• Title/Summary/Keyword: groundwater contamination

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Assessment of the Soil Quality of Chonan City using Soil Pollution Index (토양오염지표에 의한 천안시 토양환경 평가)

  • 장인성;정창모;임계규
    • Journal of Korea Soil Environment Society
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    • v.4 no.2
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    • pp.185-192
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    • 1999
  • To assess the soil quality of Chonan City, soil analyses were conducted according to the 14 different sampling sites. The soil pH of the agricultural area near the expressway was lower than that of the other farming area, which indicated that this acidification was probably attributed to the acid rain caused by the traffic exhaust gas such as SOx and NOx. Acidification was more severe in the dry farming area than in the rice paddy area. All concentration of 6 different heavy metals (As, Cu, Cd, $Cr^{6+}$, Hg, Pb) and organic contaminants (cyanide, organic-p, PCBs, phenols) were found to be lower than the standard of soil pollution. The concentration of BTEX also lower than the standard of soil pollution. An assessment using the SPI (Soil Pollution Index). which was developed to estimate an overall soil quality, was performed. Each SPC (Soil Pollution Score) were evaluated with the results of the data from this study. The soil quality of most area of Chonan City was determined to Class 1 , which indicated that the soil was healthy.

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Characteristics of Groundwater Contamination at a Coastal Area in Busan, Korea (부산 해안가 도심지역의 지하수 오염 특성)

  • Kim, Tae-Hyung;Chung, Sang-Yong;Park, Nam-Sik;Kim, Dong-Soo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.2026-2031
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    • 2010
  • 연구지역인 수영지역은 부산 동남부 해안가에 위치한 도심지역으로서 수영만과 수영강에 직접 접하고 있어 해수침입의 가능성이 존재하고 있다. 본 연구의 목적은 해안가에 위치한 도심지역에서 해수면 이하의 지하수 수위가 분포하고 있고, 이에 따른 지하수 수위 하강의 발생 원인과 해수침입에 의한 지하수 수질 오염에 관한 연구를 수행하였다. 연구지역에서 지하수 수위 및 현장 간이수질(수온, 수소이온농도, 산화-환원전위, 전기전도도, 염도, 용존산소)의 현장조사는 갈수기(2007년 12월)와 풍수기(2008년 7월과 2009년 8월)로 구분하여 약 140여개 관정을 대상으로 실시하였다. 또한, 정밀 지하수 수질 분석을 위하여 2009년 8월에 50지점의 수질 시료(지하수 44지점, 유출지하수 1지점, 수영강 2지점, 해수 3지점)를 대상으로 지화학적 분석을 실시하였다. 지하수 수위 및 수질을 조사한 결과, 갈수기와 풍수기에 상관없이 지하수 수위가 해수면 이하인 지역에서는 해수침입의 가능성이 나타났다. 지하수 수질 유형은 일반 지하수를 지시하는 $Ca(HCO_3)_2$ 유형, 해수침입이나 인위적인 오염 가능성을 지시하는 $NaHCO_3$ 유형, $CaSO_4$ 유형 및 $CaCl_2$ 유형과 직접적인 해수침입을 지시하는 NaCl 유형으로 분류되었다. 연구지역에서 지하수 수위 하강의 원인을 규명하기 위해 지하수 이용량과 지하철에서 발생하는 유출지하수량의 조사를 실시하였다. 지하수 이용량 조사 결과, 306개소에서 $1,531,000m^3$/년을 이용하는 것으로 나타났고, 지하철의 유출지하수량은 6개의 역사에서 $751,000m^3$/년이 발생하고, 이는 지하수 개발가능량인 $951,000m^3$/년의 2.4배를 초과하여 지하수가 배출되어 지하수 수위하강을 초래하고 있다. 지하수 수위의 하강이 발생하는 지역과 비교 분석한 결과, 수영만에 위치한 광안리해수욕장의 유락시설이 밀집한 지역과 유출지하수가 발생하는 역사 주변 지역에서 지하수 수위의 하강이 크게 일어나고 있는 것으로 나타났다. 연구지역에서는 지하수의 이용량과 지하철에서 발생하는 유출지하수에 의해 지하수 수위의 하강이 크게 일어나고, 이들 지역에 해수침입에 의한 지하수 수질 오염이 크게 나타나는 것으로 조사되었다. 또한, 수영강과 인접한 지역에서는 해수의 영향을 받고 있는 수영강의 유입으로 지하수가 염수화 되어 가고 있는 것으로 나타났다.

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Evaluation for Contents of Contaminants and Leaching Characteristics of Bottom Ash (바텀애쉬의 유해물질 함량 측정 및 용출특성 평가연구)

  • Koh, Taehoon;Lee, Sungjin;Shin, Minho;Kim, Byongsuk;Lee, Jeakeun;Lee, Taeyoon
    • Journal of the Korean GEO-environmental Society
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    • v.11 no.6
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    • pp.77-83
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    • 2010
  • In this study, we tried to determine any detrimental effects on water quality when bottom ash obtained from a coal-fired power plant intended to be used as a fill material in construction sites. Physical-chemical properties of bottom ash were determined using proximate analysis, elemental analysis, XRD, and XRF. Classification of bottom ash as a waste material and soil contamination due to the use of bottom ash were performed by Korea waste standard leaching test and soil toxicity test, respectively. Results of leaching tests were compared to the regulations for water quality and groundwater quality and no harmful effects on water quality were found. Most of heavy metals in leachate were below detection limits but trace amount of $Cr^{6+}$ was found. However, concentration of $Cr^{6+}$ was below the regulation criteria. Column leaching tests indicated that concentrations of Pb and Zn were slightly higher than regulations but below regulations within 1 PVE, but concentrations of sulfate were 10 times higher than regulation and thus, the required time to reach regulation was almost 8 PVE.

Study on Concentration Variation of 222Rn for Various Scintillators Using Low-Level Liquid Scintillation Counter (저 준위 액체섬광계수기를 이용한 섬광체 종류에 따른 222Rn 농도 변화 연구)

  • Jeon, JaeWan;Lee, Deuk-Hee;Kim, Jin-Seop
    • Journal of the Korean Society of Radiology
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    • v.13 no.6
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    • pp.847-856
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    • 2019
  • The various environmental issues arose with the development of today's economy. naturally, people were increased interest in environment and the importance of research on drinking water and contamination are emerging especially. A number of country areas, uranium and 222Rn in ground water have been detected to people using as drinking water. So this study evaluated the way for more accurate measurements than when measuring 222Rn concentrations in the ground water containing. the experiment was performed using the low-level liquid scintillation counter with an alpha, beta analysis easy PSA function of pulse. the scintillator as the preparation of the ground water samples are mixed, the measure value detection is lowered over prepare period and expiration date. Energy spectrum was also moved to a lower side channel. As a long time to buy the scintillator and over time after opening, it was confirmed that detection is lowered. if the purpose is to use a different scintillator can see the energy through the channel change.

Control of Persulfate Activation Rate and Improvement of Active Species Transfer Rate Using Selenium-modified ZVI (셀레늄으로 개질된 영가철을 이용한 과황산 활성화 속도 조절 및 활성종 전달율 향상에 관한 연구)

  • Hee-won Kwon;Hae-Seong Park;In-seong Hwang;Jeong-Jin Kim;Young-Hun Kim
    • Journal of Environmental Science International
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    • v.32 no.1
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    • pp.57-65
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    • 2023
  • The advanced oxidation treatment using persulfate and zero-valent iron (ZVI) has been evaluated as a very effective technology for remediation of soil and groundwater contamination. However, the high rate of the initial reaction of persulfate with ZVI causes over-consumption of an injected persulfate, and the excessively generated active species show a low transfer rate to the target pollutant. In this study, ZVI was modified using selenium with very low reactivity in the water environment with the aim of controlling the persulfate activation rate by controlling the reactivity of ZVI. Selenium-modified ZVI (Se/ZVI) was confirmed to have a selenium coating on the surface through SEM/EDS analysis, and low reductive reactivity to trichlroethylene (TCE) was observed. As a result of inducing the persulfate activation using the synthesized Se/ZVI, the persulfated consumption rate was greatly reduced, and the decomposition rate of the model contaminant, anisole, was also reduced in proportion. However, the final decomposition efficiency was rather increased, which seems to be the result of preventing persulfate over-consumption. This is because the transfer efficiency of the active species (SO4-∙) of persulfate to the target contaminant has been improved. Selenium on the surface of Se/ZVI was not significantly dissolved even under oxidation conditions by persulfate, and most of it was present in the form of Se/ZVI. It was confirmed that the persulfate activation rate could be controlled by controlling the reactivity of ZVI, which could greatly contribute to the improvement of the persulfate oxidation efficiency.

An aluminum-based reflective nanolens array that enhances the effectiveness of a continuous-flow ultraviolet disinfection system for livestock water

  • Changhoon Chai;Jinhyung Park
    • Journal of Animal Science and Technology
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    • v.65 no.1
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    • pp.258-270
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    • 2023
  • Climate change has worsened droughts and floods, and created conditions more likely to lead to pathogen contamination of surface water and groundwater. Thus, there is a growing need to disinfect livestock water. Ultraviolet (UV) irradiation is widely accepted as an appropriate method for disinfecting livestock water, as it does not produce hazardous chemical compounds and kills pathogens. However, UV-based disinfection inevitably consumes electricity, so it is necessary to improve UV disinfection effectiveness. Aluminum-based reflective nanolens arrays that enhanced the effectiveness of a continuous-flow UV water disinfection system were developed using electrochemical and chemical processes, including electropolishing and two-step anodization. A continuous UV disinfection system was custom designed and the parts were produced using a three-dimensional printer. Electropolished aluminum was anodized at 40 and 80 V in 0.3 M oxalic acid, at 120 and 160 V in 1.0 M phosphoric acid, and at 200 and 240 V in 1.5 M citric acid. The average nanolens diameters (D) of the aluminum-based reflective nanolens arrays prepared using 40, 80, 120, 160, 200, and 240 V anodization were 95.44, 160.98, 226.64, 309.90, 296.32, and 339.68 nm, respectively. Simple UV reflection behind irradiated water disinfected Escherichia coli O157:H7 in water more than did the non-reflective control. UV reflection and focusing behind irradiated water using an aluminum-based reflective nanolens array disinfected E. coli O157:H7 more than did simple UV reflection. Such enhancement of the UV disinfection effectiveness was significantly effective when a nanolens array with D 226.64 nm, close to the wavelength of the irradiated UV (254 nm), was used.

Outbreak of Hepatitis A caused by Groundwater Contamination in a Long-term Psychiatric Hospital in Korea (장기 요양 정신병원에서 지하수 오염에 의하여 발생한 A형간염 집단발병)

  • Keun-Sang Kwon;Myung Ok Lee;Hee Ju Bae;Jung Im Park;Cheon-Hyeon Kim;Ju-Hyung Lee
    • Journal of agricultural medicine and community health
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    • v.48 no.2
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    • pp.71-80
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    • 2023
  • 목적: 2017년 지하수를 식수로 사용하고 있는 한 장기요양 정신병원(H병원)에서 A형간염 환자가 집단 발병하여 이에 대한 역학조사를 실시하고 조치 결과를 기술하고자 하였다. 방법: 노출기간 동안 H병원의 근로자 및 재원 환자 234명을 대상으로 사례군 조사 디자인으로 역학조사를 실시하였고, IgM, IgG 혈청검사 및 A형간염 바이러스(HAV)에 대한 PCR검사를 시행하였다. 또한 오염원으로 의심되는 지하수, 병원에서 제공되는 식품 및 인근 저수지의 물에서 HAV 검사를 실시하였고, 검출된 HAV는 유전형 검사를 진행하였다. 결과: H병원 환자 및 직원 234명 중 IgG 양성인 168명을 제외한 66명 중 19명이 최종적으로HAV 감염자로 확인되어 감수성자 중 발병률은 28.8%로 나타났다. 환자, 지하수, 식품(석박지) 및 저수지에서 동일 유전형의 HAV가 검출되어 지하수 오염에 의한 집단발병으로 결론 내렸으나, 최초 오염원은 확인하지 못하였다. 유행 종결 선언 이후 지하수에 대한 관리로 염소소독과 UV 조사를 하였음에도 불구하고 6개월 동안 지속적으로 HAV가 검출되어 새로운 관정을 개발하여 상황을 종결하였다. 결론: 본 연구에서 지하수를 식수로 사용하는 장기요양 정신병원에서 지하수 오염에 의한 19명의 HAV 집단발병을 조사하였다. HAV 항체가 없는 대상자 중에서 HAV의 높은 발병률을 확인하였다. 지하수 수질검사에서 바이러스 검사는 포함되어 있지 않기 때문에 지하수가 HAV에 오염시 HAV 집단발병 가능성이 높고 상당기간 지속적으로 검출되기 때문에 지하수에 대한 관리지침에 바이러스 검출을 위한 방안을 추가하고 관련 법을 정비할 필요가 있다.

A Study on the Selectively Block Barrier for Prevent the Spread of TPH and Phenol in the Ground (지중 내 TPH, Phenol의 확산방지를 위한 선택적 차수재 제조에 관한 연구)

  • HoJin Lim;WooRi Cho;SeungJin Oh;SuHee Kim;JaiYoung Lee
    • Journal of the Korean Geosynthetics Society
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    • v.23 no.1
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    • pp.1-7
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    • 2024
  • In this study, a selecvively block barrier was developed to prevent the spread of contaminants (TPH, Phenol) in the ground only when contamination occurs. The materials were used Jumunjin sand, bentonite, polyolefin elastomer and spill hound marine. First, the properties and environmental hazards characteristics of materials were analyzed for evaluated their usability. Then, the possibility of use as a barrier material was confirmed by analyzing the water permeability characteristics that change after 24 hours of contact with contaminants. As a result of the analysis, the pH of each component was similar to the general groundwater pH range. In addition, the toxicity characteristics and the possibility of dissolution of hazardous substances, it was determined that there was no environmental hazard as the content was below the regulation value. Lastly, when comparing the permeability coefficient before and after contact with the contaminant, the permeability coefficient of approximately α × 10-3cm/sec before contact was reduced to α × 10-6cm/sec after contact with the contaminant.

Dynamics of $NO_3^{-}$-N in Barley Rhizosphere and Optimum Rate of Nitrogen Top- Dressing Based on $N_{min}$ Soil Test (실초태 실소 의 보리 근권토양내 동적 변화와 $N_{min}$ 토양진단법에 의한 과정 실소추식량 결정)

  • 손상목;큐케마틴;한인아
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.40 no.2
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    • pp.185-194
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    • 1995
  • The prevention of excessive use of nitrogen fertilizer get an attention in Korea not only for minimizing $NO_3^-$ contamination of groundwater but also for establishment of environmental friendly sustainable agriculture. In order to find out the dynamics of $NO_3^-$ in barley rhizosphere and its suitability for nitrogen fertilization strategies and for environmental control, the accumulation of $NO_3^-$ in 3 layer, 0~30cm, 30~60cm, 60~90cm of soil profile has been detected in winter barley pro-duction system. It showed the recommended N fertilization rate for winter barley cause the $NO_3^-$ contamination of groundwater through $NO_3^-$ leaching during winter. The $NO_3^-$ content of 0~90cm soil depth have directly reflected the amount of basal N fertilization in the early spring, but not 0~30cm and 0~60cm soil depth. The contents of $NO_3^-$ measured to 0~30cm, 0~60cm soil depth were not significanly correlated with yield but the contents of $NO_3^-$ measured to 90cm soil depth was highly correlated with yield. Nitrogen fertilizer requirement could be estimated accurately by soil test and it provides field specific N rate recommendation for spring N application to winter barley. It was concluded that $N_{min}$ method could be applied to korean climatic and soil condition for optimal fertilizer application rate.

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Assessment of Soil Contamination and Hydrogeochemistry for Drinking Water Sites in Korea (국내 먹는샘물 개발지역의 토양 오염 평가 및 수리지구화학적 특성)

  • 이두호;전효택
    • Journal of the Korean Society of Groundwater Environment
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    • v.4 no.1
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    • pp.41-53
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    • 1997
  • Geochemical data of soil and water samples were presented in order to assess the environmental impart for drinking water sites. Microscopic observation of rock samples and physical and chemical analysis of soil and water samples were undertaken. The geology of study areas are classified into three groups such as granitic rocks, meta-sedimentary rocks and sedimentary rocks. Enrichment of heavy metals derived from those rocks is not found in this study areas. Soils were analyzed for Cu, Pb, Zn, Cd and Cr using AAS extracted by HNO$_3$+HClO$_4$ and 0.1 N HCl. Heavy metal concentrations in soils are within the range of those in uncontaminated soils. In comparison of metal contents extracted by 0.1 N HCl and HNO$_3$+HC1O$_4$, less than 10% of the heavy metals are present in the exchangeable fraction. In particular, an pollution index has been proposed to assess the degree of soil contamination. Pollution index in soils are between 0.03 and 0.47 therefore, soils are not polluted with heavy metals. Deep groundwaters within granitic rocks have been evolved into Na$\^$+/-HCO$_3$$\^$-/ type, whereas other deep groundwaters evolved into Ca$\^$2+/-HCO$_3$$\^$-/ type. The predominance of Na$\^$+/ over Ca$\^$2+/ in deep groundwaters within granitic rocks is a result of dissolution of plagioclase, but for sedimentary and meta-sedimentary rocks, dissolution of calcite is a dominant factor for their hydrogeochemistry. The pH, conductivity and contents of the most dissolved ions in the water increase with depth. Shallow groundwaters, however, are highly susceptible to pollution owing to agricultural activities, considering the fact that high contents of nitrate, chloride and potassium, and high K/Na ratio are observed in some shallow groundwaters. In a thermodynamic approach, most natural water samples are plotted within the stability fields of kaolinite and smectite. Therefore, microcline and other feldspars will alter to form clay minerals, such as kaolinite and smectite. From the modelling for water-rock interactions based on mass balance equation, models accord well with behavior of the ions and results of thermodynamic studies are derived.

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