• 제목/요약/키워드: Trihalomethanes

검색결과 94건 처리시간 0.025초

이산화염소($CIO_2$)의 상수정수처리 효과에 관하여 (Effect of Chlorine Dioxide on the treatment of Drinking Water Supply)

  • 정용;이보영
    • 수도
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    • 통권44호
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    • pp.6-12
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    • 1988
  • This study was performed to measure the elimination effects of chlorine dioxide on phenol compounds, trihalomethanes (THMs) and algae in drinking water supply. The raw and chlorinated water were treated with 0.5ppm of chlorine dioxide. The phenols contained 0.052mg/1, 0.019mg/1 of raw and treatedwater was absolutely destroyed. The THMs was reduced to 50-60% of the concentration and the algae was inhibited to about 50% of the growth.

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수영장 욕조수의 소독방법에 따른 THMs 발생 특성 (The Characteristics of THMs Production by Different Disinfection Methods in Swimming Pools Water)

  • 이진;하광태;조경덕
    • 한국환경보건학회지
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    • 제32권2호
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    • pp.171-178
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    • 2006
  • The objectives of this study were to investigate the formation of trihalomethanes(THMs) and to compare the concentration level of THMs of swimming pools water by different disinfection methods such as chlorine, ozone-chlorine, and salt brine electrolysis generator (SBEG). The concentration of chloroform was the highest in the chlorine system, and the SBEG was the highest in the production of bromodichloromethane (BDCM), dibromochloromethane (DBCM) and bromoform. The average concentration of total trihalomethanes (TTHMs) in three disinfection systems were $64.5{\pm}27.4mg/l(SBEG),\;43.8{\pm}22.3mg/l(chlorine)$, and $30.6{\pm}16.1mg/l(ozone-chlorine)$, respectively. In chlorine and ozone-chlorine disinfection system, chloroform concentration was highest, followed by BDCN, then DBCM. In the SBEG, TTHMs was composed of 42% of chloroform, 28.9% of bromoform, 15.1% of BDCM and 14% of DBCM, respectively. The strongest correlation was obtained in the levels of chloroform and TTHMs in chlorine, and ozone-chlorine disinfection systems from both indoor and outdoor swimming pools ($r=0.989{\sim}0.999$, p<0.01). In the SBEG, the levels of BDCM and TTHMs showed a good correlation (r=0.913, p<0.01). In chlorine and ozone-chlorine disinfection systems at indoor swimming pools, pH, TOC and $KMnO_4$ consumption showed strong correlation with chloroform and TTHMs concentrations (p<0.01). In the SBEG, pH and TOC were also strongly correlated with chloroform (p<0.01). pH and TTHMs were correlated as well (p<0.05).

갈수기 정수장운영관리 사례 - 갈수기 pH저감제(황산)투입에 의한 정수처리효율 향상 (Improvement of Water Treatment Efficiency by pH Decreasing Agent (H2SO4) for Droughty Seasons)

  • 가길현;김윤용;이준호;안치화;한인섭;민병대
    • 한국물환경학회지
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    • 제24권4호
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    • pp.415-422
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    • 2008
  • Drinking water treatment is enhanced by coagulant dosages and chlorine injection because of pH increase in raw water in droughty seasons such as spring and fall. But water quality deterioration is occurred by increase in residual aluminium and disinfection by-products. Coagulation process can be used to control natural organic matter (NOM) during water treatment. The effect of coagulation process appeared to depend on the pH of water rather than coagulant dosages. In this study, for water treatment in high pH season $H_2SO_4$ was applied for pH adjustment at full scale. Before and after pH adjustment by $H_2SO_4$ injection, water quality of drinking water was evaluate. In the result of investigation of total organic carbon (TOC) removal in high pH season, TOC was removed approximately 30~40%, which showed decrease in water treatment efficiency. Also, it is increased both particle numbers and residual Al concentration in the water. After $H_2SO_4$ injection for adjustment to pH<7.5 in settled water, treated water turbidity decreased in 0.047 NTU from 0.059 NTU, and particle numbers of filtered water decreased in 20/mL from 90/mL. On the other side, TOC removal efficiency increased in approximately 10% after adjustment of pH. In the result of decrease in pH in raw water through more coagulants and prechlorine without $H_2SO_4$ injection, trihalomethanes (THMs) concentration increased in $16{\mu}g/L$ from $8{\mu}g/L$.

상수의 염소처리시 생성되는 소독부산물 중 Haloacetic acid류의 생성능에 관한 연구 - 일부 상수원수를 대상으로 - (A Study on Haloacetic Acids Formation Potentials by Chlorination in Drinking Water)

  • 정용;신동천;임영욱;김준성;박연신
    • Environmental Analysis Health and Toxicology
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    • 제12권3_4호
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    • pp.23-29
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    • 1997
  • The main reason of applying chlorination is to sterilize microbes existing in the drinking water treatment. But chlorination could lead to the formation of disinfection by-products (DBPs) by the reaction of free chlorine with humic substance in the water. Especially the DBPs including trihalomethanes (THMs), haloacetic acids (HAAs), haloacetonitriles (HANs), and haloketones (HKs) exist in the tap water. The US environmental protection agency (US EPA) defines that trihalomethanes, dichloroacetic acid, trichloroacetic acid, and dichloroacetonitrile among DBPs are probable/possible human carcinogens. US EPA suggests maximum contaminant levels (MCLs) for THMs (80$\mu$g/L) and HAAs (60$\mu$g/L) in drinking water. In Korea, THMs in drinking water has been surveyed but DBPs in general has not been studied in drinking water practically. Therefore only THMs have been regulating as criteria compounds since 1990 but neither HAAs nor HANs. Researches on HAAs are yet to be found. HAA formation potentials(HAAFPs) have not been practiced. HAAs depends on the characteristics of water sources by chlorination. In this study, HAAFPs from three distinct sources were investigated by laboratory chlorination experiments. This study was performed to measure the level of HAAs in drinking water in Seoul area. At April 1996, after collecting the raw waters from the three sites with the different properties, the water samples were chlorinated at various conditions(pH 5.5, pH 7.0 and without pH adjustment) in the state of raw water to have 0. 5mg/L of residual chlorine concentration. And the raw water, treated water, and tap water of water treatment were collected to measure the HAAs concentration. The quantitative analysis of HAAs was conducted by US EPA methods.

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차등 3차원 형광 여기-방출 매트릭스를 이용한 다양한 기원의 용존 유기물질 트리할로메탄 생성능 예측 (Prediction of Trihalomethanes Formation Potential of Dissolved Organic Matter with Various Sources Using Differential Fluorescence 3D-Excitation-Emission Matrix (EEM))

  • 배경록;허진
    • 한국물환경학회지
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    • 제38권2호
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    • pp.63-71
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    • 2022
  • This study aimed to maximize the potential of fluorescence 3D excitation-emission matrix (EEM) for predicting the trihalomethane formation potential (THMFP) of DOM with various sources. Fluorescence spectroscopy is a useful tool for characterizing dissolved organic matter (DOM). In this study, differential spectroscopy was applied to EEM for the prediction of THMFP, in which the difference between the EEM before and after chlorination was taken into account to obtain the differential EEM (DEEM). For characterization of the original EEM or the DEEM, the maximum intensities of several different fluorescence regions in EEM, fluorescence EEM regional integration (FRI), and humification index (HIX) were calculated and used for the surrogates for THMFP prediction. After chlorination, the fluorescence intensity decreased by 77% to 93%. In leaf-derived and effluent DOM, there was a significant decrease in the protein-like peak, while a more pronounced decrease was observed in the humic-like peak of river DOM. In general, leaf-derived and effluent DOM exhibited a relatively lower THMFP than the river DOM. Our results were consistent with the high correlations between humic-like fluorescence and THMFP previously reported. In this study, HIX (r= 0.815, p<0.001), FRI region V (r=0.727, p<0.001), humic-like peak (r= 0.827, p<0.001) from DEEM presented very high correlations with THMF P. When the humic-like peak intensity was converted to a logarithmic scale, a higher correlation was obtained (r= 0.928, p<0.001). This finding suggests that the humic-like peak in DEEM can serve as a universal predictor for THM formation of DOM with various origins.

정수처리에서 염소 처리시 요오드계 트리할로메탄류 생성에 영향을 미치는 인자들 (Factors Affecting the Formation of Iodo-Trihalomethanes during Chlorination in Drinking Water Treatment)

  • 손희종;염훈식;김경아;송미정;최진택
    • 대한환경공학회지
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    • 제36권8호
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    • pp.542-548
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    • 2014
  • 본 연구에서는 염소처리시 요오드계 트리할로메탄(iodo-trihalomethanes, I-THMs)의 생성에 영향을 미치는 인자들을 조사하였다. 염소를 소독제로 사용하여 염소 투입농도, 수온, pH, 브롬이온과 요오드이온 농도, 염소 접촉시간, 암모니아성 질소농도 및 용존 유기물질의 특성 변화에 따른 I-THMs 6종에 대한 생성특성을 조사하였다. 수중의 요오드이온과 브롬이온의 농도가 증가할수록 I-THMs의 생성농도가 증가하였으며, 염소 투입농도 및 수온에 따른 I-THMs 생성에서는 염소 투입농도 및 수온 상승에 비례하여 I-THMs 생성농도도 증가하다가 염소 투입농도 3 mg/L 및 수온 $30^{\circ}C$ 이상의 조건에서는 오히려 I-THMs 생성농도가 감소하였다. 또한, 시료수의 pH가 상승할수록 I-THMs의 생성농도가 증가하였다. 수중의 $NH{_4}{^+}-N$ 농도가 증가할수록 염소와 반응하여 생성된 클로라민에 의해 I-THMs 생성농도가 증가하였다. 하수처리장 방류수, 휴믹산 조제수, 조류유래 유기물질 함유수 및 4개의 낙동강 시료수(고령, 매리, 하구 및 진천천)와 같은 7개의 시료수의 유기물질과 I-THMs와의 반응성을 조사한 결과, 하수처리장 최종방류수가 I-THMs와의 반응성($12.31{\mu}g/mg$)이 가장 높았고, 다음으로 휴믹산 시료수($4.96{\mu}g/mg$)로 나타났고, 조류유래 유기물질이 가장 낮은 결과($0.99{\mu}g/mg$)를 나타내었다. 또한, $SUVA_{254}$값과 I-THMs 반응성과의 상관성을 평가한 결과에서 상관계수($r^2$)가 0.002로 매우 낮게 나타나 $SUVA_{254}$값과 I-THMs 생성과는 연관성을 찾기가 어려웠다.

정수처리공정의 THMs 생성과 농도변화에 관한 연구 (A Study on Formation and Concentration of Trihalomethanes in Water Treatment Process)

  • 조덕희;안승구
    • 한국환경보건학회지
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    • 제23권2호
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    • pp.28-34
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    • 1997
  • This study was carried out to investigate the effects of prechlorination and algae growth on THMs generation. The sample water obtained from Paldang Dam which is a main source of raw water for the Seoul metropolitan area. THMs concentration in the sample water was investigated in water treatment process prechlorifiation, chemical coagulation, and sand filtration. And also, THMs concentration were analyzed in the water which cultured algae in laboratory. The results were as follows 1. The THMs concentration produced by prechlorination unit process were increased in control (not purified) but decreased in process of purification. 2. The THMs concertration can reduce by increasing the number of cleaning filters. 3. The main precursor in raw water for the THMs generation was supplied by algae growth. So as to reduce the THMs concentration in water supplying system, it is the best method to manage algae growth in water body of Paldang reservoir.

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Application of membrane distillation process for tap water purification

  • Gryta, Marek
    • Membrane and Water Treatment
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    • 제1권1호
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    • pp.1-12
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    • 2010
  • Membrane distillation process was used for purification of pre-treated natural water (tap water). The rejection of inorganic and organic compounds in this process was investigated. The obtained rejection of inorganic solutes was closed to 100%, but the volatile organic compounds (VOCs) diffused through the membrane together with water vapour. The content of trihalomethanes (THMs) in the obtained distillate was two-three fold higher than that in the feed, therefore, the rejection of the total organic compounds present in the tap water was reduced to a level of 98%. The intensive membranes scaling was observed during the water separation. The morphology and composition of the fouling layer was studied using scanning electron microscopy coupled with energy dispersion spectrometry. The influence of thermal water pre-treatment performed in a heat exchanger followed by filtration on the MD process effectiveness was evaluated. This procedure caused that significantly smaller amounts of $CaCO_3$ crystallites were deposited on the membrane surface, and a high permeate flux was maintained over a period of 160 h.

Ion Exchange Processes: A Potential Approach for the Removal of Natural Organic Matter from Water

  • Khan, Mohd Danish;Ahn, Ji Whan
    • 에너지공학
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    • 제27권2호
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    • pp.70-80
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    • 2018
  • Natural organic matter (NOM) is among the most common pollutant in underground and surface waters. It comprises of humic substances which contains anionic macromolecules such as aliphatic and aromatic compounds of a wide range of molecular weights along with carboxylic, phenolic functional groups. Although the concentration of NOM in potable water usually lies in the range of 1-10 ppm. Conventional treatment technologies are facing challenge in removing NOM effectively. The main issues are concentrated to low efficiency, membrane fouling, and harmful by-product formation. Ion-exchangers can be considered as an efficient and economic pretreatment technology for the removal of NOM. It not only consumes less time for pretreatment but also resist formation of trihalomethanes (THMs), an unwanted harmful by-product. This article provides a comprehensive review of ion exchange processes for the removal of NOM.

수중 휘발성 유기물질의 분석에 관한 연구 (Study on Analysis of Volatile Organic Compounds (VOCs) in Water)

  • 전옥경;서병태;이정자;이덕행
    • 한국환경보건학회지
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    • 제19권2호
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    • pp.16-22
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    • 1993
  • In recent years, great concern for the improvement of drinking water quality has been arising due to the contamination of the raw and treated water. So trihalomethanes (THMs) and some other volatile organic compounds (VOCs), potential carcinogenic substances, rendered the government to take some countermeasurements for clean water service in the dimension of public health. In this study, we used liquid-liquid extraction method as a rapid simple method for determination of VOCs through eluation with n-Pentane in water. The aim with the present study has been to determine the changes of recovery and reproducibility of the method under the various conditions in extraction solvents, solvent ratio and extraction time, and to observe the concentrations under the various temperature and pH during storage.

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