• Title/Summary/Keyword: 제한영양염류

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Recent changes in springtime discharge and nutrient fluxes to the vicinity of the Korean Peninsula (2012-2021) (봄철 한반도 연안으로 유입되는 하천 유량과 영양염류 유출량 변화량 (2012-2021))

  • Ye Na Kim;Jong Hun Kam
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.145-145
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    • 2023
  • 육지의 영양염류는 강수를 통해 강을 따라 바다로 흐른다. 연안 수질과 생태계를 효과적으로 관리하기 위해 수계를 통해 연안으로 배출되는 육상 영양염류 유출의 변화를 연구하는 것이 중요하다. 그러나 제한적인 수량과 수질 동시 관측자료로 인해 한반도 연안으로 유입되는 영양염량 변화에 대한 연구는 매우 제한적이다. 따라서 본 연구에서는 한반도 내륙에서 주변 연안 지역으로 유출되는 영양염류의 유출량과 그 변화량을 추정 및 분석하고 유출량에 대한 수량과 수질 변화의 기여도를 정량적으로 조사하였다. 2012-2021년 봄철(3-5월)에 한반도 연안 주변의 75개의 하천 지점에서 측정된 수질 농도 및 유량 관측 데이터와 한반도 연안 375지점에서 측정된 해양 수질 농도 데이터를 사용하였다. 더불어 22개의 해안지역 하천 유량 관측소와 근접한 수질 관측자료를 통해, 총 질소(TN), 총 인(TP), 클로로필a의 봄철 영양염류 유출 총량을 추정하고 그 변화량을 평가하였다. 그리고 영양염류 유출 변화량을 모델 수식으로 분해하여 유출 총량 변화량에 대한 하천 유량과 영양염류 농도 변화의 상대적인 기여도를 분석하였다. 분석결과는 연간 봄철 TN, TP, 클로로필a 유출 총량의 변화율이 영양염류의 농도 (각각 19%, 48%, 5%)보다는 하천 유량 (각각 84%, 51%, 91%)에서 더 많은 영향을 받았음을 보여주었다. 한반도 연안을 서해, 남해, 동해로 나누어 영양염류 유출 총량을 분석한 결과, 한반도 전체 유출량에서 서해의 가장 큰 기여도를 확인하였다. 또한 한반도 내륙에서 유출된 영양염류 총량이 연안의 수질에 끼치는 영향을 조사하고자 내륙 하천과 연안의 수질 간의 상관관계를 조사하여 간접적으로 파악하였다. 본 연구는 분석적인 접근을 통해 하천과 연안 수질 환경에서 수문학적인 연결고리의 중요성을 강조하고, 영양염류 유출 변화가 해안에 서식하는 생태계와 양식산업 생산성에 미치는 잠재적인 영향을 강조하였다.

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Estimation of Eutrophication during Summer and Fall in Danghang Bay (당항만의 여름과 가을의 부영양화 평가)

  • Kim, Sung Jae;Yoo, Young Jin
    • Journal of Wetlands Research
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    • v.19 no.4
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    • pp.383-392
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    • 2017
  • In 2013, August and September(early) as summer and October and November as Fall the probe of eutrophication has been done at 22 sampling points from the entrance of Danghang Bay (Jinhae Bay) to Geosan reservoir. In Danghang Bay, total chlorophyll(TChl) concentration of summer was 3.7 times higher than that of fall, and sampling points closer to the center showed 1.8 times higher concentrations than sampling points near the fringe where fresh water encountered. Eutrophication Index(EI) exceeded 1 at all sampling points in Danghang Bay during summer and fall, and if other conditions for algae growth met there was a possibility red tide to bloom at any place. There was a tendency of EI to gradually increase moving up from the entrance of bay to the inner side during summer and fall. Especially there was a sudden increase by 2.3 times higher at sampling points of 13~22 (planned region as Madong reservoir) than at other points during fall. Nitrogen was a limiting nutrient for growth of algae during summer and fall in Danghang Bay, but phosphorus was a limiting nutrient during summer rainy season. During summer and fall, multiple linear regression analysis between EI and COD, DIN, and DIP showed a significant positive relationship and that DIP was the most effective variable. Whereas multiple linear regression analysis between TChl and COD, DIN, DIP, and DSi showed a significant positive relationship and that DIP was also the most effective variable during summer. There was no significant correlation between TChl and the other parameters during fall.

Analysis of the Benthic Nutrient Fluxes from Sediments in Agricultural Reservoirs used as Fishing Spots (낚시터로 활용중인 농업용 저수지의 퇴적물 내 영양염류 용출 분석)

  • Joo, Jin Chul;Choi, Sunhwa;Heo, Namjoo;Liu, Zihan;Jeon, Joon Young;Hur, Jun Wook
    • Journal of Korean Society of Environmental Engineers
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    • v.39 no.11
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    • pp.613-625
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    • 2017
  • For two agricultural reservoirs that are rented for fishing spots, benthic nutrient fluxes experiment were performed two times with two sediments from fishing-effective zone and one sediment from fishing-ineffective zone using laboratory core incubation in oxic and anoxic conditions. During benthic nutrient fluxes experiment, the changes in DO, EC, pH, and ORP in the supernatant were not significantly different between fishing-effective zone and fishing-ineffective zone, and were similar to the sediment-hypolimnetic diffused boundary layer in agricultural reservoir. Except for $NO_3{^-}-N$, more benthic nutrient fluxes of $NH_4{^+}-N$, T-P, and $PO{_4}^{3-}-P$ from sediment to hypolimnetic was measured in anoxic than in oxic conditions (p<0.05). As the DO concentration in hypolimnetic decreases, the microorganism-mediated ammonification is promoted, the nitrification is suppressed, and finally the $NH_4{^+}-N$ diffuses out from sediment to hypolimnetic. Also, the diffusion of T-P and $PO{_4}^{3-}-P$ from sediments to hypolimnetic is accelerated through the dissociation of the phosphorus bound to both organic matters and metal hydroxides. The difference in the benthic nutrient diffusive fluxes between fishing-effective zone and fishing-ineffective zone was not statistically significant (p>0.05). Therefore, it was found that fishing activities did not increase the benthic nutrient diffusive fluxes to a statistically significant level. Due to the short fishing activities of 10 years and the rate-limited diffusion of the laboratory core incubation, the contribution of fishing activities on sediment pollution is estimated to be low. No significant correlation was found between the total amount of nutrients in sediment and the benthic nutrient diffusive fluxes in both aerobic and anaerobic conditions. Therefore, nutrients input from various nonpoint sources of watersheds are considered to be a more dominant factor rather than fishing activities in water quality deterioration, and both aeration and water circulation in hypolimnetic were required to suppress the anoxic environment in agricultural reservoirs.

Temporal Dynamics of Water Quality in Junam Reservoir, as a Nest of Migratory Birds (철새도래지인 주남저수지의 계절적 수질변동)

  • Lee, Eui-Haeng;An, Kwang-Guk
    • Korean Journal of Ecology and Environment
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    • v.42 no.1
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    • pp.9-18
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    • 2009
  • The objectives of this study were to evaluate seasonal and interannual variations of water quality and nutrient input (N, P) in Junam Reservoir, a nesting waterbody of migratory birds, over 10 years during 1998$\sim$2007 along with dynamic relations of trophic parameters using empirical models. Concentrations of COD averaged 7.8 mg $L^{-1}$ during the study, while TN and TP were $1.4\;mg\;L^{-1}$ and $83{\mu}g\;L^{-1}$, respectively, indicating an eutrophic-hypereutrophic state. Values of monthly COD had strong positive relations (r=0.669, p<0.001) with conductivity, indicating that summer rainfall resulted in an ionic dilution of the reservoir water by rainwater and contributed better water quality. One-way ANOVA tests showed significant differences (F=$5.2{\sim}12.9$, p<0.05) in TN and TP between the before and after the bird migration. In other words, nutrient levels were greater in the absence of migratory birds than in the presence of the migratory birds, suggesting a no-effect on nutrient inputs by the birds. Also, one-way ANOVA indicated no significant differences (F=$0.37{\sim}0.48$, p>0.05) in $NO_{3^-}N$ and $NH_{3^-}N$ between the before and after the birds migration. Linear empirical models using trophic parameters showed that algal biomass as CHL, had significant low correlations with TN ($R^2$=0.143, p<0.001, n=119) and TP ($R^2$=0.192, p<0.001, n=119). These results suggest that influences of nutrients on the CHL were evident, but the effect was weak. This fact was supported by analysis of Trophic State Index Deviation (TSID). Over 70% in the observed values of "TSI (CHL)-TSI (SD)" and "TSI (CHL)-TSI (TP)" were less than zero, suggesting a light limitation on the CHL by inorganic suspended solids.

Spatio-Temporal Distribution of Nutrients in the Surface Waters of Deukryang Bay 1. Seasonal Variation of Nutrients and Limiting Factors for Primary Production (득량만 표층수중 영양염류의 시공간적 분포특성 -1. 영양염류의 계절변화와 기초생산 제한인자-)

  • YANG Han-Soeb;KIM Soung-Soo;KIM Guebuem
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.28 no.4
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    • pp.475-488
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    • 1995
  • In order to see the seasonal variation of nutrients and the limiting factors to the primary production in Deukryang Bay, both dissolved inorganic nutrients and salinity were measured in the surface waters during the periods from July 1992 to March 1993. The mean value of salinity was the lowest in ?all and the highest in early spring. Dissolved inorganic nitrogen (DIN) was the highest in winter and the lowest in summer. However, both phosphate and silicate were the highest in summer and the lowest in fall. Salinity was generally higher in the outer region than in the inner region of the bay.DIN content was nearly depleted (less than $2{\mu}M$) in summer. From fall to spring, DIN content was nearly depleted in the inner region and relatively high in the outer region of the Day. Phosphate was the highest in summer showing an opposite distribution pattern to salinity, and it was nearly depleted (less than $0.1{\mu}M$) in fall and winter. In spring, however, phosphate content was slightly high in the outer region. Silicate content showed an opposite distribution pattern to salinity in summer. in other seasons, However, the distribution pattern of silicate was similar to the salinity. DIN seemed to be a limiting factor for the primary production at all area of the bay in summer and at the inner region in other season. However, phosphate seemed to be a limiting factor at all area of the bay in fall and winter and at the inner region in spring. Silicate may limit the production of diatoms at the inner region of the bay in winter and spying. Both phosphate and silicate showed a good inverse relationship with salinity in summer, which indicates inputs of these nutrients from the freshwater runoff. In the other seasons, both nitrate and silicate showed a positive linear relationship with salinity in the outer region of the bay, suggesting that these two nutrients were mainly supplied by the inflow of the offshore costal water which had high nitrate content associated with vertical mixing.

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Relationship between Physico-Chemical Factors and Chlorophyll-$a$ Concentration in Surface Water of Masan Bay: Bi-Daily Monitoring Data (마산만 표층수에서 물리-화학적 수질요인과 엽록소-$a$ 농도 사이의 관계: 격일 관측 자료)

  • Jung, Seung-Won;Lim, Dhong-Il;Shin, Hyeon-Ho;Jeong, Do-Hyun;Roh, Youn-Ho
    • Korean Journal of Environmental Biology
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    • v.29 no.2
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    • pp.98-106
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    • 2011
  • In order to investigate water quality factors controlling chlorophyll-$a$ concentrations, the by-daily monitoring was conducted from February to November 2010 in 4 stations of Masan Bay. Seasonal variability in physico-chemical factors was mainly controlled by freshwater loading as a result of precipitation: chemical oxygen demand, suspended solids and nutrient concentrations rapidly increase during the heavy rainy season, whereas they decrease in the dry season. From late winter to mid spring, phosphorus and silica sources relative to Redfield ratio were probably functioned as limiting factor for phytoplankton flourishing in surface waters, but nitrogen concentration during mid-spring to autumn might be responsible for the increase of phytoplankton biomass. The multiple regression analysis revealed that variations in chlorophyll-$a$ concentration may be strongly correlated with changes of water temperature, chemical oxygen demand, dissolved inorganic phosphorus in spring, and salinity, chemical oxygen demand and precipitation in summer. Consequently, in the Masan Bay, a heavy rainfall event is an important factor to determine changes of biotic and abiotic factors, and in addition the dynamics of chlorophyll-$a$ concentration are strongly affected by changes of hydrological factors, especially water temperature, precipitation and nutrients.

Spatiotemporal Variations of Marine Environmental Parameters in the South-western Region of the East Sea (동해남부연안 해양환경특성 시공간적 변화)

  • Won, Jong-Ho;Lee, Young-Woo
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.20 no.1
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    • pp.16-28
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    • 2015
  • In order to elucidate the spatiotemporal variations of marine environmental parameters, we collected seawater samples in the south-western region of the East Sea in May, August, and November 2012 and February 2013. The concentrations of dissolved inorganic nutrients (dissolved inorganic nitrogen, phosphorus, and silicate) in surface seawater during the summer season were lower than those during autumn and winter seasons, which the mixed layer is deeper. The low nutrient concentration in spring and summer seasons seems by consumption of dissolved inorganic nutrients by phytoplankon photosynthesis (high chlorophyll a concentration) and the limited supply of dissolved inorganic nutrients from subsurface layer having high nutrients. The low nutrient concentration during spring season seems to be related to the limited supply of dissolved inorganic nutrients from land and subsurface layer because the concentration of chlorophyll a was low. The DIN:DIP ratio was a wide range of average $15.6{\pm}13.6$ in the surface seawater compared to that of average $14.8{\pm}4.2$ in the bottom seawater during sampling periods. The dissolved inorganic nitrogen might act as a limiting factor of the growth of phytoplankton because the DIN:DIP ratio (on average $8.35{\pm}4.67$) was low during the spring season.