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        검색결과 29

        21.
        2010.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        콩 GAP 모델 확립을 위해 경남 창녕에 소재한 콩 재배농가 3 곳을 선정하여 각 재배환경에 대한 물리 적, 화학적(중금속) 및 생물학적(위생지표세균, 병원성 미생물) 위해요소를 분석하였다. 재배환경에 대한 물리적 위해요소로는 토양과 농업용수에 혼입될 수 있는 이물 등으로 확인되었고, 화학적 위해요소 중 토 양과 농업용수에서의 중금속 (Cd:0.01~0.103, Cu:0.001~6.036, As:0.006~3.045, Hg:ND~0.041, Pb:0.003~3.952, Cr+6:0.007~0.496, Zn:0.001~66.500, Ni:0.003~18.010)이 모두 허용기준치 이하로 검출되었다. 생물학적 위해요소의 경우, 위생지표세균은 토양에서 일반세균과 대장균군이 6.0±0.3 및 3.6±1.6 log CFU/g, 농업용수는 3.5±0.7 및 1.9±0.7 log CFU/mL 수준으로 각각 검출되었고, E. coli 는 모든 시료에서 불검출 되었다. 그러나 농업용수에서 대장균군이 허용기준치를 초과하였고, E. coli O157도 토양 중에서 약 22%가 검출됨에 따라 분변오염 방지를 위한 적절한 방안이 필요할 것으로 판단 된다. 결론적으로 재배환경 중 물리적 및 화학적 위해요소 (중금속)의 오염수준은 허용기준에 적합했지만, 생 물학적 위해요소의 경우 농업용수에서 대장균군이 기준치를 초과함에 따라 최종산물로의 교차오염을 방지 하기 위한 체계적인 관리방안이 모색되어야 할 것으로 판단된다.
        4,300원
        23.
        2007.10 구독 인증기관·개인회원 무료
        24.
        2007.10 구독 인증기관·개인회원 무료
        27.
        1995.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        For improved preservation of boiled-dried anchovies, the current preservation method of corrugated-cardboard box packaging and freezing below - 18℃ was compared to the nylon/polyethylene(NY/PE) packaging along with cooling temperature ranging from 5℃ to 10℃ as well as ambient condition for eight months by determining physicochemical quality of stored samples. Lipid oxidation of stored anchovies and their browning increased with storage time. The phenomenon was delayed under the conditions of lower temperature and air-tight packaging. As quality-indicative criteria of stored anchovies, carbonyl value(r=-0.989), browning (r=-0.949) and color a value(r=-0.989), browning(r=-0.965), Hunter's color b value (r=-0.949) and color a value(r=-0.940) showed a highly-negative correlations with organoleptic qualities of the samples. Based on the above results, air-tight packaging in a laminated film and subsequent storage at cooling temperature was found to be a possible alternative to the current freezing-storage of boiled-dried anchovies from the physicochemical point of view.
        4,000원
        28.
        1998.04 KCI 등재 서비스 종료(열람 제한)
        Organics matters including algae are the major contaminants of Nak-dong river and it`s concentration is more increasing now. The use of coagulants has been incresed for the effective treatment of drinking water, and aluminum coagulants have been the most widely used in raw water treatment. However, when inorganic metal coagulant is excessively used for long period, it would result in secondary problems, such as increasing sludge production, enhancing the cost of water treatment process, and increasing concentration of residual metal, especially aluminum. Therefore, recently, in order to reduce the use of metal coagulant and enhance the coagulation effectiveness, several alternative coagulants, such as polymeric inorganic coagulants and organic polymers, have been used in water treatment plants. The objectives of this research were (1) to determine optimum dosage concentration and compare the coagulation efficiency at various pH ranges with alum alone, alum+cationic polymer, and alum+anionic polymer, (2) to evaluate the amount of alum reduced by using organic polymer, (3) to maximize removal efficiency of organic matter and minimize the concentration of residual aluminum.
        29.
        1997.06 KCI 등재 서비스 종료(열람 제한)
        The clogging phenomenon in the fixed film reactor is shown when biomass growth is excessive for long operating time. In addition, effluent water quality gets worse because of detachment of biomass. In this study, we conducted air - backwashing to sustain biomass in reactor to complement these defects. The results of experimental are showed in the following conclusion. The detachment rate was 19.5 - 38.0 % when the organic loading rate was 0.40 - 1.32 ㎏ COD/㎥/day, the air - backwashing intensity was 2 L/min(6.7 ㎥/㎡/hr) and the backwashing time was 15 - 19 seconds. And the detachment rate was 32.2 - 58.6 % when the organic loading rate was 1.37 - 2.27 ㎏ COD/㎥/day, the backwashing time was 1 - 12 minutes. As organic loading rate and backwashing time are increased, detachment of fixed biomass is increased. The detachment equation with detachment rate(DR, %), backwashing time(BWT, min), fixed biomass concentration(FB, ㎎/L), and organic loading rate(OLR, ㎏ COD/㎥/day) through multiple linear regression was given by the following equation: DR = 17.964 BWT^0.41407 FB^0.0597 OLR^0.1945
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