• Title/Summary/Keyword: 영양염 농도

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Studies on Nitrate and Nitrite in Foods (I) -Changes of Nitrate, Nitrite and Ascorbic Acid Contents during Soybean Germination- (식품중(食品中)의 질산염(窒酸鹽) 및 아질산염(亞窒酸鹽)에 관(關)한 연구(硏究)(제 1보)(第 1報) -대두발아과정(大豆發芽過程) 중(中) 질산염(窒酸鹽) 및 아질산염(亞窒酸鹽)의 소장(消長)과 질산환원(窒酸還元) 효소(酵素)의 활성(活性)에 관(關)하여-)

  • Yoon, Hyung-Sik;Kwon, Joong-Ho
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.10 no.1
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    • pp.39-45
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    • 1981
  • The content of nitrate and nitrite in germinating soybean was studied in relation to ascorbic acid contents. Nitrate content during soybean germination gradually increased, and root was higher than cotyledon and hypocotyl. Nitrite content was relatively low and maintained under the 1 ppm during germination period. Ascorbic acid content was maximum around 4 days after germination.

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Biological and Chemical Characteristics and Trophodynamics in the Frontal Zone in the Southern Waters of Korea (한국 남해 연안전선의 생물$\cdot$화학적 특성 및 영양역학 구조)

  • KANG Young Shil;JEON Kyeong Am
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.32 no.1
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    • pp.22-29
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    • 1999
  • Biological and chemical characteristics and trophodynamics in the frontal zone were investigated in the southern waters of Korea, Temperature, nutrients (dissolved inorganic nitrogen, $PO_4^{3-}-P$, and $SiO_2^{-}-Si$) chlorophyll a and zooplankton were collected and analyzed along the two transects, the frontal zone and the non-frontal zone, in April, 1994. Nutrients were higher in the non-frontal zone than in the frontal zone. But chlorophyll a concentration was high in the frontal zone, particularly at the 20 m depth of the main frontal station (St. TII-2), where was located at the junction between the stratified layer and the non-stratified layer with the lowest nutrients. Zooplankton was more abundant in the frontal zone than in the non-frontal zone, particularly at the innermost station of the frontal zone. Copepods showed high composition rate more than $90\%$ at all stations except the main frontal station (St. TII-2). At the main frontal station (St. TII-2), euphausiids and siphonophores were dominated. Chlorophyll a revealed a significant relationships with $SiO_2^{-}-Si$ in both transects and copepods in the non-frontal zone. Copepods also showed very close relationship with siphonophores in the frontal zone. This suggests that the abundance of copepods could be controlled as bottom-up in the non-frontal zone and as top-down in the frontal zone.

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Seasonal variation of physico-chemical factors and size-fractionated phytoplankton biomass at Ulsan seaport of East Sea in Korea (동해 울산항에서 이화학적 환경요인 및 크기그룹별 식물플랑크톤 생체량의 계절적 변동)

  • Kwon, Oh Youn;Kang, Jung-Hoon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.14 no.11
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    • pp.6008-6014
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    • 2013
  • This study aimed to understand seasonal variation of physico-chemical factors and biomass of size-fractionated phytoplankton at Ulsan seaport during the period from February 2007 to November 2009. Water temperature, salinity, dissolved oxygen (DO), pH, chemical oxygen demand (COD) and total suspended solid (TSS) varied in the range of 8.94-$24.26^{\circ}C$, 25.06-34.54 psu, 4.30-10.73 mg/L, 7.97-8.53, 0.66-40.70 mg/L and 57.4-103.3 mg/L, respectively. These factors showed no clear spatial variation unlike spatial pattern of inorganic nutrients and total chlorophyll-a (chl-a) concentration as biomass. Concentration of phosphate, nitrate and silicate ranged from 0.01 to 3.03 ${\mu}M$, 0.05 to 21.62 ${\mu}M$, and 0.01 to 27.82 ${\mu}M$, respectively, with 2 times higher concentration at inner stations than that at outer stations during the study period. Within the range of total chl-a concentration (0.36-7.11 ${\mu}gL^{-1}$), higher concentration (avg. 1.88 ${\mu}gL^{-1}$) of total chl-a were observed at inner stations compared to that (avg. 0.90 ${\mu}gL^{-1}$) at outer stations. Micro-sized phytoplankton dominated total biomass of phytoplankton in spring (34.0-81.2%), summer (35.1-65.6%) and winter (3.9-62.0%). Nano- and pico-sized phytoplankton contributed 58.2-74.5% and 22.4-38.2% to total biomass of phytoplankton in autumn, respectively. However, contribution in biomass of size-fractionated phytoplankton to total phytoplankton biomass showed no clear difference between inner and outer stations. Consequently, these results indicated that spatio-temporal distribution of phytoplankton biomass at Ulsan seaport was dominated by micro-phytoplankton (avg. 52.3%) during the study period except autumn, which was closely dependent on the concentration of inorganic nutrients (p<0.05).

Growth-inhibitory Effect of the Solar Salt-Doenjang on Cancer Cells, AGS and HT-29 (천일염으로 제조한 된장의 암세포 성장 억제효과)

  • Lee, Sun-Mi;Chang, Hae-Choon
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.38 no.12
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    • pp.1664-1671
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    • 2009
  • Doenjang was prepared by using Bacillus subtilis DJI starter and purified salt or solar salt with 12% (w/w) concentration. The prepared Doenjangs were fermented and ripened for 2 month and 16 month, respectively. MTT assay was used to measure the growth-inhibitory effect of Doenjang extracts (water, methanol) on BJ (human foreskin normal cell), HT-29 (human colon cancer cell) and AGS (human gastric adenocarcinoma cell). The anticancer effect increased in both purified salt-Doenjang and solar salt-Doenjang as fermentation period increased. Moreover in the case of water extracts, solar salt-Doenjang (growth inhibitory rate; AGS: 50%, HT-29: 44%) showed definitely higher anticancer effect than purified salt-Doenjang (AGS: 32%, HT-29: 32%). In addition, apoptosis were observed when the water extracts of the Doenjangs were treated into AGS. In particular, it was observed that more apoptosis occured in solar salt-Doenjang treats than purified salt-Doenjang treats. These results suggested that prolonging the fermentation with addition of solar-salt when making Doenjang increased its anticancer effect via cancer cell growth inhibition induced by apoptosis process.

Oxygen-18 and Nutrients in the Surface Waters of the Bransfield Strait, Antarctica during Austral Summer 1990/91 (1990/91년 남극하계 브렌스필드 해협 표층해수의 $\delta$/SUP 18/O와 영양염 분포)

  • KANG, DONG-JIN;CHUNG, CHANG SOO;COOPER, LEE W.;KANG, CHEONG YOON;KIM, YEA DONG;HONG, GI HOON
    • 한국해양학회지
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    • v.27 no.3
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    • pp.250-258
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    • 1992
  • The oxygen isotope composition of surface waters in the Bransfield Strait was determined as one extra state variable in order to characterize water masses in the region, since salinity is significantly modified due to the freezing and ice-melting in the polar region. The salinity, temperature, and $\delta$/SUP 18/O values vary from 34.0 to 34.5$\textperthousand$, -.05 to 2.1$^{\circ}C$ and -0.50 t -0.26$\textperthousand$, respectively. The combined effects of evaporation, precipitation, freezing, ice-melting are reflected in the widely scattered data. Although it is small, the distribution of $\delta$/SUP 18/O of the Bransfield Strait is strongly affected by the freezing-ice melting rather than the evaporation-precipitation. The ice melted fresh water which has higher temperature, depleted salinity and nutrients may be injected to the Bransfield Strait from the north. The concentrations of nutrients are decreasing gradually from the north to the south. The waters were characterized by two groups of higher (about 19.4) and lower N/P ratio (about 16.7). The lower N/P ratio is found in the northern part where ice-melted fresh water is injected. and the higher N/P ratio is found in the southern part of the Bransfield Strait. Although more precise work is needed, the deference of N/P ratio can be an evidence of the ice melted water injection to the Bransfield Strait. Chlorophyll a concentrations, in general, increase from northwest (Waddell Sea) to the southeast (Smith and Hosseason Islands). Probably the injection of nutrient depleted fresh water from the ice melting reduce the chlorophyll a concentration.

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A Study on Red Tide Control with Loess Suspension (부유황토에 의한 적종방제 연구)

  • Na Gui-Hwan;Choi Woo-Jeong;Chun Young-Yull
    • Journal of Aquaculture
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    • v.9 no.3
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    • pp.239-245
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    • 1996
  • As one of the red tide control method, montmorillonite was used to eliminate the causative organisms in Korea and Japan. We assayed the loess to replace the montmorillonite because it distribute in large quantity and nearby the red tide occurrence in South Coast of Korea. By using the mixture of loess and coal ashes, we examined the decreasing level of nutrients such as ammonia and phosphate, the elimination of causative organisms as a chlorophyll a content, and the harmful effect on aquaculture orgarnisms in cage culture farms. Half of the ammonium and phosphate was adsorbed by the loess particles, but only $25\%$ of ammonium was adsorbed by the coal ashes particles. In water column test, the particles of loess and coal ashes were settled down by $80\%$ in 20 minutes, the red tide organisms was eliminated by $80\%$ after 2 hours in 1,000 ppm of loess suspension, but the organisms were eliminated only $30\%$ by the same concentration of coal ashes. The harmful test of fishes and invertbrates, we observed any other negative effects of test animals than a tint deceleration in yellowtail.

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Growth Dynamics of the Surfgrass, Phyllospadix Japonicus on the Southeastern Coast of Korea (한반도 동해남부연안에 자생하는 말잘피, 게바다말의 생장 특성)

  • PARK, JUNG-IM;KIM, JAE HOON;KIM, JONG-HYEOB;KIM, MYUNG SOOK
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.24 no.4
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    • pp.548-561
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    • 2019
  • The surfgrass Phyllospadix japonicus is a dominant seagrass species playing critical ecological roles on the eastern coast of Korea. However, few studies have been conducted on the ecological characteristics of this species, generally due to the turbulent water conditions in its habitat. In this study, to examine the growth dynamics of P. japonicus, we investigated monthly changes in morphological characteristics, density, biomass, and leaf productivity as well as changes in the underwater irradiance, water temperature, and water column nutrient concentrations of its habitat from August 2017 to July 2018. Underwater irradiance and water temperature showed clear seasonal changes increasing in spring and summer and decreasing in fall and winter. Nutrient availability fluctuated substantially, but did not display any distinct seasonal trend. Morphological characteristics, shoot density, biomass, and leaf productivities of P. japonicus exhibited significant seasonal variations, increasing in spring and decreasing in fall months. Spadix of P. japonicus occurred from March to August, with the maximum spadix percentage(15.8%) occurred in May 2018. The average leaf productivity of P. japonicus per shoot and area were 2.1 mg sht-1 d-1 and 7.5 g m-2 d-1, respectively. The optimum water temperature for the growth of P. japonicus in this study was between 13-14℃. The productivity of P. japonicus was not correlated with underwater irradiance, water temperature and nutrient concentrations. These results suggest that the study site provide sufficient amount of underwater irradiance, suitable water temperature range and nutrients for the growth of P. japonicus.

제주항에서 오염부하의 정량적 관리

  • 조은일;강기봉;김종구
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2003.05a
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    • pp.227-231
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    • 2003
  • 제주항을 대상으로 오염부하의 정량적인 관리를 위하여 물질순환모델을 이용하여 해수유동특성과 COD, DIN 그리고 DIP의 농도분포를 시뮬레이션 하였고, 이 결과를 통해 해역의 수질개선대책으로 하천오염부하 감소와 저질개선을 통한 용출부하 감소에 따른 COD, DIN 그리고 DIP의 농도를 정량적으로 평가한 결과는 다음과 같다. 외부부하인 하천유입 부하량의 감소에 의한 제주항 내 오염물질 농도의 저감효과는 만 중앙부에서 만 외로 갈수록 그 영향범위가 미비하나 하천 유입부에 한정되어 큰 효과를 나타내고 있어 제주항 내로 오염부하의 유입을 방지함으로서 제주항의 하천 유입부 수질개선에 큰 영향을 줄 수 있다. 내부부하인 저질 영양염 용출부하를 감소했을 경우의 제주항 내 영영염 농도의 저감 효과는 하천유입 부하량의 저감시와 상대적으로 비교하여 제주항의 하천 유입부보다는 만 중앙부나 만 유입부의 수질개선에 효율적인 영향을 보이는 것으로 사료되며 특히, DIP의 경우 그 양상이 잘 나타났다. 하천과 저질의 총 부하량을 100% 감소했을 경우, COD의 농도분포는 하천유입부인 정점 St. 1에서 약 44%정도의 저감효과를 나타내어 하천유입 부하량만을 감소했을 때보다는 저감효과가 증가하였다. DIN의 경우는 하천유입부하와 저질 용출부하를 각각 따로 저감했을 경우에 비해 전체적으로 저감효율이 상승하고 있으며, 만 중앙부에서 만 유입부로 갈수록 그 경향이 잘 나타나고 있으며 총 부하를 저감시켰을 때 제주항내의 DIN 농도는 정점 St. 3 다음 지점부터 해역수질기준 II등급을 유지되는 수질개선 효과를 나타내었다. DIP의 경우는 DIN과 유사한 경향을 보였으며 정점 St. 4 이후로 해역수질기준 II등급 이하로 유지되는 수질개선 효과를 나타내었다. 이상의 결과로 볼 때, 현재 해역수질기준 III등급인 제주항 내에서 수질을 향상시키기 위해서는 하천유입부하량의 저감뿐만 아니라 항내 저질개선 등을 통하면 전체적으로 II등급 이하를 유지할 수 있을 것으로 예상된다.

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Material Budgets in the Youngsan River Estuary with Simple Box Model (영산강 하구해역에서의 단순 박스모델에 의한 물질수지)

  • Lee, Kyeong-Sig;Jun, Sue-Kyung
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.12 no.4
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    • pp.248-254
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    • 2009
  • Budgets of fresh water, salt, DIP and DIN in the Youngsan river estuary were estimated seasonally in order to clarify the characteristics of material cycling and flux of nutrients with a simple box model. Inflow volumes of freshwater into system was approximately $36.481{\times}10^6{\sim}663.634{\times}10^6m^3/month$ and existing water mass of freshwater in system calculated by salt budget was approximately $2.515{\times}10^6{\sim}5.812{\times}10^6m^3$. Mean residence time of freshwater was calculated to be about 0.26~2.03 day. water exchange $1,248{\times}10^6{\sim}9,489{\times}10^6m^3/month$ assumed with salinity between estuary and adjacent ocean. Inflow mass of DIN and DIN were approximately 76.63~1,149.91 ton/month and 2.91~61.22 ton/month, respectively. Residence times of DIP and DIN were calculated to be 0.45~1.10 day and 0.28~1.92 day, respectively. The ratio of water residence time versus DIP, DIN residence time was calculated that freshwater residence time was longer than DIP, DIN residence time except for summer season. Thus, We assume that circulation of Nutrients in the system will happen rapidly except for summer season. Specially DIP in Winter could assume to outer input source existence because of seawater inflow in system and high DIP concentration in open sea.

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Physicochemical Characteristics and Nutrient Release from Sediment in an Urban Stream (도심하천 퇴적물의 이화학적 특성과 영양염 용출)

  • Kim, Tae Hoon;Jung, Jae Hoon;Choi, Sun Hwa;Choi, I Song;Oh, Jong Min
    • Ecology and Resilient Infrastructure
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    • v.2 no.2
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    • pp.167-176
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    • 2015
  • The water quality of the Gulpo Stream flowing through Incheon, Bucheon, Seoul, and Kimpo is getting worse due to a slow flow rate and bank constructions by stream channelization as well as an inflow of pollutants from living-sewages and factory-sewages. Besides, a dry stream phenomenon caused by a lack of maintenance water upstream makes a self-purification system worse, and the water quality of the Gulpo Stream is currently at its lowest level. The accumulated sludge of the streambed is mostly formed by the deposition of particle pollutants due to the slow flow rate and an artificially straightened stream channel. This accumulated sludge adsorbs a great quantity of organic materials and heavy metals. Because of the internal contamination possibility by a re-gushing, even after the pollution source is removed, it can cause future water pollution. Without a total examination as previously recommended, it is considered difficult to accomplish practical efficiency. In conclusion, the management of periodic sediment management such as dredging would be necessary in the Gulpo Stream because sediment could be an internal pollution source of stream water under anaerobic conditions.