• 제목/요약/키워드: Seawater pH

검색결과 313건 처리시간 0.028초

해수에 의한 제강 슬래그의 납, 구리, 카드뮴 및 수은 화합물의 용출특성 평가 (Evaluation of Lead, Copper, Cadmium, and Mercury Species in the Leachate of Steel Making Slag by Seawater)

  • 이한국;이동훈
    • 대한환경공학회지
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    • 제27권1호
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    • pp.75-84
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    • 2005
  • 본 연구는 해양구조물로 재활용되는 제강 슬래그의 납, 구리, 카드뮴과 수은의 용출특성을 평가하는데 있다. 이를 위하여 고형폐기물의 용출규제 시험, 액고비 변화시험, pH 고정시험과 같은 다양한 용출시험을 하였다. 용출용매로 증류수를 이용한 경우와 해수를 이용한 경우의 pH 고정시험 결과, 제강슬래그에서 용출된 납, 구리, 카드뮴은 뚜렷한 차이를 확인할 수 있었다. 용출용매로 증류수 사용시, pH 7-8 구간과 pH 11-12 구간에서 낮은 용출을 보였지만, 해수를 용출용매로 사용한 경우는, 증류수를 용매로 사용한 것 보다 높게 용출되었다. 수은 용출의 경우는 증류수를 용출용매로 이용한 것보다 해수를 이용한 경우에서 더 낮게 용출되었다. 한편, 제강 슬래그에서 용출되는 납, 구리, 카드뮴의 용존 및 침전 상태의 파악과 중금속 화합물들의 파악을 위하여 지화학 평형 프로그램인 Visual minteq를 사용하였다. 해수와 반응한 제강 슬래그에서 용출된 납, 구리는 pH 11-12 구간에서 대부분 용존되지만 pH가 감소되는 pH 7-10에서는 90% 이상만이 침전하였고, 카드뮴의 경우는 100% 용존상태로 존재하였다. 증류수와 반응한 제강 슬래그에서 용출된 납은 해수의 경우도 유사하였고, 구리와 카드뮴은 100% 용존상태로 존재하였다. 해수 내의 $Cl^-,\;CO_3^{-2},\;SO_4^{-2}$와 결합한 납화합물은 $PbCl^+,\;PbSO_4$로 이루어졌으며, 구리화합물은 $CuSO_4,\;CuCO_3$, 카드뮴화합물은 $CdCl^+,\;CdSO_4$ 등이 형성되었다. 수은의 경우는 해수 및 증류수를 용출용매로 이용한 모든 경우에서 납, 구리, 카드뮴과는 달리 대부분 침전하였다. 더욱이 해수에 존재하는 고농도 염소($Cl^-$)와의 수착으로 인해 finite solid인 calomel($Hg_2Cl_2$)이 형성되어 대부분 침전(SI=0)되기 때문에 납, 구리, 카드뮴 보다 더 낮은 환경이동성을 갖을 것으로 사료된다. 상기 실험결과 용출용매로 증류수와 해수를 이용했을 때, 제강 슬래그에서 용출되는 납, 구리, 카드뮴, 수은의 용출 경향의 차이를 확인할 수 있었고 이에 따라서, 납, 구리, 카드뮴의 용출 유해성은 낮기 때문에 해양구조물로의 제강슬래그 유효이용은 적합할 것으로 판단되었다.

이산화탄소로 산성화된 해수에 노출된 돌돔(Oplegnathus fasciatus) 혈구세포에 대한 유전독성(DNA 손상) (Genotoxicity (DNA damage) on Blood Cells of Parrot Fish (Oplegnathus fasciatus) Exposed to Acidified Seawater Making of CO2)

  • 최태섭;이지혜;성찬경;이정석;박영규;강성길
    • 한국환경과학회지
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    • 제23권3호
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    • pp.483-492
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    • 2014
  • DNA damage such as genotoxicity was identified with comet assay, which blood cell of a marine parrot fish (Oplegnathus fasciatus) was exposed to an acidified seawater, lowered pH gradient making of $CO_2$ gas. The gradient of pH were 8.22, 8.03, 7.81, 7.55 with control as HBSS solution with pH 7.4. DNA tail moment of fish blood cell was $0.548{\pm}0.071$ exposed seawater of pH 8.22 condition, on the other hand, DNA tail moment $1.601{\pm}0.197$ exposed acidified seawater of pH 7.55 lowest condition. The approximate difference with level of DNA damage was 2.9 times between highest and lowest of pH. DNA damage with decreasing pH was significantly increased with DNA tail moment on blood cell of marine fish (ANOVA, p < 0.001). Ocean acidification, especially inducing the leakage of sequestered $CO_2$ in geological structure is a consequence from the burning of fossil fuels, and long term effects on marine habitats and organisms are not fully investigated. The physiological effects on adult fish species are even less known. This result shown that the potential of dissolved $CO_2$ in seawater was revealed to induce the toxic effect on genotoxicity such as DNA breakage.

Differential Seawater Adaptability in Three Different Sizes of Under-yearling Steelhead Trout

  • Lee, Myeongseok;Lee, Jang-Won
    • 한국발생생물학회지:발생과생식
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    • 제24권3호
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    • pp.215-224
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    • 2020
  • Seawater adaptability of steelhead trout increases along with the increase in the size of the fish, independent of parr-smolt transformation. Three 96 h seawater challenge tests were conducted to determine the size at which seawater adaptability of steelhead trout develops. Plasma Na+ and Cl- levels, moisture content, gill Na+/K+ ATPase activity, and mortality during the 96 h after direct transfer to seawater (32 ppt) were determined. Plasma Na+ and Cl- levels in 50 g fish continuously increased during the 96 h after the transfer to seawater (p<0.05), but the levels in 100 and 150 g fish leveled off after 24 h (p<0.05). Both 100 and 150 g size steelhead trout maintained muscle moisture content (%) better than 50 g size fish (p<0.05). Gill Na+/K+ ATPase activity in the 100 g size group increased in a time-dependent manner after transfer to seawater (p<0.05), whereas activity in the 50 and 150 g sizes did not increase (p>0.05), for which a possible explanation was discussed. A mere 2.6% mortality in both the 50 and 150 g size groups was observed. In conclusion, the current results indicate that 50 g size steelhead trout did not show development of a high level of hypoosmoregulatory capacity, whereas fish in the 100 and 150 g size groups showed a high level in our experimental conditions. Therefore, the steelhead trout larger than a 100 g size is recommended for transfer to seawater culture.

바닷물을 이용한 struvite 형성으로 혐기성 소화액으로부터 질소, 인 회수 (Nitrogen and Phosphorus Recoveries from Anaerobic Digester Supernatant Using Seawater as Magnesium Source for Struvite Formation)

  • 김용범;안종화
    • 한국물환경학회지
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    • 제31권4호
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    • pp.387-391
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    • 2015
  • This study was performed to evaluate the effect of pH (8-12) and molar ratio of magnesium and phosphate ($[Mg^{2+}]/[PO_4{^{3-}}]$) (0.6-1.4) on struvite crystallization of anaerobic digester supernatant using seawater as magnesium source. pH range of 9-10 is favorable for ammonium and phosphate recoveries. The recovery efficiency of ammonium was highest at $[Mg^{2+}]/[PO_4{^{3-}}]$ of 1.0 and pH 10. On the other hand, high phosphate recovery efficiency (> 99%) was achieved at ($[Mg^{2+}]/[PO_4{^{3-}}]$) of 1.4 and pH 10. The results demonstrated that seawater can be considered as low-cost magnesium source to recover phosphorus from anaerobic digester supernatant.

시화호 배수갑문 운용에 따른 용존산소와 pH 변화 (Impact of Seawater Inflow by the Operation of Sluice Gates on the D.O and pH in the Lake Shihwa, Korea)

  • 최정훈;김미옥
    • 한국지구과학회지
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    • 제22권3호
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    • pp.195-207
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    • 2001
  • 1997년 2월부터 1998년 7월까지 총 33회에 걸쳐 시화호내 11개 정점에서 배수갑문 개${\cdot}$폐에 따른 용존산소와 pH의 변화를 파악하였다. 해수유입이 없었던 1997년 3월부터 1997년 5월까지의 용존산소 분포는 대부분의 수층에서 10mg/l이상을 보이고 l1m 이하의 수심에서 5mg/l 이하를 나타냈다. 1997년 6월에 수심 6m 이하에서 무산소층이 나타났다. 강우기동안 배수만 실시했을 경우, 무산소층이 수심 8m에서 6m 이하로 증가하였다. 또한 해수유입 직후의 시화호 내에 잔존하는 무산소층이 해수에 포함된 용존산소를 급격히 소모시키는 특징을 나타냈다. 이러한 현상은 pH7.8${\sim}$8.2의 해수와 pH7.4이하의 저층수가 만나게 되어 산화작용을 촉진시켰기 때문인 것으로 해석된다. 해수유입이 크게 증가된 1998년 1월에는 전 수층의 용존산소가 10mg/l 이상을 나타냈다. 결론적으로 시화호 배수갑문 운용에 따른 수질개선을 위해서는 여름철에는 염분약층이 생성되지 않도록 해수의 유출량과 유입량을 늘리는 것이 효과적일 것으로 판단된다.

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해수 중의 수온, 염분 및 pH에 따른 노로바이러스 및 Male-Specific Coliphage 농도변화 (Change in Concentrations of Human Norovirus and Male-Specific Coliphage under Various Temperatures, Salinities, and pH Levels in Seawater)

  • 김풍호;박용수;박큰바위;권지영;유홍식;이희정;김지회;이태식
    • 한국수산과학회지
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    • 제49권4호
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    • pp.454-459
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    • 2016
  • Pre- or post-harvest processing is required to mitigate the risk of norovirus infection mediated by shellfish or seafood. We investigated the environmental resistance of human norovirus (HuNoV) under various conditions of temperature, salinity, and pH in seawater. Male-specific coliphage (MSC) was as the reference virus for all tests. At 4℃, HuNoV GII4 spiked into seawater was continually detected by RT-PCR for 35 days, regardless of salinity or pH level. It maintained nearly stable concentrations, meaning HuNoV can sustain a viral population in seawater long enough to be accumulated by shellfish and other filter feeders during winter. MSC was also stable at 4℃ although viral infectivity dropped sharply after 28 days. The effects of salinity and pH on MSC were indistinct. At 25℃ the detectable period of HuNoV GII4 by RT-PCR in seawater decreased to about one-third or half of the period at 4℃. High salinity (32 psu) and alkaline pH (8.5) were also unfavorable for sustaining HuNoV abundance at 25℃ in seawater. The resistance patterns of MSC to high temperature, high salinity, and alkaline pH were more dramatic and viral infectivity decreased over time, almost in direct proportion to experimental days. MSC was undetectable after 12 days under all salinities and pH levels at 25℃.

해수환경중 전착원리에 의해 형성시킨 환경친화적인 코팅막의 특성 분석 (Properties Analysis of Environment Friendly Coating Films Formed by Using Electrodeposition Principle on Seawater)

  • 백상민;이찬식;김기준;문경만;이명훈
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2005년도 후기학술대회논문집
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    • pp.196-197
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    • 2005
  • Cathodic protection is one of the successful ways to prevent corrosion of steel structures in marine environments. The unique feature of cathodic protection in seawater is the formation of calcareous deposits on cathodic metal surface. The formation principles of calcareous deposit seawater had been known for a long time. That is, cathodic reduction reactions associated with cathodic protection in seawater generate $OH^-$ at the metal surface in accordance with the formular ; 1/2 $O_2$ + $H_2O$ + $2e^-$ $2OH^-$ and $2H_2O$ + $2e^-$ ${\rightarrow}$ $H_2$ + $2OH^-$. These reactions increase the pH at the metal / seawater interface. The high pH causes precipitation of $Mg(OH)_2$ and $CaCO_3$ in accordance with the formular ; $Mg^{2+}$ + $2(OH)^-$ ${\rightarrow}$ $Mg(OH)_2$ and $Ca^{2+}$ + $HCO_3^-$ + $OH^-$ ${\rightarrow}$ $H_2O$ + $CaCO_3$. These are typically the main compounds in calcareous deposits. It obviously has several advantages compared to the conventional coatings, since the environment-friendly calcareous deposit coating is formed by the elements($Mg^{2+}$, $Ca^{2+}$) naturally present in seawater. In this study, environmental friendly calcareous deposit films were prepared on steel plates by electro plating technic in natural seawater. The influence of current density on composition ratio, structure and morphology of the coated films were investigated by scanning electron microscopy formation process of calcareous deposits films in natural seawater. And we confirmed the properties of all the films can be improved greatly by controlling the material structure and morphology with effective use of the electroplating method in natural seawater.

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해수에 의한 영양염 제거에 있어서 영향인자의 평가 (Factors Influencing the Removal of Nutrient by Seawater)

  • 콜테스 아이자;김우항
    • 해양환경안전학회:학술대회논문집
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    • 해양환경안전학회 2009년도 춘계학술발표회
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    • pp.145-147
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    • 2009
  • Nutrients in wastewater should be removed prior to release in the receiving waters to prevent the occurrence of eutrophication. In this study, seawater is used to remove ammonia and phosphate by the formation of struvite ($MgNH_{4}PO_{4}{\cdot}6H_{2}O$). It aims to know the optimum conditions for the removal of nutrients using seawater as source of magnesium ions. Experiments were performed using jar tester and pH of ammonium-phosphate solutions were adjusted Samples were drawn at different mixing times. It was shown that simultaneous removal of ammonia and phosphate is rapid, with no significant reduction beyond 10 min of mixing Another important parameter is pH, where range 10-11 showed the optimum nutrient removal. Increase in the volume of seawater, which meant an increase in magnesium ions also lead to better removal.

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산 처리에 의한 파래(Enteromorpha sp.)의 유해 중금속 제거 (Elimination of Harmful Heavy Metals from Sea Lettuce Enteromorpha sp. with Acid Treatment)

  • 목종수;손광태;이태식;권지영;박큰바위;김지회
    • 한국수산과학회지
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    • 제50권1호
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    • pp.1-7
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    • 2017
  • The elimination of harmful heavy metals (Cd, Cr, and Pb) from sea lettuce Enteromorpha sp. was evaluated in filtered seawater over a pH range of 2.0-4.0 using citric, hydrochloric, and nitric acids. We also evaluated the quality of sea lettuce samples after release of their internal constituents into seawater solutions containing acids. The heavy metals that accumulated in raw sea lettuce after incubation for 3 days in seawater containing Cd, Cr, and Pb were, in descending order, Pb ($120.45{\mu}g/g$), Cr ($86.04{\mu}g/g$), and Cd ($18.35{\mu}g/g$). The rate of elimination of heavy metals from sea lettuce was higher at lower pH for all of the acids used. However, the color of the sea lettuce changed adversely at below pH 2.5. The heavy metals in sea lettuce samples after 10 min in seawater at pH 3.0 containing the three acids were eliminated in the order Pb (42.2-78.0%), Cd (51.8-55.3%), and Cr (14.0-32.8%). The quality of the sea lettuce was not affected when it was incubated for 30 min at pH above 3.0. The maximum elimination of heavy metals from sea lettuce occurred when it was soaked for 10 min in seawater at pH 3.0 containing citric acid.

A continuous-flow and on-site mesocosm for ocean acidification experiments on benthic organisms

  • Kim, Ju-Hyoung;Kang, Eun Ju;Kim, Keunyong;Kim, Kwang Young
    • ALGAE
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    • 제33권4호
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    • pp.359-366
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    • 2018
  • Mesocosm experiments conducted for ecological purposes have become increasingly popular because they can provide a holistic understanding of the biological complexities associated with natural systems. This paper describes a new outdoor mesocosm designed for $CO_2$ perturbation experiments of benthos. Manipulated the carbonate chemistry in a continuous flow-through system can be parallelized with diurnal changes, while irradiance, temperature, and nutrients can vary according to the local environment. A target hydrogen ion activity (pH) of seawater was sufficiently stabilized and maintained within 4 h after dilution, which was initiated by the ratio of $CO_2$-saturated seawater to ambient seawater. Specifically, pH and $CO_2$ partial pressure ($pCO_2$) levels gradually varied from 8.05-7.28 and $375-2,691{\mu}atm$, respectively, over a range of dilution ratios. This mesocosm can successfully manipulate the pH and $pCO_2$ of seawater, and it demonstrates suitability for ocean acidification experiments on benthic communities.