• 제목/요약/키워드: optimum coagulant dosage

검색결과 59건 처리시간 0.023초

실수형 유전-퍼지를 이용한 정수장 응집제주입제어에 관한 연구 (A Study on the Coagulant Dosage Control in the Water Treatment Using Real Number Genetic-Fuzzy)

  • 김용열;강이석
    • 상하수도학회지
    • /
    • 제18권3호
    • /
    • pp.312-319
    • /
    • 2004
  • The optimum dosage control is presumably the goal of every water treatment plant. However it is difficult to determine the dosage rate of coagulant, due to nonlinearity, multivariables and slow response characteristics, etc. To deal with this difficulty, the real number genetic-fuzzy system was used in determining the dosage rate of the coagulant. The genetic algorithms are excellently robust in complex optimization problems. Since it uses randomized operators and searches for the best chromosome without auxiliary informations from a population which consists of codings of parameter set. To apply this algorithms, we made the real number rule table and membership function from the actual operation data of the water treatment plant. We determined optimum dosages of coagulant(LAS) using the fuzzy operation and compared them with the dosage rate of the actual operation data.

응집제 주입설비 최적 운영방안 (The Method of Optimum Operation of Coagulant Dosage Facility)

  • 전욱표;오석영
    • 유체기계공업학회:학술대회논문집
    • /
    • 유체기계공업학회 2004년도 유체기계 연구개발 발표회 논문집
    • /
    • pp.275-281
    • /
    • 2004
  • Generally Jar-Test is available to determine the coagulant dosage rate. Disadventages associated with Jar-Test are that regular samples have to be taken requiring manual intervention and the limitation to feedback control. To deal with this difficulty, determined optimized dosage rates of coagulant to Investigates the union operation method of the statistical equation which uses the multi-regression method and the SCD.

  • PDF

하수처리시설에서 인 고도처리를 위한 자동제어시스템 개발에 관한 연구 (Development of the Automatic Control System for the Advanced Phosphorus Treatment in Sewage Treatment Plant)

  • 김선국;이호식;전태성
    • 한국물환경학회지
    • /
    • 제28권2호
    • /
    • pp.300-304
    • /
    • 2012
  • It has a limitation to satisfy the phosphorus effluent criteria of 0.2 mg/L which will be reinforced from 2012 with the Biological Nutrient Removal (BNR) process. The chemical coagulation process has been operated in parallel with the biological treatment process for advanced treatment of phosphorous in the developed countries including Europe. However, the coagulation process has some disadvantages such as the desired goal may not be achieved without injecting the optimum dosage of the coagulant. This study developed the automatic control system to inject the optimum dosage of phosphorous coagulant into the coagulation process. The adopted coagulant was 10% Poly Aluminum Chloride (PAC) in this study. The automatic control system developed in this study was adopted for the treatment of the phosphorus from the effluent in SBR process. The automatic control system was composed of the data receiving part, the optimum coagulant dosage control part and the data transmit part. The result of the phosphorous advanced treatment of the SBR effluent using the automatic control system showed the removing efficiency over 95% consistently with the phosphorous concentration under 0.02 ~ 0.15 mg/L. The reproducibility analysis for checking the safety of automatic control system showed more than 95% correlation.

상수처리시스템 응집제 주입공정 퍼지 모델링과 제어 (Fuzzy modeling and control for coagulant dosing process in water purification system)

  • 이수범;남의석;이봉국
    • 제어로봇시스템학회:학술대회논문집
    • /
    • 제어로봇시스템학회 1996년도 한국자동제어학술회의논문집(국내학술편); 포항공과대학교, 포항; 24-26 Oct. 1996
    • /
    • pp.282-285
    • /
    • 1996
  • In the water purification plant, the raw water is promptly purified by injecting chemicals. The amount of chemicals is directly related to water quality such as turbidity, temperature, pH and alkalinity. At present, however, the process of chemical reaction to the turbidity has not been clarified as yet. Since the process of coagulant dosage has no feedback signal, the amount of chemical can not be calculated from water quality data which were sensed from the plant. Accordingly, it has to be judged and determined by Jar-Test data which were made by skilled operators. In this paper, it is concerned to model and control the coagulant dosing process using jar-test results in order to predict optimum dosage of coagulant, PAC(Polymerized Aluminium Chloride). The considering relations to the reaction of coagulation and flocculation, the five independent variables(turbidity, temperature, pH, Alkalinity of the raw water, PAC feed rate) are selected out and they are put into calculation to develope a neural network model and a fuzzy model for coagulant dosing process in water purification system. These model are utilized to predict optimum coagulant dosage which can minimize the water turbidity in flocculator. The efficacy of the proposed control schemes was examined by the field test.

  • PDF

MSBR 공정에서 전기전도도를 이용한 인 제거 자동제어시스템 - 현장 적용 중심 - (Automatic T-P Coagulation Control System using an EC in the MSBR Process - Full Scale Study -)

  • 장희선;이호식
    • 한국물환경학회지
    • /
    • 제33권1호
    • /
    • pp.90-96
    • /
    • 2017
  • Many sewage treatment plants have applied the advanced technology of chemical coagulant system to remove phosporus in Korea. However there are some problems for the injection of optimum coagulant dosage. In order to solve these problems, the research related to the more cost-effective automatic total phosphorus coagulation control system using an EC(Electrical Conductivity) have been in progress. This study was conducted by the same process and operation method as the Lab-scale for public small town sewage treatment plant. First, it confirmed the correlation among the EC, PO4-P and coagulant dosage in the Lab-scale MSBR(Membrane Sequencing Batch Reactor) process. Next, it analyzed that correlation coefficient of EC and the coagulant dosage was 0.92 in the Full-scale MSBR process. As a result, not only T-P removal efficiency was doubled but also it satisfied the effluent water quality standard in a stable manner. In addition, by applying the automatic control system using the EC, compared to the fixed coagulant injection system the coagulant dosage could be reduced by 28%.

진양호소수의 효과적인 정수처리를 위한 최적응집제 주입량 결정 -조류제거를 위한 응집제 주입효과- (Determination of Optimum Coagulant Dosage for Effective Water Treatement of Chyinyang Lake - The Effect of Coagulant Dosing on Removal of Algae-)

  • 이원규;조주식;이홍재;임영성;허종수
    • 한국환경과학회지
    • /
    • 제8권5호
    • /
    • pp.625-631
    • /
    • 1999
  • This study was performed to determine the optimum coagulant dosing for effective treatment of raw water in Chinyang lake. Removal rates of algae and characteristics of the water according to coagulants dosage were investigated by treatment with Microcystis aeruginosa, which is a kind of blue-green algae, to the raw water below 5NTU. The coagulants dosage for maximum removal rate of algae were 30 mg/$\ell$ of Alum, 30 mg/$\ell$ of PAC and 10 mg/$\ell$ of PACS, respectively. The removal rate of algae in 30 mg/$\ell$ of PAC was highest as 85% compared with the other treatments. At the point of maximum removal rate of algae, the removal rates of turbidity were 34%, 66% and 22% in Alum, PAC and PACS, respectively. Residual Al was decreased depend upon decreasing turtidity in water by treatment of Alum or PAC, but decreased depend upon increasing turbidity in water by treatment of PACS. The removal rate of ${Mn}_{2+}$ in water was high in the order of Alum, PAC and PACS treatment. And ${Fe}_{2+}$ in water was not changed by treatemnt of these coagulants. Particle numbers distributions according to the particle size of suspended solids that were not precipitated at 8 min. of settling time after treatment of coagulants dosage for the maximum removal rate of algae were investigated. Most of the particle sizes were below 30 $\mu$m and particle numbers distributions below 10 $\mu$m were 64%, 56% and 66% by treatment of Alum, PAC and PACS, respectively. Zeta potential was in the range of -6.1~-9.7 mV at optimum coagulants dosage for algae removal.

  • PDF

Automatic Control on Dosing Coagulant as to Stream Current

  • Oh, Sueg-Young;Byun, Doo-Gyoon;Hwang, Jae-Moon;Song, Hyun-Sung
    • 제어로봇시스템학회:학술대회논문집
    • /
    • 제어로봇시스템학회 2005년도 ICCAS
    • /
    • pp.1318-1321
    • /
    • 2005
  • As recently raw water quality has been polluted as well as its quality has been remarkably varied according to season and region, the precise control of coagulant dosage is being keenly required in water treatment plants. The amount of coagulant is closely related to raw water quality such as turbidity, alkalinity, water temperature, pH, electrical conductivity, etc. Since the optimum quantity of chemicals is not yet finalized, so dosage rate must be decided by using jar test that takes one or two hours. Hereupon, the output signal of stream current and multi-regression on historical data were proposed to be applied to the coagulant dosing control. In consequence of applying the scheme to automatic determination of the dosage rate, it was testified that the determination of dosage rate was very effective in case it is performed as to real-time sensing of water quality and the output signal of stream current.

  • PDF

역삼투법 해수담수화 전처리 여과공정의 최적조건 (Determination of the optimum filtration conditions in pretreatment of seawater desalination by reverse osmosis)

  • 김승현;윤종섭;이석헌
    • 상하수도학회지
    • /
    • 제23권2호
    • /
    • pp.207-214
    • /
    • 2009
  • This study examines the optimum filtration conditions in pretreatment of seawater desalination by reverse osmosis. For this purpose, Masan bay seawater is treated through a gravity filter column while $FeCl_3$ is added as coagulant. The conditions of coagulantd osage, media depth, filtration rate, and backwash time are evaluated. The study results show that the filtrate quality improved with increasing coagulant dosage, but head loss rapidly increased. After 4mg/L, the unit filter run volume reduced to less than $200m^3/m^2$. Considering the head loss development, 4mg/L is determined as the optimum dosage. The better filtrate qualities are obtained with depth of 100cm than that of 80cm. The two stage filtration, which outperformed the single stage filtration, is suggested for treatment of Masan bay. The filtration rate of 5m/h is decided as the optimum condition considering the head loss development. At 10m/h, the filtrate quality deteriorated even though the extent was minimal, and head loss increased rapidly. The backwash time of 10 min is decided appropriate.

응집과 균질화가 팽화슬러지의 용존공기부상과 침전에 미치는 영향 (Effect of Coagulation and Homogenization on the Dissolved Air Flotation and Sedimentation of Bulking Sludge)

  • 김동석;박영식
    • 한국환경보건학회지
    • /
    • 제33권1호
    • /
    • pp.68-74
    • /
    • 2007
  • The objective of this study is to examine the effect of the coagulation and homogenization in bulking sludge thickening of paper manufacturing plant using DAF(Dissolved Air Flotation) and gravitational sedimentation. The effects of parameters such as dosage of coagulant and homogenization time were examined. The results showed that DAF and sedimentation was affected aluminum sulfate and anion polymer coagulant differently. At the optimum dosage of aluminum sulfate, thickening efficiency of DAF and sedimentation process were increase 1.25 time and 2.02 time, respectively. At the optimum dosage of anion polymer coagulant, thickening efficiency of DAF process was increase 1.35 time, but thickening efficiency at sedimentation was 1.06 time. When anion polymer coagulant of 0.5 mg/l was added in DAF process, water content of sludge was decreased from 96.6% to 90.7% in dewatering process using Buchner funnel test device. After homogenization(20500 rpm, 10 min), Sauter mean diameter of sludge floc was decreased from 631 ${\mu}m$ to 427 ${\mu}m$, however increase of flotation efficiency by DAF was only 1.09 time.

진양호소수의 효과적인 정수처리를 위한 최적응집제 주입량 결정 -콜로이드성 오염물질 처리를 위한 응집제 주입효과- (Determination of Optimun Coagulant Dosage for Effective Water Treatment of Chinyang Lake -The Effect of Coagulant Dosing on Remoaval of Colloidal Pollutants-)

  • 이원규;조주식;이홍재;허종수
    • 한국환경과학회지
    • /
    • 제7권6호
    • /
    • pp.761-772
    • /
    • 1998
  • 상수원수의 효과적인 처리를 위한 최적 응집제 주입량을 결정하기 위하여 상수원수의 콜로이드성 오염물질 처리를 위한 Alum, PAC 및 PACS의 응집제 주입량별 탁도제거 및 원수특성변화를 조사한 결과는 다음과 같다. 최저 잔류탁도를 나타내는 최적 응집제 주입량은 원수의 탁도가 5NTU인 경우 Alum은 35mg/ι, PAC은 30mg/ι 및 PACS는 10mg/ι이었고, 원수의 탁도가 10NTU인 경우 Alum은 30mg/ι, PAC은 25mg/ι 및 PACS는 10mg/ι이었으며, 이때 침전시간 4분 및 8분대의 탁도제거율은 원수탁도 5NTU인 경우 Alum은 10 및 72%, PAC은 44 및 62%, PACS는 25 및 55%였고, 원수탁도 10NTU인 경우에는 Alum은 52 및 70%, PAC는 90 및 95%, PACS은 10 및 28%였다. PAC이 Alum 및 PACS에 비하여 floc형성속도와 침강성이 우수하고 탁도제거율도 높게 나타나 침전지내급수량 변동이 심하고 표면부하율이 과부하일 경우 PAC을 사용하는 것이 유리할 것으로 판단되었다. 원수의 탁도별 응집제 주입량에 따른 pH 및 알칼리도는 응집제 주입량이 증가할수록 감소되었으나 각 응집제 최대 주입량에서 pH는 음용수 수질기준인 pH 5.8이하로는 감소되지 않았으며, 알칼리도도 재탁현상이 일어날 수 있는 10mg/ι 이하로는 감소되지 않았다. 처리수준 잔류 Al은 원수탁도 5 및 10NTU인 경우 Alum과 PAC은 그 주입량이 저농도에서 고농도로 갈수록 잔류탁도가 감소함으로써 잔류 Al도 감소하였으나 PACS는 잔류탁도가 증가하는 주입량에서도 잔류 Al은 감소하였다. 수중 KMnO$_4$ 소비량은 응집제 주입량이 증가할수록 감소되었으며, 최저 잔류 탁도를 나타내는 최적 응집제 주입량에서의 KMnO$_4$ 소비량 감소율은 원수탁도 5NTU일 경우 PAC 39%, Alum 18% 및 PACS 11%였으며, 10NTU일 경우에는 PAC 42%, Alum 27% 및 PACS 36%로서 전반적으로 탁도제거율과 KMnO$_4$소비량간에는 일정한 경향이 없는 것으로 나타났다. 수중 TOC는 응집제 주입량이 증가함에 따라 약간씩 감소되었으나 응집제 주입량 30mg/ι 이후부터는 일정 수준으로 유지되었으며, 감소되는 정도는 PACS >PAC >Alum순이었다. 최저 잔류탁도를 나타내는 최적 응집제 주입량에서의 Zeta potential은 원수탁도가 5NTU일 경우 Alum, PAC 및 PACS 모두 -20mV∼-15mV사이였으며, 원수 탁도가 10NTU인 경우에는 0∼0.5mV 범위에 있는 것으로 나타나 응집제 종류 및 주입량이 상이하더라도 응집효율이 가장 양호한 상태에서의 Zeta potential은 일정한 범위내에 있는 것으로 나타났다.

  • PDF