• 제목/요약/키워드: High turbidity

검색결과 495건 처리시간 0.025초

고분자성 Al(III) 응집제의 특성이 상수원수의 응집특성에 미치는 영향 (Effects of Characterization of Polymeric Al(III) Coagulants on Coagulation of Surface Water)

  • 이선기;한승우;강임석
    • 상하수도학회지
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    • 제12권2호
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    • pp.99-105
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    • 1998
  • This research explored the feasibility of preparing and utilizing a preformed polymeric solution of Al(III) for coagulation in water treatment. Slow base(NaOH) injection into supersaturated aluminum chloride solutions did produce high yields of the type of Al polymers useful to water treatment applications. PACl's characteristic analysis showed that the quantity of polymeric Al produced at value of $r(OH_{added}/Al)=2.2$ was 83% of the total aluminum in solution, as showing maximum contents and precipitate was dramatically increased when r was increased above 2.35. And PACl was stable during sitoring period so aging effect was negligible. Results of the coagulation of Nakdong river waters with three PACls showed that the effectiveness of the three coagulants can be considered as r = 2.2 > r = 2.0 > r = 2.35 which are also the order of higher polymeric aluminum contents. Coagulation results for synthetic water exhibited optimum dose of 0.25mM Al, for three PACls, but above optimum dose, r = 2.0 and 2.2 PACl impaired the coagulation and sedimentation of turbidity and humic acid because of the restabilization of particulate. The effect of pH for on coagulation of Nak Dong River water showed that it had much effect turbidity and TOC removal, especially near pH 7. But pH effect was little for turbidity and TOC removal when r = 2.35 PACl was used for coagulation, that PACl had much more precipitates content.

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정수장 슬러지 폭기를 통한 방류수 수질 개선 (Improvement of effluent water quality by sludge aeration at the conventional drinking water treatment plant)

  • 최일경;신창수;백인호;임재철;정찬우;이성진;박정욱
    • 상하수도학회지
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    • 제28권2호
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    • pp.249-255
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    • 2014
  • So many drinking water treatment plants are under various difficulties by new reinforced effluent standards. Since the target turbidity, much higher than annual average, for designing sludge thickener have to be set to confront high turbidity season, the sludge at thickener should be put up for a long time during usual days. So the soluble manganese and chloroform may be formed under the anaerobic environment in the sludge thickener when the sludge retention time is longer with low turbidity. This phenomenon results in difficulties to keep regulatory level of the discharged effluent. For an effort to overcome the problems, a sludge aeration was successfully implemented into the thickening process. As a result, the final effluent quality and sludge volume were much improved; 41 % of manganese, 62 % of chloroform and 35 % of sludge volume. Additionally, effluent quality was improved ; 61 % of Manganese on aeration with pH control and we could make sure of stability effluent quality despite a long sludge retention time. We recommended the standard of installation sludge aeration equipment to nationally supply water treatment plant under effluent water quality problem ; Manganese, Chloroform, etc.

탁수자료를 이용한 GIS 기반의 토사유실량 평가 (Evaluation of GIS-based Soil Erosion Amount with Turbid Water Data)

  • 이근상;조기성
    • 대한공간정보학회지
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    • 제12권4호
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    • pp.75-81
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    • 2004
  • 임하호 유역은 지질 및 토지피복 상태가 토사유실에 취약한 특성을 가지고 있어, 강우발생시 토사가 하천에 유입되어 호소내에 많은 탁수가 발생하고 있다. 본 연구에서는 임하호 탁수 저감대책을 수립하기 위한 기초자료를 생성하기 위해 GIS 기반RUSLE 모형을 이용하여 임하호 유역의 토사유실량을 분석하였다. 2003년도 강우자료를 이용하여 토사유실량을 분석한 결과 5,782,829 ton/yr로 계산되었으며, 소유역별 분석에서는 동부천이 가장 높은 토사유실량을 나타내었다. 또한 태풍매미때의 탁수실측자료를 이용하여 RUSLE 모델로 산정한 토사유실량의 적정성을 평가할 수 있었다.

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터널폐수 재이용을 위한 통합형 멤브레인 시스템의 적용 (Feasibility of a two step microfiltration and reverse osmosis membrane system for reuse of tunnel wastewater)

  • 이재현;정세욱;김영모
    • 상하수도학회지
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    • 제27권6호
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    • pp.779-785
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    • 2013
  • This study investigated the applicability of a two step microfiltration(MF) and reverse osmosis(RO) membrane system for reuse of tunnel wastewater. In this two step process, the MF system first treated only micropollutants in tunnel wastewater such as suspended solids(SS) and heavy metals, achieving less than 0.2 NTU turbidity, less than 1.1 mg/L chemical oxygen demand($COD_{Mn}$) and less than 0.8 mg/L total manganese(Mn). The RO system then removed over 95 % of the remaining pollutnats and particles, resulting in less than 0.02 NTU turbidity, less than 0.5 mg/L chemical oxygen demand($COD_{Mn}$), less than 0.04 mg/L total nitrogen(T-N) and less than 0.01 mg/L total phosphorus(T-P). In particular, addition of an RO system could lead to markedly reduced high salt concentrations in tunnel wastewater, approaching almost zero. Thus, reclaimed water using the combined membrane system could satisfy current South Korean regulations concerning wastewater reuse(turbidity ${\leq}2.0$ NTU; T-N ${\leq}10mg/L$; T-P ${\leq}0.5mg/L$; Salinity ${\leq}250mg{\cdot}Cl/L$).

빗물저장조에서 입자의 제거특성 및 운전과 설계시 고려사항 (Particle Removal in a Rainwater Storage Tank, and Suggestions for Operation & Design)

  • 문정수;유형근;한무영
    • 상하수도학회지
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    • 제21권1호
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    • pp.131-138
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    • 2007
  • A rainwater utilization facility consists of its catchment area, treatment facility, storage tank, supply facility and pipes in general. The rainwater storage tank which occupies the largest area of the facility has been usually considered quantitatively for determining the storage capacity. Hence, there is little information on water quality improvement by sedimentation in a rainwater storage tank in operation. In this study, we measured the rainwater quality in a rainwater storage tank in operation during late spring and summer, and showed water quality improvement of turbidity removal of 25~46% by sedimentation in a rainwater storage tank under a fixed water level without inflow and outflow after runoff ceased. It is necessary to have a considerable distance between the inlet and outlet of the tank and, if possible, it is recommended that the design should allow for an effective water depth of over 3 m and supply rainwater near the water surface. The operation method which increases the retention time by stopping rainwater supply for insuring low turbidity is recommended when the turbidity of rainwater runoff is high. And also more efficient operation and maintenance of the rainwater utilization facility is expected through the tailored design and operation of the facility considering particle removal and behavior.

분광측색계에 의한 착색 수돗물 시험방법 연구 (A study on the testing method of discolored tap water by spectrophotometer)

  • 김동헌;이종금;오지윤;김기태;전항배
    • 상하수도학회지
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    • 제37권4호
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    • pp.187-202
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    • 2023
  • This study focuses on the application of a new measurement method that quantifies the residual color of filtered water using a spectrocolorimeter after filtering the discolored substances. It was confirmed through the color and turbidity cross-test that the discolored substances cannot be measured effectively with the current legal color and turbidity test method. Therefore, the National Institute of Environmental Research's filter testing method, which involves filtering the sample through 0.45 ㎛ filter and visually inspecting the color, was improved. A membrane filter colorimetry (MFC) method was established by measuring the color difference (ΔE*ab(65)) of the filtered filter using a spectrophotometer and expressing it as filter color unit (FCU). Using the MFC method, the FCU for reference materials such as iron and manganese, as well as field samples, was measured. The results showed a high correlation with turbidity, and the color difference patterns varied depending on the type of reference materials and field samples. This indicates that the MFC method is an effective new measurement method of discolored tap water.

Effects of Turbid Water on Fish Ecology in Streams and Dam Reservoirs

  • Seo, Jin-Won;Lee, Jong-Eun
    • 생태와환경
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    • 제41권4호
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    • pp.431-440
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    • 2008
  • Turbid water or suspended sediment is associated with negative effects on aquatic organisms; fish, aquatic invertebrate, and periphyton. Effects of turbid water on fish differ depending on their developmental stage and a level of turbidity. Low turbid water may cause feeding and predation rates, reaction distance, and avoidance in fish, and it could make fish to die under high turbidity and long period. Therefore, it is very important to find out how turbid water or suspended sediment can affect fish in domestic watersheds. The objectives of this study were 1) to introduce international case studies and their standards to deal with suspended sediment, 2) to determine acute toxicity in 4 major freshwater fishes, and 3) to determine in relation to adverse effect of macroinvertebrates and fish. Impacts of turbid water on fish can be categorized into direct and indirect effects, and some factors such as duration and frequency of exposure, toxicity, temperature, life stage of fish, size of particle, time of occurrence, availability of and access to refugia, etc, play important role to decide magnitude of effect. A review of turbidity standard in USA, Canada, and Europe indicated that each standard varied with natural condition, and Alaska allowed liberal increase of turbidity over natural conditions in streams. Even though acute toxicity with four different species did not show any fatal effect, it should be considered to conduct a chronic test (long-term) for more detailed assessment. Compared to the control, dominance index of macroinvertebrates was greater in the turbid site, whereas biotic index, species diversity index, species richness index, and ecological score were smaller in the turbid site. According to histopathological analysis with gills of macroinvertebrate and fishes, morphological and physiological modification of gills due to suspended sediments can cause disturbance of respiration, excretion and secretion. In conclusion, in order to maintain good and healthy aquatic ecosystem, it is the best to minimize or prevent impact by occurrence of turbid water in stream and reservoir. We must make every effort to maintain and manage healthy aquatic ecosystem with additional investigation using various assessment tools and periodic biomonitoring of fish.

입자분리효율을 높이기 위한 새로운 기술 (New Technologies for Enhancing Particles Separation Efficiency in Coagulation and Filtration)

  • Kunio, Ebie;Jang, Il-Hun
    • 상하수도학회지
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    • 제18권2호
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    • pp.254-269
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    • 2004
  • Polysilicato-iron coagulant (PSI) is receiving attention in Japan as a substitute for aluminum-based coagulants. In the first part of this article, coagulation, sedimentation and filtration experiments were carried out using kaolin clay particles as the turbidizing material and four types of PSI with various molar ratios of polysilicic acid to ferric chloride (Si/Fe ratio). Results demonstrate that use of a PSI with a high Si/Fe ratio can cause a more dramatic decrease in treated water turbidity but a higher suction time ratio (STR) than when PACl is used. However, optimization by increasing the rapid agitation strength GR is found to greatly improve the STR. In addition, the series of filtration experiments verified that optimization of GR is greatly effective in controlling rapid increases in filter head loss, and also formation of a thin aging layer in the upper part of the filter bed by slow-start filtration is effective in improving filtered water turbidity over the entire filtration process. The second part of this article describes two innovative filtration techniques to increase the particle separation efficiency; (1) coagulant-coated filter medium by enhancing the electrical potential of the surface of the filter medium, and (2) coagulant dosing in influent by controlling the electrical potential of particles entering the filter layer. From the results of the various filtration experiments using a pilot plant, these two techniques were found to be very effective to reduce the effluent water turbidity from the start to the end of a filter run. Moreover, in the filtration experiments using these two methods simultaneously, higher removal efficiency of approximately 3-log (99.7%) was realized, resulting that the finished water turbidity was accordingly reduced to 0.004mg/L.

비점오염원 관리지역(소양호) 목표수질 달성도 평가 (Assessing the Action Plans in the Control Area(Soyang Reservoir) of Non-point Source Pollution)

  • 최재완;강민지;류지철;김동일;임경재;신동석
    • 한국환경과학회지
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    • 제23권5호
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    • pp.839-852
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    • 2014
  • The Ministry of Environment (MOE) has made more effort in managing point source pollution rather than in nonpoint source pollution in order to improve water quality of the four major rivers. However, it would be difficult to meet water quality targets solely by managing the point source pollution. As a result of the comprehensive measures established in 2004 under the leadership of the Prime Minister's Office, a variety of policies such as the designation of control areas to manage nonpoint source pollution are now in place. Various action plans to manage nonpoint source pollution have been implemented in the Soyang-dam watershed as one of the control areas designed in 2007. However, there are no tools to comprehensively assess the effectiveness of the action plans. Therefore, this study would assess the action plans (especially, BMPs) designed to manage Soyang-dam watershed with the WinHSPF and the CE-QUAL-W2. To this end, we simulated the rainfall-runoff and the water quality (SS) of the watershed and the reservoir after conducting model calibration and the model validation. As the results of the calibration for the WinHSPF, the determination coefficient ($R^2$) for the flow (Q, $m^3/s$) was 0.87 and the $R^2$ for the SS was 0.78. As the results of the validation, the former was 0.78 and the latter was 0.67. The results seem to be acceptable. Similarly, the calibration results of the CE-QUAL-W2 showed that the RMSE for the water level was 1.08 and the RMSE for the SS was 1.11. The validation results(RMSE) of the water level was 1.86 and the SS was 1.86. Based on the daily simulation results, the water quality target (turbidity 50 NTU) was not exceeded for 2009~2011, as results of maximum turbidity in '09, '10, and '11 were 3.1, 2.5, 5.6 NTU, respectively. The maximum turbidity in the years with the maximum, the minimum, and the average of yearly precipitation (1982~2011) were 15.5, 7.8, and 9.0, respectively, and therefore the water quality target was satisfied. It was discharged high turbidity at Inbuk, Gaa, Naerin, Gwidun, Woogak, Jeongja watershed resulting of the maximum turbidity by sub-basins in 3years(2009~2011). The results indicated that the water quality target for the nonpoint source pollution management should be changed and management area should be adjusted and reduced.

정수처리 공정에서 Cryptosporidium Tracer의 제거효율 (Removal Efficiency of Cryptosporidium Tracer in Drinking Water Treatment Process)

  • 이순화;김윤희
    • 대한환경공학회지
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    • 제28권12호
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    • pp.1304-1309
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    • 2006
  • 정수처리 과정에서 Cryptosporidium과 유사한 특성을 가지고 있는 C. tracer를 이용하여 공정별 제거효율을 조사하였다. PACI(Poly aluminium chloride, $Al_2O_3$(10%)) 주입량이 10 mg/L일 때 C. tracer는 97.16%로 가장 높은 제거율을 보였으며, 탁도 제거율과 SS 제거율이 높을수록 C. tracer 응집 효율이 높았다. 원수의 pH가 높을수록 C. tracer 제거율이 증가 하였으며 응집 침전 후의 유출수 탁도와 C. tracer 제거율과의 상관성이 $R^2=0.9506$로 높게 나타나 응집 침전 후의 유출수 탁도로 Cryptosporidium 제거 효율을 평가할 수 있음을 알 수 있었다. 또한 여과 실험에서는 유입 탁도에 따른 C. tracer 제거율은 $94.00{\sim}95.83%$ 범위였으며 유출수 탁도와 C. tracer 제거율과의 상관성은 $R^2=0.8704$였다. 최적 응집 조건 하에서 여과수 탁도가 양호할 경우, 예상되는 Cryptosporidium의 제거율은 응집 침전의 경우 1.55 log(97.16%), 급속모래여과의 경우 1.38 log(95.83%), 응집 침전+급속모래여과의 경우 2.31 log(99.51%)로 나타났다.