (2003) 퀴논프로화일을 이용한 하수처리장 공정내 미생물군집구조 해석, 대한환경공학회 추계학술연구발표회 논문집, paper on CD-ROM
- 조경제, 신제기 (1998) 낙동강 하류에서 동.하계 무기 N. P 영양염류와 식물플랑크톤의 동태, Korean J. Limnol., 31(1), pp.67-75
- 한강유역환경청 (2001) 경안천 유역의 오염부하량조사 보고서
- Fujie, K, Hu, H-Y., Tanaka, H., Urano, K, Saito, K, and Katayama, A. (1998) Analysis of Respiratory Quinones in Soil for Characterization of Microbiota, Soil Sci. Plant Nutr., 44(3), pp. 393-404 https://doi.org/10.1080/00380768.1998.10414461
- Helen, C., Sarakinos, N.B., Paul, A.W., Joseph, B.R. (2000) Correspondence between Whole Effluent Toxicity and the Presence of Priority Substance in Complex Industrial Effluents, Environ. Toxicol. Chem., 19(1), pp. 63-71 https://doi.org/10.1002/etc.5620190107
- Hiraishi, A. (1999) Isoprenoid Quinones as Biomarkers of Microbial Populations in the Environment, J. Biosci. Bioeng., 88, pp. 449-460 https://doi.org/10.1016/S1389-1723(00)87658-6
- Horowitz, A.J. (1991) A primer on sediment-trace element chemistry, Lewis Publishers, Chelsea
- Hu, H.-Y., Fujie, K and Urano, K. (1999a) Development of a Novel Solid Phase Extraction .vlcthod for the Analysis of Bacterial Quinones in Activated Sludge with a Higher Reliability, J. Biosci. Bioeng. 87(3), pp. 378-382 https://doi.org/10.1016/S1389-1723(99)80049-8
- Hu, H-Y., Fujie, K., Nakagome, H., Urano, K., and Katayama, A. (1999b) Quantitative Analyses of the Change in Microbial Diversity in a Bioreactor for Wastewater Treatment Based on Respiratory Quinones, Wat. Res., 33(15), pp. 3263-3270 https://doi.org/10.1016/S0043-1354(99)00044-5
- Hu, H.-Y., Lim, B.-R., Goto, N., Bhupathiraju, V. K, and Fujie, K. (2001) Characterization of Microbial Community in an Activated Sludge Process Treating Domestic Wastewater using Quinone Profiles, Wat. Sci. Tech., 43, pp.99-106
- Kunihiro, T., Hu, H.-Y., Lim, B.-R., Goto, N. and Fujie, K. (2002) Analysis of the Differences in Microbial Community Structures between Suspended and Sessile Microorganisms in River based on Quinone Profile, J. Gen. Appl. Microbiol., 48(1), pp. 35-41 https://doi.org/10.2323/jgam.48.35
- Lim, B-R., Hu, H.-Y., Huang, X. and Fujie, K .(2002) Effect of Seawater on the Treatment Performance and Microbial Population in a Biofilter Treating Coke-oven Wastewater, Process Biocbemistry. 37, pp. 943-948
- Lim, B-R. and Ahn, K.-H. (2004) Analysis of Microbial Community Structure in a Biofilm on Membrane Surface in the Submerged Membrane Bioreactor Treating Domestic Wastewater on the Basis of Respiratory Quinone Profiles, J. Gen. Appl. Microbiol., 50(4), pp. 197-202 https://doi.org/10.2323/jgam.50.197
- Ying, a., Omura, T., Umita, T., Aizawa, J., Sato, Y., and Kaito, T., (1993) Aquatic Environmental Evaluation by the Benthic Animal Species in the River with Non-point Pollution Source, 日本水環境學曾, 16(11), pp.804-814