• 제목/요약/키워드: TOC (Total Organic Carbon)

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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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가축분뇨 자원화 처리시 수질오염물질 삭감율 산정 연구 (A Study on the Estimation of Water Pollutants Reduction Ratio in Livestock Manure Fertilization)

  • 어성욱
    • 한국물환경학회지
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    • 제33권6호
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    • pp.722-727
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    • 2017
  • Livestock manure is known to be the main cause of non-point pollution in agricultural areas. The pollutant reduction ratio of livestock manure recycling to fertilizers was measured in order to analyze the effect on the water quality of the Total Maximum Daily Load (TMDL) system in Korea. The reduction ratio has been applied by theoretical consideration without a survey, and there is no value for Total Organic Carbon (TOC) newly introducing any organic items. The reduction ratio of each pollutant from this study was revealed as follows: TOC, BOD, T-N and T-P were 0.34, 0.60, 0.37, and 0.42 for individual farm and 0.38, 0.61, 0.45 and 0.44 for entrustment facilities, respectively. The reduction ratio of individual farm was surveyed as TOC 0.63, BOD 0.62, T-N 0.42 and T-P 0.32 for liquid fertilizer, and TOC 0.30, BOD 0.64, T-N 0.40 and T-P 0.48 for compost. The total reduction ratio was derived by multiplying the ratio for liquid fertilizer and compost by the respective load. Compared to the pollutant reduction ratio of the individual farm with entrustment facilities marking the higher in liquid fertilizer and the lower in compost. Through this study, we found the difference of pollutant reduction ratio between a livestock manure recycling process and facilities. Although phosphorus is known as a preservative matter, the treatment efficiency of T-P is analyzed to decrease by chemical precipitation.

영산강의 유기물 플럭스와 장기변동에 대한 연구 (Long-term Variation and Flux of Organic Carbon in the Human-disturbed Yeongsan River, Korea)

  • 조형찬;조영길
    • 한국해양학회지:바다
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    • 제22권4호
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    • pp.187-198
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    • 2017
  • 영산강의 유기물 농도와 플럭스를 파악하기 위하여 2006~2015년까지 10년 동안 약 2주 간격으로 영본D 지점에서 강물을 채취하여 유기물(DOC, POC)을 분석하였다. DOC 농도는 연평균 $2.49{\sim}4.39mg{\cdot}C/L$ 범위로 연중 중영양상태가 유지되었고, 조류증식 및 강수에 의한 증감에 따라 30.1% (${\sigma}_x/\bar{x}$) 변동하였다. POC는 2006년 $6.68({\pm}2.80)mg{\cdot}C/L$에서 2015년 $0.19({\pm}0.14)mg{\cdot}C/L$로 10년간 점진적으로 무려 97% 감소하였으며, 2011년 보건설을 기점으로 극적인 변화를 보였다. 이는 보에 의한 정체와 거름망 효과에 기인한 것으로서 보건설 전후로 POC와 SPM 관계의 상이함, 보건설 이후 POC와 chlorophyll-a의 관계로부터 POC의 기원 및 조성의 극명한 변화가 유도된 사실을 파악하였다. TOC 농도는 POC 감소효과로 보건설 이후 52.3% 줄었고 POC:DOC 존재형태 비 또한 DOC가 90.9%에 달하는 압도적 우위를 차지하였다. 하구언 배수량을 이용해 계산된 TOC 플럭스는 $2.56{\sim}19.41{\times}10^9g{\cdot}C/yr$ 범위에서 점진적 감소가 뚜렷하였으며, 2011년을 기점으로 전후 5년 평균 $14.54{\times}10^9g{\cdot}C/yr$에서 $5.40{\times}10^9g{\cdot}C/yr$로 62.9% 줄었다. 따라서 보건설 이후 2015년까지 $9.14{\times}10^9g{\cdot}C$, 즉 매년 약 $1.83{\times}10^9g{\cdot}C$의 유기물이 하상에 축적되었을 것으로 추정된다.

총유기탄소 분석을 위한 유리섬유를 이용한 이산화티타늄 광촉매 반응 (TiO2 Photocatalytic Reaction on Glass Fiber for Total Organic Carbon Analysis)

  • 박범근;이영진;신정희;백종후
    • 센서학회지
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    • 제31권2호
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    • pp.102-106
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    • 2022
  • Currently, the demand for real-time monitoring of water quality has increased dramatically. Total organic carbon (TOC) analysis is a suitable method for real-time analysis compared with conventional biochemical oxygen demand (BOD) and chemical oxygen demand (COD) methods in terms of analysis time. However, this method is expensive because of the complicated internal processes involved. The photocatalytic titanium dioxide (TiO2)-based TOC method is simpler as it omits more than three preprocessing steps. This is because it reacts only with organic carbon (OC) without extra processes. We optimized the rate between the TiO2 photocatalyst and binder solution and the TiO2 concentration. The efficiency was investigated under 365 nm UV exposure onto a TiO2 coated substrate. The optimized conditions were sufficient to apply a real-time monitoring system for water quality with a short reaction time (within 10 min). We expect that it can be applied in a wide range of water quality monitoring industries.

지표수 수질관리를 위한 적정 유기물질지표 선정 (Selection of the Optimum Organic Matter Index for Surface Water Quality Management)

  • 한대호;최지용
    • 환경정책연구
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    • 제10권4호
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    • pp.61-80
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    • 2011
  • 생분해성 물질 지표인 BOD 중심의 환경규제와 환경기초시설의 집중 투자로 인하여 전국적인 BOD 오염도는 지속적으로 개선되었다. 그러나 COD 등의 난분해성 물질은 주요 상수원을 포함하여 전국적으로 정체 또는 증가 추세를 보임에 따라 BOD 관리체계의 한계를 드러냄과 동시에 정체수역 증가와 같은 수체 특성변화의 반영 등 달라진 환경여건을 반영할 수 있는 지표의 필요성이 끊임없이 제기되고 있다. 따라서 본 논문에서는 수체의 변화된 유기물질 오염상태를 적절히 관리할 수 있는 유기물질 관리지표를 선정하였다. 지표전환의 항목으로 $COD_{Cr}$와 TOC를 검토해 본 결과 $COD_{Cr}$보다는 TOC를 향후 유기물질 관리지표로 선정함이 적정한 것으로 나타났다. TOC는 유기물지표로서 대표성,국제적 통용성, 모니터링 프로그램의 용이성, 분석기술의 유무, 정밀도 및 정확도, 분석에 소요되는 시간, 운전의 용이성, 소독부산물의 관리, 기존정책과의 연계성, 외국사례여부, 국내적용사례, 수생태계와의 상관성 등에 대한 평가 결과 타당한 것으로 나타났다.

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Chemical Properties of Sediment in Nanakita Estuarine Tidal Flat: Estimation of Sedimentary Organic Matter Origin by Stable Isotope and Fatty Acid

  • Shin, Woo-Seok;Aikawa, Yoshio;Nishimura, Osamu
    • Environmental Engineering Research
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    • 제17권2호
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    • pp.77-82
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    • 2012
  • The spatial variation of organic matter sources in tidal flat sediment of the Nanakita River estuary, involving Gamo lagoon on the north-east coast of Honshu Island, Japan, was examined using carbon stable isotopes and fatty acid biomarkers. The spatial variation of total organic carbon (TOC) contents and ${\delta}^{13}C$ values were highly variable in between the stations, such as sandy flat (1.3 mg/g, -21.0‰), sand-muddy flat (2.6 mg/g, -21.9‰), and muddy flat (24.9 mg/g, -25.9‰), respectively. Particularly, at the muddy flat, high TOC content and low ${\delta}^{13}C$ value of the sediments indicated that the surface sediment was composed largely of terrestrial organic matter. Whereas, at the sandy flat and sand-muddy flat, the high ratios of diatom and bacteria biomarkers indicated the high contribution of abundant microorganism along with marine organic matter in sediment composition. From these results, it considered that the amount and origin of transported sedimentary organic matter indicated different characteristics in this study stations.

Mechanism of P Solubilization in Vermicompost Treated Red Lateritic Soils

  • Pramanik, Prabhat;Chakraborty, Hritesh;Kim, Pil-Joo
    • 한국환경농학회:학술대회논문집
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    • 한국환경농학회 2011년도 30주년 정기총회 및 국제심포지엄
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    • pp.188-195
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    • 2011
  • Red lateritic soils are typically low in total organic carbon (TOC) and available phosphorus (AP) content and continuous fertilization is required to obtain desired crop yield. In this experiment, cattle manure in three forms (air-dried, composted and vermicomposted) were applied to red lateritic soil to study their effect on TOC and AP content of soil and probable mechanism of P-solubilization as affected by these treatments were also studied. Vermicompost was the most effective to solubilize insoluble P in red lateritic soil (Alfisols) as compared to other organic amendments (air-dried cattle manure and compost). The highest SPA in vermicompost-treated soil attributed to the comparatively higher concentration of all the three SPA isozymes in these soils. The maximum P-solubilization in these soils might be attributed to the highest SPA and presence of several organic acids like citric, lactic and oxalic acids in vermicompost-treated soils. Since, vermicompost application also increased TOC, mineralizable N and exchangeable K content of soil, vermicompost could be considered as the most rational organic amendment to improve chemical properties of red lateritic soils.

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경안천 유역의 강우 시, 비 강우 시 난분해성 유기물질 유출 특성 (Runoff Characteristics of Refractory Organic Matters from Kyongan River Watershed during Rainfall Event and Dry Season)

  • 김태원;길경익
    • 한국물환경학회지
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    • 제27권4호
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    • pp.397-404
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    • 2011
  • This research investigates the runoff characteristics of refractory organic matters from Kyongan river watershed. Samples were taken 27 times during dry season, 4 times during rain events and analyzed into flow rate, Dissolved Organic Carbon (DOC), Particulate Organic Carbon (POC), Refractory Dissolved Organic Carbon (R-DOC), Refractory Particulate Organic Carbon (R-POC). R-DOC during dry season was the lowest in winter and showed a rising tendency in spring and R-POC changes less than R-DOC. The mass loading of Refractory Total Organic Carbon (R-TOC) in summer takes approximately 80% of 1 year mass loading. During rainy season, EMC of R-DOC was similar to R-DOC in dry season. But maximum EMC of R-POC was 12 times higher than that of R-POC in dry season. Results of the survey show that enhanced management of R-DOC in dry season and R-POC in rainy season is needed.