• 제목/요약/키워드: Aquifer contamination

검색결과 78건 처리시간 0.031초

Groundwater vulnerability assessment in the southern coastal sedimentary basin of Benin using DRASTIC, modified DRASTIC, Entropy Weight DRASTIC and AVI

  • Agossou, Amos;Yang, Jeong-Seok
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2021년도 학술발표회
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    • pp.152-152
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    • 2021
  • The importance of groundwater has long been recognized, but the ground water potential to become contaminated as a result of human activities has only been recognized in recently. Before 1980 it was thought that soils served as filters, preventing harmful substances deposited at the surface from migrating into groundwater. Today it is known that soils have a finite capacity to protect groundwater. It can be contaminated from divers sources. Therefore, Assessment of aquifer vulnerability to pollution is essential for the protection and management of groundwater and land use planning. In this study, we used DRASTIC and AVI for groundwater vulnerability to contamination assessment. the different methods were applied to the southern coastal sedimentary basin of Benin and DRASTIC method was modified in two different steps. First, we modified DRASTIC by adding land use parameter to include the actual pollution sources (DRASTICLcLu) and second, classic DRASTIC weights was modified using Shannon's entropy (Entropy weight DRASTIC). The reliability of the applied approaches was verified using nitrate (NO3-) concentration and by comparing the overall vulnerability maps to the previous researches in the study area and in the world. The results from validation showed that the addition of landcover/land use parameter to the classic DRASTIC helps to improve the method for better definition of the vulnerable areas in the basin and also, the weight modification using entropy improved better the method because Entropy weight DRASTICLcLu showed the highest correlation with nitrate concentration in the study basin. In summary the weight modification using entropy approach reduced the uncertainty of the human subjectivity in assigning weights and ratings in the standard DRASTIC.

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A Study on groundwater and pollutant recharge in urban area: use of hydrochemical data

  • Lee, Ju-Hee;Kwon, Jang-Soon;Yun, Seong-Taek;Chae, Gi-Tak;Park, Seong-Sook
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 임시총회 및 추계학술발표회
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    • pp.119-120
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    • 2004
  • Urban groundwater has a unique hydrologic system because of the complex surface and subsurface infrastructures such as deep foundation of many high buildings, subway systems, and sewers and public water supply systems. It generally has been considered that increased surface impermeability reduces the amount of groundwater recharge. On the other hand, leaks from sewers and public water supply systems may generate the large amounts of recharges. All of these urban facilities also may change the groundwater quality by the recharge of a myriad of contaminants. This study was performed to determine the factors controlling the recharge of deep groundwater in an urban area, based on the hydrogeochemical characteristics. The term ‘contamination’ in this study means any kind of inflow of shallow groundwater regardless of clean or contaminated. For this study, urban groundwater samples were collected from a total of 310 preexisting wells with the depth over 100 m. Random sampling method was used to select the wells for this study. Major cations together with Si, Al, Fe, Pb, Hg and Mn were analyzed by ICP-AES, and Cl, N $O_3$, N $H_4$, F, Br, S $O_4$and P $O_4$ were analyzed by IC. There are two groups of groundwater, based on hydrochemical characteristics. The first group is distributed broadly from Ca-HC $O_3$ type to Ca-C1+N $O_3$ type; the other group is the Na+K-HC $O_3$ type. The latter group is considered to represent the baseline quality of deep groundwater in the study area. Using the major ions data for the Na+K-HC $O_3$ type water, we evaluated the extent of groundwater contamination, assuming that if subtract the baseline composition from acquired data for a specific water, the remaining concentrations may indicate the degree of contamination. The remainder of each solute for each sample was simply averaged. The results showed that both Ca and HC $O_3$ represent the typical solutes which are quite enriched in urban groundwater. In particular, the P$CO_2$ values calculated using PHREEQC (version 2.8) showed a correlation with the concentrations of maior inorganic components (Na, Mg, Ca, N $O_3$, S $O_4$, etc.). The p$CO_2$ values for the first group waters widely ranged between about 10$^{-3.0}$ atm to 10$^{-1.0}$ atm and differed from those of the background water samples belonging to the Na+K-HC $O_3$ type (<10$^{-3.5}$ atm). Considering that the p$CO_2$ of soil water (near 10$^{-1.5}$ atm), this indicates that inflow of shallow water is very significant in deep groundwaters in the study area. Furthermore, the P$CO_2$ values can be used as an effective parameter to estimate the relative recharge of shallow water and thus the contamination susceptibility. The results of our present study suggest that down to considerable depth, urban groundwater in crystalline aquifer may be considerably affected by the recharge of shallow water (and pollutants) from an adjacent area. We also suggest that for such evaluation, careful examination of systematically collected hydrochemical data is requisite as an effective tool, in addition to hydrologic and hydrogeologic interpretation.ion.ion.

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지리 공간 자료의 다중회귀분석을 이용한 제주도 남측사면 용천수의 시기별 질산성 질소 농도 예측 (Prediction of Seasonal Nitrate Concentration in Springs on the Southern Slope of Jeju Island using Multiple Linear Regression of Geographic Spatial Data)

  • 정윤영;고동찬;강봉래;고경석;유용재
    • 자원환경지질
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    • 제44권2호
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    • pp.135-152
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    • 2011
  • 제주도 남측사면에서 산악지역부터 해안지역에 걸쳐 분포하는 용천수에 대해 풍수기와 갈수기의 2회에 걸쳐 측정된 $NO_3$ 농도를 수해지질학적 인자 및 토지 이용 특성 인자를 포함하는 공간 변수들의 다중선형 회귀모형으로 예측하였다. 용천수의 $NO_3$ 농도는 평균 20 mg/L이며, <0.02~86 mg/L의 범위를 보여 인위적 오염의 정도가 매우 다양하다. 공간 변수는 용천수를 중심으로 원형 버퍼를 설정하여 추출하였으며, 수정결정계수 증가율과 원형 버퍼의 제한점을 고려하여 반경 400 m를 최적 범위로 설정하였다. 선택된 회귀 모형들은 p-값과 더빈-왓슨 통계치에 근거하여 모두 통계적으로 유의하였다. 설명변수는 수정결정계수, Cp (total squared error), AIC (Akaike's Information Criterion)등을 기준으로 선택하였으며 변수들의 유의성과 다중공선성을 확인하여 최적 회귀 모형을 제시하였다. 일부 용천수들은 이상치로 확인되었으나 전체 시료의 10%이내였으며, 이들은 원형 버퍼를 사용하는 다중회귀분석의 한계를 지시한다고 할 수 있다. 변수의 유의성 기준으로 선정된 최적 회귀 모형의 결정계수는 이상치 제거 전이 0.74-0.79, 제거 후가 0.86-0.87의 범위로 높은 설명력을 보여주었으며, 자연지역 면적 비율이 용천수의 $NO_3$ 농도에 가장 큰 영향력을 가지는 것으로 나타났다. 용천수 $NO_3$ 농도에 대한 인위적 토지이용의 영향력은 최적 버퍼 반경에서 두 조사 시기 모두 과수원 > 주거지역 > 밭의 순으로 나타났다. 이러한 결과는 제주도 남측사면 용천수의 수질이 수리지질학적 인자보다는 토지 이용 특성에 크게 좌우됨을 지시하며, 용천수의 오염 취약성이 주변의 지표 오염원, 특히 과수원 분포에 민감함을 보여준다.

수리지화학적 특성 분석을 이용한 농촌 마을 천부 음용지하수의 수질 저하 원인 분석 (Evaluation of Groundwater Quality Deterioration using the Hydrogeochemical Characteristics of Shallow Portable Groundwater in an Agricultural Area)

  • 양재하;김현구;김문수;이민경;신인규;박선화;김형섭;주병규;김동수;김태승
    • 지질공학
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    • 제25권4호
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    • pp.533-545
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    • 2015
  • 음용수 및 생활용수로 이용되고 있는 농촌 지역 천부대수층 음용지하수를 대상으로 계절적·공간적 수리지화학적 특성과 수질 저하 원인을 분석하였다. 지하수 관정이 설치된 대수층은 지표로부터 전답토, 풍화토, 풍화암, 기반암으로 구성되어 있으며 음용지하수의 대부분은 풍화토와 풍화암에 형성된 지하수가 이용되는 것으로 조사되었다. 음용지하수의 지화학적 유형은 대부분 오염물로 분류되고 있는 NO3와 Cl 이온의 영향을 받는 것으로 보이며 또한 상류로부터 유출된 오염물들이 하류 방향으로 이동하면서 불규칙적으로 분포하는 오염원에 의해 농도 증가가 일어나고 있는 것으로 나타났다. 음용지하수내 주 양이온 성분은 계절에 따라 큰 변화를 보이지 않으며 NO3와 Cl 성분은 배경 지하수에 비해 고농도 분포를 보여 외부로부터의 오염원 유입을 나타내주고 있다. 전기전도도 변화에 따른 주요 오염물 농도는 양의 상관관계를 보여 지하수 수질에 주요 오염물들의 영향이 크게 작용하고 있는 것을 보여준다. 오염물질 상관성 분석과 Ternary plot 분석 결과, 유기질 비료 내 오염물 성분은 음용지하수의 NO3, Cl, SO42−와 양의 상관관계를 보여주어 유기질 비료가 음용지하수내 주 오염원임을 보여준다. 또한 유기질 비료의 NO3와 Cl과 함께 가축분뇨 등 다른 오염원에 의해 추가적으로 발생된 SO42−가 수질을 저하시키는 주요 요인으로 분석되었다. 음용지하수 및 오염원내 포함되어 있는 오염물질 성분은 농도 분포에 있어 차이가 크지만 각각의 음용지하수를 구성하는 성분 비율 특성 그리고 오염물질 상호간의 상관성 분석을 이용하게 되면 음용지하수 수질 저하 요인 분석에 매우 유용한 정보를 제공해줄 수 있을 것으로 판단된다.

회분식반응조 실험을 통한 탄소원(Fumarate) 주입조건에 따른 지하수 중 탈질율 및 탈질 관련 기능성 유전자 분석 (Evaluation of Denitrification Efficiency and Functional Gene Change According to Carbon(Fumarate) Concentration and Addition of Nitrate Contaminated-soil in Batch System)

  • 박선화;김현구;김문수;이경미;전상호;송다희;김덕현;김영;김태승
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제20권7호
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    • pp.80-89
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    • 2015
  • Nitrate is on the most seriou pollutant encountered in shallow groundwater aquifer in agricultural area. There are various remediation technologies such as ion exchange, reverse osmosis, and biological denitrification to recover from nitrate contamination. Biological denitrification by indigenous microorganism of the technologies has been reviewed and applied on nitrate contaminated groundwater. In this work, we selected the site where the annual nitrate (NO3) concentration is over 105 mg/L and evaluated denitrification process with sampled soil and groundwater from 3 monitoring wells (MW4, 5, 6). In the results, the nitrate degradation rate in each well (MW 4, 5, and 6) was 25 NO3 mg/L/day, 6 NO3 mg/L/day, and 3.4 NO3 mg/L/day, respectively. Nitrate degradation rate was higher in batch system treated with 2 times higher fumarate as carbon source than control batch system (0.42M fumrate/1M NO3), comparing with batch system with soil sample. This result indicates that increase of carbon source is more efficient to enhance denitrification rate than addition of soil sample to increase microbial dynamics. In this work, we also confirmed that monitoring method of functional genes (nirK and nosZ) involved in denitrification process can be applied to evaluated denitrifcation process possibility before application of field process such as in-situ denitrification by push-pull test.

만경강유역 충적대수층 지하수의 비소오염현황 및 지구화학적 특성 (Geochemical Investigation on Arsenic Contamination in the Alluvial Ground-water of Mankyeong River Watershed)

  • 문정태;김강주;김석휘;정천성;황갑수
    • 자원환경지질
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    • 제41권6호
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    • pp.673-683
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    • 2008
  • 본 연구에서는 만경강에 의해 형성된 충적대수층에서 나타나는 고비소지하수를 지구화학적으로 고찰하였다. 연구지역에서는 조사된 관정 29개 중 15개에 해당하는 총 52%가 WHO의 비소 먹는물기준치($10{\mu}g/L$)를 초과하는 것으로 조사되었다. 비소가 부화된 지하수는 다른 지하수에 비하여 낮은 Eh값과 낮은 $NO_3$$SO_4$농도, 그리고 높은 pH, alkalinity와 Fe, $NH_4$$PO_4$농도를 보였다. 이는 세계최대의 비소오염지역인 벵갈만 충적층지역에서 흔히 관찰되는 비소용출기작인 철, 망간수산화물의 환원적 용해현상과 일치하는 수질특성이며, 국내의 충적층 지하수도 비소오염으로부터 자유롭지 못함을 지시하는 결과이기도 하다. 특히, 연구지역에서는 농업기원화학종인 $NO_3$$SO_4$의 존재가 비소 농도를 낮추는데 크게 공헌함으로써 농업활동이 비소의 농도를 낮추는 역할을 하였다.

6가 크롬 오염 지하수 수질의 계절변화와 자연저감 가능성 (Seasonal Variation of Cr(VI)-contaminated Groundwater Quality and the Potential for Natural Attenuation)

  • 전철민;안주성;노열;이성근;서현희;김구영;고동찬;손영철;김지욱
    • 자원환경지질
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    • 제41권6호
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    • pp.645-655
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    • 2008
  • 국가 지하수 관측망인 대전(문평)관측소 및 주변 보조관측정 지하수 수질을 6개월간 관측한 결과, 관측소 충적관정(MPH-0-1)에서 6가 크롬이 0.5-3.1 mg/L의 범위로 검출되어 수질기준의 10-62배를 초과하는 오염이 지속되고 있었다. 또한 하천 방향에 위치한 두 관정(MPH-1과 MPH-6)에서 6가 크롬이 0.1 mg/L 이하로 검출되어 미세한 오염 확산의 징후가 나타났다. 동일기간 지하수 수위 및 강우 관측자료의 시계열분석 결과 6개 관측정에서의 지하수위는 강우에 대하여 평균 5.65일 후에 최대값을 보였다. 시기별 강우/수위 변화와 6가 크롬 농도의 변화를 통하여 강우 반응에 의한 수위상승이 관측소 충적관정의 6가 크롬 농도 감소와 밀접한 관련이 있는 것으로 파악되었다. 이와 더불어 지하수 내 미생물의 종류 및 다양성을 분석하였으며, 6가 크롬으로 오염된 대전문평지역 지하수(MPH-0-1과 MPH-1 관정)에서 크롬환원 미생물인 Enterobacter aerogenes을 분리 배양하였다. 따라서 유기물, 광물 등의 토양 및 대수층 매질에 의한 6가 크롬 저감뿐만 아니라 이 토착미생물에 의한 크롬 오염 지하수의 자연저감이 실제 진행되고 있음을 확인할 수 있었다. 향후 이 미생물의 활성에 대한 심도 있는 연구를 통하여, 크롬오염 지하수의 저감 및 정화 기술의 개발과 적용에 활용할 수 있을 것으로 기대한다.

Field Studios of In-situ Aerobic Cometabolism of Chlorinated Aliphatic Hydrocarbons

  • Semprini, Lewts
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 총회 및 춘계학술발표회
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    • pp.3-4
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    • 2004
  • Results will be presented from two field studies that evaluated the in-situ treatment of chlorinated aliphatic hydrocarbons (CAHs) using aerobic cometabolism. In the first study, a cometabolic air sparging (CAS) demonstration was conducted at McClellan Air Force Base (AFB), California, to treat chlorinated aliphatic hydrocarbons (CAHs) in groundwater using propane as the cometabolic substrate. A propane-biostimulated zone was sparged with a propane/air mixture and a control zone was sparged with air alone. Propane-utilizers were effectively stimulated in the saturated zone with repeated intermediate sparging of propane and air. Propane delivery, however, was not uniform, with propane mainly observed in down-gradient observation wells. Trichloroethene (TCE), cis-1, 2-dichloroethene (c-DCE), and dissolved oxygen (DO) concentration levels decreased in proportion with propane usage, with c-DCE decreasing more rapidly than TCE. The more rapid removal of c-DCE indicated biotransformation and not just physical removal by stripping. Propane utilization rates and rates of CAH removal slowed after three to four months of repeated propane additions, which coincided with tile depletion of nitrogen (as nitrate). Ammonia was then added to the propane/air mixture as a nitrogen source. After a six-month period between propane additions, rapid propane-utilization was observed. Nitrate was present due to groundwater flow into the treatment zone and/or by the oxidation of tile previously injected ammonia. In the propane-stimulated zone, c-DCE concentrations decreased below tile detection limit (1 $\mu$g/L), and TCE concentrations ranged from less than 5 $\mu$g/L to 30 $\mu$g/L, representing removals of 90 to 97%. In the air sparged control zone, TCE was removed at only two monitoring locations nearest the sparge-well, to concentrations of 15 $\mu$g/L and 60 $\mu$g/L. The responses indicate that stripping as well as biological treatment were responsible for the removal of contaminants in the biostimulated zone, with biostimulation enhancing removals to lower contaminant levels. As part of that study bacterial population shifts that occurred in the groundwater during CAS and air sparging control were evaluated by length heterogeneity polymerase chain reaction (LH-PCR) fragment analysis. The results showed that an organism(5) that had a fragment size of 385 base pairs (385 bp) was positively correlated with propane removal rates. The 385 bp fragment consisted of up to 83% of the total fragments in the analysis when propane removal rates peaked. A 16S rRNA clone library made from the bacteria sampled in propane sparged groundwater included clones of a TM7 division bacterium that had a 385bp LH-PCR fragment; no other bacterial species with this fragment size were detected. Both propane removal rates and the 385bp LH-PCR fragment decreased as nitrate levels in the groundwater decreased. In the second study the potential for bioaugmentation of a butane culture was evaluated in a series of field tests conducted at the Moffett Field Air Station in California. A butane-utilizing mixed culture that was effective in transforming 1, 1-dichloroethene (1, 1-DCE), 1, 1, 1-trichloroethane (1, 1, 1-TCA), and 1, 1-dichloroethane (1, 1-DCA) was added to the saturated zone at the test site. This mixture of contaminants was evaluated since they are often present as together as the result of 1, 1, 1-TCA contamination and the abiotic and biotic transformation of 1, 1, 1-TCA to 1, 1-DCE and 1, 1-DCA. Model simulations were performed prior to the initiation of the field study. The simulations were performed with a transport code that included processes for in-situ cometabolism, including microbial growth and decay, substrate and oxygen utilization, and the cometabolism of dual contaminants (1, 1-DCE and 1, 1, 1-TCA). Based on the results of detailed kinetic studies with the culture, cometabolic transformation kinetics were incorporated that butane mixed-inhibition on 1, 1-DCE and 1, 1, 1-TCA transformation, and competitive inhibition of 1, 1-DCE and 1, 1, 1-TCA on butane utilization. A transformation capacity term was also included in the model formation that results in cell loss due to contaminant transformation. Parameters for the model simulations were determined independently in kinetic studies with the butane-utilizing culture and through batch microcosm tests with groundwater and aquifer solids from the field test zone with the butane-utilizing culture added. In microcosm tests, the model simulated well the repetitive utilization of butane and cometabolism of 1.1, 1-TCA and 1, 1-DCE, as well as the transformation of 1, 1-DCE as it was repeatedly transformed at increased aqueous concentrations. Model simulations were then performed under the transport conditions of the field test to explore the effects of the bioaugmentation dose and the response of the system to tile biostimulation with alternating pulses of dissolved butane and oxygen in the presence of 1, 1-DCE (50 $\mu$g/L) and 1, 1, 1-TCA (250 $\mu$g/L). A uniform aquifer bioaugmentation dose of 0.5 mg/L of cells resulted in complete utilization of the butane 2-meters downgradient of the injection well within 200-hrs of bioaugmentation and butane addition. 1, 1-DCE was much more rapidly transformed than 1, 1, 1-TCA, and efficient 1, 1, 1-TCA removal occurred only after 1, 1-DCE and butane were decreased in concentration. The simulations demonstrated the strong inhibition of both 1, 1-DCE and butane on 1, 1, 1-TCA transformation, and the more rapid 1, 1-DCE transformation kinetics. Results of tile field demonstration indicated that bioaugmentation was successfully implemented; however it was difficult to maintain effective treatment for long periods of time (50 days or more). The demonstration showed that the bioaugmented experimental leg effectively transformed 1, 1-DCE and 1, 1-DCA, and was somewhat effective in transforming 1, 1, 1-TCA. The indigenous experimental leg treated in the same way as the bioaugmented leg was much less effective in treating the contaminant mixture. The best operating performance was achieved in the bioaugmented leg with about over 90%, 80%, 60 % removal for 1, 1-DCE, 1, 1-DCA, and 1, 1, 1-TCA, respectively. Molecular methods were used to track and enumerate the bioaugmented culture in the test zone. Real Time PCR analysis was used to on enumerate the bioaugmented culture. The results show higher numbers of the bioaugmented microorganisms were present in the treatment zone groundwater when the contaminants were being effective transformed. A decrease in these numbers was associated with a reduction in treatment performance. The results of the field tests indicated that although bioaugmentation can be successfully implemented, competition for the growth substrate (butane) by the indigenous microorganisms likely lead to the decrease in long-term performance.

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