• 제목/요약/키워드: cultured fish

검색결과 563건 처리시간 0.021초

천해양식어업발달과정에 관한 연구 - 기술개발활동을 중심으로 - (A Study of Technical Development of Mariculture in the Coastal Water)

  • 최정윤
    • 수산경영론집
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    • 제16권1호
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    • pp.91-124
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    • 1985
  • Mariculture is contrasted with inland aqua-culturing fisheries. It is defind as the Industry of rearing Aquaorganism in limited coastal area relatively shallow in depth. Then, It's coming into being realization of Mariculture in it is long in history that Mariculture was realized in Korea. But it is from the early part of 1960s, that this industry has normally developed. Owing to 200 miles economy-zone problems of coastal countries, the development of deep sea fishing was limited, so the Korean Government has now appreciated the importance of cultured industries in the field of coastal fisheries. And the Korean Mariculture the output of which was only 18, 000 M/T in '60s attained 540, 000M/T in 1980s, has now occupied its relative importance in Korean Fisheries Industry. So the purpose of this report is to suggest the prospect of technical development of mariculture in the future of Korea, through the analysis of the various problems that affect upon the individual management '||'&'||' fishing ground utilization, along with the appreciation of "how to extend of those technical innovation" and "how the fishermen's technique level is extended at this stage. According to this study, the result is summarized as follows. First, Maricultural technique is classified into 8 sub-techniques as follows, as shown in fig. 1.Fig. 1. The Formation structure of mariculture technique Second, the change of technical method of mariculture in coastal area of Korea has made as 5 stages; 1) Scattering of culturing organism 2) Culturing by putting stone and installing bamboo 3) Culturing by installing rope and seeding 4) Culturing of putting objectives in cages 5) Culturing fish by feed Third, the maricultural fisheries of Korea has about 70 years long in history. It began from 1910s. But at that time there was no special technique in aquaculture and its technique was confined in searching out the object of species. The species was laver, oyster ect.Forth, although realization of mariculture in Korea has been long time, it is of late from 1960s that this has been industrial with normal development, and its technique of mariculture has mainly has developed from 1970s. Its result not only contributed to the high growth in Korean ecconomy along with the well balanced development between industires, but also it played a great role for the resolution of nation's food problem. Especially maricultural production has shown its sustained annual increase of 13.8% during the last 20 years. So the portion of mariculture among total fisheries stucture was extended from 4.1% in the early 1960s to 22.4% in 1980s.Fifth, it could be safely said that such development in maricultural field is resulted from the activity of aquacultural institutes such as Fisheries Reseach '||'&'||' Development production of major kinds such as Oyster, Sea-mustard, and Laver etc. As well as in the innovation of aquaculturing method with synthetic fiber utilization. FRDA has played important role in the efficient propargation of new aquacultural technique.Sixth, as for the change in aquaculture structure and its during period between 1970s and 1980s, the private management participation shown 25% increase from household number of 45, 173 to 56, 268 in total number. And in the respect of the management scale, of their management decreased, while it showed an increase in relative large scale management, the increase over 3 employees compared with other fisheries field between '70s and 80s. This must be an major trait to be recorded, Now the data above mentioned are shown as in table 1 and 2.Table 1. The maricultural fishing ground development situation in 982.Table 2. The mariculture management as seen in the employmnet size in high seasion.Owing to the technical innovation, of the mariculture in coastal area new income of fishermen increased and it also is true that the number of fishermen participating in its industrialization increased. But the problem being from now on is the self-discharge of the destruction fishing ground considered resulted from rapid expansion in aquaculture industry and the preventive system of sentility of fishing ground. sentility of fishing ground.

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Haddock, Melanogrammus aeglefinus 자어의 초기성장 (Early Growth of Cultured Larval Haddock, Melanogrammus aeglefinus)

  • 박인석;;허준욱
    • 한국발생생물학회지:발생과생식
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    • 제10권4호
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    • pp.271-275
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    • 2006
  • 본 연구의 목적은 부화 후 67일 동안 대서양산 Haddock, Melanogrammus aeglefinus 치어의 초기성장을 조사하여, 본 종의 발생생물학과 양식 측면에서의 정보 제공하고자 한다. 전장성장은 $TL=3.5374e^{0.0536X}(r^2=0.8759$, TL은 전장이며, X는 부화 후 표본시일), 체중성장은 $BW=0.0002e^{0.1858X}(r^2=0.8671$, BW는 체중이며, X는 부화 후 표본시일)로 각 성장들은 지속적인 성장을 보였다. 체고와 가슴지느러미 길이는 연속적인 성장을 보여 체고성장은 $BD=0.3545e^{0.0778X}(r^2=0.9563$, BD는 체고이며, X는 부화 후 표본시일)였으며 가슴지느러미 길이성장은 $PL=0.0111e^{0.1591X}(r^2=0.9194$, PL은 가슴지느러미 길이이며, X는 부화 후 표본시일). 전장에 대한 체고의 상관관계식은 BD=0.2397X-0.5735($r^2=0.9957$, BD는 체고이며, X는 전장)이었으며 전장에 대한 가슴지느러미 길이의 상관관계식은 PL=0.1929X-1.3767($r^2=0.9882$, PL은 가슴지느러미 길이이며, X는 전장)이었다. 체고에 대한 가슴지느러미 길이성장은 PL=0.8117BD-0.9718($r^2=0.9814$, PL은 가슴지느러미 길이이며, BD는 체고)이었다. 체중에 대한 체고는 $BD=-9.4734X^2+19.046X+1.3672(r^2=0.9041$, BD는 체고이며, X는 체중)로, 체중에 대한 가슴지느러미 길이는 $PL=-6.379X^2+14.023X+0.3774(r^2=0.9494$, PL은 가슴지느러미 길이이며, X는 체중)이었다. 본 연구결과의 Haddock 치어 초기성장 특성은 Haddock 치어 사육에 도움이 될 것이다.

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동해안 조식성 무척추동물과 해조류 간 상호작용 (Interaction between Invertebrate Grazers and Seaweeds in the East Coast of Korea)

  • 유재원;김효진;이현정;이창근;김창수;홍재상;홍정표;김동삼
    • 한국해양학회지:바다
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    • 제12권3호
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    • pp.125-132
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    • 2007
  • 조식동물-해조류 상호작용의 크기 분포를 추정하기 위하여 12종의 조식동물에 대하여 개체 당 일평균 섭식률 (PCGR, per capita grazing rate, g seaweeds/individual/day)을 구하고, 다른 종들의 섭식률을 추정할 수 있는 회귀모형을 만들었다. 조식동물의 생체량과 사제곱근 변환 PCGR은 power curve($y=0.2310x^{0.3290}$)에 적합되었고 모형의 r값은 0.8864였다. 이로부터 조식동물의 PCGR 변동은 생체량과 관계가 있으며, 섭식 효율성은 관찰된 생체량 범위내에서 균일하지 않다는 것이 파악되었다. 따라서 각 종별 생체량 효과가 보정된 PCGR을 추정하였고, 작은 몸체를 갖는 종일수록 보다 효율적인 섭식자인 것으로 밝혀졌다. 서식밀도를 감안한 개체군 별 상호작용(grazing impact, $mg/m^2$)을 계산한 결과, 해조장에 가장 큰 영향을 갖는 개체군은 군소(Aplysia kurodai, 약 $2,513mg/m^2$)인 것으로 나타났고, 다음은 둥근성게(Strongylocentrotus nudus, 약 1,500 mg/)와 새치성게(S. intermedius, $733mg/m^2$) 등인 것으로 나타났다. 단각류 가운데 단위 면적당 밀도가 4,000 개체 이상인 멜리타옆새우류, Elasmopus sp.와 2,000 개체 이상인 가시꼬리육질꼬리옆새우붙이, Jassa falcata의 섭식량은 각각 3.435와 $1.697mg/m^2/day$인 것으로 나타났다. 본 연구에서 추정한 조식동물 군집의 종 조성과 서식 밀도가 동일할 때 상호작용의 총합은 $5,045mg/m^2/day$인 것으로 나타났다. 실험과 모형 연구로부터 성게류와 군소 외에도 적잖은 상호작용이 높은 밀도를 갖는 많은 수의 종들로부터 해조류에 가해지고 있음을 추정할 수 있었다. 성게류의 경우 3 개체/$m^2$의 평균 서식밀도에서 발생하는 섭식량은 국내 천해 양식업의 평균 해조류 생산량(약 5 ton/ha)을 초과하는 것으로 예측되었다. 미소 갑각류 역시 낮은 포식압 조건에서 서식밀도가 증가하면 적잖은 충격(해조류 생산량의 약 16%)을 가할 것으로 예측되었다. 해조장에 서식하는 조식동물의 밀도가 어류에 의해 강도 높게 조절되고 있음을 감안하면, 어류와 조식동물 간 상호작용에 대한 인간의 간섭(어류의 남획 등)은 해조장에 커다란 변화를 유발할 수 있는 잠재력을 가질 것으로 예상된다.