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동해 표층수 중 영양염과 Chlorophyll α의 분포 특성
윤상철,윤이용,Yoon, Sang Chol,Yoon, Yi Yong 한국해양환경•에너지학회 2016 한국해양환경·에너지학회지 Vol.19 No.2
2009년 7월 3일부터 7월 27일까지 러시아 조사선 R/V Lavrentyev를 이용하여 러시아 연안으로부터 4개의 Line(D, R, E, A)을 따라 표층 30 m 수심의 시료를 26개의 정점(울릉분지와 일본분지를 포함한 동해의 전 수역)에서 채수하여 영양염 및 엽록소-${\alpha}$의 농도를 분석하였다. 냉수역보다 난수역에서 1.4배 높은 질산염을 제외한 나머지 항목들은 모두 난수역보다 냉수역에서 높게 나타났다($NH_4$, $PO_4$ 각 1.8배, $Si(OH)_4$ 1.2배, 엽록소-${\alpha}$ 1.9배). 암모니아와 인산염, 엽록소-${\alpha}$의 수평분포는 매우 유사한 분포를 보이며, 한류와 저층수의 용승 영향권에 있는 러시아 근해에서 최대치를 보이고, 울릉분지에서 비교적 낮은 분포를 보인다. 반면, 질산염은 대마난류수의 직접적인 영향권에 있는 울릉분지에서 최대치를 보이며, 점차 북상할수록 감소한다. N/P 비는 한류수계보다 대마난류 중층수에서 가장 높은 값을 보이며, 대마난류수는 동해로 유입되는 질산염의 주요 공급원으로 작용하고 있다. 그러나 난수역에서 인산염의 평균 농도는 $0.2{\mu}M$ 이하로 식물플랑크톤 성장의 제한 요인으로 작용할 수 있는 반면, 냉수역에서의 높은 농도는 엽록소-${\alpha}$와 직접적인 상관성을 보이고 있다. 해양환경에 영향을 미치는 주요인을 분석하기 위한 주성분 분석결과 주성분 I은 수온에 의해 동해의 해양환경이 주로 영향을 받으며, 주성분 II는 영양염과 엽록소-${\alpha}$ 가 주요인으로 작용한다. 따라서 연구해역의 해양환경은 수온에 지배되며, 그에 따라 냉수역과 온수역으로 구분되는 특성을 보였다. During the period between July 3 and 27 of 2009, water samples were collected from the Russian coast at a depth of 30m from 26 stations (including Ulleung and Japan basins) onboard the Russian survey vessel R/V Lavrentyev following 4 lines (D, R, E, and A). The samples were analyzed for nutrients and chlorophyll a contents. All parameters exhibited higher values in warm waters than in cold waters ($NH_4:1.8-fold$, $PO_4:1.8-fold$, $SiO_2:1.2-fold$, and chlorophyll-${\alpha}$:1.9-fold), except nitrates, which was 1.4-fold higher in cold waters than in warm waters. The horizontal distribution of ammonia, phosphate, and chlorophyll-${\alpha}$ was very similar to each other and showed the highest values in the waters near Russia, where a upwelling influence of cold current and bottom water prevails, while relatively low distribution was observed at the Ulleung Basin. On the other hand, nitrates showed the highest concentration at the Ulleung Basin, which is under the direct influence of the Tsushima warm water, and showed a gradual decrease northward. The N/P ratio showed the highest value in the Tsushima middle water, rather than in the North Korean Cold Water, the Tsushima Warm Water was the primary source of nitrate flow into the East Sea. However, the average concentration of phosphate in the warm waters was < $0.2{\mu}M$, thereby limiting phytoplankton growth, while a high concentration of phosphate in cold waters showed a direct correlation with chlorophyll-${\alpha}$. The results of principal component analysis for the identification of primary factors that influence the marine environment showed that principal component I was water temperature and principal component II was influenced chlorophyll-${\alpha}$ and nutrients. Therefore, Study area has greatest influenced by water temperature, and clearly distinct cold and warm water regions were observed in the East Sea.
낙동강 최종 방류수의 수질 및 물질 방류량의 장기변동 연구
윤상철 ( Sang-chol Yoon ),윤석현 ( Shyun-hyun Yoon ),이승목 ( Seung-mok Lee ),윤이용 ( Yi-yong Yoon ) 한국수처리학회 2016 한국수처리학회지 Vol.24 No.6
We analyzed temperature, dissolved oxygen(DO), ammonia, nitrate, phosphate, chlorophyll-a of Nakdong river estuary discharged flow from Feb. to Dec. 2015. and We studied Nakdong river water`s environmental element for 20 years(1996-2015) to understand long term variation of the water quality and discharge flow of Nakdong river water. Although the change pattern of total discharge flow was similar to annual variation of precipitation, discharge flow decreased over 67%(7.572×10<sup>6</sup> ㎥·year<sup>-1</sup>) after construction of Nakdong river barrage(2013-2015). The annual range of fluctuation also largely decreased. We conducted the study the annual variation of environmental elements for 20 years. The concentration of nitrate, ammonia, chlorophyll-a remarkably decreased. The concentration of DO has increased until 2012 and has decreased after construction on Nakdong river barrage. The fluctuation range of ammonia and chlorophyll-a was large with the change of discharged flow at flowing a small amount of discharged water. Dilution effect was remarkable at flowing a large amount of discharged water(over 300,000 ton·day<sup>-1</sup>). The concentration of COD, nitrate, phosphate was not decreased even though discharged flow was increased. The concentration of SS was increased with discharge flow increase. But the fluctuation range of the concentration of environmental elements was large even though a small amount of discharged water(100,000 ton·day<sup>-1</sup>) flow after construction of Nakdong river barrage(2012). The discharged flow of all environmental elements we studied has decreased. COD, ammonia, nitrate, phosphate, chlorophyll-a and SS has decreased by 29.5 kt·year<sup>-1</sup>, 2.8 kt·year<sup>-1</sup>, 19.9 kt·year<sup>-1</sup>, 1.8 kt·year<sup>-1</sup>, 75.0 kt·year<sup>-1</sup>, 402.5 kt·year<sup>-1 </sup> for 20 years. In conclusion the discharged flow of all environmental elements we studied has decreased after construction of Nakdong river barrage (2012) and the range of fluctuation was also being small.
동해 남부 연안 해역에서 냉수대 발생이 식물플랑크톤 군집에 미치는 영향
김아람,윤석현,정미희,윤상철,문창호,Kim, A-Ram,Youn, Seok-Hyun,Chung, Mi-Hee,Yoon, Sang-Chol,Moon, Chang-Ho 한국해양학회 2014 바다 Vol.19 No.4
냉수대 발생 전 후의 해양 환경과 식물플랑크톤 군집 구조 및 크기를 파악을 위해 여름철 빈번하게 냉수대가 발생되는 동해 남부 해역(울산 정자~부산 일광) 18개 정점에서 2013년 5월부터 8월까지 냉수대 발생 환경 및 식물플랑크톤 군집 구조를 조사하였다. 냉수대는 7월과 8월에 연안 정점(A1, B1, C1)에서 발생하였고, 표층에서 저온 고염의 특성을 보였다. 이 시기에 영양염은 수온과 유의한 음의 상관관계(DIP, r=-0.218, p<0.01; DIN, r=-0.306, p<0.01; silicate, r=-0.274, p<0.01)를 보여, 찬 해수가 분포하는 표층에 영양염이 풍부함을 알 수 있었다. 출현한 식물플랑크톤은 총 186종이었고, 현존량은 5월(C1, $726{\times}10^3cells\;L^{-1}$)과 7월(A1, $539{\times}10^3cells\;L^{-1}$)에 높았다. 또한, 연안 정점에서 총 chl. a 와 소형플랑크톤 chl. a ($>20{\mu}m$)의 농도가 냉수대 발생 시기인 7, 8월에 뚜렷하게 증가한 반면, 수온약층이 형성된 6월에는 현저하게 낮았다. 6월의 우점종은 Pseudo-nitzschia spp.이었고, 그 세포 크기는 $309{\mu}m^3$로 다른 시기의 식물플랑크톤의 1/10 수준에 머무는 작은 크기였다. 이러한 결과는 7월과 8월에 총 chl. a의 증가와 식물플랑크톤의 크기 증가가 냉수대 발생 시에 표층으로 공급된 영양염의 영향임을 시사한다. 이러한 해양 환경 특성과 식물플랑크톤 출현양상은 연안 정점에서 뚜렷하게 보였고, 외측 정점에서는 관찰되지 않았다. 이 연구에서는 동해 남부 해역에서 냉수대가 발생하면 식물플랑크톤의 현존량 증가와 더불어 비교적 크기가 큰 식물플랑크톤의 출현 빈도가 증가하는 현상을 확인하였다. 결과적으로 하계에도 불구하고 동해 남부 연안 해역에서 냉수대 발생에 따른 영양염 공급은 식물플랑크톤 군집조성과 현존량에 상당한 영향을 미치는 것으로 판단된다. In order to understand environment condition and phytoplankton community before and after coastal upwelling, the influences of upwelling events on phytoplankton community were studied at 18 stations located the Southern part of East Sea, Korea from May to August 2013. The surface water masses showed low temperature and high salinity due to upwelling events at coastal stations (A1, B1, C1). Correlation between temperature and nutrients (DIP, r=-0.218, p<0.01; DIN, r=-0.306, p<0.01; silicate, r=-0.274, p<0.01) was significantly negative. This result could be explained that nutrients were supplied to surface water by the upwelling of bottom water. Phytoplankton communities were composed of 186 species. Phytoplankton abundance were relatively high in May (C1, $726{\times}10^3cells\;L^{-1}$) and July (A1, $539{\times}10^3cells\;L^{-1}$). Total chlorophyll a and micro-size fraction ($>20{\mu}m$) increased at coastal stations in July and August, while phytoplankton abundance and total chl. a was much low in June. Dominant species in June was Pseudo-nitzschia spp. of which the cell size was $309{\mu}m^3$. Cell size of Pseudo-nitzschia spp. was smaller than dominant species in other period. Therefore, the increase in total chloro-phyll a and the size of phytoplankton was resulted in the sufficient supply of nutrients. In contrast, these tendencies were not observed at outside stations. These results suggested that coastal upwelling was an important influencing factor to determine the species composition and standing stock of phytoplankton community in the coastal waters of the Southern part of East Sea, Korea.