• Title/Summary/Keyword: Water-mercury

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Determination of Mercury(II) Using Nafion-EDTA-Modified Glassy Carbon Electrodes (Nafion-EDTA가 수식된 유리탄소전극을 이용한 수은(II)의 측정)

  • 정근호;박찬주;박율희;이지영
    • Journal of Environmental Health Sciences
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    • v.26 no.4
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    • pp.110-114
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    • 2000
  • Determination of mercury(II) using Nafion-EDTA-modified glassy carbon electrodes is proposed. it is based on the chemical reactivity of an immobilized modifier, Nafion-EDTA. Differential pulse voltammetry is employed, and the oxidation of complexes, at +0.43V vs. Ag/AgCl, is observed. For a 5-min preconcentration period, a linear calibration curve is obtained for mercury(II) concentrations ranging from 1.0$\times$ 10$^{-8}$ to 1.0$\times$10$^{-6}$ M. Further, when an approximate amount of copper(II) is added to the test solution, We demonstrate that at a preconcentration time of 5 min the Nafion-EDTA-modified glassy carbon electrode has a dynamic range of 2 orders of magnitude(from 10$^{-10}$ to 10$^{-8}$ M) and the detection limit is as low as 0.5$\times$ 10$^{-10}$ M(0.01 ppb). This method is applied to the determination of mercury(II) in sea water(4.0$\times$10$^{-10}$ M, 0.08ppb). The result agrees satisfactorily with the value(below 0.1 ppb) measured by using ICP/MS.

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Mercury recovery from aqueous solutions by polymer-enhanced ultrafiltration using a sulfate derivative of chitosan

  • Carreon, Jose;Saucedo, Imelda;Navarro, Ricardo;Maldonado, Maria;Guerra, Ricardo;Guibal, Eric
    • Membrane and Water Treatment
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    • v.1 no.4
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    • pp.231-251
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    • 2010
  • The sulfatation of chitosan, by reaction with chlorosulfonic acid under controlled conditions, allowed increasing the pH range of chitosan solubility. The biopolymer was characterized using FTIR and $^{13}C$-NMR spectroscopy, elemental analysis and titration analysis and it was tested for mercury recovery by polymer enhanced ultrafiltration (PEUF). In slightly alkaline conditions (i.e., pH 8) mercury recovery was possible and at saturation of the polymer the molar ratio $-NH_2$/Hg(II) tended to 2.6. Polymer recycling was possible changing the pH to 2 and the polymer was reused for 3 cycles maintaining high metal recovery. The presence of chloride ions influences metal speciation and affinity for the polymer and "playing" with metal speciation allowed using the PEUF process for mercury separation from cadmium; at pH 11 the formation of hydroxo-complexes of Hg(II) limits it retention. Cake formation reveals the predominant controlling step for permeation flux.

Distribution of heavy metals and mercury in sediment from the lake An-dong (안동호 퇴적물 중 수은 및 중금속의 분포특성 연구)

  • Park, Jin-Ju;Kim, Ki-Joon;Yoo, Suk-Min;Kim, Eun-Hee;Seok, Kwang-Seol;Huh, In-Ah;Kim, Young-Hee
    • Analytical Science and Technology
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    • v.25 no.6
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    • pp.441-446
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    • 2012
  • In this study, mercury, methylmercury and heavy metals in sediment from the lake Andong were analyzed, along with the estimation of mercury flux between sediments and water in the lake Andong. Average mercury concentrations in sediments sampled in 2009~2011 were $155.0{\pm}71.9$ ng/g, $211{\pm}62$ ng/g and $198{\pm}6.88$ ng/g, respectively. The average methylmercury concentration were $1.85{\pm}1.09$ ng/g (2009) and $3.49{\pm}1.79$ ng/g (2011), and %methylmercury, the fraction of methylmercury in total mercury were $1.17{\pm}0.39%$ and $1.77{\pm}0.94%$, respectively. Heavy metal (Zn, Cd, Pb, Cu) concentrations of the sediments exceeded ERL (Effect Range Low) level of US NOAA (National Oceanic and Atmospheric Administration)'s sediment quality criteria. Estimated mercury sedimentation flux was found to be 83.7 $ng/cm^2{\cdot}yr$ and mercury diffusion flux was estimated as 1.24 $ng/cm^2{\cdot}yr$.

Changes in Cooking of Marine Products Polluted with Mercury -(I) Fishes- (수은(水銀)으로 오염(汚染)시킨 해산물(海産物)의 조리(調理)에 따른 변화(變化) -(I) 어류(魚類)-)

  • Kim, Young-Hee;Park, Young-Sun
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.15 no.2
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    • pp.144-147
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    • 1986
  • This research is to investigate the changes in Mercury content of fishes, washed with times by the flowing water or immersed into the acetic acid solutions with different densities (1%, 3% and 5%), after contaminating them artificially on purpose, in the solutions with inorganic mercury. The results were summarized as follow: 1. Average values of mercury content in sand-fish and sardine, as a dried ones, which had not been treated by the mercurial solutions, were 0.027 ppm and 0.020 ppm, respectively. 2. According to the changes, with times, in contained by the flowing water, after immersed into 1 ppm $HgCl_2$ solution for 24 hours, The sand-fish washed for 9 minutes had the least of Mercury, which is about 25% of contained quantity of Mercury of those not cleansed. While the sardines cleansed for 3 minutes had the least of Mercury, which is about 77% of contained quantity of Mercury of those not cleansed. 3. According to the changes in contained quantity of the samples treated by the acetic acid solutions with different densities, the sand-fish treated by 3% acetic acid solution had the least value of remains, which was reduced by 64%, in comparision with that of fish cleansed for 1 minute, while the sardines, treated by 1% acetic acid solution had the least amount of remains, which was reduced by 16% in comparision with that of fish, cleansed for 1 minute.

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BIOASSAYS ON MARINE ORGANISMS II. ACUTE TOXICITY TEST OF MERCURY, COPPER AND CADMIUM TO CLAM, MERETRIX LUSORIA (해양생물에 대한 생체실험 II. 백합에 대한 수은, 구리 및 카드뮴의 독성)

  • PARK Joo-Suck;KIM Hak-Gyoon
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.12 no.2
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    • pp.113-117
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    • 1979
  • The short-term acute toxicities of mercury, cadmium and copper for the clam, Meretrix lusoria were determined from 28 June to 15 July, 1978. In the test with mercury and copper, the rate ot mucus excretion increased gradually at a higher concentration. But the clams did not excrete mucus in the solutions of cadmium and natural sea water. The rate of mucus excretion in mercury was $42.9\%$, and that in copper was $14.3\%$ in a test solution of 1mg/l. mercury was more toxic than copper. The median lethal concentration after 96 hours (96 hr-Lc 50) was 0.67mg/l in mercury, 7.04mg/l in copper and 7.10mg/l in cadmium. Consequently it was found that mercury was the most toxic substance and cadmium was the least. meanwhile, it was considered that exposure time by stimulation in a fixed concentration caused the test animals to respond.

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Studies on Partition and Extraction Equilibria of Metal-Dithiocarbamate Complexes(Ⅰ). Solvent Extraction of Inorganic Trace Mercury(Ⅱ) (Dithiocarbamate 금속착물의 분배 및 추출평형 (제 1 보) 흔적량 무기수은(Ⅱ)의 용매추출)

  • Ho-Seong Choi;Jong-Moon Choi;Hee-Seon Choi;Young-Sang Kim
    • Journal of the Korean Chemical Society
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    • v.38 no.12
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    • pp.898-907
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    • 1994
  • The solvent extraction of an inorganic trace mercury in sea water samples was studied using zinc diethyldithiocabamate $Zn(DDC)_2$ as chelating agent. The $Zn(DDC)_2$ which maintained the stability of DDC- in the acidic aqueous solution in the course of extraction was synthesized from NaDDC and $ZnSO_4$ in this laboratory. The trace of mercury(Ⅱ) was extracted at pH 3.0 from 100 ml of sea water into 10ml of chloroform containing 0.05 M $Zn(DDC)_2$ by shaking for 5 minutes. And from the organic phase, the $Hg(DDC)_2$ was back-extracted into 10ml of 1 to 1 mixed acid of each 3% (v/v) nitric acid and hydrochloric acid by shaking for 25 minutes. The mercury back-extracted was determined by a cold vapor atomic absorption spectrophotometry. The trace mercury(Ⅱ) was so successfully extracted that this procedure could be applied to its determination in the sea water. That is, the recoveries of mercury in two kinds of samples into which as given amount of Hg(Ⅱ) was spiked were 90.0% and 93.3%, respectively.

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A Study on the Total Mercury Content in Fresh-Water Fishes (담수어중(淡氷魚中)의 총수은함량(總水鎭含量)에 관(關)한 연구(硏究))

  • Shon, Dong-Hun;Hong, Soon-Gag;Song, Chul-Yong;Jeon, Sang-Rin
    • Korean Journal of Food Science and Technology
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    • v.14 no.2
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    • pp.168-173
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    • 1982
  • The present study was carried to observe the total mercury contents in fresh-water fishes which were collected from 24 streams in the South-East area, Korea. These total mercury contents were determined by quartz tube combustion gold amalgamation method. The value of total mercury contents in collected fresh-water fishes ranged from 0.02ppm to 0.12ppm and the mean value were 0.07ppm. The total value of mercury contents differed with the fish species showing 0.09ppm in Carassius auratus, 0.10ppm in Coilia ectenes, 0.11ppm in Moroca lagowskii and Squalidus majime and 0.12ppm in Cobitis taenia which were highly more than the mean value of collected fishes. The mean value of the total mercury contents in the Yeong Il Gun (0.09PPm), Gim Hae Gun (0.08ppm) and Meong Ju Gun (0.08ppm) were highly detected than those of other surveyed areas.

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

  • Lee, Han-Kook;Lee, Dong-Hoon
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.1
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    • pp.75-84
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    • 2005
  • The aim of this study is to evaluate the leaching characteristics of lead, copper, cadmium, and mercury from steel making slag by seawater. To demonstrate the leaching characteristics of heavy metals from steel making slag by seawater, it was carried to various leaching tests such as regular leaching tests, liquid/sold(LS) leaching test and pH static test. From the leachability of $Pb^{+2},\;Cu^{+2},\;and\;Cd^{+2}$ from steel making slag in pH static test, it is distinguished between distilled water and seawater. With distilled water, it is very low between pH 7-8 and pH 11-12. On the other hands, with the seawater, its leaching is higher than that of distilled water. In particular, concentration of $Hg^{+2}$ leached from slag by seawater is lower than that of distilled water. Meanwhile, we found that the heavy metals from steel making slag would be dissolved and precipitated using geochemcial equilibrium program such as visual minteq. Lead and copper leached from steel making slag with seawater were dissolved nearly in the range of pH 11-12, but in the range of pH 7-10 those were precipitated about 90%. And cadmium leached from steel making slag with seawater were dissolved completely. On pH static test with distilled water, lead leached from steel making slag seemed to be similar to pH static test with seawater. However, copper and cadmium leached from steel making slag were dissolved. In general, the species of lead leached from steel making slag were formed mainly of $PbCl^+,\;PbSO_4$, the species of copper were formed mainly of $CuSO_4,\;CuCO_3$, the species of cadmium were formed mainly of $CdCl^+,\;CdSO_4$ due to being sorbed with the anions($Cl^-,\;CO_3^{-2},\;SO_4^{-2}$) of the seawater. Both pH static test with seawater and distilled water, it is not in the case of the mercury. Most of mercury leached from steel making slag was precipitated(SI=0). Because the decreasing of $Hg^{+2}$ concentrations depends ferociously on the variation of chloride($Cl^-$) existed in the seawater. $Hg^{+2}$ leached from steel making slag could be sorbed strongly with chloride($Cl^-$) compared of carbonate($CO_3^{-2}$) and sulfate($SO_4^{-2}$) in the seawater. On the basis of that result, we found that the species of mercury was formed of calomel($Hg_2Cl_2$) as one of finite solid. Due to forming a calomel($Hg_2Cl_2$) in the seawater, the stability of mercury species by steel making slag should be higher than those of lead, copper, and cadmium species. Regarding the results stated above, we postulated that the steel making slag could be recycled to sea aggregates due to being distinguishing leachability of heavy metals($Pb^{+2},\;Cu^{+2},\;Cd^{+2},\;and\;Hg^{+2}$) between leaching tests by distilled water and seawater.

Nanofiber Membrane based Colorimetric Sensor for Mercury (II) Detection: A Review (나노 섬유 멤브레인을 기반으로 한 수은(II) 색변화 검출 센서에 대한 총설)

  • Bhang, Saeyun;Patel, Rajkumar
    • Membrane Journal
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    • v.31 no.4
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    • pp.241-252
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    • 2021
  • Rapid industrialization with growing population leads to environmental water pollution. Demand in generation of clean water from waste water is ever increasing by scarcity of rain water due to change in weather pattern. Colorimetric detection of heavy metal present in clean water is very simple and effective technique. In this review membrane based colorimetric detection of mercury (II) ions are discussed in details. Membrane such as cellulose, polycaprolactone, chitosan, polysulfone etc., are used as support for metal ion detection. Nanofiber based materials have wide range of applications in energy, environment and biomedical research. Membranes made up of nanofiber consist up plenty of functional groups available in the polymer along with large surface area and high porosity. As a result, it is easy for surface modification and grafting of ligand on the fiber surface enhanced nanoparticles attachment.