• 제목/요약/키워드: Ocean Blue

검색결과 220건 처리시간 0.024초

한국 해산 남조류 (II) (Marine Blue-green Algae in Korea (II))

  • 유순애;채승문;이기완
    • 자연과학논문집
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    • 제6권1호
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    • pp.5-39
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    • 1993
  • 한국 해산 남조류(Cyanophyta) 의 목록을 작성하고 분류학적 위치를 확인하기 위하여 우리나라 전해역에서 채집된 남조류를 대상으로 형태분류학적 연구를 시도하였다. 그 결과 동정된 한국 해산 남조류는 총 3목 6과 20속 36종이며, 이 중 14종이 우리나라에서 그 생육이 처음으로 확인된 미기록종 (Chroococcus minutus ($K\"{u}$tzing) $N\"{a}$geli, Merismopedia punctata Meyen, Microcystis ichtyoblabe $K\"u$zing, Dermocarpa leibleiniae (Reinsch) Born. et Thur., Hydrocoleum confluens (Setchell et Gardner) Drouet, Lyngbya sordida (Zanard.) Gomont, Phormidium forveolarum (Mont.) Gomont, Phormidium hansgieri Schmidle, Skujaella hildebrandtii (Gomont.) de Toni, Sphaeronema lithophila (Ercegovic) Umezaki, Spirulina tenerrima $K\"u$tzing, Hormothamnion enteromorphoides Grunow, Michrochaete aeruginea Batters, Michrochaete grisea Thuret ex Born. et flah.)이었다. 본 연구에서는 간섭현미경과 위상차현미경을 이용하여 체형이 미소한 남조류의 현미사진을 작성하였다. 형태학적으로 분류된 각 종을 대상으로 세포내 함유물을 관찰하여 그 중 PHB ($poly-\SS$-hydroxybutyrate) granule의 존재 유무를 조사하였으며, Lyngbya confervoides, Lyngbya semiplena, Phormidium corium, Sirocoleum kurzii, Hormothanmnion enteromorphoides, Calothrix crustacea들은 PHB를 함유하고 있음이 확인되었다. 이 결과는 생리생화학적 특성을 기초로한 남조류의 분류체계를 정립하기 위한 자료로 활용될 수 있을 것이다.

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옥시테트라사이클린의 전복박리 성분 (Component of oxytetracycline on exfoliation of abalone, Haliotis discus hannai)

  • 김위식;김정;황두진;한종석;이시우;최동익;임상민;오명주
    • 한국어병학회지
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    • 제25권2호
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    • pp.123-126
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    • 2012
  • 전복 양식현장에서 수산용 항생제인 옥시테트라사이클린(Oxytetracycline, OTC)에 노출된 전복은 부착판에서 박리되는 현상이 관찰되었다. 본 연구에서는 수산용 OTC의 전복박리 성분을 규명하고자 하였다. 전복은 14,000 ppm의 OTC 농도(수산용 OTC 성분: OTC-HCl; 50%, 포도당; 49%, 청색색소; 1% 이하)에서 100% 박리되었으나 8,000 ppm 이하의 농도에서는 박리되지 않았다. 95%의 박리율은 7,000 ppm의 OTC-HCl(pH 2.8)에서 나타났으나, 7,000 ppm의 OTC-HCl (pH 5.0), 7,000 ppm의 포도당 및 140 ppm의 청색색소에서는 박리 효과가 나타나지 않았다. 더욱이 100%의 박리율은 HCl (pH 2.8)에서 나타나, 전복은 상업용 OTC에 함유되어 있는 HCl에 의해 부착판에서 박리되는 것으로 확인되었다. 전복은 HCl (pH 2.5-3.2)에서 2분 이내에 박리되었으나 pH가 낮거나 처리시간이 길어질수록 회복이 느린 것으로 확인되었다. 이상의 결과, 낮은 pH는 전복박리에 유용하게 사용될 수 있으나, 처리시간 및 pH의 농도에 대해 각별한 주의가 요구된다.

발광다이오드(LED)를 이용한 저서미세조류의 성장촉진에 의한 오염해역 저질환경개선 1. 저서규조류 Nitzschia sp. 성장에 영향을 미치는 광량과 파장 (Bioremediation on the Benthic Layer in Polluted Inner Bay by Promotion of Microphytobenthos Growth Using Light Emitting Diode (LED) 1. Effects of irradiance and wavelength on the growth of benthic diatom, Nitzschia sp.)

  • 오석진;박달수;양한섭;윤양호;본성범부
    • 한국해양환경ㆍ에너지학회지
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    • 제10권2호
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    • pp.93-101
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    • 2007
  • 오염된 연안 저서환경의 생물학적 정화를 목적으로 발광 다이오드(LED)를 이용하여 저서미세조류 Nitzschia sp.(일본 Hakozaki만에서 분리)의 성장에 미치는 광량과 파장의 영향을 조사하였다. Nitzschia sp.는 청색 LED(450 nm), 황색 LED(590 nm), 적색 LED(650 nm) 및 형광램프(복수파장)에서 배양하였다. 온도 $25^{\circ}C$ 그리고 염분 30 psu에서 배양한 Nitzschia sp.는 청색파장에서 $20\;{\mu}mol\;m^{-2}\;s^{-1}$ 그리고 형광램프는 $40\;{\mu}mol\;m^{-2}\;s^{-1}$에서 최대 상대성장속도를 보였으나, 이보다 높은 광량에서는 광 저해현상이 나타났다. 하지만, 황색 파장과 적색 파장의 최대광량에서 ($350\;{\mu}mol\;m^{-2}\;s^{-1}$) 광 저해현상은 관찰되지 않았다. 광량-성장곡선에서 청색 LED는 ${\mu}=-0.46{\exp}(1-I/6.32)+0.46-0.00043I,\;(r^2=0.98)$, 황색 LED는 ${\mu}=0.42(I+7.87)/(I+58.9),\;(r^2=0.99)$, 적색 LED는 ${\mu}=0.39(I+3.39)/(I+21.6),\;(r^2=0.94)$ 그리고 형광램프는 ${\mu}=-0.38{\exp}(1-I/7.23)+0.38-0.00016I,\;(r^2=0.96)$로 나타났다. 청색 LED, 황색 LED, 적색 LED와 형광램프의 최대성장률은 각각 $0.44\;day^{-1},\;0.42\;day^{-1},\;0.39\;day^{-1}$ 그리고 $0.37\;day^{-1}$이었다. Nitzschia sp.의 최대흡수계수는 472 nm($0.0224\;m^2\;mg\;chi.\;{\alpha}^{-1}$)와 663 nm($0.0179\;m^2\;mg\;chi.\;{\alpha}^{-1}$)에서 보였지만, 모든 파장에서(400 nm-700 nm) 거의 유사한 흡수계수를 보였다. 따라서 가을과 겨울동안에는 청색파장을 조사하여 미세조류 성장을 촉진시키고, 봄과 여름동안에는 황색파장을 조사하여 유해조류의 성장억제와 함께 저서미세조류의 성장시켜 오염된 연안 저서환경 개선에 도움을 줄 수 있을 것으로 생각된다.

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해수의 광학적 성질과 해양기초생산 -동열대 대서양 Oligotrophic zone을 중심으로- (Optical Properties of Ocean Water and Marine Primary Production -A Study on the Oligotrophic Zone in the Eastern Tropical Atlantic Ocean-)

  • 윤홍주;류청로;김기태;김현주
    • 한국수산과학회지
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    • 제28권2호
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    • pp.174-182
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    • 1995
  • Using the optical data from the EUMELI 3 and 4 missions, the optical properties are discussed in relation to primary production in the oligotrophic zone of the Eastern Atlantic Ocean. The depth of euphotic layer $(Z_{eu})$, the total accumulated concentration of pigment $(C_{TOT})$ and the concentration of pigment (C) are 88m, $12.4mgm^{-2}\;and\;0.14mgm^{-3}$, respectively for the EUMELI 3 mission and 101.7m, $10.0mgm^{-2}\;and\;0.10mgm^{-3}$, respectively for the EUMELI 4 mission. The concentration of pigment is higher in autumn (EUMELI 3) than in spring (EUMELI 4). This indicates that the concentration of photosynthetic pigment has a close correlation with vertical attenuation coefficient $(K(\lambda))$ that changes seasonally in the euphotic layer. While the spectral distributions of downward Irradiance$(E_d)$ for the wave length of 470nm increase with depth, those of upward irradiance $(E_u)$ for the wave length range between 410nm and 490nm are constant, because the study area is covered with the blue and clear oceanic deep waters. The vertical attenuation coefficients of downward irradiance $(K_d)$ and upward irradiance $(K_u)$ have low values between 0.02 and $0.06m^{-1}$ due to the low absorption and scattering by the photosynthetic pigment of phytoplankton. Therefore this zone has the characteristics of the case 1 waters with low concentrations of photosynthetic pigment, and can be classifed into IB.

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Relative Microalgal Concentration in Prydz Bay, East Antarctica during Late Austral Summer, 2006

  • Mohan, Rahul;Shukla, Sunil Kumar;Anilkumar, N.;Sudhakar, M.;Prakash, Satya;Ramesh, R.
    • ALGAE
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    • 제24권3호
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    • pp.139-147
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    • 2009
  • Microalgae using a submersible fluorescence probe in water column (up to 100 m) were measured during the austral summer of 2006 (February) in Prydz Bay, East Antarctica (triangular-shaped embayment in the Indian sector of Southern Ocean). Concurrently, environmental parameters such as temperature, salinity and nitrogen (nitrate, ammonium, urea) uptake rates were measured. The concentration of phytoplankton is relatively high due to availability of high nutrients and low sea surface temperature. Phytoplankton community is dominated by diatoms whereas cryptophytes are in low concentration. The maximum concentration of total chlorophyll is 14.87 ${\mu}g\;L^{-1}$ and is attributed to upwelled subsurface winter water due to local wind forcing, availability of micro-nutrients and increased attenuation of photosynthetically available radiation (PAR). Concentration of blue-green algae is low compared to that of green algae because of low temperature. Comparatively high concentration of yellow substances is due to the influence of Antarctic melt-water whereas cryptophytes are low due to high salinity and mixed water column. Varied concentrations of phytoplankton at different times of Fluoroprobe measurements suggest that the coastal waters of Prydz Bay are influenced by changing sub-surface water temperature and salinity due to subsurface upwelling induced by local winds as also melting/freezing processes in late summer. The productivity is high in coastal water due to the input of macro as well as micro-nutrients.

Physiological effects of biocide on marine bivalve blue mussels in context prevent macrofouling

  • Haque, Md Niamul;Kwon, Sung-Hyun
    • Journal of Ecology and Environment
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    • 제40권3호
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    • pp.136-143
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    • 2016
  • Background: Mussels are stubborn organisms attached to solid substrata by means of byssus threads. The abundance of marine mussel Mytilus edulis in marine facilities like power stations was reason to select among fouling animals. Methods: Mortality patterns as well as physiological behavior (oxygen consumption, foot activity, and byssus thread production) of two different size groups (14- and 25-mm shell length) of M. edulis were studied at different hydrogen peroxide concentrations ($1-4mg\;l^{-1}$). Results: Studied mussels showed progressive reduction in physiological activities as the hydrogen peroxide concentration increased. Mussel mortality was tested in 30 days exposure, and 14 mm mussels reached the highest percentage of 90% while 25 mm mussels reached 81%. Produced data was echoed by Chick-Watson model extracted equation. Conclusions: This study points that, while it could affect the mussel mortality moderately in its low concentrations, hydrogen peroxide has a strong influence on mussels' physiological activities related to colonization. Therefore, hydrogen peroxide can be an alternative for preventing mussel colonization on facilities of marine environment.

Relevance of Light Spectra to Growth of the Rearing Tiger Puffer Takifugu rubripes

  • Kim, Byeong-Hoon;Hur, Sung-Pyo;Hur, Sang-Woo;Lee, Chi-Hoon;Lee, Young-Don
    • 한국발생생물학회지:발생과생식
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    • 제20권1호
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    • pp.23-29
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    • 2016
  • In fish, light (photoperiod, intensity and spectra) is main regulator in many physiological actions including growth. We investigate the effect of light spectra on the somatic growth and growth-related gene expression in the rearing tiger puffer. Fish was reared under different light spectra (blue, green and red) for 8 weeks. Fish body weight and total length were promoted when reared under green light condition than red light condition. Expression of somatostatins (ss1 and ss2) in brain were showed higher expression under red light condition than green light condition. The ss3 mRNA was observed only higher expression in blue light condition. Expression of growth hormone (gh) in pituitary was detected no different levels between experimental groups. However, the fish of green light condition group was showed more high weight gain and feed efficiency than other light condition groups. Our present results suggest that somatic growth of tiger puffer is induced under green light condition because of inhibiting ss mRNA expression in brain by effect of green wavelength.

An Ocean of Opportunity: The Digitalization of Small and Medium-sized Enterprises in Bitung, Indonesia

  • LAYMAN, Chrisanty V.;HANDOKO, Liza;SIHOMBING, Sabrina O.
    • The Journal of Asian Finance, Economics and Business
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    • 제10권1호
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    • pp.41-48
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    • 2023
  • Over the past ten years, numerous industries have undergone upheavals that have significantly altered how businesses interact with their clients and how goods are created and produced bySMEs. Many cutting-edge technologies have recently been created and implemented to enhance business models, facilitate sustainability features for organizations, and boost business capabilities. This essay seeks to understand how digital entrepreneurship functions in developing nations. The results of this study show the effectiveness of digital transformation in the context of SMEs is greatly influenced by aspects including the change of managerial intensity and the involvement and perception of workers, customers, and shareholders. One of the needs that business owners showcased in this study in terms of digitization is infrastructure resources to support digitization such as devices, the Internet, and funds, but also the ability to use digital media for business development. Practical skills that business people want to learn such as product design and management of their social media accounts. There are also aspects of time and self-motivation of the business actor that can speed up or slow down the digitization process. Finally, government support that is structured in encouraging MSMEs is also one of the supporters and drivers of digitalization in the blue economy.

미세조류 4종(Chlorella vulgaris, Nitzschia sp., Phaeodactylum tricornutum, Skeletonema sp.)의 성장에 미치는 발광다이오드 단일파장의 영향 (Effect of Monochromatic Light Emitting Diode on the Growth of Four Microalgae Species (Chlorella vulgaris, Nitzschia sp., Phaeodactylum tricornutum, Skeletonema sp.))

  • 오석진;권형규;전진영;양한섭
    • 해양환경안전학회지
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    • 제21권1호
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    • pp.1-8
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    • 2015
  • 본 연구는 규조류 Nitzschia sp., Phaeodactylum tricornutum, Skeletonema sp.와 녹조류 Chlorella vulgaris의 성장에 미치는 발광다이오드(LED) 단일파장의 영향을 파악하였다. 4종의 미세조류는 청색 LED(450 nm), 황색 LED(590 nm), 적색 LED(650 nm) 그리고 형광램프(복수파장)에서 배양하였다. Nitzschia sp., P. tricornutum 그리고 Skeletonema sp.의 최대성장속도와 최대세포밀도는 청색 LED에서 가장 높았고 형광램프, 적색 LED, 황색 LED 순이지만, C. vulgaris는 적색 LED에서 가장 높았다. 이는 청색 LED는 다른 파장에 비해서 규조류의 성장을 촉진시키는 작용을 하는 것으로 보인다. 따라서 미세조류의 단일파장 하에서 성장속도는 종 특이성 또는 분류군 특이성을 보이는 것으로 생각된다. 또한 이러한 결과는 향후 LED와 미세조류를 활용한 중금속 오염 퇴적물의 복원을 위한 중요한 정보로 활용 할 수 있을 것이다.

LED 색광의 음영구역에 대한 살오징어의 행동반응 및 LED 집어등의 어획성능 (Catching efficiency of LED fishing lamp and behavioral reaction of common squid Todarodes pacificus to the shadow section of color LED light)

  • 안영일;정학근
    • 수산해양기술연구
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    • 제47권3호
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    • pp.183-193
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    • 2011
  • This study made a comparative analysis of behavioral reaction of squid to red (624nm), green (524nm), blue (460nm) & white LED light, its arrival time for the shadow section by making the shadow section in the central section of a water tank just like the bottom part of a squid jigging vessel, and on-site catching efficiency of LED fishing lamp with control fishing vessel. The color LED light showing the highest squidgathering rate as against the shadow section was found to be blue LED light with 39.3% rate under the dark (0.05lx) condition. Under the brighter condition than 0.05lx, white LED light was found to have the highest gathering rate of 41.5%. In addition, it was found that squid gathering rate was high at the shadow section which showed 6.3-fold brightness difference between the shadow section and bright section. As for the arrival time for the shadow section, blue LED light was found to be the fastest in attracting squids in 192.7 seconds under the dark condition while the red LED light was the fastest in luring squids in 164.6 seconds under the bright condition. The ratio of the squid-jigging operation and sailing in fuel consumption of the fishing vessel loaded with LED fishing lamp is about 7 to 1, showing most of the fuel is consumed more in sailing than in squid-jigging operation. As for a catch of squid, the control vessel loaded with MH (Metal Halide) fishing lamp had more catch of 600-7,080 squids than the vessel loaded with LED fishing lamp having a catch of 260-1,700 squids. In addition, even in the comparison of a catch per automatic jigging machine, the catch of the vessel loaded with MH fishing lamp excelled that of the vessel loaded with LED fishing lamp in 6 operations of squid jigging out of 9 operations. The ratio of hand-jigging and automatic jigging machine (one line) in the LED fishing lamp vessel was 1:1.1 excepting the case of having a catch only using an automatic jigging machine, showing almost the same with each other in catches, while in case of a MH fishing lamp vessel, its ratio against hand-jigging was 1 to 5.8, showing hand-jigging excelled in catches.