• 제목/요약/키워드: Optimum Coagulation pH

검색결과 78건 처리시간 0.025초

Development of Optimal Treatment Process Train of Leachate from Industrial Waste Disposal Site

  • Han Gee Baek;Choi Kwang Soo;Min Man Gi;Han Young Hwan;Im Jung Hoon;Lee Hae Goon;Choi Myung Won;Kim Chang Won;Park Dong Keun
    • Environmental Sciences Bulletin of The Korean Environmental Sciences Society
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    • 제2권2호
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    • pp.115-121
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    • 1998
  • Train of chemical and biological processes was investigated to treat leachate from industrial waste landfill. Organics and nitrogen concentrations of landfill leachate studied in this research were high and their BOD/COD ratio was 0.3. Biological process should be combined with chemical process for optimum treatment of leachate. PAC(Polyaluminium chloride) was the best coagulant among three chemicals tested, and the optimum condition of PAC coagulation was pH 6 and 1,250 mg/L of dosage. When SBR was operated for simultaneous removal of organics and nitrogen, removal efficiency of COD and T-N reached over $82\%,\;71\%,$ respectively and time distribution of 2/4/2/1 was most effective for one cycle of anoxic/aerobic/anoxic/aerobic.

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정수공정 개선을 위한 유기성 Polymer의 사용 (Utilization of Organic Polymers for Improvement of Drinking Water Treatment Process)

  • 이화자;김정숙;강임석
    • 한국환경과학회지
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    • 제7권2호
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    • pp.217-222
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    • 1998
  • Organics matters including algae are the major contaminants of Nak-dong river and it's concentration Is more Increasing now. The use of coagulants has been Incresed for the effective treatment of drinking water, and aluminum coagulants have been the most widely used in raw water treatment. However, when inorganic metal coagulant is excessively used for long period, it would result in secondary problems, such as increasing sludge production, enhancing the cost of water treatment process, and increasing concentration of residual metal, especially aluminum. Therefore, recently. in order to reduce the use of metal coagulant and enhance the coagulation effectiveness, several alternative coagulants, such as polymeric Inorganic coagulants and organic polymers, have been used In water treatment plants. The objectives of thins research were (11 to determine optimum dosage concentration and compare the coajuiation efnciency at various pH ranees with alum alone, alum+cationic polymer, and alum+anlonlc polymer, (21 to evaluate the amount of alum reduced by using organic polymer, (31 to maximize removal officiency of organic matter and minimize the concentration of residual aluminum.

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응집제 종류에 따른 하수 슬러지의 침강 및 탈수 특성 변화 (Variation of Sedimentation & Dewaterability Characteristics of Sewage Sludge under Various Coagulants)

  • 백선재;조정민;송현우;한인섭
    • 한국물환경학회지
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    • 제30권3호
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    • pp.311-318
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    • 2014
  • The purpose of this study is to investigate the effect of various types of coagulant on dewaterability and settleability of sewage sludge for the application of dewatering process. Cationic organic coagulants and inorganic coagulants of the aluminium base were used; PAC (Poly Aluminium chloride, $Al_2O_3$ 17%) and C-210P (0.2%). After Jar test, PAC 26 mg/L and 0.2% C-210P 55 mg/L was decided as the optimum concentration of the coagulant according to zeta potential measurement. pH, alkalinity and viscosity were measured in all experiments and the data on sedimentation characteristics is analyzed by SDI, SVI sedimentation rate and solid flux. The SRF(Specific Resistance of Filtration) experiment was conducted with the result of single and dual injection system as the dewaterability experiment. As a result, the organic coagulant making large floc has good characteristics of sedimentation and agglutination. Also, it is observed that the organic coagulants injection has a better dewaterability efficiency of coagulants under the condition of the lowest SRF value, followed by dual and inorganic coagulants injection.

신경회로망을 이용한 상수처리시스템의 응집제 주입공정 최적화 (Optimization of coagulant dosing process in water purification system using neural network)

  • 남의석;박종진;장석호;차상엽;우광방;이봉국;한태환;고택범
    • 제어로봇시스템학회논문지
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    • 제3권6호
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    • pp.644-651
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    • 1997
  • In the water purification plant, chemicals are injected for quick purification of raw water. It is clear that the amount of chemicals intrinsically depends on water quality such as turbidity, temperature, pH and alkalinity. However, the process of chemical reaction to improve water quality (e.g., turbidity) by chemicals is not yet fully clarified nor quantified. The feedback signal in the process of coagulant dosage, which should be measured (through the sensor of the plant) to compute the appropriate amount of chemicals, is also not available. Most traditional methods focus on judging the conditions of purifying reaction and determine the amounts of chemicals through manual operation of field experts using Jar-test data. In this paper, a systematic control strategy is proposed to derive the optimum dosage of coagulant, PAC(Polymerized Aluminium Chloride), using Jar-test results. A neural network model is developed for coagulant dosing and purifying process by means of six input variables (turbidity, temperature, pH, alkalinity of raw water, PAC feed rate, turbidity in flocculation) and one output variable, while considering the relationships to the reaction of coagulation and flocculation. The model is utilized to derive the optimum coagulant dosage (in the sense of minimizing turbidity of water in flocculator). The ability of the proposed control scheme validated through the field test has proved to be of considerable practical value.

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Fenton 및 Photo-Fenton 산화공정을 이용한 염색 폐수의 처리에 관한 연구 (A Study on the Dye-Wastewater Treatment by Fenton and Photo-Fenton Oxidation Process)

  • 조일형;고영림;이소진;이홍근;조경덕
    • 한국환경보건학회지
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    • 제26권4호
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    • pp.29-37
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    • 2000
  • Fenton’s oxidation process is one of the most commonly applied processes to the wastewater which cannot be treated by conventional biological treatment processes. However, it is necessary to minimize the cost of Fenton’s oxidation treatment by modifying the treatment processes or other means of chemical treatment. So, as a method for the chemical oxidation of biorefractory or nonbiodegradable organic pollutants, the Photo-Fenton-Reaction which utilizes iron(11)salt. $H_2O$$_2$ and UV-light simultaneously has been proprosed. Therfore, the purpose of this study is to test a removal efficiency of dye-wastewater and treatment cost with Fenton’s and Photo-Fenton’s oxidation process. The Fe(11)/$H_2O$$_2$ reagent is referred to as the fenton’s reagent. which produces hydroxy radicals by the interaction of Fe(11) with $H_2O$$_2$. In this exoeriment, the main results are as followed; 1. The Fenton oxidation was most efficient in the pH range of 3-5. The optimal condition for initial reaction pH was 3.5 for the high CO $D_{Cr}$ & TOC-removal efficiency. 2. The removal efficiency of TOC and CO $D_{Cr}$ increased up to the molar ration between ferrate and hydrogen peroxide 0.2:1, but above that ratio removal efficiency hardly increased. 3. The highest removal efficiency of TOC and CO $D_{Cr}$ were showed when the mole ration of ferrate to hydrogen peroxide was 0.2:3.4. 4. Without pretreatment process, photo-fenton oxidation which was not absorbed UV light was not different to fenton oxidation. 5. And Fenton oxidtion with pretreatment process was similar to Fenton oxidation in the absence of coagulation, the proper dosage of F $e^{2+}$: $H_2O$$_2$ was 0.2:1 for the optimal removal efficiency of TOC or CO $D_{Cr}$ .6. Also, TOC & CO $D_{Cr}$ removal efficiency in the photo-fenton oxidation with pretreatment was increased when UV light intensity enhanced.7. Optimum light intensity in the range from 0 to 1200 W/$m^2$ showed that UV-intensity with 1200W/$m^2$ was the optimum condition, when F $e_{2+}$:$H_2O$$_2$ ratio for the highest decomposition was 0.2:2.5.EX>$_2$ ratio for the highest decomposition was 0.2:2.5.

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Influence of Milk Co-precipitates on the Quality of Restructured Buffalo Meat Blocks

  • Kumar, Sunil;Sharma, B.D.;Biswas, A.K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제17권4호
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    • pp.564-568
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    • 2004
  • Restructuring had made it possible to utilize lower value cuts and meat trimmings from spent animals by providing convenience in product preparation besides enhancing tenderness, palatability and value. Milk co-precipitates (MCP) have been reported to improve the nutritional and functional properties of certain meat products. This study was undertaken to evaluate the influence of incorporation of milk co-precipitates at four different levels viz. 0, 10, 15 and 20% on the quality of restructured buffalo meat blocks. Low-calcium milk co-precipitates were prepared from skim milk by heat and salt coagulation of milk proteins. Meat chunks were mixed with the curing ingredients and chilled water in a Hobart mixer for 5 minutes, followed by addition of milk co-precipitates along with condiments and spice mix and again mixed for 5 minutes. Treated chunks were stuffed in aluminium moulds and cooked in steam without pressure for 1.5 h. After cooking, treated meat blocks were compared for different physico-chemical and sensory attributes. Meat blocks incorporated with 10% MCP were significantly better (p<0.05) than those incorporated with 0, 15 and 20% MCP in cooking yield, percent shrinkage and moisture retention. Sensory scores were also marginally higher for meat blocks incorporated with 10% MCP than product incorporated with 15 and 20% MCP, besides being significantly higher than control. On the basis of above results 10% MCP was considered optimum for the preparation of restructured buffalo meat blocks. Instrumental texture profile analysis revealed that meat blocks incorporated with 10% MCP were significantly better (p<0.05) in hardness/ firmness than control although, no significant (p>0.05) differences were observed in cohesiveness, springiness, gumminess and chewiness of both type of samples.

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
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    • 제7권6호
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    • pp.761-772
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    • 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.

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pH조절 분배추출에 의한 식물체 중 Methoxyfenozide와 Bentazone의 HPLC 분석 (Analysis of Methoxyfenozide and Bentazone in Plant with HPLC by pH-Adjusted Liquid-liquid Partition Cleanup)

  • 노석초;황철환;유기용;한성수
    • 한국환경농학회지
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    • 제26권3호
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    • pp.246-253
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    • 2007
  • 이 연구는 액액분배과정 중 pH 조절에 의한 diacylhyazine계의 곤충생장조정(IGR)계 살충제 methoxyfenozide와 benzothiadiazinone계의 제초제 bentazone의 분배효율을 향상시키기 위하여 수행하였다. 현미시료는 두 약제 모두 "추출$\rightarrow$응고법$\rightarrow$분배추출$\rightarrow$florisil column chromatography"의 동일한 과정을 거쳤다. 볏짚시료에 있어서 methoxyfenozide는 "추출$\rightarrow$1 M-NaOH 용액에 의한 알칼리화$\rightarrow$분배추출$\rightarrow$응고법$\rightarrow$florisil column chromatography"의 과정을 거친 후 용리액인 acetonitrile : 20 mM sodium acetate(75:25, v/v)로 정용, HPLC로 분석하였다. Bentazone의 경우는 "추출$\rightarrow$1 M-NaOH 용액 첨가에 의한 알칼리화$\rightarrow$유기용매 세척$\rightarrow$12 M-HCl 의한 산성화$\rightarrow$분배추출$\rightarrow$florisil column chromatography"의 과정을 거쳤으며, acetonitrile : 75 mM sodium acetate(pH 6.0) (40:60, v/v)로 정용, HPLC로 분석 하였다. Methoxyfenozide의 회수율은 현미 83.5-97.4%, 볏짚 86.4-97.3%였으며, 분석법의 검출한계는 현미 0.02 mg/kg 볏짚 0.04 mg/kg이었다. Bentazone의 회수율은 현미 86.8-101.9 %, 볏짚 88.3-94.5%였으며, 분석법의 검출한계는 현미 0.005 mg/kg, 볏짚 0.01 mg/kg이었다. 본 연구결과에서 얻은 위 방법은 재현성 있는 안정적 분석조건을 제공한다는 점에서 두 약제의 잔류분석에 유용하게 적용될 수 있을 것으로 생각된다.

된장 유래 혈전분해효소 생산균주의 분리 및 최적 효소생산 조건 탐색 (Screening of Fibrinolytic Enzyme Producing from Microorganisms in Korean Fermented Soybean Paste and Optimum Conditions of Enzyme Production.)

  • 옥민;조영수
    • 한국식품저장유통학회지
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    • 제12권6호
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    • pp.643-649
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    • 2005
  • 전통발효식품인 된장으로부터 높은 활성의 fibrinolytic enzyme를 생산하는 미생물을 수십 종 분리하였다. 산업적으로 우수한 균종을 선별하기 위하여 분리된 미생물중 fibrinolytic enzyme활성과 성장 속도면에서 가장 우수한 균주를 선별하여 하였으며, 형태학적, 생화학적 및 생리학적 특성을 조사한 후 Bacillus sp.로 동정되었다. Fibrinolytic enzyme생산을 위한 최적 배양조건은 초기 pH $6\~8$일 때 상대활성도가 $80\%$이상을 나타내었고, 배양 12시간째에 가장 높은 활성도를 나타내었다. Fibrin plate를 이용한 혈전용해능을 확인한 결과 높은 혈전용해능을 가지고 있었다. 탄소원으로 galactose를 $4\%$ 첨가 하였을 때 가장 우수하였으며, 질소원은 malt extract를 $4\%$ 첨가 하였을 때 가장 우수하였다. 무기염은 $K_2HPO_4$를 첨가하였을 때 가장 우수한 활성을 나타내었다.

CuS 침전의 기포흡착분리에 관한 연구 (Bubble Adsorptive Separation of CuS Precipitates)

  • 신정호;박경기;정갑섭;이근희
    • 공업화학
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    • 제9권1호
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    • pp.20-27
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    • 1998
  • CTAB에 의한 CuS 침전 미립자의 응집과 기포 흡착특성을 고찰하였다. CTAB의 기포흡착은 Langmuir흡착식을 따르며, 포말간 본체액의 동반을 고려한 회분해석으로부터 구한 흡착열은 3700cal/mol로 나타났다. CTAB에 의한 CuS미립자의 기포흡착은 기포-입자간 충돌흡착으로 설명되었고, 흡착분리에 대한 최적 농도비는 CuS의 최적 응집농도비와 일치하였으며, 그 값은 [CTAB] 대 [CuS]가 0.1로 얻어졌다. 기포에 의한 포집효율은 pH와 CTAB농도 등에 의존하나 공기의 유량에는 무관하였으며, 최대 포집효율은 최적 첨가농도에서 0.0002로 나타났다. 또한 Cu-Cd-Zn 황화물의 혼합계에서 CTAB를 사용한 기포흡착의 경우 ZnS의 선택적 분리가 가능하였다.

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