• Title/Summary/Keyword: Inorganic mercury

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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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Preconcentration and Speciation of Trace Mercury Compounds in Water Sample Using Dithizonates Extraction and Reverse Phase Liquid Chromatography (디티존 착물 추출과 역상 액체 크로마토그래피를 이용한 물시료 중의 미량 수은 화합물의 농축 및 화학종의 분리)

  • Suh, Jung-Ki;Cho, Kyung-Haeng;Lee, Sang-Haak
    • Analytical Science and Technology
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    • v.13 no.1
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    • pp.81-88
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    • 2000
  • A rapid preconcentration method was developed for the speciation of the trace mercury compounds in water sample. The mercury compounds were extracted and preconcentrated simply as their dithizone complexes by passing through the dithizone impregnated ultra-high molecular weight polyethylene (UHMWPE) membrane solvent inlet filter following sanification in methanol solvent. The concentrated dithizonates were separated by liquid chromatography on a $C_{18}$ column. Complete resolution was obtained between methyl-, ethyl-, phenyl-, and inorganic mercury with a mobile phase of 0.05 M acetate buffer (pH=4)/THF/methanol(3:5:2). The separnted mercury chelates were detected by spectrophotometrically at 475 nm. The proposed method was successfully applied to the speciation of mercury compounds in waste water with detection limit at the subnanogram/mL level.

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Methylmercury Exposure and Health Effects

  • Hong, Young-Seoub;Kim, Yu-Mi;Lee, Kyung-Eun
    • Journal of Preventive Medicine and Public Health
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    • v.45 no.6
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    • pp.353-363
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    • 2012
  • Methylmercury is a hazardous substance that is of interest with regard to environmental health, as inorganic mercury circulating in the general environment is dissolved into freshwater and seawater, condensed through the food chain, ingested by humans, and consequently affects human health. Recently, there has been much interest and discussion regarding the toxicity of methylmercury, the correlation with fish and shellfish intake, and methods of long-term management of the human health effects of methylmercury. What effects chronic exposure to a low concentration of methylmercury has on human health remains controversial. Although the possibility of methylmercury poisoning the heart and blood vessel system, the reproductive system, and the immune system is continuously raised and discussed, and the carcinogenicity of methylmercury is also under discussion, a clear conclusion regarding the human health effects according to exposure level has not yet been drawn. The Joint FAO/WHO Expert Committee on Food Additives proposed to prepare additional fish and shellfish intake recommendations for consumers based on the quantified evaluation of the hazardousness of methylmercury contained in fish and shellfish, methylmercury management in the Korea has not yet caught up with this international trend. Currently, the methylmercury exposure level of Koreans is known to be very high. The starting point of methylmercury exposure management is inorganic mercury in the general environment, but food intake through methylation is the main exposure source. Along with efforts to reduce mercury in the general environment, food intake management should be undertaken to reduce the human exposure to methylmercury in Korea.

Sanitary Characterization of Alaska Pollock Theragra chalcogramma Roe by Raw Material Grade (원료 등급에 따른 명란의 위생학적 특성)

  • Jeong, Hyo-Pin;Cha, JangWoo;Park, Sun Young;Yoon, In Seong;Lee, Jung Suck;Heu, Min Soo;Kim, Jin-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.52 no.4
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    • pp.334-343
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    • 2019
  • We investigated the sanitary characteristics of Alaska pollock Theragra chalcogramma roe as a raw material based on the standards of several countries. The standards for raw materials of Alaska pollock roe for lead, total mercury, $^{134}Cs+^{137}Cs$, and $^{131}I$ were those of the South Korean Ministry of Food and Drug Safety; Staphylococcus aureus, Salmonella spp., Clostridium botulinum, methyl mercury, $^{134}Cs+^{137}Cs$, $^{131}I$, $^{239}Pu$, and $^{90}Sr$ were those of the United States Food and Drug Administration; lead, methyl mercury, inorganic arsenic, chrome, $^{134}Cs+^{137}Cs$, and $^{131}I$ were those of the Ministry of Agriculture of China; nitrite ion, $^{134}Cs+^{137}Cs$, $^{239}Pu$, and $^{235}U$ were those of the Ministry of Health, Labor and Welfare of Japan; $^{134}Cs+^{137}Cs$, $^{131}I$, $^{239}Pu$, and $^{90}Sr$ were those of Codex; and $^{134}Cs+^{137}Cs$, $^{131}I$, $^{239}Pu$, $^{241}Am$, and $^{90}Sr$ were those of the European Food Safety Authority. The results for the global standard items other than C. botulinum (lead, total mercury, methyl mercury, inorganic arsenic, chrome, $^{134}Cs+^{137}Cs$, and $^{131}I$, S. aureus, and Salmonella spp.) suggest that Alaska pollock roe is safe for use as a raw material.

Simultaneous Determination of Mercury and Arsenic by Reductive Vapor Generation-ICP-AES (환원 증기 발생법-유도결합 플라즈마 원자방출 분광계를 이용한 수은과 비소의 동시 분석법)

  • Shin, Hyung-Seon;Choi, Man-Sik;Kim, Kang-Jin
    • Analytical Science and Technology
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    • v.12 no.4
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    • pp.273-278
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    • 1999
  • Simultaneous determination of mercury and arsenic has been studied by reductive vapor generation-ICP-AES. Samples were digested with a microwave digestion system and extracted with acids. Reductive vapor generation was carried out with 6N HCI and 2% $NaBH_4$. Detection limit of Hg and As are found to be 0.06 ppb and 0.08 ppb, respectively. Measured values of Hg and As in inorganic samples agree well with reference value of SRMs, but the recovery of As from organic samples is obtained approximately 80% of the reference values.

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Potentiometric Back Titration of Isoniazid in Pharmaceutical Dosage Forms Using Copper Based Mercury Film Electrode (구리수은막 전극에을 사용한 이소니아자이드의 전위차 역적정)

  • Gajendiran, M.;Nazer, M.M. Abdul Kamal
    • Journal of the Korean Chemical Society
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    • v.55 no.4
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    • pp.620-625
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    • 2011
  • A simple, rapid potentiometric back titration of Isoniazid (INH) in the presence of Rifampicin (RIF) in tablets and syrups is described. The method is based on the oxidation of INH by a known excess of copper (II) ion and the back titration of unreacted copper (II) ion potentiometrically with ascorbic acid using a lab-made Copper Based Mercury Film Electrode (CBMFE). The titration conditions have been optimized for the determination of 1.0-10.0 mg of INH in pure and dosage forms. The precision and accuracy of the method have been assessed by the application of lack-of-fit test and other statistical methods. Interference was not caused by RIF and other excipients present in dosage forms. Application of the method for INH assay in tablets and syrups was validated by comparison of the results of proposed method with that of the British Pharmacopoeia (BP) method using F- and t- statistical tests of significance.

Effect of Allopurinol on Methylmercuric Chloride-Induced Cytotoxicity in $C_6$ Cultured Glioma Cells

  • Oh, Yong-Leol;Son, Byoung-Kwan
    • Biomedical Science Letters
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    • v.12 no.4
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    • pp.451-455
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    • 2006
  • It is demonstrated that inorganic mercury has cytotoxic effect on glial cells. Recently, oxygen radicals is involved in methylmercuric chloride (MMC)-induced cytotoxicity. But, the toxic mechanism of MMC is left unknown. The purpose of this study was to examine the cytotoxicity of MMC on $C_6$ glioma cells. The cytotoxicy was measured by cell viability using XTT assay in $C_6$ glioma cells. Colorimetric assay is regarded as a very sensitive screening method for the determination of the cell viability on various agents. In this study, MMC decreased cell viability according to the dose- and time dependent manners after $C_6$ glioma cells were grown with various concentrations of MMC for 48 hours. In the protective effect of allopurinol on MMC-induced cytotoxicity, allopurinol was effective in the prevention of MMC-induced cytotoxicity in these cultures. These results suggest that MMC has highly cytotoxic effect on $C_6$ glioma cells by the decrease of cell viavility, and free radical scavenger such as allopurinol was effective on organic mercury-induced cytotoxicity in these cultures.

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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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Hevey Metal Levels in Urine of Residents in Industrial Area (일부 공단지역 주민의 요 중 중금속 농도에 관한 연구)

  • Jou, Hye-Mee;Choi, Su-Hyeon;Chung, Eun-Kyung;Jung, Soon-Won;Yang, Won-Ho;Son, Bu-Soon
    • Journal of Environmental Science International
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    • v.20 no.5
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    • pp.565-574
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    • 2011
  • This study analyzed the concentration of the heavy metals(Cd, Hg, iAs) of urine(n=576) from May, 2007 to Oct 2007. The subject was residents in G, Y, H industrial area, Jeollanam-do, in which exposure due to the adjacency of the industrial complex. As to the heavy metal concentration in the urine of the residents in the whole exposed region and the comparing region, the content of cadmium, mercury, and inorganic arsenic in the exposed region group were 1.23, 1.85, and 8.80 ${\mu}g$/g_ct respectively, and those of the comparing region group were 1.87, 2.00, and 8.93 ${\mu}g$/g_ct respectively, which indicates that the concentration of the comparing group was higher than that of the exposed group. The heavy metal concentration for each age group increased in proportion to age except those under 10 for some substances(p<0.01). As to geometric mean concentration cadmium and inorganic arsenic in urine according to the smoking history of the subject, the concentration of the smoking group and the non-smoking group were 1.65 ${\mu}g$/g_ct and 9.13 ${\mu}g$/g_ct respectively, while those of the non-smoking group were 1.47 ${\mu}g$/g_ct and 8.91 ${\mu}g$/g_ct respectively, which indicates that the former is higher than the latter. As to the inorganic arsenic concentration in urine according to the food preference, in order of vegetable, fish, and meat showed high concentration (p<0.01). To clarify the factors affecting the heavy metal concentration in urine among the subjects, the multiple regression analysis was conducted. As a result, it turned out that as to cadmium content in urine, gender, age, drinking, and smoking have influence on the subjects, with explanatory adequacy of 37.5 %.

Studies on the Microbiological Treatment of Hazardous Compounds in Waste Waters from Chemical Plants - (I) Relationship between the Content of Mercury Compound and Microbial Growth - (공장폐수중(工場廢水中) 유독성분(有毒成分)의 미생물학적(微生物學的) 처리방법(處理方法)에 관(關) 연구(硏究) - 수은함유량(永銀含有量)과 미생물(徵生物)의 생육(生育)과의 관계(關係)(제1보(第1報)) -)

  • Lee, Ji-Yul;Chang, Hyun-Ki
    • The Korean Journal of Mycology
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    • v.3 no.1
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    • pp.21-25
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    • 1975
  • This is a study to determine the content of the mercury compound and the distribution of microorganisms in the waste waters flowing from the chemical plants in the Ulsan area (at 4 stations). The summary of the result of this study is as follows: 1. The content of the mercury compound has ranged from non-detection to 0.075 ppm with an average of 0.03 ppm. The highest content has been detected from the water at station A. 2. As for the distribution of the microorganisms, one species each of bacteria, Mucor, Aspergillus, Cladosporium, and Trichothecium (T. roseum); 4 species of Penicillium; and 3 species of Sterile hyphae; a total of 12 species have been isolated. 3. The following results have been found with regard to the growth of these microorganisms in terms of the content of the mercury compound. In the case of an inorganic mercury compound, most of the microbes can grow in water with a content of up to 10 ppm. Pe. sp No. 1 particularly can grow even in 50 ppm. In the case of an organic mercury compound, the growth of the microbes seems to be somewhat restrained even in 2 ppm.

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