• Title/Summary/Keyword: 사육수질

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The Effects of Temperature on Maintaining the Stability of Water Quality in Biofloc-based Zero-water Exchange Culture Tanks (Biofloc을 기반으로 한 무 환수 사육 시스템의 수질 안정 유지에 미치는 수온의 영향)

  • Cho, Seo-Hyun;Jeong, Jong-Heon;Kim, Myung-Hee;Lee, Kyu-Tae;Kim, Dae-Jung;Kim, Kwang-Hyun;Oh, Sang-Pil;Han, Chang-Hee
    • Journal of Life Science
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    • v.25 no.5
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    • pp.496-506
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    • 2015
  • This study explored adequate water temperature ranges for maintaining stable water quality in a biofloc- based zero-water exchange culture system. Five experimental tanks with the following temperatures were set up: 10℃, 15℃, 20℃, 25℃, and 30℃. First, a biofloc-based culture system was developed in the experimental tanks; then, the tanks were stocked with goldfish and went without a water exchange for 60 days. Conditions for developing a biofloc-based culture system and stable water quality in low concentrations of inorganic nitrogen compounds at 10℃, 15℃, 20℃, 25℃, and 30℃ were maintained after 17, 26, 43, 68, and 78 days, respectively. Beginning from when the goldfish were stocked in the biofloc-based culture tanks, concentrations of $NH_4{^+}-N$ remained constant and at low levels at 10℃ and 15℃, but they showed a gradual increase at 20℃, 25℃, and 30℃. Concentrations of $NO_2{^-}-N$ and $NO_3{^-}-N$ at 10℃ and 15℃ did not remain at low levels and immediately increased. While $NO_2{^-}-N$ concentrations at above 20℃ remained constant and stable at relatively low levels, $NO_3{^-}-N$ concentrations showed a gradual increase. Conditions of 15℃ and below could not maintain low and stable concentrations of $NO_2{^-}-N$. In the pH range of 4.0 to 6.0, $NH_4{^+}-N$ concentration decreased as the pH rose. However, there was no correlation between pH and $NH_4{^+}-N$ concentration in the pH range of 6.0 to 8.0. These results indicate that pH levels should be kept at pH 6.0 and above to maintain a low and stable concentration of $NH_4{^+}-N$ at above 20℃.

Comparison on Seedling Production of Marine Fishes between Recirculating and Running Seawater System (순환여과식과 유수식 사육시스템에 의한 해산어류 종묘생산 비교)

  • Chang Young Jin;Ko Chang Soon;Yang Han Soeb
    • Journal of Aquaculture
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    • v.8 no.2
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    • pp.117-131
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    • 1995
  • In order to improve the present running seawater system for seedling production of marine fishes, rearing experiments with the juveniles of black seabream (Acanthopagrus schlegeli) and oblong rockfish (Sebastes oblongus) were conducted. The recirculating seawater system (F) equipped with the rotating biological contactors and the running seawater system (R) were used. Environmental factors, growth, survival rate and rearing density of the fish were compared between two systems during the experimental period. In the rearing experiment of black seabream, water temperature in F was fluctuated with surrounding air temperature and was higher than that in R. Specific gravity of the rearing seawater in F was relatively stable in the range of 1.0252 to 1.0266, while that in R was greatly fluctuated. pH in F turned out to be 7.51, but pH in R was similar to that in the natural seawater. Dissolved nitrite and nitrate in F were higher than those in R. While no significant differences in the growth of black seabream juveniles were recognized between two systems, survival rates of fishes in F were higher than those of fishes in R. In the rearing experiment of oblong rockfish, water temperature in F was higher than that in R. Specific gravity in F was slightly higher than that in R which showed relatively less fluctuation in the range of 1.0253 to 1.0270. pH in F turned out to be 7.96, but pH in R was similar to that in the natural seawater. Dissolved nitrite and nitrate in F were higher than those in R, but ammonia was lower in F. The juveniles of oblong rockfish reared in F grew significantly faster in their total length and body weight than those in R (P<0.05). However, survival rates of fishes between two systems showed no significant differences.

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Characteristics of Manure and Estimation of Nutrient and Pollutant of Holstein Dairy Cattle (홀스타인 젖소 분뇨의 특성과 비료성분 및 오염물질 부하량 추정)

  • Choi, D.Y.;Choi, H.L.;Kwag, J.H.;Kim, J.H.;Choi, H.C.;Kwon, D.J.;Kang, H.S.;Yang, C.B.;Ahn, H.K.
    • Journal of Animal Science and Technology
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    • v.49 no.1
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    • pp.137-146
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    • 2007
  • This study was conducted to determine fertilizer nutrient and pollutant production of Holstein dairy cattle by estimating manure characteristics. The moisture content of feces was 83.9% and 95.1% for urine. The pH of feces and urine were in the ranges of 7.0~7.4 and 7.5~7.8, respectively. The average BOD5, COD, SS, T-N, T-P concentrations of the dairy feces were 18,294, 52,765, 102,889, 2,575, and 457mg/ℓ, respectively. Dairy urine showed lower levels of BOD5(5,455mg/ℓ), COD(8,089mg/ℓ), SS(593mg/ℓ), T-N(3,401mg/l), and T-P(13mg/ℓ) than feces. The total daily produced pollutant amounts of a dairy cow were 924.1g(Milking cow), 538.8g(Dry cow), 284.4g(Heifer) of BOD5, 2,336.5g (Milking cow), 1,651.8g(Dry cow), 734.1g(Heifer) of COD and 4,210.1g(Milking cow), 2,417.1g(Dry cow), 1,629.1g(Heifer) of SS and 194.8g(Milking cow), 96.4g(Dry cow), 58.3g(Heifer) of T-N and 24.0g(Milking cow), 10.2g(Dry cow), 6.1g(Heifer) of T-P. The calculated amount of pollutants produced by a 450kg dairy cow for one year were 181.3kg of BOD5, 492.5kg of COD, 899.9kg of SS, 36.0kg of T-N and 4.1kg of T-P. The total yearly estimated pollutant production from all head(497,261) of dairy cattle in Korea is 90,149 tons of BOD5, 244,890 tons of COD, 447,491 tons of SS, 17,898 tons of T-N and 2,008 tons of T-P. The fertilizer nutrient concentrations of dairy feces was 0.26% N, 0.1% P2O5 and 0.14% K2O. Urine was found to contain 0.34% N, 0.003% of P2O5 and 0.31% K2O. The total daily fertilizer nutrients produced by dairy cattle were 197.4g (Milking cow), 97.4g(Dry cow), and 57.9g(Heifer) of Nitrogen, 54.2g(Milking cow), 22.2g(Dry cow), and 14.2g(Heifer) of P2O5 and 110.8g(Milking cow), 80.4g (Dry cow), and 39.5g(Heifer) of K2O. The total yearly estimated fertilizer nutrient produced by a 450kg dairy animal is 36.2kg of N, 8.8kg of P2O5, 24.6kg of K2O. The estimated yearly fertilizer nutrient production from all dairy cattle in Korea is 18,000 tons of N, 4,397 tons of P2O5, 12,206 tons of K2O. Dairy manure contains useful trace minerals for crops, such as CaO and MgO, which are contained in similar levels to commercial compost being sold in the domestic market. Concentrations of harmful trace minerals, such as As, Cd, Hg, Pb, Cr, Cu, Ni, Zn, met the Korea compost standard regulations, with some of these minerals being in undetected amounts.

집중기획 - 2014 낙농경영 실태 조사

  • 한국낙농육우협회
    • 월간낙농육우
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    • v.34 no.10
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    • pp.153-162
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    • 2014
  • 낙농가들은 향후 경영계획에 있어 규모확대(32%)보다는 현상유지(54%)를 더 원하고 규모축소(1.7%)와 낙농포기(3.4%)의사는 전년(7.7%)대비 2.6%P가 감소한 것으로 조사됐다. 그리고 낙농을 포기하는 주된 이유로는 환경문제가 꾸준히 1순위를 차지하고 있지만 이번에는 그 비율이 상대적으로 높아졌다. 최근 '가축분뇨의 관리 및 이용에 관한 법률'을 포함한 환경관련 규제가 강화된데 따른 것으로 보인다. 낙농가들은 국내 낙농업 전망에 대해 88%가 어려울 것으로 내다보고 있지만 10%정도는 '해볼만하다'는 낙관론도 보였다. 시급한 환경현안으로는 무허가 축사(39%)와 퇴비화시설(36%) 문제를 꼽는 낙농가가 가장 많았으며, 환경문제를 해결하기 위해 농가당 최소 5000만 원~2억 원의 추가 투자가 필요한 것으로 조사됐다. 또한 FTA시대에 가장 중요한 낙농대책으로는 '전국단위 낙농제도 개선'(35%)과 '제도적인 우유소비확대 마련'(29%) 등으로 나타났다. 목장의 토지이용과 관련한 규제사항으로는 가축사육제한구역(31%), 상수원수질보전대책지역(14%), 군사시설보호구역(13), 개발제한구역(8%) 순으로 나타났다. 지역별로는 경기도와 강원도의 경우 '군사시설보호구역' 때문이라는 응답이, 충청도와 경상도는 '가축사육제한구역' 때문이라는 응답이 가장 높은 것으로 조사됐다. 이번 조사는 협회 낙농정책연구소(소장 조석진)가 최근 국내 낙농의 경영현실과 당면과제에 대한 실태를 파악하고 이를 낙농정책수립에 필요한 기초자료로 제공하기 위해 지난 2014년 5월 19일부터 6월20일까지 한 달간 낙농조합의 협조를 얻어 전국의 6,000 농가 중 700 농가를 선정해 실시, 그중 설문에 참여한 542농가의 응답결과를 분석한 것이다. 낙농정책연구소는 이번 조사 결과를 '2014 낙농경영 실태조사' 책자로 발간해 유관기관 및 협회 도지회 등에 배포했다.

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Bio-floc technology application in olive flounder, Paralichthys olivaceus aquaculture according to the difference of closed recirculating systems (바이오플락 기술을 활용한 순환침전시스템에 따른 넙치(Paralichthys olivaceus)의 양성)

  • Cho, Yeong-Rok;Kim, Hyun-Soo;Kim, Su Kyoung;Kim, Su-Kyoung;Kim, Seok-Ryel;Hur, Young Baek;Kim, Jun-Hwan
    • Korean Journal of Environmental Biology
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    • v.37 no.2
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    • pp.129-135
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    • 2019
  • Juvenile Paralichthys olivaceus (mean weight 685.3±36.7 g) were raised in different and closed recirculating bio-floc system (control, bio-ball, and shelter) for 7 months. The water environment such as water temperature, dissolved oxygen, salinity, pH, and alkalinity according to the difference of closed recirculating system remained stable during the rearing period. No significant changes were observed in dissolved inorganic nitrogen such as ammonia, nitrite, and nitrate were observed in different closed recirculation system. The final weights according to the difference of closed recirculating were 1,524 g (control), 1,674 g (bio-ball), and 1,630 g (shelter). The survival rate was higher than 98%, and the final FCRs (Feed coefficient ratio) were 1.2, 1.1, and 1.2. The results of this study indicated high growth and survival rate in all systems.

Urban aquaculture of catfish, Silurus asotus, using biofloc and aquaponics systems (바이오플락과 아쿠아포닉스를 이용한 도심형 양식시스템에서의 메기양식)

  • Kim, Seok Ryel;Jang, Jin Woo;Kim, Bum Ju;Jang, In Kwon;Lim, Hyun Jeong;Kim, Su Kyoung
    • Korean Journal of Environmental Biology
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    • v.37 no.4
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    • pp.545-553
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    • 2019
  • This study was conducted to determine whether the water in which nitrate accumulated during long-term fish culture in an aquaponics system without water exchange could be removed and reused as catfish-culturing water. The catfish (Silurus asotus) were cultured in the urban aquaculture system using BFT (Biofloc Technology) aquaculture and an aquaponics system (two rearing tanks, 3 tons each) without exchanging the rearing water. After 151 days (from March to August) of rearing, 2.8 g of fry had grown to an average weight of 171.3 g (total weight, 56.53 kg) and 235.5 g (total weight 71.1 kg), respectively. The overall survival rate was 65% in the urban aquaculture system. However, the survival rate was 77.7% before separation into the two tanks. The survival rates after the separation were 92.9% and 78.0%. In the early biofloc watermaking process, there was a high mortality rate. After water stabilization, the mortality rate decreased and some mortality occurred during the period when the total amount of suspended solids (TSS) increased. The results of monthly blood analysis of the catfish showed that the AST concentration was significantly higher in April. Blood ALT levels and triglycerides showed no difference in the rearing period and the glucose, cholesterol, and total protein levels were significantly higher in July. There was no difference in the other periods. The plants produced by the aquaponics system using catfish-rearing water were lettuce, basil, chard, and red chicory. These showed smooth growth and a total of 148.85 kg of plants were harvested in five months. It was possible to remove nitric acid from the aquaponics system and reuse it as catfish-rearing water. Maintaining proper plant quantity according to the capacity of the catfish showed that the combination of agricultural and aquatic products was possible.

REARING EXPERIMENT OF COMMON CARP IN SMALL AQUARIUM (소형장치에 의한 잉어의 성장실험)

  • KIM In-Bae;JO Jae Yoon
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.10 no.4
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    • pp.275-279
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    • 1977
  • During the experimental rearing period of common carp in a small simple recirculating aquarium combined with frequent exchanges of water and cleanings, some observations were made on the conditions of fish growing which was directly and instantly affected by the cleaning frequency of strainer, changing rate of water, division and frequency of feed supply, prohibition of excess feeding and the amount of dissolved oxygen. The fish don't seem to be stressed by the manipulation for the change of rearing water, cleaning of detritus in the strainer and filter. It appeared that the most hazzardous matters to fish growth were : 1) supplying feed when fish do not show active response to feed supplied, and 2) giving ample amount of feed at one time. When especially the amount of the feed is within the range fish instantly can swallow, the water clarity is maintained even after feeding operation, but if any excess amount is given the fish intake into mouth much more feed than able to instantly swallow and try to swallow it resulting in much dissolving and suspension of feed materials in water, making the water quite cloudy. Consequently all the water as well as filter bed becomes significantly polluted.

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Coastal Eutrophication caused by Effluent from Aquaculture Ponds in Jeju (제주연안 육상양식장 밀집지역 주변해역의 영양염 과잉 요인)

  • Koh, Hyuk-Joon;Park, Sung-Eun;Cha, Hyung-Kee;Chang, Dae-Soo;Koo, Jun-Ho
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.19 no.4
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    • pp.315-326
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    • 2013
  • This study investigated the temporal-spatial distribution and variations in water quality parameters (temperature, salinity, pH, DO, COD, SPM, DIN, DIP, silicate, TN, TP, and chlorophyll-a) in the coastal area of Jeju, Korea, adjacent to aquaculture ponds (Aewol-ri, Haengwon-ri, Pyosun-ri, and Ilkwa-ri). Data were collected bimonthly from February 2010 to December 2011. A principal component analysis (PCA) identified three major factors controlling variations in water quality during the sampling period. Aquaculture effluent water led to large changes in nutrient levels. The highest nutrient values were observed during the investigation period. The relatively large increase in organic matter at the sampling stations coupled with sea area runoff events during the summer rainy period. Variation in chlorophyll-a concentration was mainly driven by meteorological factors such as air temperature and rainfall in the coastal areas of Aewol and Haengwon. In the coastal areas of Pyosun and Ilkwa, pollution was caused by anthropogenic factors such as discharge of aquaculture effluent water. High nutrient concentrations at the majority of the coastal stations indicate eutrophication of coastal waters, especially within a distance of 300 m and depth of 10m from drainage channels. Coastal eutrophication driven by aquaculture effluent may be harmful inshore. Events such as eutrophication may potentially influence water pollution in aquaculture ponds when seawater intake is detected because of aquaculture effluent water.

Environmental Factors Related to Mass Moralities of Young Red Seabream (Pagrus major) in the Artificial Seed Production (일본산 참돔, Pagrus major 종묘생산과정중 사육수 변화로 인한 대량폐사)

  • 최상덕;정관식;김호진;김성수
    • Journal of Aquaculture
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    • v.11 no.2
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    • pp.203-212
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    • 1998
  • As seed production program is growing prosperously in various fishes in southern Korea, disease problems in larval and juvenile stages have emerged as a new research object. The following results were obtained from investigation about environmental factors related to mass mortalities of young Kinki red seabream, Pagrus major in process of artificial seedling production. Total length of red seabream larvae hatched was 2.93mm, and became 18.83~20.12mm at day 40. The first noticeable mortality of red seabream larvae (7.98~9.37mm) occurred in 25~30 day-old fish with the survival rates of 59.8~60.3%. Thereafter the mortality of larvae decreased, survival rate was 20.5~25.45% in day 40. After 20~30 days, the quality of pond water was bellow II class. During the experimental period COD, $PO_4$-P, $NO_2$-N, $NO_3$-N and $NH_$-N increased up to 3, 7, 34, 6 and 8 times, respectively, compared to initial ones. The number of viable bacteria in pond water and seabream larvae were $6.3{\times}10^6$~$2.3{\times}10^7$ cfu/ml, 4.3~$7.4{\times}10^6$ cfu/g in day 25, respectively. Among the isolated bacteria from the diseased red seabream in day 25, Vibrio spp. was considered to be the causative organism. External symptoms of this disease were floated, spined near the surface and inflated abdomen. When the isolated strain of the Vibrio was bathed to seabream larvae, $LD_50$ of seabream larvae was over $10^6$ cfu/ml of Vibrio spp.

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NUMERICAL CHANGES OF THE COLIFORM BACTERIA IN A RECIRCULATING AQUARIUM (순환여과수조수의 대장균군)

  • PARK Soo-Il
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.11 no.1
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    • pp.5-8
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    • 1978
  • Numerical changes of coliform bacteria in a recirculating aquarium were measured as fouling indicator. The contamination of the filter bed was mainly due to the food given to fishes, the fecal materials and the additional supply of water polluted already. Abundance of the bacteria in the aquarium was controlled by the physiochemical factors of water quality. Of these factors, pH was the main factor. Under the water temperature $20^{\circ}C$, if pH was controlled at lower than $5\~6$, the bacteria did not flourish seriously. Under the water temperature over $30^{\circ}C$, the bacterial growth was markedly decreased regardless of the pH value, and the bacterial flora seemed to be active in growth under temperature condition lower than $30^{\circ}C$.

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