• 제목/요약/키워드: geochemical assessment

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지구화학적 재해 평가를 위한 지화학도 작성 및 기준치 설정 (Geochemical baseline mapping for geochemical hazard assessment)

  • 신성천;염승준;황상기
    • 지질공학
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    • 제10권2호
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    • pp.215-233
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    • 2000
  • 전국의 자연환경에서의 지구화학적 재해를 정량적으로 평가할 수 있는 체계를 구축하기 위하여, 지난 4년간 경기-수도권, 충남, 충북, 전남, 전북 등 국토 서반부 전역(45,000km$^2$)에 분포하는 1-2차 수계(총 11,000 개)의 하천퇴적물(150 $\mu$m 이하의 표사)을 대상으로 주원소 성분 10종과 미량원소 26종에 대해 지화학도를 작성하였다. 각 지질(구성암석)별 자연 배경치, 권역별 방대한 시료의 분석자료의 통계처리에 근거한 평균치 등 다양한 기준치를 설정하고, 유해원소의 과다농집과 필수성분의 결핍현상 등 지구화학적 재해의 유형별 평가에 필요한 등급을 설정.제시하였다. 실제로 몇 가지 지구화학적 재해사례를 권역별로 선별하여 다양한 전산 지화학도와 평가기준치에 근거하여 고찰하였다.

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광주광역시 토양의 지화학적 거동 특성과 오염 (Geochemical Behavior and Pollution of Soils in Gwangju City)

  • 신상은;김주용;오강호
    • 환경영향평가
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    • 제14권6호
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    • pp.415-425
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    • 2005
  • To examine the geochemical behavior and pollution of soils in Gwangju City, an analysis was carried out for pH, on the contents of metals, and organic carbon. Soil samples were taken from environs areas, industrial areas and downtown areas. The major factor controlling the behavior of metallic elements in the soil was chemical weathering of clay mineral in the environs areas, industrialization, and urbanization. Heavy metals including Cu, Pb and Zn were highly enriched for the samples from central part of downtown area. This indicated that the urbanization and the industrialization affected soil pollution. The results show that soil pollution in a metropolitan city which is caused by harmful heavy metals is severest in the center of the city. In consequence, it is inevitable that practical measures should be taken to prevent soil pollution expansion.

광주광역시를 관류하는 하천 표층퇴적물의 지구화학적 거동과 환경 변화 (Geochemical Behaviors and Environmental Changes of Bottom Sediments in Streams of Gwangju Metropolitan City)

  • 신상은;오강호
    • 환경영향평가
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    • 제19권5호
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    • pp.497-510
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    • 2010
  • Considering to the geochemical behaviors and environmental changes of bottom sediments in streams, Gwangju metropolitan city, this study focuses to analyses on grain sizes, metal elements and organic carbons in sediment samples from Yeongsan and Hwangryong rivers, and Gwangju stream. In the sediments, contents of Cu, Zn, Pb, P and TOC were highly variable, in the case of Gwangju stream particularly. Yenogsan and Hwangryong rivers are influenced by grain sizes and surrounding geological settings and Gwangju stream is connected to organic matters related to life fouls and so forth, with respect to the geochemical behaviorof bottom sediments. Li, Zn, Pb and Cu were enriched in Yeongsan and Hwangryong rivers and Li, Cu, Zn, Pb and P enriched in Gwangju stream, respectively. In the heavy metal contamination of above drainages, the site mutually connected Seobang(GJ 4) with Donggye(GJ 7) streams shows the highest values, in peculiar. It is inferred that those contamination values are mainly related with urban foul waters in the city.

영산강 하류권역 하상퇴적물의 지화학적 특성과 오염평가 (Geochemical Characteristics and Contamination Assessment of Surface Sediments in Lower Yeongsan River System)

  • 윤석태;고영구;오강호;문병찬;김해경
    • 환경영향평가
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    • 제13권5호
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    • pp.251-262
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    • 2004
  • In order to investigate the geochemical characteristics of surface sediments in lower Yeongsan river system, sediment samples from the main stream of Yeongsan river, Gomakwon and Hampyeong streams were collected and analyzed for grain size and metal and organic carbon contents. The sediment types of the streams widely vary from pebble to mud. The metal contents in the sediments are mainly dependent on grain size of the sediments, geology around the streams and organic matter contents from the domestic sewage. Enrichment factor (EF) representing the degree of metal contamination in the sediments are relatively low in the study area. But, high Zn and Pb values seem to be from the study area, partly.

석탄화력발전소 주변해역 퇴적물 내의 중금속원소의 함량과 지화학적 존재형태 (Concentration and Geochemical Phases of Heavy Metals in Marine Sediments in the Vicinity of the Coal-fired Power Plant of Korea)

  • 이두호;정연태
    • 환경영향평가
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    • 제9권4호
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    • pp.301-314
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    • 2000
  • Marine surface sediments in the vicinity of Samcheonpo coal-fired power plant were analyzed by a total analysis($HF+HNO_3+HClO_4$) and sequential extraction procedure for heavy metals in order to investigate the total concentrations and geochemical phases of heavy metals. The result showed that the concentrations of Cr, Cu, Fe and Zn were within ranges typical for coastal areas, which reflected the mineralogical composition of the sediments in the studied area. However, the distributions of Cd, Co, Mn, Ni and Pb were rather different from the former, indicating that these heavy metals had a different origin, or that they were affected by a different geochemical mechanism. Chemical partitioning of heavy metals using sequential extraction procedure revealed that Cu, Fe, Pb, Zn were significantly bound to the residual phases of the sediments, whereas carbonate phases contained considerable amounts of Mn. The significant association of Pb with the exchangeable fraction also indicated that Pb was more mobile and bioavailable than Cu, Fe, Mn, Zn.

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A Study About Radionuclides Migration Behavior in Terms of Solubility at Gyeongju Low- and Intermediate-Level Radioactive Waste (LILW) Repository

  • Park, Sang June;Byon, Jihyang;Lee, Jun-Yeop;Ahn, Seokyoung
    • 방사성폐기물학회지
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    • 제19권1호
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    • pp.113-121
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    • 2021
  • A safety assessment of radioactive waste repositories is a mandatory requirement process because there are possible radiological hazards owing to radionuclide migration from radioactive waste to the biosphere. For a reliable safety assessment, it is important to establish a parameter database that reflects the site-specific characteristics of the disposal facility and repository site. From this perspective, solubility, a major geochemical parameter, has been chosen as an important parameter for modeling the migration behavior of radionuclides. The solubilities were derived for Am, Ni, Tc, and U, which were major radionuclides in this study, and on-site groundwater data reflecting the operational conditions of the Gyeongju low and intermediate level radioactive waste (LILW) repository were applied to reflect the site-specific characteristics. The radiation dose was derived by applying the solubility and radionuclide inventory data to the RESRAD-OFFSITE code, and sensitivity analysis of the dose according to the solubility variation was performed. As a result, owing to the low amount of radionuclide inventory, the dose variation was insignificant. The derived solubility can be used as the main input data for the safety assessment of the Gyeongju LILW repository in the future.

SIGNIFICANCE OF ACTINIDE CHEMISTRY FOR THE LONG-TERM SAFETY OF WASTE DISPOSAL

  • Kim, Jae-Il
    • Nuclear Engineering and Technology
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    • 제38권6호
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    • pp.459-482
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    • 2006
  • A geochemical approach to the long-term safety of waste disposal is discussed in connection with the significance of actinides, which shall deliver the major radioactivity inventory subsequent to the relatively short-term decay of fission products. Every power reactor generates transuranic (TRU) elements: plutonium and minor actinides (Np, Am, Cm), which consist chiefly of long-lived nuclides emitting alpha radiation. The amount of TRU actinides generated in a fuel life period is found to be relatively small (about 1 wt% or less in spent fuel) but their radioactivity persists many hundred thousands years. Geological confinement of waste containing TRU actinides demands, as a result, fundamental knowledge on the geochemical behavior of actinides in the repository environment for a long period of time. Appraisal of the scientific progress in this subject area is the main objective of the present paper. Following the introductory discussion on natural radioactivities, the nuclear fuel cycle is briefly brought up with reference to actinide generation and waste disposal. As the long-term disposal safety concerns inevitably with actinides, the significance of the aquatic actinide chemistry is summarized in two parts: the fundamental properties relevant to their aquatic behavior and the geochemical reactions in nanoscopic scale. The constrained space of writing allows discussion on some examples only, for which topics of the primary concern are selected, e.g. apparent solubility and colloid generation, colloid-facilitated migration, notable speciation of such processes, etc. Discussion is summed up to end with how to make a geochemical approach available for the long-term disposal safety of nuclear waste or for the performance assessment (PA) as known generally.

낙동강 하구 표층 퇴적물의 지화학적 특성 및 오염도 평가 (Geochemical Characteristics and Pollution Assessment of Surface Sediments in the Nakdong River Estuary)

  • 전혜린;이혜윤;양득석;김신
    • 한국환경과학회지
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    • 제30권6호
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    • pp.487-500
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    • 2021
  • To evaluate the geochemical characteristics and assess the pollution in surface sediments of the Nakdong River estuary, two sites adjacent to the estuary bank (Hh1 and Hh2) and one site at the upper part of the estuary bank (Hh3) were investigated. The surface sediments were analyzed for their contents of metals (Cu, Pb, Ni, Cr, Zn, and Al), organic matter (IL, COD, TOC, and TN), and grain size from 2018 to 2020. As a result of the pollution assessment, there was little anthropogenic contamination by most of the metals. The surface sediments in Hh2 had comparatively abundant silt and clay, whereas the other sites were mainly composed of sand. The organic index and contents of organic matter were highest at Hh2. Multivariate statistical analyses (cluster analysis and Pearson correlation analysis) showed that the contents of organic matter and pollution were associated with fine sediment. These results suggest that the geochemical characteristics were changed by the estuary bank built in the research area and that the increase in fine sediment attributable to the low-energy environment resulted in an increase in organic matter pollution.

폐광산지역의 오염특성 조사와 평가를 위한 지구화학적 접근방법 (Geochemical Approaches for Investigation and Assessment of Heavy Metal Contamination in Abandoned Mine Sites)

  • 이평구;조호영;염승준
    • 자원환경지질
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    • 제37권1호
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    • pp.35-48
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    • 2004
  • 본 논문에서는 폐광산지역의 오염특성 조사와 평가를 위한 지구화학적 접근방법에 대하여 정리ㆍ기술하였다. 폐광산지역의 주요 오염원은 갱내수, 광석, 광미 및 선광을 위해 사용한 화학약품 등이고 산성광산배수의 배출, 광산폐기물의 유실, 유해성 침출수의 배출, 광미와 분진의 분산 등에 의해 중금속이 이동/확산되어 주변토양, 퇴적물, 지표수, 지하수, 생태계에 광역적/지속적으로 심각한 영향을 미친다. 따라서 오염원, 주변 토양, 지표수, 지하수 등에 대한 화학분석, 광물학적분석, 광산산성배수 예측실험, 물리/지화학탐사와 같은 현장실험 등의 방법을 이용한 조사를 통해 폐광산이 주변 환경에 미치는 잠재적이고 실제적인 영향이 조사$.$평가 되어야한다.

삼천포화력발전소 주변해역 퇴적물의 지구화학적 연구 (Geochemical Study of Coastal Sediments around the Samcheonpo Coal-fired Power Plant)

  • 이두호;임주환;정연태;정년호;강정원
    • 환경영향평가
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    • 제10권2호
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    • pp.85-98
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    • 2001
  • This study was conducted to investigate the geochemical factors governing the distribution of heavy metals(Co, Cr, Cu, Fe, Mn, Ni, Pb, and Zn) in the marine surface sediment samples collected from the Samcheonpo coal-fired power plant. Variations of absolute metal concentrations were related to those in textural and/or carbonate and organic matter content. Most elements, except for Pb, showed generally lower contents compared with the average shale concentration, and the effect of anthropogenic input appeared to be minimal in the sediments. Computations of LF%(labile fraction) and EF(enrichment factor) based on all trace metal data indicated the presence of mineralogical control for Co, Cr, Cu, Ni, and Zn, and anthropogenic contamination for Pb, which needs to be considered in the design of long term monitoring programmes.

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