• Title/Summary/Keyword: 질산염 오염

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Relevance of soil testing on mineral nitrogen in organic farming with regard to water protection (상수도보호구역내에서의 유기농업을 위한 토양진단 시비처방법)

  • Kuecke, Martin
    • Korean Journal of Organic Agriculture
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    • v.9 no.1
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    • pp.91-108
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    • 2001
  • 농업영농활동으로 인한 지하수와 지표수오염이 증가함에 따라 유럽연합(EU)과 각국 정부는 상수원보호를 위한 규제를 마련해 나가고 있다. 농민들의 영농활동을 제한하는 이러한 각종 규제에도 불구하고, 농지로부터 유입되는 상수원의 질산염 함량과 농약농도는 계속적으로 증가하고 있다. 지하수 용탈(질산염)과 지표수 유거(인산염, 농약)는 상수원오염은 주범으로 인식되고 있으며, 어느 지역 상수원의 질산염 오염 위험성은 1) 년간 양분균형 계산, 2) 규칙적 토양질산염 분석 등에 의해 파악이 가능하다. 질산염 용탈 이전에 토양질산염 분석을 통한 토양진단은 질산염 용탈 위험성과 작부체계의 지속성에 대한 필수적인 정보들을 제공하게 된다. 유기질비료를 다량 투입하는 유기농업의 지속성은 1) 양분균형의 과다 계산(질소, 인산, 칼리), 2) 토양질산염진단법, 3) 경운층의 토양인산진단법 등에 평가될 수 있다. 상수원을 가장 효과적으로 보호하기 위해서는 토양진단 최적시비전략과 작부체계가 함에 개발되어져야 한다.

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Implications of European Union's Groundwater Nitrate Management Policies for Korea's Sustainable Groundwater Management (유럽연합의 지하수 질산염 관리정책의 우리나라 지속가능한 지하수관리에의 시사점)

  • Junseop Oh;Jaehoon Choi;Hyunsoo Seo;Ho-Rim Kim;Hyun Tai Ahn;Seong-Taek Yun
    • Economic and Environmental Geology
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    • v.57 no.2
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    • pp.271-280
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    • 2024
  • This study examines the European Union (EU)'s policies on managing nitrate contamination in groundwater and provides implications for the future groundwater management in South Korea. Initiated by the 1991 Nitrate Directive, the EU has pursued a multifaceted approach to reduce agricultural nitrate pollution through sustainable ('good') farming practices, regular nitrate level monitoring, and designating Nitrate Vulnerable Zones. Further policy integrations, like the Water Framework Directive and Groundwater Directive, have established comprehensive protection strategies, including the use of pollutant threshold values. Recently, the 2019 Green Deal escalated efforts against nitrates, aligning with broader environmental and climate objectives. This review aims to explore these developments, highlighting key mitigation strategies against nitrate pollution, and providing valuable insights for the future sustainable groundwater nitrate management in South Korea, emphasizing the importance of preventive measures and collaborative efforts to restore and improve groundwater quality.

Nitrate Contamination of Alluvial Groundwaters in the Keum River Watershed Area: Source and Behaviors of Nitrate, and Suggestion to Secure Water Supply (금강 권역 충적층 지하수의 질산염 오염: 질산성 질소의 기원과 거동 고찰 및 안전한 용수 공급을 위한 제언)

  • 김경호;윤성택;채기탁;최병영;김순오;김강주;김형수;이철우
    • The Journal of Engineering Geology
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    • v.12 no.4
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    • pp.471-484
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    • 2002
  • Alluviums in the Keum River watershed cover an areal extent of $3,029{\;}\textrm{km}^2$ and contain about 8.1 billion tons of groundwater. However, the waters are severely polluted by nitrate, possibly due to the application of nitrogen fertilizer (>250 N kg/ha) on agricultural land. This paper aims to elucidate the pollution status and behaviors of nitrate in alluvial groundwaters in the Keum River watershed area, based on regional hydrogeochemical study. Most of the collected samples (n = 186) are polluted by nitrate (average = 42.2 mg/L, maximum = 295 mg/L). About 29% of the samples have the nitrate concentrations exceeding Korean Drinking Water Standard (44 mg/L $NO_3$). The distribution of nitrate concentrations in the study area is largely dependant on geochemical environments of alluvial aquifers. In particular, the decrease of redox potential of alluvial groundwaters showed a good correlation with the decreases of nitrate, iron, and manganese concentrations. Thus, the change of redox state in alluvial aquifers, likely reflecting their sedimentary environments, controls both the behavior and fate of nitrogen compounds and their natural attenuation (denitrification) in aquifers. A carbon-rich, silty layer within alluvium strata forms a reducing condition and possesses a buffering capacity on nitrate pollution.

Biodegradation of PAHs in anaerobic conditions

  • 우승한;임경희;박종문
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2004.04a
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    • pp.153-157
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    • 2004
  • 다양한 혐기성 조건에서 다환방향족탄화수소(PAHs)로 오염된 토양의 미생물 분해 연구를 수행하였다. 대표적인 다환방향족탄화수소인 phenanthrene과 fluorene을 토양과 물에 오염시켜서 약 100일 동안 저감정도를 관찰하였고, 실제 다환방향족탄화수소로 오염된 현장 토양을 이용 혐기성하에서 다환방향족탄화수소의 생분해 가능성을 확인하였다. 미생물 접종원은 혐기성 조건에서 다환방향족탄화수소에 노출시킨 슬러리가 사용되었다. 황산염 환원조건, 질산염 환원조건, 메탄생성조건 등의 다양한 혐기성 조건에서 실험을 수행한 결과, 메탄생성조건 > 질산염 환원조건 > 황산염 환원조건의 순서로 분해가 잘 일어났다. 또한 현장오염토양의 경우 34일간 처리 후 메탄생성조건에서 최대 72%의 분해율을 보였다.

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A Study of Improvement for the Prediction of Groundwater Pollution in Rural Area: Application in Keumsan, Korea (농촌지역 지하수의 오염 예측 방법 개선방안 연구: 충남 금산 지역에의 적용)

  • Cheong, Beom-Keun;Chae, Gi-Tak;Koh, Dong-Chan;Ko, Kyung-Seok;Koo, Min-Ho
    • Journal of Soil and Groundwater Environment
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    • v.13 no.4
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    • pp.40-53
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    • 2008
  • Groundwater pollution prediction methods have been developed to plan the sustainable groundwater usage and protection from potential pollution in many countries. DRASTIC established by US EPA is the most widely used groundwater vulnerability mapping method. However, the DRASTIC showed limitation in predicting the groundwater contamination because the DRASTIC method is designed to embrace only hydrogeologic factors. Therefore, in this study, three different methods were applied to improve a groundwater pollution prediction method: US EPA DRASTIC, Modified-DRASTIC suggested by Panagopoulos et al. (2006), and LSDG (Land use, Soil drainage, Depth to water, Geology) proposed by Rupert (1999). The Modified-DRASTIC is the modified version of the DRASTIC in terms of the rating scales and the weighting coefficients. The rating scales of each factor were calculated by the statistical comparison of nitrate concentrations in each class using the Wilcoxon rank-sum test; while the weighting coefficients were modified by the statistical correlation of each parameter to nitrate concentrations using the Spearman's rho test. The LSDG is a simple rating method using four factors such as Land use, Soil drainage, Depth to water, and Geology. Classes in each factor are compared by the Wilcoxon rank-sum test which gives a different rating to each class if the nitrate concentration in the class is significantly different. A database of nitrate concentrations in groundwaters from 149 wells was built in Keumsan area. Application of three different methods for assessing the groundwater pollution potential resulted that the prediction which was represented by a correlation (r) between each index and nitrate was improved from the EPA DRASTIC (r = 0.058) to the modified rating (r = 0.245), to the modified rating and weights (r = 0.400), and to the LSDG (r = 0.415), respectively. The LSDG seemed appropriate to predict the groundwater pollution in that it contained land use as a factor of the groundwater pollution sources and the rating of each class was defined by a real pollution nitrate concentration.

Biodegradation of Gasoline Contaminated Soils under Denitrifying Conditions

  • Oh, In-Suk;Lee, Si-Jin;Chang, Soon-Woong
    • 한국생물공학회:학술대회논문집
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    • 2003.10a
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    • pp.392-396
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    • 2003
  • Leaking underground storage tanks are a major source of groundwater contamination by petroleum hydrocarbons. Aerobic bioremediation has been highly effective in the remediation of many fuel releases. Bioremediation of aromatic hydrocarbons in groundwater and sediments is ofen limited by the inability to provide sufficient oxygen to the contaminated zones due to the low water solubility of oxygen. Nitrate can also serve as an electron acceptor And nitrate is less expensive and more soluble than oxygen. it may be more economical to restore fuel-contaminated aquifers using nitrate rather than oxygen. And denitrifying bacteria are commonly found in the subsurface and in association with contaminated aquifer materials. These studies have shown that BTEX and MTBE can be degraded by the nitrate-amended microcosms under aerobic and anaerobic conditons. Biodegradation of the toluene and ethylbenzne compounds occurred very quickly under denitrifying conditions. MTBE, benzene and p-xylene were recalcitrant under denitrifying conditions in this study.

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Nitrate Contamination of Shallow Groundwater in an Agricultural area having Intensive Livestock Facilities (축사가 밀집된 농촌지역 천부지하수의 질산염 오염특성)

  • 김연태;우남칠
    • Journal of Soil and Groundwater Environment
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    • v.8 no.1
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    • pp.57-67
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    • 2003
  • Nitrate contamination by human activities is a serious problem to water-supply in agricultural area. Shallow groundwater is the main source of water-supply, but it is very sensitive to contamination. Study area for nitrate contamination is a region of Iljuk, Kyunggi where is an agricultural area having many livestock facilities in various scales. As a result, the points having availability of incoming of external contaminant are 77%, and the ones over the Drinking Water Limit (DWL) are 32~42%. For a nitrogen isotope analysis, all the points having availability of incoming of external contaminant have $\delta$$^{15}$ N-NO$_3$ values over 5$\textperthousand$, and the points of 59% are strongly affected by nitrogen originated from animal wastes. The major source of nitrate in this area is intensive livestock facilities. Even though a livestock facility had enclosed, it affects groundwater quality for a long time. The chemical property of contaminant source is various according to animal species in surface water, but not in groundwater since some solutes are removed by reactions during an inflow to subsurface.

Nitrate Exposure Assessment under Uncertainty (불확실 상황에서 질산 폭로 평가)

  • Lee, Yong-Woon;Bogardi, Istvan
    • Journal of Environmental Impact Assessment
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    • v.4 no.2
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    • pp.105-121
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    • 1995
  • Nitrate contamination problems from groundwater supplies have been documented throughout many countries in the world, including Korea. Nitrate salts can induce methemoglobinemia and possibly human gastric cancer. In farmed areas. intensive agricultural activities have caused a major increase in nitrate loading to groundwater. To determine whether decision makers must take farm-management actions to control the increase of groundwater nitrate concentration and to decide the timing of such actions, it is important to predict groundwater Nitrate levels that would result over time from various farm-management practices. However, the input values such as soil, fertilizer and crop data) used to examine the effects of various farm-management practices on groundwater nitrate level are usually uncertain due to a lack of available information. In this paper. the ease of a community with a nitrate water quality problem is illustrated to examine the effects of various farm-management practices and to show bow to perform, with uncertain information. a time-series analysis on groundwater nitrate levels that would result. from each farm-management practice.

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Ultrathin Window EPMA를 이용한 서울에서의 입자상 물질 분석

  • ;;;R. Van Grieken
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2000.04a
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    • pp.335-336
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    • 2000
  • 도시 대기는 복잡한 성분을 가진 입자상 물질로 이루어져 있는데, 검댕 입자나 비산재(fly ash)등과 같이 일차오염물질과 복잡한 대기 화학반응에 의해 생성되는 이차오염물질이 혼재하고 있기 때문이다. 도시 대기 중의 입자상 물질은 대부분 황산염, 질산염, 암모늄염 입자상 물질과 유기 입자들로 구성되어 있는데, 탄소 입자는 도시의 미세 입자 중 거의 반 정도를 차지한다. (Ro et. el., 2000) 본 연구에서는 서울 대기에서의 입자상 물질에 대한 분석을 EPMA(Electron Probe X-ray Microanalysis)를 이용한 단일 입자 분석법(Single Particle Analysis)을 가지고 행하였다. (중략)

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Review of Asian Oust Data Collected in Busan Area Between 1998 and 2002 (부산지역 황사자료의 고찰-1998-2002년까지의 자료)

  • 유수영;전보경;염해진;최금찬
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2002.11a
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    • pp.294-295
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    • 2002
  • 우리나라는 위도상 중위도 편서풍대에 위치하고 있어 황하유역과 중국 및 몽고사막 등에서 발생한 토양먼지가 매년 3-5월경에 편서풍을 타고 1,500-2,000km 이상의 거리를 이동하는 황사와 같은 대기오염 물질의 장거리 이동현상이 매년 발생하고 있다. 장거리 이동되는 황사의 성상은 발원지에서의 토양성분 이외에도 이동과정 중에서 오염된 지역의 가스상 물질들이 추가되고 가스와 입자의 상호작용에 의해 황산염이나 질산염 등이 많이 생성된다. (중략)

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