• 제목/요약/키워드: Total organic carbon(TOC)

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갈수기 정수장운영관리 사례 - 갈수기 pH저감제(황산)투입에 의한 정수처리효율 향상 (Improvement of Water Treatment Efficiency by pH Decreasing Agent (H2SO4) for Droughty Seasons)

  • 가길현;김윤용;이준호;안치화;한인섭;민병대
    • 한국물환경학회지
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    • 제24권4호
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    • pp.415-422
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    • 2008
  • Drinking water treatment is enhanced by coagulant dosages and chlorine injection because of pH increase in raw water in droughty seasons such as spring and fall. But water quality deterioration is occurred by increase in residual aluminium and disinfection by-products. Coagulation process can be used to control natural organic matter (NOM) during water treatment. The effect of coagulation process appeared to depend on the pH of water rather than coagulant dosages. In this study, for water treatment in high pH season $H_2SO_4$ was applied for pH adjustment at full scale. Before and after pH adjustment by $H_2SO_4$ injection, water quality of drinking water was evaluate. In the result of investigation of total organic carbon (TOC) removal in high pH season, TOC was removed approximately 30~40%, which showed decrease in water treatment efficiency. Also, it is increased both particle numbers and residual Al concentration in the water. After $H_2SO_4$ injection for adjustment to pH<7.5 in settled water, treated water turbidity decreased in 0.047 NTU from 0.059 NTU, and particle numbers of filtered water decreased in 20/mL from 90/mL. On the other side, TOC removal efficiency increased in approximately 10% after adjustment of pH. In the result of decrease in pH in raw water through more coagulants and prechlorine without $H_2SO_4$ injection, trihalomethanes (THMs) concentration increased in $16{\mu}g/L$ from $8{\mu}g/L$.

배양조류의 염소소독에 의한 클로로포름 생성특성 연구 (Formation of Chloroform from Algal Cell Cultures by Chlorination)

  • 김학철;최일환
    • 환경위생공학
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    • 제24권2호
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    • pp.40-48
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    • 2009
  • Unusual bloom of toxic cyanobacteria in water bodies have drawn attention of environmentalists world over. Major bloom of Anabaena, Microcystis in water storage reservoir, rivers and lake leading to adverse health effects have been reported from Australia, England and many part of the world. These cyanobacterial cells can release intercellular matter like toxin in water and these intercellular matter can increase the concentration of organic matter. Cellysis can occur when algal cells meet the disinfectants like chlorine in water treatment plant and the resultant rising up of DOC(Dissolved Organic Carbon) or TOC(Total Organic Carbon) can increase the formation of disinfection by products. Disinfectants that kill microorganisms react with the organic or inorganic matter in raw water. In general disinfectants oxidize the matter in raw water and the resultant products can be harmful to human. There are always conflict about which is more important, disinfection or minimizing disinfection by products. The best treatment process for raw water is the process of the lowest disinfection by products and also the the lowest microorganism. In this study the cultured cells, Microcytis Aeruginosa(MA), Anabaena Flos-aquae(AF), Anabaena Cylindrica(AC), and the cells obtained in Daechung Dam(DC) whose dominant species was Anabaena Cylindrica were subjected to chlorination. Chlorination oxidizes inorganic and organic compounds and destruct live cells in raw water. Chloroform was analyzed for the cultured cells which were treated with $20mg/\ell$ dose of chlorine. In general chloroform is easily formed when dissolved organic matter react with chlorine. The cultured cells contributes the concentration of dissolved organic carbon and also that of total organic carbon which might be potent precusors of chloroform formed. The correlations of the concentration of chloroform, DOC and TOC were investigate in this study.

하수방류수 내 TOC 제거를 위한 전기분해공정의 최적 조건 (Optimal Condition of TOC Removal Parameter for Sewage Effluent using Electrolysis Process)

  • 안상우;정혁상;이희경;고준걸;명대원
    • 한국지반환경공학회 논문집
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    • 제18권4호
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    • pp.23-29
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    • 2017
  • 2013년 환경 정책 개정에 따라 총유기탄소(TOC)항목이 수질 및 수생태계 보전에 관한 법률에 도입되었으며, 이러한 정책 시행에 따라 공공하수처리시설에서의 TOC에 대한 수질관리의 필요성이 대두되었다. 본 연구는 실험실 규모 전기분해공정에서 전기화학적 반응을 이용하여 하수방류수 내 TOC 제거특성을 살펴보았다. 실험실 규모의 전기분해공정에서의 실험 결과를 반응표면법에 적용하여 방류수 내 TOC 제거 특성분석을 실시하였다. 중심합성에 사용된 독립변수로는 전해공정의 주요 운전인자인 전극간격($x_1$), 전류밀도($x_2$), 전해질의 농도($x_3$)를 선정하였으며, 종속변수로는 TOC 제거효율(y)이다. 전해공정에서 최적화 조건은 전극간격 50mm, 전류밀도 $10.3mA/cm^2$, 전해질의 농도 0.1M로 조사되었다. 통계학적 결과를 바탕으로 독립변수는 전극간격 > 전류밀도 > 전해질농도의 순으로 작아지는 것으로 분석되었다.

구제역 매몰지역 침출수에서 발생하는 난분해성 유기물질 거동 (Behavior of Refractory Organic Matter in Leachate from Landfill Contaminated by Foot-and-mouth Disease)

  • 강미아;안예솔
    • 지질공학
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    • 제23권4호
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    • pp.427-434
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    • 2013
  • 구제역 매몰지에서 발생하는 침출수는 지하수, 호소수 및 하천수 등의 자연수에서 나타나는 유기물질의 성상(친수성 유기물질: 22~27%)과 달리 친수성유기물질을 44~50%로 포함하고 있었다. 자연수에서는 유기탄소가 미생물의 대사 등에 의해 감소되는 경향을 나타낸다. 하지만, 매몰 초기에 발생하는 구제역 침출수(leachate-1, 2)에서는 RTOC와 RDOC의 농도가 초기 TOC, DOC 농도보다 높게 나타나는 특성이 있다. 매몰시간이 경과하면서 RTOC와 RDOC는 초기 TOC와 DOC보다 낮게 검출되었다. 구제역 침출수 중 386일이 경과한 leachate-6의 RDOC는 RTOC 중에 91%를 차지하였다. 이것은 안정화된 매몰지 환경에서도 침출수 중에는 여전히 미생물 등의 활동에 의해 제거되기 어려운 형태의 난분해성 유기물질이 유기물질의 대부분을 차지하고 있음을 알 수 있다. 따라서 구제역 침출수의 난분해성 유기물질의 검출수준과 성상은 지표수 및 지하수에 대한 영향을 파악하는 정보로서 유효하며, 침출수 내 환경을 이해하는 데에도 기여할 것으로 기대된다.

다품목 공용 제약설비인 바이알 충전기에 대한 세척공정 밸리데이션 (Cleaning Validation Studies for Multi-Purpose Facility : Vial Filling Machine)

  • 최한곤;양호준;김영란;성준호;황마로;김종오;용철순
    • Journal of Pharmaceutical Investigation
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    • 제39권4호
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    • pp.263-267
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    • 2009
  • The purpose of this study is to evaluate the efficacy of stipulated cleaning process, and the prohibition of cross-contamination and microbiological contamination, which inadequate cleaning in multi-production could occur, through cleaning validation of multi-purpose facility used to produce five biopharmaceutical products as sterile injection. After production of five biopharmaceutical products such as hGH, rhGCSF, rhEPO, rhFSH and rhIFN using vial filling machine, the cleaning validation such as residual analysis of active ingredients or human serum albumin, measurement of total organic carbon (TOC), residual analysis of detergent and microbiological contamination were carried out. In the case of rhGH and rhGCSF clean validations, drug residues were not detected. Furthermore, in the case of rhEPO, rhFSH and rhIFN clean validations, human serum albumin residues were not detected. At TOC (total organic carbon) analysis, all clean validations gave the TOC of about average 137.93%, not more than 150% of acceptance criteria. At sodium analysis for the checking of residues of cleaning agent, sodium residues were not detected. In sterility test, they showed no microbiological contamination of bacteria and fungi. Thus, this cleaning validation was determined as successful in protection of cross-contamination and induction of safety in multi-purpose facility.

돈분 퇴비화 공정에서 석고 및 석탄회의 첨가효과 (Effect of Adding Gypsum and Coal Fly Ash on Composting Process of Pig Manure)

  • 유현철;김정섭;곽명화;이히인;박승조
    • 자원리싸이클링
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    • 제11권1호
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    • pp.32-36
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    • 2002
  • 이 연구는 돈분, 석고와 석탄화를 혼합물을 퇴비화한 것이다. 실험에 사용한 A 시료(PM : SD = 6 : 4)와 C 시료(PM : SD : GS : CFA = 6 : 2 : 1 : 1)를 사용하여 퇴비화 실험결과 A, C 시료의 초기 수분함량은 64, 50%이었고 온도, pH에서도 A시료와 비교했을 때 큰 차이는 없었으나 A,C 시료의 최종 TOC는 약 5550, 2900 mg/kg 이었다. 양이온 교환능은 A, C시료와는 크게 차이는 없었으나 CEC값으로 보아 숙성에 더 많은 시간이 필요할 것으로 생각된다. 그러나 석고와 석탄회 첨가는 돈분 퇴비화 과정에서 첨가제로서의 역할이 있음을 알 수 있었다.

하천수내 TOC 농도 추정을 위한 단순회귀모형과 다중회귀모형의 개발과 평가 (Development and Evaluation of Simple Regression Model and Multiple Regression Model for TOC Contentation Estimation in Stream Flow)

  • 정재운;조소현;최진희;김갑순;정수정;임병진
    • 한국물환경학회지
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    • 제29권5호
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    • pp.625-629
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    • 2013
  • The objective of this study is to develop and evaluate simple and multiple regression models for Total Organic Carbon (TOC) concentration estimation in stream flow. For development (using water quality data in 2012) and evaluation (using water quality data in 2011) of regression models, we used water quality data from downstream of Yeongsan river basin during 2011 and 2012, and correlation analysis between TOC and water quality parameters was conducted. The concentrations of TOC were positively correlated with Chemical Oxygen Demand (COD), Biochemical Oxygen Demand (BOD), TN (Total Nitrogen), Water Temperature (WT) and Electric Conductivity (EC). From these results, simple and multiple regression models for TOC estimation were developed as follows : $TOC=0.5809{\times}BOD+3.1557$, $TOC=0.4365{\times}COD+1.3731$. As a result of the application evaluation of the developed regression models, the multiple regression model was found to estimate TOC better than simple regression models.

공공하수처리시설 방류수 TOC에 영향을 주는 요인 분석 (Analysis of factors affecting effluent TOC in publicly owned treatment works)

  • 강성주;강병준;박규홍;정동환;이원석;정현미
    • 상하수도학회지
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    • 제33권2호
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    • pp.141-150
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    • 2019
  • Total organic carbon(TOC) was introduced as the water quality index of the rivers and lakes in 2013. This paper evaluated factors affecting effluent TOC concentrations and treated and discharged loads of existing publicly owned treatment works(POTWs). For selected POTWs with greater treatment capacity than $500m^3/day$, factorial analysis was used to consider effects of kinds of biological treatment processes, inflow of other types of wastewater(industrial, livestock, landfill leachate wastewater, etc.) with domestic wastewater, sewer separation rate, and effluent discharging zones in which different effluent criteria applied. As a result, those factors did not show significant effect on effluent TOC concentration of POTWs in effluent discharging zone I and II. However, In effluent discharging zone III and IV, kinds of biological treatment processes, the inclusion of other waste in influent of domestic wastewater, and the sewer separation rate were significant factors. The treated TOC load in POTWs was also not affected significantly by the variables set in this study. On the other hand, those three factors influenced significantly on the TOC load discharged to water bodies. The sum of factorial effects and the contribution rate of three factors to the discharged TOC load was 60.23 and 41%, 59.57 and 41%, and 42.04 and 18%, respectively.

연안환경에서 유기물 지표 개발을 위한 가능성 평가: 용존유기탄소와 형광용존유기물질 활용 (Evaluation of the Possibility of Developing Organic Matter Indicators in Coastal Environments: Utilization of Dissolved Organic Carbon and Fluorescent Dissolved Organic Matter)

  • 이민영;양경선;김순찬;김태훈
    • Ocean and Polar Research
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    • 제43권2호
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    • pp.65-72
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    • 2021
  • In order to evaluate the dissolved organic carbon (DOC) and fluorescent dissolved organic matter (FDOM), as indicators of organic matter in the coastal environments, we measured the concentrations of DOC, FDOM, and chemical oxygen demand (COD) in saline groundwater (Woljeong, Pyoseon, and Hwasun beaches) and coastal seawater (Haengwon, Gwideok, Pyoseon, and Yeongnak) in Jeju, Korea. The highest concentrations of DOC and COD in groundwater were found in Woljeong and Pyoseon, and those in coastal water were observed in Haengwon and Pyoseon, indicating that the higher concentrations of DOC and COD seem to be associated with saline groundwater-driven dissolved organic matter (DOM) and/or biogeochemical processes. According to origin and optical properties of DOM using FDOM as a tracer, proportion of humic-like FDOM, more refractory DOM, was relatively greater in the groundwater than in the coastal water. With regard to this result, there was no relationship between DOC and COD in groundwater, while DOC showed a good positive correlation (r2 = 0.66) with COD in coastal water. This result indicates that COD as an indicator of assessment of DOM has a limitation in which it is difficult to quantify refractory DOM. Although DOC is a potential alternative to COD in the coastal environments, particulate organic carbon cannot be negligible due to relatively higher concentration compared to the open ocean. Therefore, the use of total organic carbon (TOC) as a replacement of COD in the coastal ocean is important, and the evaluation criterion of the TOC is necessary in order to evaluate of organic matter indicator in the various coastal environments.

응집에 영향을 미치는 물리-화학 인자 (The effect of physicochemical factors on the coagulation process)

  • 김상구;류재익;류동춘;김정현
    • 상하수도학회지
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    • 제11권1호
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    • pp.81-87
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    • 1997
  • Coagulation is very important process in water works. The subsequent processes are directly affected by this process. Many factors such as turbidity, alkalinity, pH, hardness, total organic carbon(TOC), velocity gradient and flocculation time effect on coagulation process. Among these factors, specially TOC is being concerned target substance to be removed due to trihalomenthanes(THMs) precursor and alkalinity is being one of the major parameter for removing TOC. We have researched the consumption of coagulant with TOC alkalinity concentration of water and removal efficiency of residual TOC and turbidity with alkalinity. Furthermore we have investigated particle size distributions with velocity gradient and alkalinity. The consumption of coagulant was proportionally increased to TOC and alkalinity concentration and the removal of TOC in Nakdong river water was very difficult more than 150 mg/l in alkalinity but large morecular weight organic such as humic acid could be removed easily. Coagulation of low alkalinity water was more rapidly occured than of high alkalinity water by analyzing the particle size distributions. High alkalinity water needed higher mixing energy for a good coagulation within limited flocculation time.

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