• Title/Summary/Keyword: 중금속 원소

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Heavy Metal Concentrations of Some Game Species Captured in Kyeongsangnam-do, Korea (경남지역(慶南地域)에 서식(棲息)하는 수렵조수류(狩獵鳥獸類)의 중금속(重金屬) 축적(蓄積))

  • Choi, Jai Sik;Jung, Wee Hyun;Youn, Ki Sick;Lee, Doo Pyo
    • Journal of Korean Society of Forest Science
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    • v.83 no.1
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    • pp.6-11
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    • 1994
  • Three different types of tissue taken from three game birds such as Ring-necked Pheasant, Rufous Turtle Dove, Mallard and a mammal, Korean Water Deer were analyzed for five heavy metals such as iron, zinc, copper, lead and cadmium. The main purpose of this study was to make clear the background levels of the metal concentrations in the tissues of these game species. The metal levels were generally low and could be considered as the background levels. But some markedly high levels of lead were recorded in the muscles of birds shot by the shotgun. The implications of these results were discussed with respect to the health of people.

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The effect on dispersibility of additive elements in Cr+6 free chemical conversion coating solution (Cr+6 free 화성피막 용액의 분산성에 미치는 첨가 원소의 영향)

  • Park, Jeong-Hwan;Kim, Tae-Won;Jo, Dae-Hyeong;Kim, Jeong-Su;Han, Su-Min;Jeong, Dae-Hui;Jeon, Gyu-Seong
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.104-104
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    • 2017
  • 유럽의 폐차 처리 지침, RoHs 및 국내 친환경 소재 부품의 개발이 날로 가속화 되면서 종래 사용해 오던 인산염 피막 등 중금속이 함유된 코팅 재료는 점차 친환경 코팅 용액으로 전환이 되었다. 최근 자동차 산업 등에서 종래 중금속인 $Cr^{+6}$을 함유하지 않는 다양한 코팅 용액이 상용화 되고 있다. 그 중 가장 효율적으로 적용되고 있는 용액이 아연 flake를 첨가하여 희생 양극효과를 가능하게 하여 내식용 코팅 용액으로 상용화 하고 있다. 이 용액에는 내식성을 확보하기 위하여 희생양극이 가능한 소재 인 아연 분말을 첨가하며, 이 분말의 분산성이 소재와 코팅 층의 밀착성, 내식성에 결정적인 영향을 미친다. 특히 산업 현장에서는 아연 분말의 효율적인 분산을 위하여 24시간 이상 교반해야하기 때문에 생산성을 감소시키는 결정적인 요인으로 작용을 한다. 아연 분말의 분산은 용액 내에 첨가하는 각종 첨가제의 종류와 첨가량에 따라 현저하게 분산성이 다르기 때문에 첨가 원소에 대한 연구가 매우 중요하다. 본 연구에서는 서로 다른 이종 합금을 첨가하여 각종 첨가제의 종류 및 첨가량이 분산에 미치는 영향을 조사하였고, 첨가량이 코팅 층의 밀착성 및 내식성에 미치는 영향에 대하여 연구하였다. 분산제 첨가량이 낮을 경우 용액은 두껍게 코팅이 되며 분산 거리가 짧아졌다. 이 경우 코팅 층의 박리가 쉽게 발생하며, 코팅 층이 불균일하였다. 1.7% 첨가량에서 최적분산효과를 얻을 수 있었으며, 1,000시간 이상의 내식성을 확보할 수 있었다. 분산성과 동시에 유동성 확보가 중요하며, 유동성 확보를 위하여 점증제의 첨가량에 대한 변화를 주었다. 최적의 첨가량은 1.5% 이상으로 이 경우 부식 발생시간을 억제할 수 있었다.

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Investigation on the Content and the Existential Form of Heavy Metals in Plants and Soils surrounding Ruined Mine (폐광산(廢鑛山) 주변(周邊) 토양(土壤) 및 식물체(植物體)의 중금속(重金屬) 존재형태(存在形態)와 함량조사(含量調査))

  • Jung, Sang Sub;Park, Chang Dong;Kang, Sang Jai;Park, Woo Churl
    • Current Research on Agriculture and Life Sciences
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    • v.11
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    • pp.111-120
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    • 1993
  • We investigated in the existential forms of heavy metals and their distribution in plant and soil surrounding ruined mine in Daduk area. The content of heavy metals in soils was more plentiful in A soil than that in another soil, excepting only Mn. The content of Mn in soils was greater in B soil than those in another soils. The content of each heavy metals, according to existential form, had different patterns on the comparision of each elements ; organic-form on Cd and As, Carbonate-form Cu, Pb and Mn and Residual-form on Fe and Zn. The popularity ration of M. senensis and J. decipiens were about 65% and 72%, respectively, and which means that these plants had resistances to heavy metals. The contents of heavy metals absorbed in root was higher than those of stem except Mn, In M. sinensis, the contents of Zn in root was similar to that of stem. To study the heavy metal contents in water, the highest content of heavy metal, mainly Fe, Mn and Zn, were calculated in extracting water.

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A Basic Study on the Effective Management for MSWI Fly Ash (II) - Effect of Leaching Parameter - (소각 비산재의 적정처리를 위한 기초연구(II) - 용출인자의 영향 -)

  • Kim, Jin-Beom;Lee, Woo-Keun;Shim, Yeong-Ju
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.7
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    • pp.1357-1364
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    • 2000
  • Our study was performed to evaluate the effect of leaching parameters including the physicochemical characteristics and the fractionated composition of heavy metals on the release of heavy metals in fly ash discharged from MSWI. Leaching parameters such as pH, CEC, particle size, and exchangeable fraction among the fractional composition classified by sequential extraction procedure are considered. The leaching rate of heavy metal released by KSLT method is largely dependent on the pH of fly ash. The effect of pH on the release of heavy metals is different from elements. It appears that the leaching rate of cadmium and copper decreases with increasing pH, while lead and zinc increases at the condition of neutral or strong alkali condition, which suggests that the leaching of heavy metals are limited by the solubility. It is found that the effect of CEC is similarly to that of pH, $D_{10}$ among the particle size of fly ash is negative correlated with the concentration of heavy metals leached by KSLT method. In the case of exchangeable fraction, the leaching rate of heavy metals is linearly correlated with the exchangeable fraction for the fly ash below 40 meq/l00g of CEC, but not related out of the range.

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Distribution of Heavy Metal Concentrations in Surface Sediments of the eastern Yellow Sea (황해 동부해역 표층퇴적물의 중금속 농도 분포)

  • SUN, CHUL-IN;PARK, GEON-WOO;PARK, HYEON-SIL;PARK, JUN KUN;KIM, SEONG GIL;CHOI, MAN SIK
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.23 no.4
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    • pp.179-191
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    • 2018
  • In order to determine the distribution characteristics of the heavy metals in surface sediments of the eastern Yellow Sea, heavy metal concentrations (Cu, Pb, Zn, Cd, Cr, Mn, As, Ni, Co, Li, Fe and Al) together with grain size and total organic carbon (TOC), were analyzed. The concentrations of all heavy metals, with the exception of Pb, Mn and As in some stations, were relatively high in the central area of the Yellow Sea and tended to decrease toward the Korean coast. A significant relationship between grain size and concentrations of heavy metals suggested that they were mostly controlled by quartz dilution effect. However, at some stations, Pb, Mn and As exhibited different distribution patterns. For Pb, the differences were caused by petrogenetic influences (feldspar) in coarse-grained sediments. In the case of Mn, biogenetic influences ($CaCO_3$) affected distribution patterns. As was distributed differently because of the existence of a heavy mineral (pyrite). A comparison with previous data (collected in 2000) shows that the heavy metal concentration in the eastern Yellow Sea has not increased over the past fifteen years. The sedimentary environment of dumping sites in the Yellow Sea has not been significantly improved during this period. The results of the pollution assessment revealed that the concentrations of heavy metals in the study area were lower than lower criteria (TEL, MSQ-1) in Korean and Chinese sediment quality guidelines. The enrichment factor (EF), geo-accumulation index ($I_{geo}$) and ecological risk index (ERI) of Cu, Pb, Zn and Cr were higher in the central area of the Yellow Sea.

Distributions and Pollution History of Heavy Metals in Nakdong Estuary Sediments (낙동강 하구역 퇴적물 중금속의 분포와 오염의 역사 추정)

  • Cho, Jin-Hyung;Park, Nam-Joon;Kim, Kee-Hyun
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.5 no.4
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    • pp.285-294
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    • 2000
  • In order to determine the horizontal and vertical distributions of metals and prospect the recent metal pollution history in Nakdong Estuary, we took surface and core sediments. Maximum value of organic matter occurs at the upstream site located 4 km from Nakdong barrage, and the concentration of trace metals (Zn, Cu, and Pb etc.) decrease seaward in the estuary. The sedimentation rates, based on $^{210}$Pb$_{ex}$ and $^{137}$Cs activities, were 0.34 cm/yr in inside of barrage (core 1) and 0.25 cm/yr in Changrim (core 4). Sediment mixing layer does not exist in core 1, where anoxic condition is known to be prevail. The topmost sediment layer of core 4 (<3.5 cm) is severely mixed. At sites 1 and 4, concentrations of Cu slowly increased during the period of 1920-1970, rapidly increased during 1970-1990, and followed by slight decrease after 1990. Zn contents increased in early 1960s and peaked in 1993, and followed by decrease after 1990s. Pb has increased continuously since early 1970s. At the downstream of the barrage, Cu and Zn have increased in the topmost layer. The trend of increase of Cu is evident after 1950 (11 cm in sediment depth). Overall trend of heavy metal concentration clearly indicates the pollution has been increasing after the construction of the barrage.

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The Effects of pH Control on the Leaching Behavior of Heavy Metals within Tailings and Contaminated Soils : Seobo and Cheongyang Tungsten Mine Areas (광미와 오염토양 내 중금속 용출특성에 미치는 pH영향 : 청양과 서보중석광산)

  • 이평구;강민주;박성원;염승준
    • Economic and Environmental Geology
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    • v.36 no.6
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    • pp.469-480
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    • 2003
  • Laboratory leaching experiment study carried out to estimate a extent of heavy metals that could be leached out when acid rain(pH 5.0-3.0) and strong acidic solution(pH 2.5-1.0) reacted with tailings and contaminated soils from abandoned metal mines. In slightly to moderately acid conditions(pH 5.0-3.0), As, Pb and Zn dissolutions became significantly increased with decreased pH in tailing, while dissolution of these elements was very limited in contaminated soil. These results suggested that moderately acid rainwater leaches Pb, As and Zn from the tailings, while these elements would remain fixed in contaminated soil. In the pH range of 2.5-1.0(strongly acid condition), Zn, Cd and Cu concentrations of leachate rapidly increased with decreased pH in contaminated soil, while Pb, As and Co dissolutions became importantly increased in tailings. The experimental solubility of Zn. Cd and Cu was very low even at very low pH values(up to pH 1), except for CY4(Cheongyang mine). These can result from an incomplete dissolution or the presence of less soluble mineral phases. So, the solubility of heavy metals depends not only on the pH values of leachate but also on the speciation of metals associated with contaminated soils and tailings. The relative mobility of each element within failings at the pH 5.0-3.0 of the reaction solution was in the order of Pb>Zn>Cd>Co=Cu>As. In case of pH 2.5-1.0 of the reaction solution, the relative mobility of each element within contaminated soils and tailings were in the order of Zn>Cd>Cu>Co>Pb=As for contaminated soils, and Pb>Zn>Cd>hs>Co>Cu for tailings. The obtained results could be useful for assessing the environmental effects and setting up the restoration plan in the areas.

Characteristics and Risk Assessment of Heavy Metals in the Stormwater Runoffs from Industrial Region Discharged into Shihwa Lake (시화호 산업지역 강우유출수 내 중금속 유출특성 및 위해성 평가)

  • Ra, Kongtae;Kim, Joung-Keun;Lee, Jung-Moo;Lee, Seung-Yong;Kim, Eun-Soo;Kim, Kyung-Tae
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.17 no.4
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    • pp.283-296
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    • 2014
  • The distribution of heavy metals in the stormwater runoffs from industrial sites around Shihwa Lake that implements the total pollutant load management system (TPLMS) was studied to characterize the temporal changes of metal concentrations and to assess the ecological risk in dissolved and particulate phases of the selected metals. The dissolved Co and Ni concentration demonstrated first flush and tended to decrease with increasing of the duration of rainfall. The intensity of precipitation was found to be the main controlling factor of particulate metals in the stromwater runoffs. The particulate concentration of Pb accounted for 97.2% so the particulate phase was its main form. Other metals followed the sequence: Pb>Cu>Cd>Co>Zn>Ni. The particulate-dissolved partitioning coefficient ($K_d$) indicated that the $K_d$ of Pb were bigger than that of other metals because the metal Pb in the stormwater runoffs is quickly removed into the particulate phase. In a single day rainfall event, total runoff fluxes for total metals as the sum of dissolved and particulate forms through only two sewer outlets were 2.21 kg for Co, 30.5 kg for Ni, 278.3 kg for Cu, 398.3 kg for Zn, 0.39 kg for Cd and 40.0 kg for Pb, respectively. Given the annual rainfall, the number of rain days and the basin area for total pollutant load management system (TPLMS) of Shihwa area, enormous amount of non-point metal pollutants were entered into Lake with any treatment. The dissolved metals (e.g., Ni, Cu and Zn) in the stormwater runoffs exceeded the acute water quality criteria. Additionally, all metals were significantly enriched in the particulate phase and exceeded the PEL criteria of sediment quality guidelines (SQGs). These results indicated that the heavy metals in the stormwater runoffs may pose a very high ecological risk to the coastal environments and ecosystem.

Preparation and Certification of Rice Flour Reference Materials for Trace Elements Analysis (미량원소분석을 위한 쌀분말 기준물질의 제조 및 검정)

  • Cho, Kyung-Haeng;Park, Chang-Joon;Woo, Jin-Choon;Suh, Jung-Ki;Han, Myung-Sub;Lee, Jong-Hae
    • Analytical Science and Technology
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    • v.11 no.4
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    • pp.271-280
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    • 1998
  • Rice flour reference materials were prepared from the unpolished rice grown in Korea and certified for elemental composition. The reference materials consist of two samples containing normal and high level. The reference material at elevated level was prepared by spiking to the normal rice flour six toxic elements of As, Cd, Cu, Cr, Hg, Pb with $1.0{\mu}g/g$ on a dry weight basis. Homogeneity of the prepared materials was evaluated through the determination of Ca, Cu, Fe, Mn, Zn by instrumental neutron activation analysis (INAA) and atomic absorption spectrometry (AAS). Small variance of elemental composition among interbottled samples assured homogeneity of the prepared materials. The materials were decomposed by high pressure digestion and microwave digestion method. INAA, AAS, inductively coupled plasma-atomic absorption spectrometry (ICP-AES), ICP-mass spectrometry (MS) and vapour generation techniques were employed to analyze the reference materials. From this independent analytical results, the certified or reference values are determined for As, Ca, Cd, Cr, Cu, Fe, Hg, K, Mg, Mn, Mo, Na, P, Pb, Se, Zn.

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Trace Element Analysis and Source Assessment of Household Dust in Daegu, Korea (대구지역 일반주택의 축적먼지 중 미량원소성분 분석과 오염원 평가)

  • Do, Hwa-Seok;Song, Hee-Bong;Jung, Yeoun-Wook;Yoon, Ho-Suk;Kwak, Jin-Hee;Han, Jeong-Uk;Kang, Hye-Jung;Phee, Young-Gyu
    • Journal of Korean Society of Environmental Engineers
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    • v.32 no.1
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    • pp.69-78
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    • 2010
  • In order to investigate the degree of household dust contamination, 48 samples of household dust (24 from urban area and 24 from rural area) in Daegu city were collected in vacuum cleaner during January to February 2009. Samples were sieved below 100 ${\mu}m$, and 14 elements (Al, Ca, Cd, Cr, Cu, Fe, K, Mg, Mn, Na, Ni, Pb, V, Zn) were analyzed using ICP after acid extraction. Results obtained from the source assessment of trace elements using enrichment factor showed that Ca, Fe, K, Mg, Mn, Na, and V were influenced by natural sources such as weathered rock and resuspended soil, while Cd, Cr, Cu, Ni, Pb and Zn were influenced by anthropogenic sources such as fuel combustion and waste incineration. Concentrations were remarkably higher in components from natural sources than in components from urban anthropogenic sources. Household dust in urban area was more affected by anthropogenic sources compared with that of rural area. Pollution index of heavy metals revealed that urban area was 1.8 times more contaminated with heavy metal components than rural area. The correlation analysis among trace elements indicated that components were correlated with natural sources-natural sources (Al-Mg, Al-Mn, Fe-Mn) and natural sources-anthropogenic sources (Al-V, Fe-Cr, V-Mn) in both urban area and rural area. Trace element components of rural area were more correlated than those of urban area. Houses that use oil for heating fuel had relatively higher contents of heavy metals rather than those using gas or electricity for heating fuel. Houses with children also had higher contents of heavy metals. In addition, the age of houses was found to influence the heavy metal levels in household dusts, with older houses (>10years) having higher concentrations than newer houses (<10years) and houses located near the major road (<10 m) were found to have relatively higher heavy metal levels in household dust.