• 제목/요약/키워드: THMFP

검색결과 50건 처리시간 0.032초

오존산화에 의한 수처리공정에서 VOCs의 제거 특성 (VOCs Removal in Drinking Water Treatment Process by Ozonation)

  • 한명호;최준호;임학상
    • 상하수도학회지
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    • 제11권2호
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    • pp.65-75
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    • 1997
  • Removal characteristics of volatile organic carbons(VOCs) by ozone oxidation and other processes in the raw water of the 1st Nakdong water treatment plant were investigated. Dichrolomethane, toluene and other 7 compounds were detected in the raw water. With regard to detected 4 compounds in finally treated water, it was found that VOCs could not be removed effectively by traditional water treatment process. Benzene, 1,2-dichlorobenzne were not detected in the raw water but they were detected in the process of treatment. The compound of highest detection frequency was dichloromethane. When the raw water was controlled at pH 7, temperature $20^{\circ}C$, 5 minutes as contact time, 10 minutes as reaction time, the removal rate of THMFP, $KMnO_4$ demand, TOC, $UV_{254nm}$ and $NH_3-N$ were 46.4%, 22%, 19.6%, 31% and 8%, respectively. From estimating the finally treated water qualities in 7 kinds of treatment processes, P-6 process(raw water-chlorination-coagulation-ozonation) was most effective for organics removal and THMs control. Removal efficiencies for $KMnO_4$ demand and TOC by the process which combined preozonation with coagulation was twice better than only preozonation. $NH_3-N$ removal rate was shown as 10% by P-3 process(raw water-coagulation-ozonation), but 83% of $NH_3-N$ was removed by P-4 process(raw water-coagulation-chlorination). It was found that the chlorination is more effective than the ozonation for the NH3-N removal as commonly known.

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여과 성능향상을 위한 이단이층 복합여과시스템의 공정선정 연구 (A Study on the Process Selection for Two-stage and Dual Media Filtration System for Improving Filtration Performance)

  • 송시범;조민;남상호;우달식
    • 상하수도학회지
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    • 제21권2호
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    • pp.203-214
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    • 2007
  • This study aimed at researching the process selection for two-stage and dual media filtration system, as a technology substituting the existing sand filter without expanding the site when retrofitting an old filter bed or designing a new one. In order to select the process for optimum complex filtration system, three running conditions have been tested. Test results demonstrated that Run 3 in which the 1st stage was filled with anthracite and coarse sand, and the 2nd stage was filled up with activated carbon and fine sand reduced the head loss and the load of turbidity substances. Also, Run 3 showed better performance in removing TOC, particle counts, THMFP and HAAFP, compared to other two conditions. 99 % of Cryptosporidium was removed. Bisphenol-A was rarely removed from the 1st stage of coarse sand and 2nd stage of fine sand, but 99 % of it was removed from the 2nd stage of activated carbon. In conclusion, when it is required to retrofit an old rapid filter bed or design a new one for the purpose of improving filtration performance, the following two-stage and dual media filtration system is suggested: the 1st stage of filter bed needs to be filled up with coarse sand to remove turbidity as the pretreatment for extending duration of filtering, the top part of 2nd stage needs to be filled up with granular activated caron to remove dissolved organic matters and others as the main process, and finally the bottom part of 2nd stage needs to be filled up with fine sand as the finishing process.

정수처리장내 급속모래 여과지의 이단복합여과시스템으로의 개량 (Improvement of Rapid Sand Filtration to Two Stage Dual Media Filtration System in Water Treatment Plant)

  • 우달식;황규원;김준언;황병기;조관형
    • 한국환경보건학회지
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    • 제37권2호
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    • pp.141-149
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    • 2011
  • This study aimed for developing a two stage dual media filtration system. It has a sand and activated carbon layer above the under-drain system, and a sand layer above the middle-drain system for pretreatment. When retrofitting an old sand filter bed or designing a new one, this technology can substitute the existing sand filter bed without requiring a new plant site. The removal rate of total particle is 93, and 3~7 ${\mu}m$ and 5~15 ${\mu}m$ particles are all 97%. These high removal efficiencies of each pollutant due to adsorption and biological oxidation in activated carbon filter layer. The best backwashing method of two stage dual media filtration system is ascertained by air injection, air + water injection and water injection sequence. In this study, a pilot plant of two stage and dual filtration system was operated for 4 months in water treatment plant. The stability of turbidity was maintained below 1 NTU. The TOC, THMFP and HAAFP were removed about 90% by two stage and dual media filtration system, which is almost 2 times higher than existing water treatment plant.

암모니아성질소를 함유한 금강중류 하천수의 오존-활성탄처리 (Ozone-Activated Carbon Treatment in Middle Keum River containing Ammonia-Nitrogen)

  • 김충환;정상기;김학성
    • 한국물환경학회지
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    • 제18권4호
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    • pp.355-363
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    • 2002
  • A demonstration plant was carried out to investigate the removal efficiency of $NH_3-N$ and $KMnO_4$ consumption depending on the existence of pre-chlorination for the ozonation and activated carbon process in the S water treatment plant which is located at the middle of Keum River. The averge removal efficiency of $KMnO_4$ consumption for $O_3/GAC$ processes with pre-chlorination and $O_3/BAC$ processes without pre-chlorination were 48.6% and 50% respectively. It is similar to removal effect of $KMnO_4$ consumption for GAC and BAC process depending on the existence of pre-chlorination. Otherwise, the removal of THMFP for GAC and BAC process was 58% and 68% respectively. $NH_3-N$ was not almost removed by sand filter and ozonation, but the average removal efficiency in the BAC process was about 31%. Especially, $NH_3-N$ was not almost removed by $O_3/BAC$ processes at the low temperature (below $$10^{\circ}C$$) in the winter season, $O_3/BAC$ processes have the advantage of removal of organic substance when it is compared to pre -chlorination followed by $O_3/GAC$ processes. Pre-chlorination followed by $O_3/GAC$ processes were required to remove $NH_3-N$ in the winter season because the removal of $NH_3-N$ was almost ineffective by $O_3/BAC$ process.

응집과 막여과 공정에서 응집제에 따른 유기물 및 THMFP제거 (Removal of natural organic matter and trihalomethane formation potential by four different coagulants during coagulation-microfiltration processes)

  • 박근영;최양훈;진용철;강선구;권지향
    • 상하수도학회지
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    • 제27권1호
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    • pp.101-112
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    • 2013
  • Integrated process with coagulation and microfiltration as an advanced water treatment has been expanded its application in recent years due to its superb removal of particles and natural organic matter. In usual, effectiveness of coagulation sometimes determines performance of the whole system. Several new polymeric coagulants introduced to water utilities for better efficiency were studied in this paper. Three polymeric coagulants (i.e., PACl, PACs, and PAHCs) along with alum were evaluated for removal of natural organic matter, especially for reduction of trihalomethane formation potential, for which regulation has become stringent. Turbidity removal was closely related to pH variation showing the reduced turbidity removal by PACs due to the decreases in the pH of supernants at high doses. The four coagulants showed different organic matter removal during coagulation and affected the removal in microfiltration. For instance, DOC concentration was not reduced by microfiltration when PAHCs were used however 10 % of DOC removal was observed by microfiltration with alum coagulation. Coagulation pretreatment also impacted the THM removals, i.e., approximately 30 % of THMs and 13 % of DOC was removed by microfiltration only, but 40 to 67 % of THMs and 30 % of DOC was removed by the integrated process. Strategies on selection of coagulants are needed depending on characteristics of target pollutants in raw waters.

Microcystis sp. Cell의 부패와 염소 소독부산물 생성 (Decomposition of Microcystis sp. Cell and Formation of Chlorination Disinfection By-Products)

  • 손희종;염훈식;정종문;최진택
    • 대한환경공학회지
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    • 제34권5호
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    • pp.351-358
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    • 2012
  • Microcystis sp.의 부패과정에서 수중으로 용출되는 AOM 특성과 염소 이들에서의 disinfection by-products (DBPs) 생성특성을 조사하였다. 수중으로 용출된 EOM과 cell + IOM에서의 염소 DBPs 생성특성을 조사한 결과, EOM은 보관기간 초기부터 지속적으로 증가하였으나 cell + IOM의 경우는 급격한 감소경향을 나타내었으며, 생성된 DBPs 중 HAAFP가 가장 높은 생성비율을 나타내었다. 또한, 이 때의 DBP 구성종들의 변화를 살펴본 결과, HAA 구성종들의 경우는 EOM에서는 di-HAA 구성종들의 비율은 점점 감소하였고 tri-HAA 구성종들의 비율은 점점 증가하였다. 그러나 cell + IOM의 경우는 EOM의 경우와는 반대 경향을 나타내었다. 또한, HAN 구성종들의 경우는 EOM과 cell + IOM 모두 di-HAN 구성종들의 생성비율이 월등히 높았다.

Humic acid 제거를 위한 국산 입상활성탄의 흡착성능 평가에 관한 연구 (A Study on Evaluation of Adsorption Performance of Humic Acid on Granular Activated Carbon)

  • 신성교;김종구;박청길
    • 한국환경과학회지
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    • 제2권1호
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    • pp.73-81
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    • 1993
  • Adsorption process using granular activated carbon(GAC) has been considered as one of the most effective water treatment technologies to remove humic acid which is recon- niEed as trihalomethane(THM) precursor in chlorination. To design the most effective GAC process, it is necessary to conduct the test of adsor- ption performance by means of isothem, batch rate and column studies and to select the most effective activated carbon according to raw materials of GAC - lignite and coconut shell. The objective of this study is to investigate the adsorption performance of humid acid on two activated carbons - lignite activated carbon(LAC) and coconut shell activated car- bon(CAC) made in Korea. It is available to represent UV-abs and trihalomethane formation potential(THMFP) as concentration of humic acid due to good relationship. The adsorption capacity of humid acid is not concerned with surface area of activated carbon but with pore size related to about $100{\AA}$, and then LAC forming at the extent of mesopore is found to be eight times more effective in adsorption capacity than CAC forming at micropore. The adsorption capacity of LAC and CAC is better at pH 5.5 than at pH 7. Pore and surface diffusion coefficients calculated from the diffusion model are $7.61\times10^{-13}m^2/sec$, $3.52\times10^{-15}m^2/sec$ for CAC, and $3.38\times10^{-12}m^2$/sec and $Ds=1.48{\times}10^{-15}m^2/sec$ for GAC respectively. From the results of column test it shows that the performance of LAC is also better than CAC and the optimal EBCT(Empty Bed Contact Time) is 4.52min. and activated carbon removes selectively the components of humic acid to be easily formed to THM.

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정수처리공정별 THMs 발생특성과 저감방안에 대한 연구 (A Study on Characterization of Formation and Reduction of THMs in Water Treatment Process)

  • 가길현;배민호;이준호;안치화;한인섭;민병대
    • 대한환경공학회지
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    • 제30권7호
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    • pp.721-728
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    • 2008
  • 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.

낙동강 하류 원수의 응집효율 개선을 위한 황산의 적용 (Application of Sulfuric Acid for Improving Coagulation Efficiency on the Down Stream of Nakdong River)

  • 류동춘;배은영;김상구;손희종;송미정;김영진
    • 대한환경공학회지
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    • 제22권11호
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    • pp.2059-2065
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    • 2000
  • 낙동강 상류지역의 점오염원에서 지속적으로 배출되는 오염물질의 가중과 수량의 부족 현상으로 갈수기에는 하천의 부영양화로 인하여 조류증가에 따른 수화(水花) 현상이 나타나 원수의 pH가 상승하여 응집장애를 야기시키고 있다. 조류에 의한 pH 상승은 정수처리시 적정 응집범위를 벗어나게 하여 응집제의 사용량 증가와 수산화알루미늄의 용해도를 상승시켜 정수중의 잔류알루미늄 증가와 같은 문제를 일으킨다. 따라서 본 연구에서는 황산을 이용하여 상수원수의 pH를 응집공정 전에 조절함으로써 응집제의 주입량 및 산화제 사용량을 줄이고, Jar test 결과 황산을 이용하여 pH를 8.1로 조절한 경우 매우 효과적이고 경제적으로 평가되었으며, 응집제 주입량을 약 30% 정도 저감시켜도 pH를 조절하지 않은 경우와 동일한 탁도 제거율을 보였으며 DOC 및 UV-254 같은 유기물 제거효과는 오히려 높은 것으로 조사되었다.

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왕숙천 유입에 따른 한강본류의 천연유기물질과 염소소독부산물 생성능 변화 (Effect of Wangsuk Stream on NOM and Chlorinated DBPFPs in Han River Water)

  • 박현;김창모;장현성;김현숙;박창민;유명진
    • 대한환경공학회지
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    • 제28권10호
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    • pp.1031-1037
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    • 2006
  • 한강본류 상수원수 중 상류에 위치한 KB 원수와 하류에 위치한 GU 취수 원수의 천연유기물질을 XAD-4, XAD-7HP 및 IRC-50 등 세 가지 수지를 이용하여 분리하였고, 15종의 소독부산물 생성능(DBPFPs)을 살펴보았으며, KB, GU 원수 사이에 유입되고 있는 지천인 왕숙천의 천연유기물질을 파악함으로서 한강본류에 미치는 영향을 고찰하였다. 한강본류 원수의 TOC는 $1.5{\sim}3.3$ mg/L, SUVA는 2 $L/mg{\cdot}m^{-1}$ 이하로 나타나 유기물 총량은 낮은 수준이었고, NOM의 특성은 소수성 $21{\sim}33%$, 친수성 $44{\sim}63%$, 반친수성 $16{\sim}31%$으로 친수성 유기물질 분율이 높은 것으로 나타났다. NOM에 의한 DBPFPs을 살펴본 결과, 입자성 유기물질에서는 THMs 생성능이 높게 나타났으나, 용존성 유기물질에서는 HAAFPs이 높게 나타났다. 한편, 홍수기에는 THMFPs가 높게 나타나 계절 온도 강수 조건에 따라 NOM이 다른 특성을 나타내었다. $50{\sim}90%$가 생활하수 처리장 방류수로 구성되어 있는 왕숙천의 경우, TOC는 $2.9{\sim}7.5$ mg/L이고, NOM은 소수성 15%, 친수성 76%, 반친수성 9%의 분포를 나타내 친수성이 강한 유기물 구성특성을 가지고 있었다. 원수의 NOM 분획 회수율이 85% 정도인 반면, 지천은 회수율이 $60{\sim}80%$로 낮게 분획되어 수지에 의한 흡 탈착이 어려운 unfractioned NOM이 많이 함유되어 있는 것으로 나타났다. 지천 유입수의 DBPFPs는 HAAs 60%, THMs 27%, HANs 9%, CH 4%로 나타났으며, 이를 원수와 비교할 때 할로아세토니트릴계의 생성능과 브롬화 소독부산물의 생성이 높게 나타났다. 지천 유입수의 경우 DOC는 한강 본류 원수에 비해 높게 나타난 반면, DBPFPs는 원수의 40% 수준으로 낮게 나타나 소독부산물 생성 측면에서 볼 때, 하류에 위치한 취수 원수에 미치는 영향은 미미한 것으로 판단되었다.