• 제목/요약/키워드: floc

검색결과 222건 처리시간 0.033초

산성 광산 배수의 처리를 위한 철(Fe) 성분의 플럭 형성 특성 (The Characteristics of Iron(Fe) Floc Formation for Treatment of Acid Mine Drainage)

  • 송근호;이광래
    • 산업기술연구
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    • 제33권A호
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    • pp.89-92
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    • 2013
  • The characteristics of floc formation of the iron(Fe) ions was studied for developing the process treating the acid mine drainage. The metal ions in aqueous solution oxidized with oxygen in air, which generated hydrogen ion and lowered the pH of the aqueous solution. The iron(Fe) ions were formed into flocs by the acid-base reaction with the added $Ca(OH)_2$ for the neutralizing the solution. There were several variables affecting the formation, size and color of floc; whether air was present or not, air feeding rate, oxidizing time, concentration of $Ca(OH)_2$, the acid-base reaction time of the $iron(Fe)-Ca(OH)_2$. For proper formation of the $iron(Fe)-Ca(OH)_2$ flocs and developing the floc treating system, the control variables mentioned above should be considered.

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PACI을 이용한 오염물질 제거 및 입자 특성에 관한 연구 (Pollutant Removal and Characteristic of Floc by PACI Coagulation)

  • 문병현;김승현;이향인
    • 한국물환경학회지
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    • 제16권4호
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    • pp.459-468
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    • 2000
  • This study is to investigate the floc structure and removal of turbidity and organic matter by PACI coagulation. The turbidity removal by PACI coagulation was obtained at larger pH range than alum coagulation. And the removal of organic matter was obtained at smaller pH range than that of turbidity. The organic matter was removed by the adsorption of $Al(OH)_3$ precipitates. Floc structure was characterized by measuring fractal dimension and volume diameter using AIA and SALLS. Fractal dimension measured by AIA did not show the different characteristics of floc produced in sweep floe and charge neutralization region. Using SALLS, floes in sweep floc region were found to be larger size and fractal dimension than flocs in charge neutralization region. As pollutant removal increased. larger fractal dimension and size of floc were measured. SALLS method was found to be more useful method to characterize flocs in coagulation than AIA method.

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생체고분자물질 농도와 이온강도에 따른 점토입자 현탁액의 응집핵-응집체 이군집 응집 특성 연구 (Investigation on Flocculi-floc Interaction and Flocculation in Extracellular Polymeric Substances, Ionic Species and Clay-containing Suspension)

  • 김재인;이병준
    • 한국물환경학회지
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    • 제36권3호
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    • pp.185-193
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    • 2020
  • Bimodal flocculation describes the aggregation and breakage processes of the flocculi (or primary particles) and the flocs in the water environment. Bimodal flocculation causes bimodal size distribution with the two separate peaks of the flocculi and the flocs. Extracellular polymeric substances and ionic species common in the water environment increase the occurrence of bimodal flocculation and flocculi-floc size distribution, under the flocculation mechanisms of electrostatic attraction and polymeric bridging. This study investigated bimodal flocculation and flocculi-floc size distribution, with respect to the extracellular polymeric substance concentration and ionic strength in the kaolinite-containing suspension. The batch flocculation tests comprising 0.12 g/L of kaolinite showed that the highest flocculation potential occurred at the lowest xanthan gum (as extracellular polymeric substances) concentration, under all the ionic strengths of 0.001, 0.01, and 0.1 M NaCl. Also, it was important to note that the higher ionic strength resulted in the higher flocculation potential, at all the xanthan gum concentrations. The bimodal flocculation and flocculi-floc size distribution became apparent in the experimental conditions, which had low and intermediate flocculation potential. Besides the polymeric bridging flocculation, steric stabilization increased the flocculi mass fraction against the floc mass fraction, thereby developing the bimodal size distribution.

정수장 응집제주입 최적화를 위한 플럭 모니터링 (Optimum Coagulation of Water Treatment Plant using On-line Floc Monitoring System)

  • 황환도;임상호;성규종;한영진;김영범;곽종운
    • 상하수도학회지
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    • 제23권4호
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    • pp.397-406
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    • 2009
  • This study was conducted to monitor the floc sizes forming in the mixing zone in the water treatment plant. The dosing amount of poly aluminium chloride(PAC) was determined by particle dispersion analyzer(iPDA) in the lab and field scale test. During a field test period, PAC coagulant was used and the raw water was taken from Nakdong river. PAC wad diluted to activate the coagulant, leading to bring the more homogeneous dispersion in the shorter time. To monitor the floc sizes, the unit of floc size index(FSI) was used. With increasing of raw water turbidity, FSI value was increased. Also, the increased dosing amount of PAC brought the increased FSI and with overdosing of coagulant was in turn decreased. When the PAC was fed into the raw water after dilution in a field scale test, the width of FSI was narrower compared with the feeding of the mother liquor of PAC, implying that the formed flocs are denser and more uniform sizes. The width of FSI in average was varied on depending on the basicity of coagulant. Also, dF value, fractal dimension was evalued with the different coagulants, showing from 2.01 to 2.03. On-line floc monitor was effective for the optimal dosing in the drinking water plant.

장방형 침전지에서 길이에 따른 슬러지 floc의 형태에 관한 연구 (Morphological Parameters of the Sludge Flocs in a Long Rectangular Secondary Settling Tank)

  • 김영철;이진우;강민기
    • 한국물환경학회지
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    • 제22권3호
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    • pp.468-474
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    • 2006
  • In the secondary settling tanks, three different types of settling phenomena occurs; i.e., zone settling for sludge thickening in the bottom part of settling tank, and discrete and flocculent settling for clarification in the upper part. In this paper, morphological parameters of the floc in sludge blanket layers along the length of a long rectangular tank were investigated. The plant used for this study had a serious bulking problem caused by Microthrix parvicella. Floc size decreased as the surface area of settling tank increases, which indicates that in the secondary settling tank where zone settling believed to be predominant, free or flocculent type of settling contributes to floc size distributions. Large floc particles deposit in the front zone of settling tank, but small and loose flocs mostly in the zone near its outlet. On the other hand, filament length contained in one gram of sludge blanket solid increases along the flow direction. Large flocs with less filaments settle faster, but small flocs having more filaments result in poor settling. These results support function of microorganism selection occurring in secondary settling tank. In addition, designing a long rectangluar settling tank with double hoppers might be one of the ways of bulking control, but this idea has to be verified with a further study.

DAF공정에서 개체군 수지를 이용한 기포-플록 응집체의 부상효율과 수리학적 부하율의 운전특성 평가 (Evaluation on Flotation Efficiency of Bubble-floc Agglomerates and Operation Characteristics of Hydraulic Loading Rate Using Population Balance in DAF Process)

  • 곽동희
    • 상하수도학회지
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    • 제22권5호
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    • pp.531-540
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    • 2008
  • The main advantage of dissolved air flotation (DAF) in water treatment process is the small dimension compared with conventional gravity sedimentation and it can be basically reduced by the separation zone performed with the short solid-liquid separation time. Fine bubbles make such a short time possible to carry out solid from liquid separation as a collector on the course of water treatment. Therefore, the dimension of separation zone in DAF process is practically determined by the rise velocity of the bubble-floc agglomerates, which is a floc attached with several bubbles. To improve flotation velocity and particle removal efficiency in DAF process, many researchers have tried to attach bubbles as much as possible to flocs. Therefore, the maximum number of attached bubble on a floc and the rise velocity of bubble-floc agglomerates considered as the most important factor to design the separation zone of flotation tank in DAF process was simulated based on the population balance theory. According to the simulation results of this study, the size and volume concentration of bubble influenced on the possible number of attached bubble on a floc. The agglomerates attached with smaller bubble was more sensitive to hydraulic loading rate in the separation zone of DAF process. For the design of a high rate DAF process applied over surface loading 40 m/hr. it is required a precise further study on the variation of bubble property and behavior including in terms of bubble size distribution.

DAF 공정에서 발생한 슬러지의 Break-up 원인과 부상 특성 (Cause of Break-up and Flotation Characteristics for Sludge from DAF Process)

  • 유영훈;문용택;김성진;이광준;곽동희
    • 상하수도학회지
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    • 제24권5호
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    • pp.527-536
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    • 2010
  • Although the bubble-floc agglomerate floated and formed the float layer on the surface of the water in the DAF process, after inducing in the thickening tank a part of the bubble-floc agglomerate come up again to the surface and the other is settled at the bottom of the tank. The bubble-floc agglomerate divided into two group as the scum on the surface and the sludge of the bottom gives rise to operational troubles for the thickening process. In order to find out the cause of break-up and the effective thickening method for sludge from the DAF process, the composition of the bubble-floc agglomerate was investigated and a series of flotation experiments carried out. There was no difference of composition between the scum on the surface and the sludge of the bottom in the thickening tank. The coagulation was not effective to improve the trouble that the bubble-floc agglomerate divided into the scum and the sludge. It was estimated that for the bubble-floc agglomerate of thickening tank the trouble was caused by not the change or the difference of chemical composition but whether the bubble-floc agglomerate hold bubbles. Furthermore, for the effective thickening of sludge from the DAF process, it is required an additional flotation applied the AS ratio depending upon the solid concentration of sludge as the operation parameter.

점착성에 따른 부유 미립자의 플럭밀도에 대한 물리적 특성 (Physical Characteristics of Floc Density of Suspended Fine Particles in accordance with the Cohesiveness)

  • 최인호;김종우
    • 한국습지학회지
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    • 제20권3호
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    • pp.227-234
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    • 2018
  • 본 논문은 점착성 변화에 따른 부유 미립자의 플럭밀도에 대한 물리적 특성을 조사하였다. 플럭밀도에 관한 분석은 바닥전단응력 변화와 이온첨가 조건하에 자유수면이 존재하는 소형 환형수조에서 수행되었다. 미립자 실리카는 퇴적물에 영향을 미치는 점토의 주요 광물 성분이기 때문에 이를 실험재료로써 사용하였다. 연구결과로서 플럭밀도는 바닥전단응력, 염분과 pH값의 증가에 의존함을 나타낸다. 플럭밀도는 정지수면상태에서 염분과 플럭입자가 증가함에 따라 감소하는 반면에 바닥전단응력이 증가하면 정반대로 나타난다. 플럭밀도는 바닥전단응력의 범위가 $0.0086{\sim}0.0132N/m^2$이면 pH4.2에서 보다 pH6.8에서 증가하였다.

플럭크기를 이용한 응집공정 진단에 관한 연구 (Study of the Floc Size Distribution for the Efficiency Assessment of Flocculation Process in Water Works)

  • 정진홍;최계운;박재로
    • 한국산학기술학회논문지
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    • 제15권12호
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    • pp.7438-7442
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    • 2014
  • 정수처리공정 중 응집공정의 효율을 평가하기 위하여 Floc Size 분포를 분석하여 응집공정의 효율 평가를 수행하였다. 응집 효율은 탁도를 기준으로 평가하는 방법보다 응집 상태를 직접 평가하는 Floc의 크기 및 개수를 분석하여 정량화하는 기법을 제시하였다. 원수의 탁도 분포에 따른 Floc의 성장 상태를 분석하였다. 응집지에서 원수 탁도가 5.0 NTU 내외로 유입되었을 경우 응집지 각 단의 G값이 각각 50 sec-1,, 30 sec-1, 10 sec-1일 때 효율이 가장 높게 나타났으며, 원수 탁도가 263 NTU로 유입되었을 경우 G값을 각각 65 sec-1, 40 sec-1, 10 sec-1으로 운전한 경우 효율이 가장 높게 나타났으며, 이때 $1200{\mu}m$ 이상의 Floc 개수는 약 14개로 분석되었다. G값에 따라 응집효율을 평가할 수 있는 지표인자로 Floc의 크기 및 개수로 공정 진단 수행이 가능할 것으로 판단된다.

Starvation전 제올라이트 및 입상활성탄의 주입이 슬러지 침강성 및 오염물질 처리효율 회복에 미치는 영향 (Effectiveness of Zeolite and Granular Activated Carbon Addition before Starvation for the Performance Recovering of the Sludge Settleability and Removal Efficiency)

  • 오혜란;김상수;문병현;윤조희
    • 대한환경공학회지
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    • 제32권3호
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    • pp.234-240
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    • 2010
  • SBR시스템을 이용한 비염분 폐수와 염분 폐수의 생물학적 처리 시 starvation이전 제올라이트 및 입상활성탄 주입이 starvation 이후 시스템의 재가동시 시스템의 성능회복에 대해 조사하였다. Starvation 이후 시스템의 재가동시, SVI, floc의 크기, fractal dimension, 유기물 지표인 $COD_{Mn}$과 T-N, T-P의 처리효율에 미치는 영향을 알아보고 회복 기간을 도출하고자 하였다. 5일 동안 starvation 후 재가동하였을 때에 초기의 SVI는 증가하였으나 시간이 경과함에 따라 감소하였다. 또한 floc 크기 및 fractal dimension이 클수록, 유기물, T-N 및 T-P 처리효율도 증가하였다. 시스템의 성능회복은 floc 크기 및 fractal dimension에 상관성을 가지고 있었다. Starvation 이후 재가동시 오염물질($COD_{Mn}$, T-N, T-P) 처리효율이 정상상태로 회복하는데 필요한 시간은 담체 주입이 미주입보다 더 짧은 시간이 소요되었다.