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http://dx.doi.org/10.5322/JES.2003.12.10.1079

Change of components in the slaughter waste by Aeromonas hydrophila isolated from slaughter waste  

손연주 (신라대학교 환경학과)
박재림 (신라대학교 환경학과)
Publication Information
Journal of Environmental Science International / v.12, no.10, 2003 , pp. 1079-1084 More about this Journal
Abstract
This study was carried out to check changes of components in the slaughter waste by the bacteria isolated from slaughter wastes from Gyungnam Province from May to June 2000, and to find usefu] organism for treatment of the waste. Bacteria used in this study were Aeromonas hydrophila, as the dominant of the waste. Optimum conditions for bacterial culture were obtained as the temperature of 35$^{\circ}C$, pH 6.5, and shaking of 120 rpm in nutrient broth. The mean values of dissolved oxygen was 4.14 mg/1; biochemical oxygen demand, 1731.21 mg/1; ratio of BOD/COD, 0.53-0.64; ratio of T-P/T-N, 1.0-1.41; and viable counts of the waste, 5.47${\times}$10$\^$7/ CFU. Little change in total nitrogen observed by 36 hr of the culture. The largest amount of increasing NH$_4$$\^$+/-N was observed in the sample that 10% of the waste added in nutrient broth with A. hydrophila showing the value of 29.19 mg/l at the beginning to 570.36 mg/1 by 36 hr of culture. However, the highest increasing ratio between initial amount and finals at 36 hr of culture showed as 41.6 times when 3% of the waste added. NO$_3$ -N was decreased showing the value of 71.27 mg/1 to 32.14 mg/1 by 24 hr of culture with the organism when 10% of the waste added in nutrient broth. Total phosphorus was decreased showing the value from 188.74 mg/1 to 101.41 mg/1 after 12 hr of culture with the organism when 5% of the waste added in nutrient broth, while T-P was decreased gradually by 24 hr of culture from 193.8 to 101.4 mg/1 when 10% of the waste added.
Keywords
Change of components; Slaughter waste; Aeromonas hydrophila;
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1 박정호, 1992, UASB법에 의한 도살장 폐수처리에 관한 연구, 동아대학교 대학원 석사학위논문, 21-32pp
2 김민선, 1994, UASB법을 이용한 도축폐수의 처리에 관한 연구, 원광대학교 대학원 석사학위논문, 38-47pp
3 Habets, L. H., 1985, Application of the UASB Reactor for Anaerobic Treatment of Paper and Board Mill Effluent, Wat. Sci. and Technol., 17(61), 116-125
4 오계헌, 송홍규, 최철호, 공인철, 정금희, 이병희, 1994, 폐수미생물, 동화기술, 19-20pp
5 김종택, 1992, 환경오염공정시험법(수질분야), 선광출판사, 174-266pp
6 APHA, AWWA, WPCF, 1992, Standard Methods for the Examination of Water and Wastewater, 18th ed., American Public Health Association, Washington, D.C., 115-193pp
7 John, G. H., R. K. Noel, H. A. S. Peter, T. S. James and T. Stanley, 1994, Determinative Bacteriology, William & Wilkins, 272pp
8 MetCalf & Eddy Inc., 2002, Wastewater Engineering : Treatment Disposal, Reuse, 4th ed., Mc Graw Hill Inc., New York, 72-105pp
9 이규성, 2002, 환경관계법규(개정판), 형설출판사, 292-301pp
10 이상호, 김영란, 정재춘, 1997, 서울시 도축폐수의 오염특성에 관한 연구, 폐기물 자원화, 5(2), 1-6
11 Van Campen, A. L. B. M., 1986, Full Scale An aerobic Treatment of Slaughterhouse wastewater, WPCA Conf. on Anaerobic Treatment, sep, Amsterdam, 656pp
12 Litchfield, J. H., 1982, Meat-Processing wastes, Fish-Processing wastes, Poultry-Processing wastes, WPCF, 54(6), 688-692
13 보건 복지부, 1997, 95 국민 영양 조사 결과 보고서, 문영사, 17-18pp
14 박형기, 1994, 식육이용의 역사와 현황, 선진출판사, 24-25pp
15 이수환, 1996, 유기성 폐기물의 퇴비화 및 자원화 (1), 첨단환경기술, 11, 53-58
16 McComis, W. T. and J. H. Litchfield, 1988, MeatProcessing wastes, Fish-Processing wastes, Poultry-Processing wastes, WPCF, 60(6),868-870
17 현창길, 신현길, 1997, 도축 폐혈액 단백질을 이용한 유산균체의 생산, 한국산업미생물학회지, 25, 218-223   과학기술학회마을
18 전기홍, 박우문, 지중륭, 이희애, 유익종, 1996, Blood Albumin의 효율 적분리기술 개발, 한국축산식품학회 제 17차 학술발표회 초록집, 27pp