• 제목/요약/키워드: Dissolved-air flotation

검색결과 93건 처리시간 0.024초

DAF에서 기포크기의 영향 (Effect of Bubble Size in DAF)

  • 박용효;한무영
    • 상하수도학회지
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    • 제17권4호
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    • pp.528-533
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    • 2003
  • Bubble size is one of the most important parameters affecting DAF (Dissolved-Air-Flotation) process. It is generally known that small bubbles are preferred. However, the fact seems to be based on the particle removal efficiency at contact zone only, without considering separation zone. Besides, the effect of bubble size on the overall DAF process has not been fully investigated yet. Therefore, the effect of bubble size on collision efficiency, collision chances, and surface loading rate is calculated using theoretical models, and the results are discussed in this paper.

정수처리공정의 침전법을 개선하기 위한 대체공정으로 용존공기부상법(DAF)을 사용할 때 여러조건에 대한 처리효율 비교 (Comparison of Removal Rates of Sedimentation and DAF(Dissolved Air Flotation) for various Different Conditions in Water Treatment)

  • 김미정;이병호
    • 상하수도학회지
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    • 제11권4호
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    • pp.118-125
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    • 1997
  • Conventional sedimentation method has some limitations for turbidity removal in water treatment because drinking water sources are getting polluted. Removal rates of turbidity using DAF and sedimentation process were compared for various water conditions to know whether DAF is effective to improve sedimentation process. Water samples were clay(gravity 2.65) water 100mg/l, H raw water, mixed water of H raw water and clay 100mg/l, and mixed water of HA(Humic Acid) 5mg/l and clay 100mg/l. Other parameters were temperature, coagulants(Alum, $FeCl_3$), and treatment time. Water temperature greatly affected in removal rates of turbidity for sedimentation and DAF. Generally DAF was more effective in removal rates of turbidity than sedimentation at the same experimental condition. Removal rates of $UV_{254}$ were high to over 90%, and independent of temperature and coagulant.

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용존공기부상법(容存空氣浮上法)(DAF)에서 미세기포(微細氣泡)의 제타전위측정(電位測定) (Measuring Zetapotential of Microbubbles in DAF)

  • 독고석;한무영;박중현
    • 상하수도학회지
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    • 제12권4호
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    • pp.53-58
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    • 1998
  • Dissolved Air flotation (DAF) has become increasingly important in the field of drinking water treatment, however, the research to investigate the mechanism of collision between bubble and particle has been limited. The electrostatic repulsion forces between them are critical to collide with each other. Zetapotential of bubble and particle show their electrostatic condition. In this research, a setup to measure the zetapotential of rising microbubble is made using electrophoresis method and measured ZP of bubble in our Lab. The results show the effect of pH on zetapotential of bubble. The findings from this research are compared with other results. It will he helpful to understand and explain the mechanism of collisions between bubble and particle on different conditions of bubble charge in DAF process.

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응집침전 및 부상분리에 의한 돈사폐수의 고액분리에 관한 연구 (A Study on Solid-liquid Separation of Swine Wastewater Using Coagulation and Dissolved Air Flotation)

  • 김종오;정성욱
    • 유기물자원화
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    • 제12권2호
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    • pp.101-109
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    • 2004
  • 본 연구는 응집 및 부상분리를 이용하여 돈사폐수의 고액분리 특성을 조사하였다. 응집은 jar-tester를 이용하여 응집제 종류 및 주입량에 대해, DAF를 이용한 부상분리에서는 돈사폐수 원수 자체에 대한 부상조건과 pH만을 조정한 원수, 그리고 응집제를 주입한 후 부상을 통한 고액분리 특성을 실험적으로 연구하였다. 돈사폐수를 무기응집제 만으로 응집침전 처리하는 경우 $FeCl_3$ > PAC > Alum 순으로 응집침전효과가 나타났으며, 적정 응집제 주입량은 각각 $1,000mg/{\ell}$, $1,500mg/{\ell}$, $1,500mg/{\ell}$으로 나타났다. 고분자응집제 만으로 응집침전 처리하는 경우 양이온 응집제만이 유효한 응집침전 효과가 나타났으며 적정 응집제 주입량은 $200mg/{\ell}$로 나타났다. 무기응집제와 고분자응집제를 혼합 적용한 경우 각 무기응집제를 $500mg/{\ell}$ 투여한 후 양이온 고분자응집제 주입 농도를 달리하여 응집침전효과를 고찰한 결과 무기응집제의 처리 효율은 $FeCl_3$ > Alum > PAC순으로 나타났으며, 적정 양이온 응집제 주입농도는 $25mg/{\ell}$, $25mg/{\ell}$, $100mg/{\ell}$로 나타났다. DAF를 이용한 부상분리 실험에서 응집처리를 하지 않은 원수와 pH만을 조정한 원수에서의 실험결과를 종합하여 순환비 400%, 압력 4 atm, pH 3이하에서 DAF의 적정 운전 조건이 나타남을 알 수 있었다. 그러나 응집처리를 하지 않은 돈사폐수 원수를 대상으로 DAF를 적정하게 운전하기는 곤란한 것으로 판단되었으며, 또한 무기응집제로만 응집처리한 후 부상분리를 실시하였을 경우 floc의 강도가 약해 floc의 깨짐 현상이 나타나 부상분리가 이루어지지 않았다. 한편 무기응집제와 고분자응집제를 혼합하여 응집처리한 후 부상분리를 실시하는 경우 효과적인 부상분리가 이루어졌으며, Alum $500mg/{\ell}$를 기준으로 양이온 고분자응집제 주입농도가 $50mg/{\ell}$에서 가장 양호한 처리 결과를 나타내었다.

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호소수 탁도변화 대응을 위한 고플럭스 막여과공정의 Pilot 연구 (A pilot study of high flux membrane process for responding to influent turbidity changes in reservoir water)

  • 강준석;성자영;유제완;김형수;이재규;전민혁;천지훈
    • 상하수도학회지
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    • 제34권6호
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    • pp.393-402
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    • 2020
  • In the membrane process, it is important to improve water treatment efficiency to ensure water quality and minimize membrane fouling. In this study, a pilot study of membrane process using reservoir water was conducted for a long time to secure high flux operation technology capable of responding to influent turbidity changes. The raw water and DAF(Dissolved Air Flotation) treated water were used for influent water of membrane to analyze the effect of water quality on the TMP (Trans Membrane Pressure) and to optimize the membrane operation. When the membrane flux were operated at 70 LMH and 80 LMH under stable water quality conditions with an inlet turbidity of 10 NTU or less, the TMP increase rates were 0.28 and 0.24 kPa/d, respectively, with minor difference. When the membrane with high flux of 80 LMH was operated for a long time under inlet turbidity of 10 NTU or more, the TMP increase rate showed the maximum of 43.5 kPa/d. However, when the CEB(Chemically Enhanced Backwash) cycle was changed from 7 to 1 day, it was confirmed that the TMP increase rate was stable to 0.23 kPa/d. As a result of applying pre-treatment process(DAF) on unstability water quality conditions, it was confirmed that the TMP rise rates differed by 0.17 and 0.64 kPa/d according to the optimization of the coagulant injection. When combined with coagulation pretreatment, it was thought that the balance with the membrane process was more important than the emphasis on efficiency of the pretreatment process. It was considered that stable TMP can be maintained by optimizing the cleaning conditions when the stable or unstable water quality even in the high flux operation on membrane process.

마이크로버블을 이용한 분뇨의 전처리 특성 (Pre-treatment Characteristics of Night Soil by Microbubble)

  • 임지영;김현식;박수영;김진한
    • 유기물자원화
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    • 제24권4호
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    • pp.31-37
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    • 2016
  • 본 연구는 하수와 연계처리 되고 있는 분뇨의 유기물부하를 저감시킬 수 있는 전처리기술로서 마이크로버블을 이용하여 OH radical에 의한 유기물 산화 및 부유물질 저감 효과를 검토하였다. 가압식 마이크로버블 발생장치를 이용하여 생분뇨를 4시간의 HRT로 3개월간 연속 실험하였다. 마이크로버블을 이용하여 분뇨를 부상처리할 경우 SS 제거율은 평균 71.0%이었으며, 부상분리에 의한 스컴 및 고형물질이 제거됨에 따라 $TCOD_{Cr}$, TBOD, 총질소, 총인의 제거율은 각각 평균 51.5%, 47.9%, 17.1%, 14.7%로 나타났다. OH radical에 의한 용존성 유기물질의 분해능을 검토한 결과, $SCOD_{Cr}$의 경우 평균 25.0% 제거되었고 SBOD의 경우 평균 17.1% 제거되었다. 용존성 질소와 인은 각각 평균 11.9% 및 7.4% 정도 제거됨으로써 수중에서 마이크로버블이 소멸되면서 발생되는 OH radical의 강력한 산화력에 의하여 용존성 유기물질들이 제거됨을 확인할 수 있었다. 따라서 분뇨처리공정 전단부에 마이크로버블 부상조를 설치할 경우 부상분리에 의한 고형물 제거는 물론 용존성 유기물질의 산화에 의하여 후속 생물학적 처리시설의 안정적 운영에 충분한 기여를 할 것으로 판단된다.

남조류 제거를 위한 선회식 가압부상장치 현장 적용에 관한 연구 (A Study on Pilot Scale Cyclonic-DAF Reactor for Cyanobacteria Removal)

  • 오홍석;강선홍;남숙현;김은주;구재욱;황태문
    • 한국환경복원기술학회지
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    • 제21권5호
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    • pp.17-28
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    • 2018
  • Cyclonic-dissolved air flotation(Cyclonic-DAF), an advanced form of pressure flotation, applies a structure that enables the forming of twirling flows. This in turn allows for suspended matter to adhere to microbubbles and float to the surface of a treatment tank during the process of intake water flowing through a float separation tank. This study conducted a lab-scale test and pursued geometrical modeling using computational fluid dynamics(CFD) to establish a pilot scale design. Based on the design parameters found through the above process, a pilot cyclonic-DAF system($10m^3/hr$) for removing algae was created. Upon developing the pilot-scale cyclonic-DAF system, a type of algae coagulant(R-119) was applied as the coagulant to the system for field testing through which the removal rates of chlorophyll-a and cyanobacteria were evaluated. The chlorophyll-a and harmful cyanobacteria of the raw water at region B, the field-test site, were found to be $177.9mg/m^3$ and 652,500cells/mL respectively. Treated waters applied with 60mg/L and 100mg/L of algae coagulant presented removal efficiencies of approximately 95% and 97%, respectively. The cyanobacteria cell number of the treated waters applied with 60mg/L and 100mg/L of algae coagulant both that were equal to or less than 1,000cells/mL and were below attention level criteria for the issuance of algae boundary.

정수처리장 내의 미세플라스틱의 유입 및 처리기술 현황에 관한 고찰 (A mini-review on microplastics in drinking water treatment processes)

  • 최병규;김지윤;최수훈
    • 상하수도학회지
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    • 제34권5호
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    • pp.357-371
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    • 2020
  • Microplastics have become a rising issue in due to its detection in oceans, rivers, and tap water. Although a large number of studies have been conducted on the detection and quantification in various water bodies, the number of research conducted on the removal and treatment of microplastics are still comparatively low. In the current research, the inflow and removal of microplastics were investigated for various drinking water treatment plants around the world. Addition to the investigation of filed research, a survey was also conducted on the current research trend on microplastic removal for different treatment processes in the drinking water treatment plants. This includes the researches conducted on coagulation/flocculation, sedimentation, dissolved air flotation, sand filtration and disinfection processes. The survey indicated mechanisms of microplastic removal in each process followed by the removal characteristics under various conditions. Limitations of current researches were also mentioned, regarding the gap between the laboratory experimental conditions and field conditions of drinking water treatment plants. We hope that the current review will aid in the understanding of current research needs in the field of microplastic removal in drinking water treatment.

토양 세정법을 이용한 실제 유류 오염 토양 및 지하수 정화

  • 강현민;이민희;정상용;강동환
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 총회 및 춘계학술발표회
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    • pp.418-421
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    • 2003
  • Surfactant enhanced in-situ soil flushing was peformed to remediate the soil and groundwater at an oil contaminated site, and the effluent solution was treated by the chemical treatment process including DAF(Dissolved Air Flotation). A section from the contaminated site(4.5m$\times$4.5m$\times$6.0m) was selected for the research, which was composed of heterogeneous sandy and silt-sandy soils with average Hydraulic conductivity of 2.0$\times$10$^{-4}$ cm/sec. Two percent of sorbitan monooleate(POE 20) and 0.07% of iso-prophyl alcohol were mixed for the surfactant solution and 3 pore volumes of surfactant solution were injected to remove oil from the contaminant section. Four injection wells and two extraction wells were built in the section to flush surfactant solution. Water samples taken from extraction wells and the storage tank were analyzed by GC(gas-chromatography) for TPH concentration with different time. Five pore volumes of solution were extracted while TPH concentration in soil and groundwater at the section were below the Waste Water Discharge Limit(WWDL). Total 18.5kg of oil (TPH) was removed from the section. The concentration of heavy metals in the effluent solution also increased with the increase of TPH concentration, suggesting that the surfactant enhanced in-situ flushing be available to remove not only oil but heavy metals from contaminated sites. Results suggest that in-situ soil flushing and chemical treatment process including DAF could be a successful process to remediate contaminated sites distributed in Korea.

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A Novel Method for Calcium Hardness Control of Closed OCC Recycling System

  • Ow, Say-Kyoun;Shin, Jong-Ho;Song, Bong-Keun;Ryu, Jeong-Yong
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 1999년도 Proceedings of Pre-symposium of the 10th ISWPC
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    • pp.164-171
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    • 1999
  • A new technique for recycling process water was developed in order to reduce the calcium hardness of the closed OCC recycling system. Calcium ions present in the white water were precipitated as calcium carbonate by a reaction with sodium carbonate and the CaCO$_3$precipitates were easily removed from the system by a dissolved air flotation(DAF) method. After the DAF stage, CO$_2$-gas was purged into the water because the pH of Na$_2$CO$_3$-treated white water was reduced to neutral by CO$_2$gas. Since CaCO$_3$precipitate tends to stick onto the fine fiber surface and then is selectively removed from the water, a proper amount of suspended solid in the process water acts as an important factor in deciding the removal efficiency. By the application of Na$_2$CO$_3$addition - DAF - CO$_2$purging to the short circulated white water the calcium hardness was significantly reduced by 92% and more. The removal of calcium ions with fine fibers led to drainage improvement, reduction of fresh water consumption, and enhanced efficiency of wet-end chemicals.