• 제목/요약/키워드: Total Fishery Production

검색결과 102건 처리시간 0.031초

어종 인식 및 체장 측정 자동화 시스템에 관한 연구 (A Study on the Automation of Fish Species Identification and Body Length Measurement System)

  • 강승범;김승규;박세용;임태호
    • 인터넷정보학회논문지
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    • 제25권1호
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    • pp.17-27
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    • 2024
  • 수산자원의 남획, 기후변화 및 어업종별 경쟁 조업 등으로 어업생산량은 지속적으로 감소하고 있다. 이러한 문제점을 개선하고자 개별어종에 대해 연간 어획량을 설정하여, 그 한도 내에서만 어획을 허용하는 수산자원 관리제도인 TAC(총허용어획량 제도)를 제정하였다. TAC 제도의 일환으로 육상 조사원이 위판장 어종의 체장, 체고를 측정하여 무게를 산출하여 TAC 소진량을 산출한다. 하지만 육상 조사원의 숙련도에 따라 취득 데이터의 정확도가 상이하고 노동 집약적 업무로 인해 지속가능 하지 못하다. 이러한 문제점을 개선하고자 본 논문에서는 물제와의 거리를 측정할 수 있는 스마트 패드의 카메라를 이용하여 TAC 관리 여덟 어종의 체장, 체고를 측정하고 무게를 산출하고 자동화하는 어종 인식 및 체장 측정 시스템을 제안하고자 한다. 이를 통해 현행 노동 집약적 업무의 스마트화와 데이터 누락을 최소화하여 TAC 제도 확립을 기대할 수 있다.

해조양식장 수질환경 모니터링을 통한 이산화탄소 단순 수지모델 (Real-time Monitoring of Environmental Properties at Seaweed Farm and a Simple Model for CO2 Budget)

  • 심정희;강동진;한인성;권정노;이용화
    • 한국해양학회지:바다
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    • 제17권4호
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    • pp.243-251
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    • 2012
  • 부산시 기장군 일광 해조류양식장에서 2011년 7월 5일부터 6일까지 약 30시간동안 해양 표층수의 수온, 염분 등의 환경인자와 pH와 이산화탄소분압($fCO_2$)을 연속 관측하였다. 표층수의 수온과 염분은 $12.5{\sim}17.6^{\circ}C$, 33.7~34.0범위를 보였으며, 조석과 광주기, 해류 등의 영향으로 일변화 및 일간변화를 크게 나타내었다. 이산화탄소분압과 pH는 381~402 ${\mu}atm$, 8.03~8.15범위를 보였으며, 엽록소는 0.8~5.8 ${\mu}g\;L^{-1}$ 범위를 보였다. 이산화탄소분압, pH 그리고 엽록소는 최대 간조와 성층이 강했던 5일 오후 5시 전후에 최소 및 최고치를 보였으며, 이는 엽록소에 의한 생물생산 결과 이산화탄소는 낮고 pH는 높아진 것을 의미한다. 해조양식장 이산화탄소변화에 대한 단순 수지모델을 적용한 결과, 낮에는 생물생산에 의한 감소가 수온상승, 대기와의 교환에 의한 증가와 상쇄하는 것으로 나타났으며, 밤에는 대기와의 교환 물리적 혼합에 대한 과대 평가로 관측치보다 다소 높게 나타났다. 모델결과는 해조양식장 이산화탄소분압 총변화량의 14~40%는 해조류의 일차생산에 의한 것으로 나타났다.

Environmental Factors Affecting on Shrimp Cultivation and Bacterial Examination in Shrimp Aquaculture

  • Chun, Jae-Woo;Ma, Chae-Woo;Oh, Kye-Heon
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2003년도 생물공학의 동향(XIII)
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    • pp.775-779
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    • 2003
  • 충남 태안소재 순천향대학교 해양연구소의 해양수산연구소에서 probiotics 개발을 궁극적인 목표로 하여 대하양식장에서 대하의 효율적 생산을 위한 생육환경을 조사하였다. 대하의 생장에 영향을 미치는 용존산소, 수체온도, pH, 염도, $NH_4-N$, $NO_2-N$, $NO_3-N$, 클로로필 a를 포함하는 몇가지 환경요인들을 조사하였다. 수 표본에 용존되어 있는 $NH_4-N$, $NO_2-N$, 그리고 $NO_3-N$의 농도는 각각 0.024-0.034 mg/L, 0.03-0.02, 0.004-0.009 mg/L였다. 클로로필 a는 0.002-0.018 $ug/m^3$ 범위에 있었다. 양식장에서 채취한 수 표본에서 다른 세균들의 분포를 알아보기 위하여 marine agar plates에서 분리 계수하였다. 총세균수는 대략 $6.5\;{\times}\;10^4$까지 증가하였다. BIOLOG 시험들 통하여 13가지의 분리 세균들은 Corynebacterium nirilophilus, Clavibacter agropyri, Sphingomonas adhaesiva, Brevundimonas vesicularis, Vibrio parahaemolyticus, Pseudomonas bathycetes, Vibrio tubiashii, Sphingomonas macrogoltabidus, Rhodococcus, rhodochrous, Burkholderia glumae, Corynebacterium urealyticus, Rhodococcus fascians, Psychrobacter immobilis로 각각 동정되었다. 향후 연구는 대하의 효율적인 생산을 위한 정보를 제공하기 위한 병독성이나 환경과 probiotics의 연관성을 규명에 집중 될 것이다.

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산업연관모형을 이용한 우리나라 산업의 직·간접 물소비 구조 분석 (An Analysis of Water Consumption Structures in Korean Industry Using the Input-Output Model)

  • 박창귀;이기훈
    • 환경정책연구
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    • 제9권2호
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    • pp.21-39
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    • 2010
  • 본 논문에서는 우리나라 산업의 연간 물소비량을 최초로 추정하고 이를 이용하여 물소비 분석용 산업연관 모형을 작성하였다. 그리고 이를 이용하여 산업활동에 따른 직 간접 물소비 유발효과를 분석하였으며 물량기준 총효과를 요인별로 분해하여 보았다. 우리나라 산업(농림어업 제외)은 해수를 제외한 상수도, 지하수, 하천수, 재이용수 등 육지의 물 기준으로 2003년중 약 76억 9,200만 톤의 물을 소비한 것으로 추산되었다. 업종별로는 전력 수도가 49.5%로 거의 절반가량을 차지하였으며 제철 등의 가공금속 산업이 24.3%, 화학산업이 5.0%를 차지하였다. 물소비 분석용 산업연관 모형을 이용하여 산업별 직 간접 물소비 유발계수를 도출한 결과 전력 수도가 산출액 백만원당 113.8톤의 물을 소비하였으며, 제1차금속(49.6톤), 섬유 가죽제품(16.8톤), 일반기계(11.9톤) 등의 순으로 높게 나타났다. 동유발계수를 직접효과와 간접효과로 나누어 본 결과, 전력가스 및 수도 산업을 제외하고는 대부분의 산업에서 직접효과보다는 간접효과가 큰 것으로 나타나 물 관련 정책 수립시 제품간 물소비 연관관계를 충분히 고려할 필요가 있음을 시사하였다. 아울러 동 연구결과는 제품간 물소비구조 파악과 제품별 물소비지표 개발 등에도 활용될 수 있을 것이다.

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일본 어류 양식업의 발전과정과 산지교체에 관한 연구 : 참돔양식업을 사례로 (A study on Development Process of Fish Aquaculture in Japan - Case by Seabream Aquaculture -)

  • 송정헌
    • 수산경영론집
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    • 제34권2호
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    • pp.75-90
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    • 2003
  • When we think of fundamental problems of the aquaculture industry, there are several strict conditions, and consequently the aquaculture industry is forced to change. Fish aquaculture has a structural supply surplus in production, aggravation of fishing grounds, stagnant low price due to recent recession, and drastic change of distribution circumstances. It is requested for us to initiate discussion on such issue as “how fish aquaculture establishes its status in the coastal fishery\ulcorner, will fish aquaculture grow in the future\ulcorner, and if so “how it will be restructured\ulcorner” The above issues can be observed in the mariculture of yellow tail, sea scallop and eel. But there have not been studied concerning seabream even though the production is over 30% of the total production of fish aquaculture in resent and it occupied an important status in the fish aquaculture. The objectives of this study is to forecast the future movement of sea bream aquaculture. The first goal of the study is to contribute to managerial and economic studies on the aquaculture industry. The second goal is to identify the factors influencing the competition between production areas and to identify the mechanisms involved. This study will examine the competitive power in individual producing area, its behavior, and its compulsory factors based on case study. Producing areas will be categorized according to following parameters : distance to market and availability of transportation, natural environment, the time of formation of producing areas (leaderㆍfollower), major production items, scale of business and producing areas, degree of organization in production and sales. As a factor in shaping the production area of sea bream aquaculture, natural conditions especially the water temperature is very important. Sea bream shows more active feeding and faster growth in areas located where the water temperature does not go below 13∼14$^{\circ}C$ during the winter. Also fish aquaculture is constrained by the transporting distance. Aquacultured yellowtail is a mass-produced and a mass-distributed item. It is sold a unit of cage and transported by ship. On the other hand, sea bream is sold in small amount in markets and transported by truck; so, the transportation cost is higher than yellow tail. Aquacultured sea bream has different product characteristics due to transport distance. We need to study live fish and fresh fish markets separately. Live fish was the original product form of aquacultured sea bream. Transportation of live fish has more constraints than the transportation of fresh fish. Death rate and distance are highly correlated. In addition, loading capacity of live fish is less than fresh fish. In the case of a 10 ton truck, live fish can only be loaded up to 1.5 tons. But, fresh fish which can be placed in a box can be loaded up to 5 to 6 tons. Because of this characteristics, live fish requires closer location to consumption area than fresh fish. In the consumption markets, the size of fresh fish is mainly 0.8 to 2kg.Live fish usually goes through auction, and quality is graded. Main purchaser comes from many small-sized restaurants, so a relatively small farmer and distributer can sell it. Aquacultured sea bream has been transacted as a fresh fish in GMS ,since 1993 when the price plummeted. Economies of scale works in case of fresh fish. The characteristics of fresh fish is as follows : As a large scale demander, General Merchandise Stores are the main purchasers of sea bream and the size of the fish is around 1.3kg. It mainly goes through negotiation. Aquacultured sea bream has been established as a representative food in General Merchandise Stores. GMS require stable and mass supply, consistent size, and low price. And Distribution of fresh fish is undertook by the large scale distributers, which can satisfy requirements of GMS. The market share in Tokyo Central Wholesale Market shows Mie Pref. is dominating in live fish. And Ehime Pref. is dominating in fresh fish. Ehime Pref. showed remarkable growth in 1990s. At present, the dealings of live fish is decreasing. However, the dealings of fresh fish is increasing in Tokyo Central Wholesale Market. The price of live fish is decreasing more than one of fresh fish. Even though Ehime Pref. has an ideal natural environment for sea bream aquaculture, its entry into sea bream aquaculture was late, because it was located at a further distance to consumers than the competing producing areas. However, Ehime Pref. became the number one producing areas through the sales of fresh fish in the 1990s. The production volume is almost 3 times the production volume of Mie Pref. which is the number two production area. More conversion from yellow tail aquaculture to sea bream aquaculture is taking place in Ehime Pref., because Kagosima Pref. has a better natural environment for yellow tail aquaculture. Transportation is worse than Mie Pref., but this region as a far-flung producing area makes up by increasing the business scale. Ehime Pref. increases the market share for fresh fish by creating demand from GMS. Ehime Pref. has developed market strategies such as a quick return at a small profit, a stable and mass supply and standardization in size. Ehime Pref. increases the market power by the capital of a large scale commission agent. Secondly Mie Pref. is close to markets and composed of small scale farmers. Mie Pref. switched to sea bream aquaculture early, because of the price decrease in aquacultured yellou tail and natural environmental problems. Mie Pref. had not changed until 1993 when the price of the sea bream plummeted. Because it had better natural environment and transportation. Mie Pref. has a suitable water temperature range required for sea bream aquaculture. However, the price of live sea bream continued to decline due to excessive production and economic recession. As a consequence, small scale farmers are faced with a market price below the average production cost in 1993. In such kind of situation, the small-sized and inefficient manager in Mie Pref. was obliged to withdraw from sea bream aquaculture. Kumamoto Pref. is located further from market sites and has an unsuitable nature environmental condition required for sea bream aquaculture. Although Kumamoto Pref. is trying to convert to the puffer fish aquaculture which requires different rearing techniques, aquaculture technique for puffer fish is not established yet.

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한국의 지역개발과 댐건설 (Regional Development And Dam Construction in Korea)

  • 안경모
    • 물과 미래
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    • 제9권1호
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    • pp.38-42
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    • 1976
  • Because of differences in thoughts and ideology, our country, Korea has been deprived of national unity for some thirty years of time and tide. To achieve peaceful unification, the cultivation of national strength is of paramount importance. This national strength is also essential if Korea is to take rightful place in the international societies and to have the confidence of these societies. However, national strength can never be achieved in a short time. The fundamental elements in economic development that are directly conducive to the cultivation of national strength can be said to lie in -a stable political system, -exertion of powerful leadership, -cultivation of a spirit of diligence, self-help and cooperation, -modernization of human brain power, and -establishment of a scientific and well planned economic policy and strong enforcement of this policy. Our country, Korea, has attained brilliant economic development in the past 15 years under the strong leadership of president Park Chung Hee. However, there are still many problems to be solved. A few of them are: -housing and home problems, -increasing demand for employment, -increasing demand for staple food and -the need to improve international balance of payment. Solution of the above mentioned problems requires step by step scientific development of each sector and region of our contry. As a spearhead project in regional development, the Saemaul Campaign or new village movement can be cited. The campaign is now spreading throughout the country like a grass fire. However, such campaigns need considerable encouragement and support and the means for the desired development must be provided if the regional and sectoral development program is to sucdceed. The construction of large multipurpose dams in major river basin plays significant role in all aspects of national, regional and sectoral development. It ensures that the water resource, for which there is no substitute, is retained and utilized for irrigation of agricultural areas, production of power for industry, provision of water for domestic and industrial uses and control of river water. Water is the very essence of life and we must conserve and utilize what we have for the betterment of our peoples and their heir. The regional and social impact of construction of a large dam is enormous. It is intended to, and does, dras tically improve the "without-project" socio-economic conditions. A good example of this is the Soyanggang multipurpose dam. This project will significantly contribute to our national strength by utilizing the stored water for the benefit of human life and relief of flood and drought damages. Annual average precipitation in Korea is 1160mm, a comparatively abundant amount. The catchment areas of the Han River, Keum River, and Youngsan River are $62,755\textrm{km}^2$, accounting for 64% of the national total. Approximately 62% of the national population inhabits in this area, and 67% of the national gross product comes from the area. The annual population growth rate of the country is currently estimated at 1.7%, and every year the population growth in urban area increases at a rising rate. The population of Seoul, Pusan, and Taegu, the three major cities in Korea, is equal to one third of our national total. According to the census conducted on October 1, 1975, the population in the urban areas has increased by 384,000, whereas that in rural areas has decreased by 59,000,000 in the past five years. The composition of population between urban and rural areas varied from 41%~59% in 1959 to 48%~52% in 1975. To mitigate this treand towards concentration of population in urban areas, employment opportunities must be provided in regional and rural areas. However, heavy and chemical industries, which mitigate production and employment problems at the same time, must have abundant water and energy. Also increase in staple food production cannot be attained without water. At this point in time, when water demand is rapidly growing, it is essential for the country to provide as much a reservoir capacity as possible to capture the monsoon rainfall, which concentarated in the rainy seaon from June to Septesmber, and conserve the water for year round use. The floods, which at one time we called "the devil" have now become a source of immense benefit to Korea. Let me explain the topographic condition in Korea. In northern and eastern areas we have high mountains and rugged country. Our rivers originate in these mountains and flow in a general southerly or westerly direction throught ancient plains. These plains were formed by progressive deposition of sediments from the mountains and provide our country with large areas of fertile land, emminently suited to settlement and irrigated agricultural development. It is, therefore, quite natural that these areas should become the polar point for our regional development program. Hower, we are fortunate in that we have an additional area or areas, which can be used for agricultural production and settlement of our peoples, particularly those peoples who may be displaced by the formation of our reservoirs. I am speaking of the tidelands along the western and southern coasts. The other day the Ministry of Agriculture and Fishery informed the public of a tideland reclamation of which 400,000 hectares will be used for growing rice as part of our national food self-sufficiency programme. Now, again, we arrive at the need for water, as without it we cannot realize this ambitious programme. And again we need those dams to provide it. As I mentioned before, dams not only provide us with essential water for agriculture, domestic and industrial use, but provide us with electrical energy, as it is generally extremely economical to use the water being release for the former purposes to drive turbines and generators. At the present time we have 13 hydro-electric power plants with an installed capacity of 711,000 kilowatts equal to 16% of our national total. There are about 110 potential dams ites in the country, which could yield about 2,300,000 kilowatts of hydro-electric power. There are about 54 sites suitable for pumped storage which could produce a further 38,600,000 kilowatts of power. All available if we carefully develop our water resources. To summarize, water resource development is essential to the regional development program and the welfare of our people, it must proceed hand-in-hand with other aspects of regional development such as land impovement, high way extension, development of our forests, erosion control, and develop ment of heavy and chemical industries. Through the successful implementation of such an integrated regional development program, we can look forward to a period of national strength, and due recognition of our country by the worlds societies.

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Hebei spirit호 유류유출과 서해안 바지락 양식장의 변화 (Oil spill of Hebei spirit and Change of Manila Clam, Ruditapes philippinarum beds in the West coast of Korea)

  • 박광재;김수경;강덕영;송재희
    • 한국패류학회지
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    • 제31권3호
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    • pp.213-220
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    • 2015
  • 2007년 12월 7일 Hebei spirie호 유류유출 후 2008년 4월에 발생한 서해안의 바지락 평균 폐사율은 22.4%로 사고 이전인 2007년 4월의 9.2%에 비하여 급격히 증가한 것으로 나타났다. 특히 유류가 유입된 태안 및 보령, 서산 지역에서는 30% 내외로 폐사율이 매우 높게 나타난 반면, 비오염지역인 인천, 경기도를 비롯하여 지형적인 조건과 방제작업 등으로 유류유입이 적었던 근소만과 천수만 내측 등에서는 10% 내외로 낮게 나타났다. 2009년 폐사율은 6.0%로 2008년의 22.4%에 비해 급격히 감소하였다. 2009년은 2008년과 비교하여 폭풍 등 해황이 불안정하여 저질변동이 많았으나, Hebei sprit호 유류유출로 인한 피해지역인 태안과 보령, 서산 지역에서는 폐사율이 낮아진 반면, 비 피해지역인 인천과 경기에서는 비슷하거나 높게 나타났다. 2010년 폐사율은 8.6%로 2009년의 6.0%에 비해 약간 증가하였는데, 오염지역과 비오염지역을 구분하지 않고 모두 증가하였다. 따라서 유류가 유입된 태안 및 보령, 서산지역의 2008년 4월에 발생한 바지락 폐사는 Hebei spirit호 유류유출과 관련이 있는 것으로 판단된다. 우리나라 바지락의 전체 생산량은 유류사고 전인 2007년에는 27,459 톤이 사고 직후에 폐사가 발생하였음에도 불구하고 2008년에 36,302 톤, 2009년에 40,392 톤, 2010년에는 36,248 톤으로 증가한 것으로 나타났다. 생산량을 지역별로 살펴보면 유류피해 지역인 충남의 바지락 생산량은 유류사고 전인 2007년에는 10,598 톤이던 것이 사고 직후인 2008년에 5,048 톤으로 급격히 감소하였으며, 2009년에는 7,065 톤, 2010년에는 유류피해 전보다 많은 12,921 톤으로 증가한 것으로 나타났다. 비피해지역인 전남의 바지락 생산량은 유류사고 전인 2007년에는 1,252 톤이던 것이 사고 직후인 2008년에는 12,248 톤으로 급격히 증가하였으며, 2009년 9,566 톤, 2010년 2,770 톤으로 감소한 것으로 나타났다. 따라서 전체 바지락 생산량에서 2008년에 우리나라 생산량이 감소하지 않고 증가한 이유는 유류피해가 없던 전남지역에서 물속에 서식하던 바지락이 대량으로 생산되었기 때문이다.

Trends and Projected Estimates of GHG Emissions from Indian Livestock in Comparisons with GHG Emissions from World and Developing Countries

  • Patra, Amlan Kumar
    • Asian-Australasian Journal of Animal Sciences
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    • 제27권4호
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    • pp.592-599
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    • 2014
  • This study presents trends and projected estimates of methane and nitrous oxide emissions from livestock of India vis-$\grave{a}$-vis world and developing countries over the period 1961 to 2010 estimated based on IPCC guidelines. World enteric methane emission (EME) increased by 54.3% (61.5 to $94.9{\times}10^9kg$ annually) from the year 1961 to 2010, and the highest annual growth rate (AGR) was noted for goat (2.0%), followed by buffalo (1.57%) and swine (1.53%). Global EME is projected to increase to $120{\times}10^9kg$ by 2050. The percentage increase in EME by Indian livestock was greater than world livestock (70.6% vs 54.3%) between the years 1961 to 2010, and AGR was highest for goat (1.91%), followed by buffalo (1.55%), swine (1.28%), sheep (1.25%) and cattle (0.70%). In India, total EME was projected to grow by $18.8{\times}10^9kg$ in 2050. Global methane emission from manure (MEM) increased from $6.81{\times}10^9kg$ in 1961 to $11.4{\times}10^9kg$ in 2010 (an increase of 67.6%), and is projected to grow to $15{\times}10^9kg$ by 2050. In India, the annual MEM increased from $0.52{\times}10^9kg$ to $1.1{\times}10^9kg$ (with an AGR of 1.57%) in this period, which could increase to $1.54{\times}10^9kg$ in 2050. Nitrous oxide emission from manure in India could be $21.4{\times}10^6kg$ in 2050 from $15.3{\times}10^6kg$ in 2010. The AGR of global GHG emissions changed a small extent (only 0.11%) from developed countries, but increased drastically (1.23%) for developing countries between the periods of 1961 to 2010. Major contributions to world GHG came from cattle (79.3%), swine (9.57%) and sheep (7.40%), and for developing countries from cattle (68.3%), buffalo (13.7%) and goat (5.4%). The increase of GHG emissions by Indian livestock was less (74% vs 82% over the period of 1961 to 2010) than the developing countries. With this trend, world GHG emissions could reach $3,520{\times}10^9kg$ $CO_2$-eq by 2050 due to animal population growth driven by increased demands for meat and dairy products in the world.

보성 연안해역에서 꼬막과 새꼬막 부유유생 출현의 변화 (Changes in planktonic bivalve larvae of Tegillarca granosa and Anadara kagoshimensis in the Boseong coastal waters of South Korea)

  • 김현정;강준수;정승원;박용주
    • 환경생물
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    • 제37권3호
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    • pp.351-361
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    • 2019
  • 이매패류의 부유유생은 성패(양식자원)에 직접적인 영향을 미치고 있어, 부유유생의 출현시기 및 출현량에 관한 연구는 자연 채묘량의 증대와 인공종묘의 생산을 위해서 매우 중요하다. 이에 본 연구에서는 유전자 분석기법을 이용하여 보성 연안에서 총 21종의 이매패류 부유유생을 확인하였으며, 이 중 구마모토굴(M. sikamea), 왜홍합(X. atratus), 종밋(M. senhousia), 참굴(M. gigas), 가리맛 조개(S. constricta), 새꼬막(A. kagoshimensis), Kurtiella aff. bidentata 그리고 꼬막(T. granosa)이 중요 부유유생으로 관찰되었다. 특히, 보성 연안해역의 주요 수산자원인 새꼬막(A. kagoshimensis)과 꼬막(T. granosa)은 각각 이매패류의 0.51~12.50% (평균 4.00%), 0.01~12.50% (평균 1.92%)의 구성비율을 차지하며 다른 이매패류보다 낮은 출현량을 보였다. 꼬막(T. granosa)과 새꼬막(A. kagoshimensis)의 부유유생은 6월부터 9월까지 관찰되었으나, 각각 8월 초와 8월말에 가장 높은 출현율을 보였다.

Effects of Dietary Lipid Source and Level on Growth Performance, Blood Parameters and Flesh Quality of Sub-adult Olive Flounder (Paralichthys olivaceus)

  • Kim, Dong-Kyu;Kim, Kyoung-Duck;Seo, Joo-Young;Lee, Sang-Min
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권6호
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    • pp.869-879
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    • 2012
  • This study was conducted to investigate the effects of dietary lipid source and level on growth performance, blood parameters, fatty acid composition and flesh quality of sub-adult olive flounder Paralichthys olivaceus. Eight experimental diets were formulated to contain 5% squid liver oil (SLO), 5% linseed oil (LO), 5% soybean oil (SO), a mixture of 1% squid liver oil, 2% linseed oil and 2% soybean oil (MIX), no lipid supplementation with high protein level (LL-HP), 10% squid liver oil (HL-SLO), a mixture of 1% squid liver oil, 4.5% linseed oil and 4.5% soybean oil (HL-VO), and 1% squid liver oil with high starch level (LL-HC), respectively. Two replicate groups of fish (average initial weight of 296 g) were fed the diets for 17 wks. After 5 wks, 11 wks and the end of the feeding trial, five fish from each tank were randomly sampled for analysis of body composition. At the end of the feeding trial, final mean weight of fish fed the LL-HP diet was significantly (p<0.05) higher than that of fish fed the HL-VO diet, but did not differ significantly from those of fish fed the SLO, LO, SO, MIX, HL-SLO and LL-HC diets. Fish fed the LL-HP diet showed significantly higher feed efficiency than fish fed the LO, HL-SLO and HL-VO diets. Feed efficiency of fish fed the LO, SO and MIX diets were similar to those of fish fed the SLO and HL-SLO diets. Fish fed the HL-SLO diet showed significantly higher total cholesterol content in plasma compared with other diets. Fatty acid composition of tissues was reflected by dietary fatty acid composition. The highest linoleic (LA) and linolenic acid (LNA) contents in the dorsal muscle were observed in fish fed the SO and LO diets, respectively, regardless of feeding period. The highest eicosapentaenoic acid (EPA) content in the dorsal muscle was observed in fish fed the LL-HP and LL-HC diets after 11 and 17 weeks of feeding, respectively. Fish fed the SLO and HL-SLO diets showed higher docosahexaenoic acid (DHA) content than that of other treatments after 11 and 17 weeks of feeding, respectively. Dietary inclusion of vegetable oils reduced n-3 HUFA contents in the dorsal muscle and liver of fish. The n-3 HUFA contents in tissues of fish fed the SLO and HL-SLO diets were higher than those of fish fed other diets, except for the LL-HP and LL-HC diets. Hardness, gel strength, chewiness and cohesiveness values of dorsal muscle in fish were significantly affected by dietary lipid source. The results of this study indicate that fish oil in fish meal based diets for sub-adult olive flounder could be replaced by soybean oil and linseed oil without negative effects on growth and feed utilization.