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1

한강상수원수로부터 분류된 용존유기물질의 특성

김용환, 김현철

한국도시환경학회 한국도시환경학회지 VOL.3 No.1 통권 제5호 2003.08 pp.53-63

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4,200원

2

상수중 Trihalomethanes, 농약, 중금속 및 합성세제의 효율적인 제거를 위한 수처리 방법 제 1보. -상수중 Trihalomethanes의 효율적인 제거방법-

박종우, 김장억

[Kisti 연계] 한국응용생명화학회 Journal of the Korean Society for Applied Biological Chemistry Vol.37 No.6 1994 pp.472-479

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상수처리시 토양현탁액과 같은 유기물이 있을 때 산화제, 응집제 및 흡착제의 종류를 달리하고 처리방법을 변경시켰을 때 THMs 및 유기물의 제거정도를 조사하였다. 산화제로 처리된 $ClO_2$가 다른 산화제인 $Cl_2,\;NH_2Cl,\;KMnO_2$ 및 $O_3$ 보다 THMs 생성억제와 THMs의 전구물질인 유기물을 제거시키는데 가장 효율적이었다. 산화제$(Cl_2,\;NH_2Cl,\;KMnO_4,\;ClO_2,\;O_3)$를 응집 이후에 처리하였을 때 유기물의 양은 거의 변화가 없었으나 THMs의 생성량은 응집 이전 처리보다 약 $36.7{\sim}8.2%$ 정도 감소하였다. 수중 유기물을 응집 제거시키기 위하여 응집제로 alum과 ferric sulfate를 처리하였을 때 응집 효율은 유기물의 분자량 분포에 따라 상이하게 나타났다. THMs 제거 및 생성 억제를 위한 활성탄의 처리는 여과 이후의 처리가 산화제 처리 이전의 활성탄 처리보다 효과적이었다.

This study was conducted to determine the effective removal method of THMs and humic material in drinking water when the doses of oxidants, coagulants, and activated carbon, and the points of oxidants treatment were changed in the drinking water treatment process. The inhibition of THMs formation and the removal of humic matter were more effectively achieved by $ClO_2$ than by other oxidants, $Cl_2,\;NH_2Cl,\;KMnO_4\;and\;O_3$. By changing the point of oxidant treatment, the formation of THMs was reduced by about 36.7 to 8.2% on treatment after coagulation, but the content of humic matter was not affected. The coagulation efficiency of alum and ferric sulfate to coagulate organic materials in water was affected by the molecular weight of humic matter in drinking water. The treatment of activated carbon after filtration was found to be more effective than that before oxidation in inhibiting THMs formation and removing THMs.

3

정수처리공정별 THMs 발생특성과 저감방안에 대한 연구

가길현, 배민호, 이준호, 안치화, 한인섭, 민병대

[Kisti 연계] 대한환경공학회 대한환경공학회지 Vol.30 No.7 2008 pp.721-728

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정수처리과정 중 염소처리로 발생되는 소독부산물(DBPs) 발생현황을 파악하고 저감방안을 제시하기 위해 대표적인 염소소독부산물인 트리할로메탄(THMs)의 공정별 발생현황을 조사하였다. 또한, 계절별 수질별 영향인자와의 상관관계를 분석하고, 공정에서 전 염소 다단투입을 통하여 THMs 생성현황을 파악하고, 원수 수질에 따라 THMs을 저감시킬 수 있는 최적의 운영방안을 고찰하고자 하였다. Y 정수센터는 취수장과 착수정간의 도수시간이 평균 10시간이 소요되어 취수장에서 전염소 처리 시 염소와 THMs 전구물질간의 충분한 반응시간을 제공함으로써, THMs 발생을 억제하는데 한계를 가지고 있다. 따라서, 도수관로상의 THMs 생성을 억제하고 염소 과잉투입을 방지하기 위하여 전염소를 취수장과 착수정에 동시에 투입하여 정수중 THMs 발생을 저감시키고자 하였다. 계절별 정수의 THMs 발생량은 저수온기(겨울철)에 0.015 mg/L 이하로 적게 생성되었고, 고수온기(여름철)에는 평균 0.021 mg/L 이상 생성되어 수온상승에 따라 증가하였다. 공정별 THMs 발생량은 전염소 처리 후 착수정 원수에서 평균 0.013 mg/L, 응집/침전/여과 공정에서 0.014 mg/L, 후염소 처리 후 정수에서 평균 0.016 mg/L로 정수처리공정 시 착수정원수에서 대부분의 THMs이 발생하였다. 정수처리 공정에서 트리할로메탄생성능(THMFP)은 응집 침전공정 후 42.7%가 제거되었고, 여과공정 후 약 50%가 제거되어 공정에서 TOC 제거율과 비슷한 추세를 보였다. 전염소 다단투입은 취수장과 착수정에 염소를 분할하여 주입함으로써 유기물질과 염소와의 접촉시간(T) 및 농도(C)를 감소시키고, 염소주입량을 최적화하여 도수관로에서 생성되는 THMs을 억제시키고 염소사용량을 저감시킬 수 있었다. 수온이 높은 하절기에 전염소 다단 투입을 실시한 결과, 정수에서 THMs 농도는 평균 0.013 mg/L이 생성되어 취수장 단독 전염소 처리 시기에 발생된 정수 THMs 농도 대비 약 50%를 저감시킬 수 있었다.

DBPs(Disinfection By-Products) are most formed through the reactions between chlorine and NOM(Natural Organic Matter) in water treatment. In this study, occurrence of DBPs including THMs(Trihalomethanes) is evaluated. Also, influencing factors by the seasons and raw water quality were investigated for correlation among them and the characteristics of THMs formation by prechlorination process. This study investigated the operation condition for THMs removal depending on raw water quality. Water treatment plant from intake station to gauging well flows for about 10 hours in Y Water Supply Office. It is limited to control of THMs formation because of excessive reaction time between chlorine and THMs precursors in the intake station. Therefore, as multi-points prechlorination from intake station to gauging well, THMs formation was decreased in the water treatment, and it was willing to prevent overdosage of chlorine. The concentration of THMs was 0.021 mg/L in the summer, 0.015 mg/L in the winter, respectively. Also, THMs formation showed that 0.013 mg/L in the water of gauging well after prechlorination, 0.014 mg/L in the flocculation/sedimentation/filtration, 0.016 mg/L in the water after postchlorination, respectively. THMFP(Trihalomethane Formation Potential) removed 42.7% and 50% through the flocculation/sedimentation and filtration, respectively, and it is similar TOC removal efficiency. In this study, multi-points prechlorination from intake station to gauging well decreases in contact time and concencrations of NOM and chlorine. Also, it decreases in THMs and amount of chlorine uesd. In the result of multi-points prechlorination in the summer, the concentration of THMs was 0.013mg/L in the treated water. In view of these facts, THMs formation can be decreased approximately 50%.

4

배급수계통에서 잔류염소 및 THMs 분포 예측에 관한 연구

안재찬, 이수원, 노방식, 최영준, 최재호, 김효일, 박태준, 박창민, 박현, 구자용

[Kisti 연계] 대한환경공학회 대한환경공학회지 Vol.29 No.6 2007 pp.706-714

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본 연구에서는 배급수계통에서 잔류염소와 THMs의 분포를 예측하는 방안을 제시하였다. 잔류염소와 THMs의 등의 수질변화에 대해 현장조사를 실시하였고, 수체와 관벽에 대한 잔류염소 감소계수와 THMs의 생성계수를 산출하여 관망해석에 의한 수질모델링에 적용하였다. 병실험을 통해 잔류염소 병렬 1차 수체 반응계수를 구하고, 5개 관벽 감소 모델을 비교 평가하여 1차 관벽 감소계수 산출하고 적용했을 때 잔류염소 현장 측정값과 관망 수질모델링에 의한 예측간의 평균절대오차 및 평균제곱근오차가 각각 0.03, 0.037 mg/L로 가장 작았다. 또한 병실험에 의한 THMs생성량을 비선형 회귀분석으로 1차 생성계수를 구하고 현장 측정값과 비교하였다. 그 결과, 9월의 현장 측정값과 예측값의 결정계수 $R^2$는 0.98, 11월에는 0.82로 예측이 가능하였다.

This study suggested a method for prediction of residual chlorine and THMs in water distribution system by measurement of residual chlorine, THMs, and other parameters, estimation of chlorine decay coefficients and THM formation coefficients, and simulation of water qualities using pipe network analysis. Bulk decay coefficients of parallel first-order were obtained by bottle tests, and pipe wall decay coefficients of first-order were estimated through evaluation of 5 models, which showed the lowest values of 0.03 for MAE(mean absolute error) and 0.037 MAE in comparison with the observed in field. And bottle tests were conducted to model first-order reaction of THM formation by nonlinear least square regression and the resultant coefficients were compared with the observed in field. As a result, the coefficients of determination$(R^2)$ for the observed and the predicted values were 0.98 in September and 0.82 in November, and the formation of THMs was predicted by modeling.

5

THMs, HAAs의 종분포

김진근

[Kisti 연계] 대한환경공학회 대한환경공학회지 Vol.28 No.11 2006 pp.1135-1140

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국내 정수장에서 염소소독시 발생하는 소독부산물인 트리할로메탄(THMs), 할로아세틱에시드(HAAs)의 발생농도와 각각의 종별 분포현황을 조사하였다. 조사대상은 일반적인 정수처리공정으로 구성된 한강, 금강, 섬진강, 낙동강 수계의 1개 정수장씩 총 4개소였다. THMs의 발생농도는 평균 26.9 ppb, 최대 46.7 ppb, 최소 11.0 ppb였으며, $HAA_5$의 발생농도는 평균 25.4 ppb, 최대 57.1 ppb, 최소 9.7 ppb였다. 계절적으로는 동절기에 농도가 낮았고 하절기에 높았다. THMs의 종별 분포를 조사한 결과 클로로포름의 비율이 평균 77%로 가장 높았고 다음으로는 브로모디클로로메탄(20%)이 높게 검출되었으며, 브로모포름의 농도는 정량한계 미만이었다. $HAA_5$의 경우 디클로로아세틱에시드(DCAA)와 트리클로로아세틱에시드(TCAA)의 합이 $HAA_5$의 97%를 차지하는 것으로 조사되었다. 그러나 한강수계의 경우는 이 비율이 평균 90%로 다소 낮았으며, 특히 겨울철에 비율이 가장 낮았다. 한편, 하절기를 제외하고는 DCAA가 TCAA보다 높은 것으로 조사되었다.

Concentration and speciation of trihalomethanes(THMs) and haloacetic acids(HAAs) that can be created during chlorine disinfection as disinfection by-products(DBPs) in Korean water treatment plants(WTPs) were investigated. 4 WTPs that adopted conventional water treatment processes were chosen for investigation and each represented a typical WTP on the Han, Keum, Sumjin and Nakdong Rivers. The average concentration of THMs was 26.9 ppb, and the maximum and minimum concentrations were 47.6 ppb and 11.0 ppb respectively, while the average concentration of HAAs was 25.4 ppb, and the maximum and minimum concentrations were 57.1 ppb and 9.7 ppb respectively. DBPs concentration was lower in the winter than the summer. The major species of THMs was chloroform and its average percentage was 77%, and the second highest was bromodichloromethane(20%), while the concentration of bromoform was below detection limits. The sum of dichloroacetic acid(DCAA) and trichloroacetic acid(TCAA) was 97% of $HAA_5 $ on average base. But its percentage was 90% in the Han River WTP, especially it was the lowest during the winter. On the other hand, the concentration of DCAA was higher than TCAA except during the summer.

6

서울시 정수장의 THMs 생성과 관련된 한강 원수의 주요 수질 특성 조사

이진효, 이기선, 황동연, 이만호, 한선희, 박용상, 이목영, 이진숙, 구자용

[Kisti 연계] 대한환경공학회 대한환경공학회지 Vol.33 No.12 2011 pp.886-892

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2007년에서 2009년까지 3년간 서울시 급수과정별 시설에서의 THMs 생성특성 조사에서, 정수장 이후의 급수과정별 시설 즉, 배수지 전 후, 유입부, 가압장, 관말지역으로 갈수록 THMs 생성량은 증가하였지만 그 증가량은 전염소처리 및 후염소처리 후 정수지 체류과정에서 이미 생성된 THMs량에 비해 작은 것으로 나타났다. 따라서 본 연구에서는 서울시 6개 정수장의 THMs 생성 특성 및 영향인자인 정수장 송수잔류염소, 한강 원수의 여러 수질항목 특성을 조사하였다. 6개 정수장 전체자료(n = 72)에 대하여 THMs와 다른 항목간의 상관성 분석결과, 수온(r = 0.539~0.846), 탁도(r = 0.421~0.863)는 양(+)의 상관성을, pH (r = -0.613~ -0.800), 조류(r = -0.582~ -0.901)는 음(-)의 상관성을 갖는 것으로 나타났으며, 원수의 $NH_3-N$는 THMs와의 상관성이 크게 없는 것으로 나타났다. 또한 요인분석을 실시한 결과, 전반적으로 물질대사 및 유기물 관련 요인 $X_1$ (pH, BOD, 조류), 계절적 자연적 변동요인 $X_2$(수온, 탁도)가 다른 항목들에 비해 정수장에서의 THMs 생성에 영향을 미치는 것으로 나타났다. 또한 THMs에 대한 다중회귀분석을 실시한 결과, 일부 수계를 제외한 다른 모든 수계에서 회귀식의 유의성을 확인할 수 있었다.

In a study on THMs formation at the distribution facilities in Seoul water supply for past 3 years from 2007 to 2009, THMs production was increased from inlet to outlet during the process in water treatment plant. However, such increased THMs amount was very small compared to THMs production formed after pre-chlorination and post chlorination. Accordingly, this study is aimed to investigate the characteristics of water quality parameters of Han River related to THMs formation in 6 water treatment plants in Seoul. The results showed that THMs and other factors such as temperature (r = 0.539~0.846) and turbidity (r = 0.421~0.863) had positive correlation while THMs had negative correlation with pH (r = -0.613~-0.800) and algae (r = -0.582~-0.901). There is no correlation between THMs and $NH_3-N$. According to the factor analysis, generally metabolite and organic matter factor $X_1$ (pH, BOD, algae), and seasonal and natural factor $X_2$ (temperature, turbidity) played an important role in the formation of THMs. Multiple regression analysis for THMs formation showed significance of regression appeared in most water systems.

7

대구수돗물의 THMs 생성특성

배기수, 백윤경, 류기성, 신상희, 이찬형

[Kisti 연계] 대한환경공학회 대한환경공학회지 Vol.33 No.12 2011 pp.893-899

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정수처리공정별 THMs 현황과 영향인자와의 상관성 등 생성특성을 분석하고 저감할 수 있는 운영방안을 연구하였다. M정수장의 처리공정은 전염소-응집-침전-여과-오존-활성탄-후염소로 구성되어 있다. 공정별 THMs 농도는 응집침전여과의 기본공정에서 92~93%가 생성되어 전염소처리공정이 주된 영향을 미치는 것으로 조사되었다. THMs 생성과 원수수온, $KMnO_4$소비량의 결정계수는 0.80, 0.72로 높게 나타났으며 정수장에서는 원수수온과 $KMnO_4$소비량으로 생성농도를 예측하는 것이 효율적이라 판단된다. 중염소처리를 한 경우 정수 THMs이 전염소처리의 48% 수준으로 나타나, 염소 주입지점만 변경하는 중염소 처리가 THMs 저감에 유용한 방식으로 판단된다. 전구물질 제거를 위한 분말 활성탄 실험에서는 전염소 앞단에 주입하는 경우에 THMs 생성이 줄었다. 생성된 THMs 제거에는 에어스트리핑 방법이 효과가 있었다.

The occurrence of THMs, the characteristics of THMs formation and removal of THMs were investigated. The treatment train of M plant consists of prechlorination, flocculation, sedimentation, filtration, ozonation, activated carbon and postchlorination. The study of THM formation indicated that about 92% of the THMs were formed in the flocculation/sedimentation/filtration process which affected by prechlorination. The formation of THMs was highly correlated to $KMnO_4$ consumption and water temperature in raw water. The regression model had showed 0.72~0.80 of determination coefficient so it could be used to predict the amount of THMs formation in finished water. Compared to the prechlorination process, the THMs formation was reduced in interchlorination process. With the addition of PAC, fewer THMs were formed in PAC-chlorination process than in chlorination-PAC process. Our results showed that air stripping could be used to remove the existing THMs.

8

J 정수장의 하절기 THMs 생성현황과 분말활성탄 처리에 의한 저감효과

황갑수, 이장훈

[Kisti 연계] 한국환경보건학회 한국환경보건학회지 Vol.25 No.3 1999 pp.1-6

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This study was conducted to survey trihalomethane(THMs) levels in finished water of J water treatment plant and examine its reduction by powder activated carbon(PAC) treatment. Samples were collected weekly based and head-space technique was employed to determine THMs levels by G.C-ECD. THMs levels in finished waters were highest in August and showed close relationship with water temperature. All the samples satisfied the drinking water limit(100 ${\mu}$g/l) for THMs. The individual formation rates of THMs were 64.8% for CHCl$_3$, 28.4% for CHCl$_2$BR, 6.5% for CHClBr$_2$ and 0.3% for CHBr$_3$, respectively and showed little monthly difference. The reduction efficiency of THMs formation by PAC treatment was 67% during July and August. Bromine substituents were more efficiently reduced than CHCl$_3$ by PAC.

9

클로라민 소독에 의한 THMs 생성에 관한 연구

김평청, 우달식, 남상호

[Kisti 연계] 대한위생학회 대한위생학회지 Vol.14 No.1 1999 pp.11-16

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This study was performed to investigate THMs formation by chloramination as a secondary disinfection in drinking water distribution system. As the $Cl_2/NH_3-N$ ratio increased from 1:1 to 4:1, the THMs concentration had actually no change in the breakpoint curve of pH 6, 7. At pH 8, THMs level was not augmented at between 1:1 and 5:1. In the $Cl_2/NH_3-N$ ratio of more than 5:1 and 6:1 respectively, THMs level was raised. Only the chloroform of THMs was insignificantly detected by both preformed chloramine and preammoniation applications, which was probably attributed to the stoichiometrically unstable equilibrium in the preparation of chloramine, whereas $CHCl_3$, $CHCl_2Br$ and $CHClBr_2$ of THMs were found in the application of free chlorine. However it turned out that the THMs levels by chloramine was incomparably inferior to that of free chlorine.

10

응집효과에 따른 THMs 제어에 관한 연구

진정숙, 이태관, 박상원

[Kisti 연계] 한국환경과학회 한국환경과학회 학술대회논문집 1998 pp.139-143

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11

정수처리공정의 THMs 생성과 농도변화에 관한 연구

조덕희, 안승구

[Kisti 연계] 한국환경보건학회 한국환경보건학회지 Vol.23 No.2 1997 pp.28-34

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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.

12

강원도 동해안 지역 정수장의 THMs 분포

허인량, 신용건, 박성빈, 이택수, 심태흠

[Kisti 연계] 한국환경보건학회 한국환경보건학회지 Vol.39 No.3 2013 pp.223-229

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Objectives: In an effort to examine the distribution of THMs (Trihalomethane) generated from chlorine disinfection by the drinking water treatment plants located on the east coast region of Gangwon-do, this study surveyed the distribution and concentrations of each component of THMs twice per month for 5 years from 2008 to 2012. Fluctuation pattern in the seasonal generation amount was identified. In addition, the correlation between the concentration of organic substances in water and THMs was assessed, along with stability of purified water quality supplied by the water treatment plants on the east coast by analyzing the composition ratio of each component that constitutes THMs and the detection frequency. Method: The research was done on purified water supplied by 29 water treatment plants in 7 cities and counties (Goseong-gun, Sokcho-si, Yangyang-gun, Gangneung-si, Donghae-si, Samcheok-si, Taebaek-si) located in Gangwon-do on the east coast. Water samples were collected twice a month from 2008 to 2012 and were investigate for chloroform, bromodichloromethane (BDCM), dibromochloromethane (DBCM), and bromoform, based on analysis through Purge-Trap (Tekmar 3000) devices using FID-attached GC (HP 6890, Hewlett Packard). Result: THMs concentration detected at Gangneung-si was 0.0086mg/L, Goseong-gun 0.0019mg/L, Donghae-si 0.0099 mg/L, Samcheok-si 0.0016 mg/L, Sokcho-si 0.0057 mg/L, Yangyang-gun 0.0027 mg/L and Taebaek-si 0.0038 mg/L. As the THMs composition rate, chloroform constitutes 51.4% followed bybromodichloromethane 22.3%, bromoform 15.2% and dibromochloromethane 11.1% respectively. Conclusion: Throughout the entire THMs survey areas and period, the maximum concentration was 0.072mg/L, which did not exceed the water quality standards (0.1 mg/L), and the overall average concentration was very low at 0.0044 mg/L.

13

군산시 호소수에서의 수질특성과 THMs 생성에 관한 연구

황갑수, 김강주, 이영남, 여성구, 김진남

[Kisti 연계] 한국환경보건학회 한국환경보건학회지 Vol.27 No.1 2001 pp.44-50

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This study was carried out to investigate characteristics of water quality and THMs formation in lake-waters at kunsan. Of the parameters examined for water quality, pH, alkalinity, SO$_4$$^{-2}$ and Co- reflected the characteristics according to the origin, geography and water source of lakes while COD, SS, T-P, T-N and chlorophyll-a corelatively reflected well the influence of pollution factors around factors around lakes. The result of water quality analysis showed that most lakes in Kunsan area have the severe eutropnication problem, especially in summer. In lake-waters, THMFP overally continued to increase until 48 hour with the reaction time and THMs formation was largely achieved within 24 hour of the reaction time. The average formation ratio were 68.2% for CHCl$_3$, 23.6% for CHCl$_2$Br, 7.6% for CHClBr$_3$ and 0.6% for CHBr$_3$respectively and much difference depending on the reaction time was not shown. Overally, 96h-THEFP levels in lakes were high during June~September and showed higher tencency in lakes where could be regarded more contaminated on the whole. These results suggest that THMFP may be available for the management of lake-water quality as one if the useful parameters for the general evaluation of contamination. 96h-THEMFP failed to show the strong corelation individually with pH, TOC, COD and chlorphyll-a.

14

군산지역 음용지하수 트리할로메탄(THMs) 생성에 관한 연구

황갑수

[Kisti 연계] 한국환경보건학회 한국환경보건학회지 Vol.26 No.4 2000 pp.122-128

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This study was carried out to survey trihalomethane formation potential(THMFP) levels in drinking underground water and to examine its characteristics in Kunsan area. In drinking underground water, THMFP increased with the lapse of reaction time and 96hr-THMFP was the highest of THMFPs examined. In many cases, 24hr-THMFP, 48hr-THMFP and 96hr-THMFP reflected 2hr-THMFP level due to the largest composition ratio of CHCl$_3$ decreased with the lapse of reaction of CHCl$_3$ among THM individuals. CHCl$_3$ was mostly formed within early 2hour of reaction time, but CHClBr$_2$ and CHBr$_3$ continued their formation until 48 hour. Accordingly, the composition ratio of CHCl$_3$ decreased with the lapse of reaction time while that of total Br derivatives increased. 96hr-THMFPs of drinking underground water in Kunsan area ranged from N.D.(not detected)~98.80 $\mu\textrm{g}$/$\ell$ and, in general, those of western section of Kunsan area, closer to the coast, showed the higher tendency. But, from their large range of variance, it could be considered that THMFPs differ individually even in the same section depending on such factors as the difference of water stream, circumstances of management and so on. All the parameters for water quality examined(pH, KMnO$_4$ consumption;UV$_{254}$ , TOC. Cl$^{[-10]}$ ) showed very week corelation with 96h-THMFP.

15

수영장 욕조수의 소독방법에 따른 THMs 발생 특성

이진, 하광태, 조경덕

[Kisti 연계] 한국환경보건학회 한국환경보건학회지 Vol.32 No.2 2006 pp.171-178

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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).

16

Pilot Scale Assessment of DOC and THMs Removal in Conventional Water Treatment System

Lee, Choong-Dae, Lee, Yoon-Jin

[Kisti 연계] 한국환경과학회 Journal of environmental science international Vol.15 No.9 2006 pp.829-834

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This research aims to investigate the behavior of organic matter that causes bacterial re-growth and the formation of disinfectant by-products such as THM in water treatment, and to optimize conditions for a more efficient and conventional water facility. THM removed 51 % and 12 % through coagulation/sedimentation and filtration using a selected conventional system. In this experiment, the removal ratio of DOC was highest at 68 % when the Gt value was 42,000 and lowest at 41 % when the Gt value was 30,000. 77-84 % of total DOC was removed during coagulation/sedimentation, and 15-23 % was removed during filtration. When Gt values were between 30,000 and 66,000, over 50 % of high molecular matter above 10 K during coagulation/sedimentation was removed. Turbidity removed 98 % when the G1 value was 66,000. As the Gt value increased, the turbidity removal ratio increased. Turbidity removed over 20 % during the filtration process.

17

군산지역 용 . 폐수중의 THMs생성 및 배출에 관한 연구

황갑수, 이영남, 김강주, 여성구, 김진삼

[Kisti 연계] 한국환경보건학회 한국환경보건학회지 Vol.27 No.4 2001 pp.41-46

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Trihalomethane(THMs) levels in drinking tap water, indoor swimming pool water and industrial effluent in Kunsan area were surveyed in this study. During experimental period, the monthly averages of THMs in drinking tap water from Keumkang wide-area supply ranged from 15$\mu\textrm{g}$/ι/to 50 $\mu\textrm{g}$ showing the highest level in summer. 3 indoor swimming pools showed the monthly average levels of THMs formation ranging from 8$\mu\textrm{g}$/ι/to 20$\mu\textrm{g}$/ι and the pool under public management seemed to maintain its water quality more stable than those under private management THMs concentrations in the effluents. discharged from 10 manufacturing companies, ranged from N.D. to 95$\mu\textrm{g}$/ι and it was estimated that the overall THMs level discharged front those manufacturing companies is not high, reflecting the traces recorded for most effluents. The composition ratios of individual THMs for industrial effluents showed a difference from those for drinking water and swimming pool water, along with their wide variations according to the company and relatively high composition ratios of Br substituents.

18

상수원수의 유기물 특성에 따른 염소처리시 THMs 및 HAAs의 생성특성

오순미, 김승현, 이민규, 허미란, 감상규

[Kisti 연계] 한국환경과학회 Journal of environmental science international Vol.15 No.8 2006 pp.785-797

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The formation characteristics of trihalomethanes (THMs) and haloacetic acids (HAAs) were investigated in chlorination of raw water of different organic mallet characteristics. The samples used in this study were hydrophobic (N-HPO) and hydrophilic fraction (N-HPI) (which were concentrated and separated from Nakdong river water), and humic acid (HA) (which is known as a strong hydrophobic acid) as a reference organic matter, the specific UV absorbance (SUVA) of which was 2.19, 1.15 and 7.92, respectively. With increasing chlorine contact time, THMFP and HAAFP (the formation potential of THMs and HAAs) increased, but their increase was different depending on the organic mallet characteristics (i.e., for N-HPI, THMFP was higher than HAAFP, but the inverse result was obtained for N-HPO and HA and the ratio between them was greater for HA), and the mainly formed chemical species were CHCI$_3$ in case of THMs and dichloroacetic acid (DCAA) and trichloroacetic acid (TCAA) in case of HAAs for N-HPO and HA (and the ratios of CHCI$_3$ to total THMs and DCAA and TCAA to total HAAs for HA were higher than those for N-HPO), but for N-HPI, the ratio of brominated THMs was a little higher than that of CHCI$_3$ and the ratio of DCAA and TCAA to total HAAs was lower than that of N-HPO, although they are main chemical species in case of HAAs. Comparing THMFP and HAAFP with the increase in bromide concentration added with those in not adding it, the former increased greatly and its increase was higher for the organic mallet with stronger hydrophobicity, but the latter was lower for N-HPO and N-HPI and was similar for HA. The main chemical species with increasing bromide concentration were CHBt$_3$ in case of THMs regardless of organic matter characteristics, and dibromoacetic acid (DBAA) for N-HPO and N-HPI, DBAA and tribromoacetic acid (TBAA) for HA in case of HAAs. With increasing reaction temperature and pH, THMFP and HAAFP increased for the former, but for the latter, THMFP increased and HAAFP decreased, although the rate of increase or decrease was different with organic mallet characteristics.

19

입상활성탄 주기적 누적충진에 따른 용존유기탄소와 THMs 처리능 평가

손희종, 김상구, 서창동, 염훈식, 류동춘

[Kisti 연계] 대한환경공학회 대한환경공학회지 Vol.39 No.9 2017 pp.513-518

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본 연구는 입상활성탄을 일시에 100% 충진하는 방법과 일회 충진양을 50%, 33%, 20% 및 10%로 나눠서 주기적으로 누적 충진하였을 경우에 대해 THMs과 DOC 처리효율 변화를 비교 평가하기 위해 수행하였다. 일시에 100% 충진하는 방법은 운전 초기에는 THMs와 DOC의 유출농도가 낮았으나 운전기간이 증가할수록 높은 유출수 농도를 나타내었다. 반면 주기적 누적충진 방법을 적용한 경우에는 유출수의 THMs와 DOC 농도가 운전기간 동안 상대적으로 균등하게 유지하였다. THMs 흡착제거에는 주기적 누적 충진법이 전체 충진용량을 일시에 충진하는 방법에 비해 효과적이었으나, 활성탄 공정 유입수 THMs 구성종들 중에서 클로로디브로모메탄이나 브로모포름의 함량이 클로로포름이나 브로모디클로로메탄에 비해 월등히 높은 경우에는 주기적 누적충진법에 비해 전체 충진용량을 일시에 충진하는 방법이 더욱 효과적인 것으로 나타났다. DOC의 제거에서는 충진용량을 일시에 충진하여 운전하는 방법이 주기적 누적충진법에 비해 DOC의 총 흡착량과 유출수의 평균농도 측면에서는 유리하였다. 활성탄 공정 운전기간 동안 THMs와 DOC 제거율의 균등화에는 주기적 누적충진 방법을 적용한 경우가 효과적이었고, 적은 양의 활성탄을 주기적으로 자주 충진하는 방식이 더욱 유리하였다.

In this paper, the removal efficiency of THMs (Trihalomethanes) and DOC (Disolved organic carbon) was compared under different GAC (Granual activated carbon) filling methods. One method is "full filling method" in which column is fully filled with GAC at once and the other is "periodic cumulative method" in which column is partially filled with GAC (10, 20, 33 and 50% of total column volume) and added each ratio during 300 days. The effluent concentration of both THMs and DOC under full filling method was low during the initial period, however, steadily increased with operating time. In the contrast, with periodic cumulative method, it maintained (relatively) evenly during the operating period. Periodic cumulative method was more efficient for removing THMs than full filling method. However, when the ratio of chlorodibromomethane or bromoform among THMs was significantly higher than chloroform and bromodichloromethane, full filling method was more efficient than periodic cumulative method. Full filling method had benefit to total DOC removal and control of average DOC concentration in effluent. Overall, periodic cumulative method is more efficient to equalize the removal efficiency of THMs and DOC, so the more frequent refilling of column with small amount of GAC is more advantageous.

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VOCs 측정 및 VOCs가 인체에 미치는 영향에 관한 연구 - 우리나라 6개 대도시 수도수 중 THMs 분석 -

김미경, 박연신, 정용

[Kisti 연계] 한국분석과학회 분석과학 Vol.13 No.1 2000 pp.55-65

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GC/MSD를 이용하여 우리나라의 대표적인 정수장, 즉 서울 시내의 4개의 정수장과 인천, 대전, 광주, 대구 및 부산의 정수장에서 염소처리하여 각 가정으로 보급되는 수도수를 대상으로 1997년 6월부터 9월까지 가정수에 함유되어 있는 총트리할로메탄(trihalomethanes, THMs)을 US EPA Method 524.2(Purge & Trap/GC/MSD)법을 응용하여 검출 분석하였다. 그 결과 6대 도시에서, chloroform이 THMs의 대부분을 차지하였으며(47.43%~93.11%), bromodichloromethane > chlorodibromomethane > bromoform의 순으로나타났다. 인천, 대전, 광주, 대구 및 부산은 chloroform을 제외한 나머지 물질 즉, bromodichloromethane, chlorodibromomethane 및 bromoform의 함유량이 서울보다 높게 나타났다. 그러나 6월과 9월 모두 전 지역에서 THMs의 농도는 우리 나라의 먹는 물 수질기준 $100{\mu}g/L$을 초과하는 곳은 한곳도 없었다. 또한 각 물질에 대하여 산출한 인체 노출량은 chloroform $6.14{\times}10^{-4}mg/kg/day$, bromodichloromethane $1.01{\times}10^{-4}mg/kg/day$, chlorodibromomethane $0.29{\times}10^{-4}mg/kg/day$, bromoform $0.01{\times}10^{-4}mg/kg/day$, THMs $7.98{\times}10^{-4}mg/kg/day$이었다.

In this study, we collected the tap water that treated from water plant in Seoul, Incheon, Taejon, Kwangju, Taeku and Pusan and supplied each house. The sampling period was June and September, 1997. The concentration of THMs formed by chlorination in drinking water was determined with the purge and trap method with GC/MSD recommended by the us EPA 542.2 method. Chloroform is the most of THMs (47.43%~93.11%) and the content order is bromodichloromethane > chlorodibromomethane > bromoform. In Incheon, Taejon, Kwangju, Taeku and Pusan, the content of bromodichloromethane, chlorodibromomethane and bromoform was higher than Seoul. But, in June and September, the concentration of THMs in six cities is not over Korea Drinking Water Regulation $100{\mu}g/L$. The calculated human exposure for each substances were chloroform $6.14{\times}10^{-4}mg/kg/day$, bromodichloromethane $1.01{\times}10^{-4}mg/kg/day$, chlorodibromomethane $0.29{\times}10^{-4}mg/kg/day$, bromoform $0.01{\times}10^{-4}mg/kg/day$ and THMs $7.98{\times}10^{-4}mg/kg/day$.

 
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