• 제목/요약/키워드: groundwater nitrate

검색결과 263건 처리시간 0.026초

영가철 개질 바이오차를 이용한 지하수의 질산성 질소 제거 (Removal of Nitrate from Groundwater using Zero-valent Iron-modified Biochar)

  • 한은영;김혜빈;김종국;신동훈;백기태
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제25권4호
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    • pp.28-34
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    • 2020
  • Nitrate released from chemical fertilizer, animal wastes, and synthetic detergents can cause methemoglobinemia to infants, thus the standard in drinking water is set to 10 mg/L as World Health Organization recommended. In this study, zero-valent iron-modified rice straw biochar was used to reduce and remove nitrate in the aqueous phase. The rice straw biochar was prepared by pyrolyzing the biomass at 700℃ for 3 hours, and the biochar was modified using 1 M Fe(III), and the Fe(III) on the biochar was reduced to zero-valent iron using sodium borohydride. The modified biochar removed nitrate effectively, which removed more than 91% of nitrate. For the synthetic groundwater, the nitrate removal was lowered to 82% due to the presence of other anions.

이온교환 능력을 가진 지지체에 부착된 나노 영가철을 이용한 질산성 질소의 환원과 부산물 제거 (Reduction of Nitrate using Nanoscale Zero-Valent Iron Supported on the Ion-Exchange Resin)

  • 박희수;박용민;조윤성;오수경;강상윤;유경민;이성재;최용수;이상협
    • 상하수도학회지
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    • 제21권6호
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    • pp.679-687
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    • 2007
  • Nanoscale zero valent ion (nZVI) technology is emerging as an innovative method to treat contaminated groundwater. The activity of nZVI is very high due to their high specific surface area, and supporting this material can help to preserve its chemical nature by inhibiting oxidation. In this study, nZVI particles were attached to granular ion-exchange resin through borohydride reduction of ferrous ions, and chemical reduction of nitrate by this material was investigated as a potential technology to remove nitrate from groundwater. The pore structure and physical characteristics were measured and the change by the adsorption of nZVI was discussed. Batch tests were conducted to characterize the activity of the supported nZVI and the results indicated that the degradation of nitrate appeared to be a pseudo first-order reaction with the observed reaction rate constant of $0.425h^{-1}$ without pH control. The reduction process continued but at a much lower rate with a rate constant of $0.044h^{-1}$, which is likely limited by mass transfer. To assess the effects of other ions commonly found in groundwater, the same experiments were conducted in simulated groundwater with the same level of nitrate. In simulated groundwater, the rate constant was $0.078h^{-1}$ and it also reduced to $0.0021h^{-1}$ in later phase. The major limitation in application of ZVI for nitrate reduction is ammonium production. By using a support material with ion exchange capacity, the problem of ammonium release can be solved. The ammonium was not detected in the batch test, even when other competitive ions such as calcium and potassium existed.

제주도 지하수 관정 내 질산성질소 오염도 평가 (Evaluation of Nitrate Nitrogen Contamination Degree in Groundwater Wells, Jeju Island)

  • 송성호;황보동준;장기영;김진성;서상기;양원석
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권4호
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    • pp.8-19
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    • 2021
  • In this study, the evaluation standard for nitrate nitrogen contamination degree (WELCUP) was established using six factors that influence the groundwater quality in Jeju Island. To do this, weightings, ranges, and ratings were assigned for each factor and the relative possibility of nitrate nitrogen contamination degree was evaluated using WELCUP index for each well. As a result of calculating the WELCUP index using groundwater quality data of 5,112 wells in Jeju Island for 27 years (1993-2019), all 61 wells with the WELCUP index value higher than 100 are distributed in Daejung and Hangyung watershed with relatively large area of farmland in Jeju Island. In particular, as the ratio of private wells is more than 64%, it is necessary that systematic management is needed for private wells in terms of nitrate nitrogen contamination. Consequently, based on the results of applying the WELCUP evaluation standard, it is necessary to select the prioritization of nitrate nitrogen contamination pathways project for groundwater wells in Jeju Island.

MEUF에 의한 질산성 질소 제거에 관한 연구 (Characteristics of Nitrate Removal Using Micellar-enhanced Ultrafiltration)

  • 백기태;이현호;김보경;김호정;양지원
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제8권2호
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    • pp.36-43
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    • 2003
  • 질산성 질소 제거를 위해 미셀 형성을 이용한 한외여과(MEUF)공정의 타당성을 양이온성 계면활성제인 octadecylamine acetate(ODA)와 cetylpyrinidium chloride(CPC)를 사용하여 조사하였다. 3 몰비의 계면활성제를 가지고 최소 80%의 질산성 질소를 제거할 수 있었으며, 10 몰비의 계면활성제로는 98% 이상의 제거율을 얻을 수 있었다. ODA가 CPC 보다 높은 질산성 질소와 계면활성제 제거율을 보였으며, 이는 계면활성제 구조상 ODA의 머리부분이 CPC의 머리부분보다 질산성 질소의 접근이 용이하기 때문이다. MEUF공정은 질산성 질소를 효과적으로 제거할 수 있으며, CPC보다 ODA가 질산성 질소를 제거하기 위해 더 바람직한 계면활성제이다.

탈질조건을 이용한 유류물질 생분해 기초연구

  • 오인석;장순웅;이시진
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 총회 및 춘계학술발표회
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    • pp.368-371
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    • 2003
  • Leaking underground storage tanks are a major source of groundwater contamination by petroleum hydrocarbons. Bioremediation of aromatic hydrocarbons in groundwater and sediments is often limited by dissolved oxygen. Aerobic bioremediation has been highly effective in the remediation of many fuel releases, but Many aromatic hydrocarbons degrade very slowly under anaerobic conditions. Nitrate is a good alternative electron acceptor to oxygen and denitrifying bacteria are commonly found in the subsurface and in association with contaminated aquifer materials. Because nitrate is less expensive and more soluble than oxygen. it may be more economical to restore fuel-contaminated aquifers using nitrate rather than oxygen. This study show that biodegradation of BTEX and MTBE is enhanced by the nitrate-amended microcosms under aerobic/anaerobic conditons. Although aromatic hydrocarbons degrade very slowly under anaerobic conditions. Biodegradaton was observed for all of the test compounds.

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지하수 함양시설 또는 LID시설에서의 질산성질소 오염방지를 위한 농업부산물의 탈질효율 실험연구 (An Experimental Study on Denitrification Efficiency of Agricultural Byproducts for Prevention of Nitrate Contamination from LID or Groundwater Recharge Facilities)

  • 이진원;;이병선;김강주;이규상
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권6호
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    • pp.82-94
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    • 2021
  • Facilities for low impact development (LID) or groundwater recharge have the high potential spreading groundwater nitrate contamination because of the rapid infiltration. This study was initiated to remove nitrate from the waters using agricultural byproducts as organic sources for denitrification during infiltration. As the first step of this purpose, we experimentally tested the denitrifying efficiency of 4 organic materials (pine tree woodchips, cherry leaves, rice straws, and rice hulls) and tried to identify the key factors controlling the efficiency. For this study, we precisely investigated the change of chemical reactions during the experiment by analyzing various geochemical parameters. The result shows that the denitrification efficiency is not simply linked to the availability of the easily decomposable contents in the organic matter. It is found that avoiding the severe pH decrease due to the CO2 generation is the essence to derive the efficient denitrifying conditions when organic matters were used.

동위원소분석을 이용한 질산염의 오염원 추적에 대한 고찰 (A Review on Nitrate Source Identification using Isotope Analysis)

  • 진성욱;이환;김락현;정훈영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제22권1호
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    • pp.1-12
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    • 2017
  • Nitrate ($NO_3^-$), a common surface water and groundwater pollutant, poses a serious environmental problem in regions with intensive agricultural activities and dense population. It is thus important to identify the source of nitrate contamination to better manage water quality. Due to the distinct isotope compositions of nitrate among different origins, the dual isotope analysis (${\delta}^{15}N$ and ${\delta}^{18}O$) of nitrate has been widely applied to track contamination sources. This paper provided the underlying backgrounds in the isotope analysis of nitrate, which included typical ranges of ${\delta}^{15}N$ and ${\delta}^{18}O$ from various nitrate sources, isotope fractionation, the analytical methods used to concentrate nitrate from samples, and the potential limitations of the dual isotope analysis along with the resolutions. To enhance the applicability of the dual isotope analysis as well as increase the ability to interpret field data, this paper also introduced several case studies. Furthermore, other environmental tracers including ${\delta}^{11}B$ and $Cl^-/Br^-$ ratios were discussed to accompany the dual isotope analysis for better assignment of contamination sources even when microbial transformation of nitrate and/or mixing between contaminant plumes occur.

경기도 지역 농경지의 천부 지하수 내 질산염 오염특성과 변화 (Variation in Nitrate Contamination of Shallow Groundwater in a Farmland in Gyeonggi-do, Korea)

  • 이은재;우남칠;이병선;김양빈
    • 자원환경지질
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    • 제41권4호
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    • pp.393-403
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    • 2008
  • 이 연구는 우리나라의 농촌지역에서 유기비료로 살포되는 축산 분뇨가 농경지 지하수의 수질과 오염에 미치는 영향을 시공간적 변화를 중심으로 규명하기 위하여 수행되었다. 연구는 경기도의 한 농경지에서 200길 2월, 4월, 6월, 10월에는 관측정을 통한 지하수위 관측과 함께 지하수질 모니터링을 수행하였다. 그 결과 봄-여름-가을로 이어지는 계절과 축분을 뿌리는 시기에 따라서 지하수의 수질과 오염현상의 변화는 축분을 가장 많이 뿌리는 시기인 4월에 질산성 질소 농도가 가장 높게 나타났다. 그리고 지하수 내 Mn, Fe 등의 농도와 용존 유기물함량(DOC) 등을 모니터링 함으로써 천부 지하수의 산화-환원상태와 대수층 내 미생물의 활성도가 연구부지 지하수 내 질산성 질소의 농도변화에 가장 중요한 요인으로 작용하는 것으로 유추할 수 있다.

지하수 수질측정망 자료를 활용한 시간적 오염도 추이변화 분석 (Temporal Trend Analysis of Contamination using Groundwater Quality Monitoring Network Data)

  • 방사라;유근제;박준홍
    • 한국물환경학회지
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    • 제27권1호
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    • pp.120-128
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    • 2011
  • Korea Groundwater Quality Monitoring Network is a database of annual groundwater quality survey results to prevent groundwater pollution. We estimated contamination index (CI) values for each type of land use, and analyzed temporal trends of pollutant concentration data in the Groundwater Quality Monitoring Network from 2001 to 2009. Among the pollutants considered in the database, the concentrations of nitrate and chloride were higher than their standards. In the case of nitrate, recreation parks, golf courses and general waste dumping regions showed increasing trends according to linear regression analysis, whereas industrial complexes and residential regions of urgan and recreation parks showed increasing trends in the chloride concentration data. According to multiple variable linear regression analysis, EC, pH and topography were major factors influencing CI values. These results suggest that groundwater with a high CI value and increasing trend is vulnerable for potential contamination, which requires more careful groundwater pollution control.

Temporal Variations in Isotope Ratios and Concentrations of Nitrate-nitrogen in Groundwater as Affected by Chemical Fertilizer and Livestock Manure

  • Yoo, Sun-Ho;Choi, Woo-Jung;Han, Gwang Hyun;Park, Jung-Geun;Lee, Sang-Mo;Jin, Sheng-ai
    • Journal of Applied Biological Chemistry
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    • 제42권4호
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    • pp.186-190
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    • 1999
  • Isotope ratio ($^{15}N/^{14}N$) and nitrate-nitrogen concentration in groundwater were measured to investigate the effect of chemical fertilizer and livestock manure on temporal variations in nitrate-nitrogen concentration and to estimate the contribution of fertilizer and manure to groundwater contamination by nitrate. Four study wells from a rural area in Kyonggi province were selected. One well was located on an upper site from a livestock feedlot, and the others were situated at lower sites from the feedlot. The ${\delta}^{15}N$ values were analyzed by a stable isotope ratio mass spectrometer (Micromass, VG Optima IRMS). Reproducibility of the method and precision of the mass spectrometer were below 1.0 and 0.1‰, respectively Even though study wells were located at the same area, nitrate-nitrogen concentrations and ${\delta}^{15}N$ values differed and fluctuated during the sampling period. The ${\delta}^{15}N$ values of well located at upper site from the feedlot were extremely variable (-1.48~20.80‰). The ranges of ${\delta}^{15}N$ value of three wells situated at lower sites from the feedlot were 11.83~20.73 (ave. 16.11), 8.90~11.73 (ave.11.01), and 5.29~12.73‰ (ave. 8.21‰) with increasing distance from the feedlot. The average values of contribution proportion of nitrogen derived from livestock manure to nitrate-nitrogen in groundwater were 79% for the well closet to the feedlot, 44% for the well most distant from the feedlot, and 56% for the well in between the two wells.

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