• Title/Summary/Keyword: TOC (Total Organic Carbon)

Search Result 268, Processing Time 0.03 seconds

Data Analysis for TOC and Discharge by using Wavelet Transform (웨이블렛 변환을 이용한 TOC와 유출량 자료 분석)

  • Park, Sung-Chun;Cho, Dong-Jin;Jin, Young-Hoon;Kim, Dong-Ryeol
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2008.05a
    • /
    • pp.2254-2257
    • /
    • 2008
  • 홍수와 가뭄, 수질오염 등의 피해에 대한 대책과 보다 효율적인 수자원 관리를 위해서 원자료에 대한 분석이 선행되어야 한다. 따라서 본 연구에서는 나주지점을 대상으로 하여 총유기탄소(Total Organic Carbon: TOC) 자료와 유출량 자료를 수집하였으며, 각 자료에 대하여 상세한 주기성분을 파악하기 위하여 웨이블렛 변환을 적용하였다. 대상지점으로 선정한 나주지점은 전라남도 나주시 나주대교 상류에 위치하고 있으며, 유역면적이 $2,0587.2km^2$이며, 유로 연장은 65.5km이다. 유출량과 수질자료의 주기성 분석을 위해 유기물의 양을 나타내는 수질지표인 TOC와 나주수위관측소에서 관측된 2003년${\sim}$2004년의 시수위자료를 유출량으로 환산한 값을 사용하였으며, 이 자료의 상세한 주기성 파악을 위해 웨이블렛 변환을 사용하였다. 일반적으로 주기성을 파악하기 위하여 푸리에 변환을 사용하지만, 푸리에 변환은 시간정보와 주파수를 동시에 파악할 수 없을 뿐만 아니라, 자료에 불연속성과 고주파수 성분이 포함될 경우 분석이 난이하다. 이러한 푸리에 변환의 단점을 보안한 것이 웨이블렛 변환이며, 푸리에 변환보다 계산속도가 빠르다. 또한 주어진 자료에 대하여 시간과 주파수 영역에서 동시에 파악하는 것이 가능하며, 불규칙한 자료를 평탄하게 함으로서 보다 상세한 주기성을 찾아낼 수 있다. 따라서 본 연구에서 추출한 각 자료의 상세 주기성분들은 향후 수자원 관리를 위한 기초자료로 활용될 수 있을 것으로 기대된다.

  • PDF

A Study on the Establishment of Total Organic Carbon in Drinking Water Standard (총유기탄소의 먹는물 수질기준 설정 연구)

  • Yu, Soon-Ju;Ahn, Kyung-Hee;Park, Su-Jeong;Kim, Mi-Ah;Choi, Ja-Yoon;Lee, Youn-Hee
    • Journal of Korean Society on Water Environment
    • /
    • v.25 no.5
    • /
    • pp.661-666
    • /
    • 2009
  • In this study, total organic carbon (TOC) and potassium permanganate ($KMnO_4$) demand were examined for raw and finished tap water and the range of $KMnO_4$ demand in drinking water was investigated. By analyzing the relationship between TOC and $KMnO_4$ demand, the applicability of TOC as a drinking water standard and its regulation level was proposed. The average $KMnO_4$ demand was 1.3 mg/L in 4,638 samples from finished drinking water, tap water and finished water from small facilities. $KMnO_4$ demand of 95% of samples was 2.9 mg/L which was 29% of the drinking water standard (10 mg/L). At 12 major drinking water treatment plants, the average $KMnO_4$ demand in July and August was 8.1 and 2.4 mg/L for raw and finished water, respectively. TOC in July and August was 2.0 and 1.15 mg/L for raw and finished water, respectively. The correlation coefficient between $KMnO_4$ demand and TOC was as high as 0.8 in both raw and finished water and $KMnO_4$ demand was twice of TOC in finished water. Because the correlation coefficient and ratio between $KMnO_4$ demand and TOC varied according to season and the characteristics of raw water, it would be difficult to establish TOC standard just from the ratio of $KMnO_4$ demand to TOC. However, it is possible to set the TOC range based on the accumulated $KMnO_4$ demand data or from the satisfactory correlation results. Then, it would be reasonable to establish TOC standard level as 4 ~ 5 mg/L.

Introduction of a New Method for Total Organic Carbon and Total Nitrogen Stable Isotope Analysis of Dissolved Organic Matter in Aquatic Environments (수환경 내 용존성 유기물질의 총 유기탄소 및 총 질소 안정동위원소 신규 분석법 소개)

  • Si-yeong Park;Heeju Choi;Seoyeon Hong;Bo Ra Lim;Seoyeong Choi;Eun-Mi Kim;Yujeong Huh;Soohyung Lee;Min-Seob Kim
    • Korean Journal of Ecology and Environment
    • /
    • v.56 no.4
    • /
    • pp.339-347
    • /
    • 2023
  • Dissolved organic matter (DOM) is a key component in the biogeochemical cycling in freshwater ecosystem. However, it has been rarely explored, particularly complex river watershed dominated by natural and anthropogenic sources, such as various effluent facility and livestock. The current research developed a new analytical method for TOC/TN (Total Organic Carbon/Total Nitrogen) stable isotope ratio, and distinguish DOM source using stable isotope value (δ13C-DOC) and spectroscopic indices (fluorescence index [FI] and biological index [BIX]). The TOC/TN-IR/MS analytical system was optimized and precision and accuracy were secured using two international standards (IAEA-600 Caffein, IAEA-CH-6 Sucrose). As a result of controlling the instrumental conditions to enable TOC stable isotope analysis even in low-concentration environmental samples (<1 mgC L-1), the minimum detection limit was improved. The 12 potential DOM source were collected from watershed, which includes top-soils, groundwater, plant group (fallen leaves, riparian plants, suspended algae) and effluent group (pig and cow livestock, agricultural land, urban, industry facility, swine facility and wastewater treatment facilities). As a result of comparing characteristics between 12 sources using spectroscopic indices and δ13C-DOC values, it were divided into four groups according to their characteristics as a respective DOM sources. The current study established the TOC/TN stable isotope analyses system for the first time in Korea, and found that spectroscopic indices and δ13C-DOC are very useful tool to trace the origin of organic matter in the aquatic environments through library database.

Preparation of Composite Adsorbents by Activation of Water Plant Sludge and Phenolic Resin Mixtures

  • Myung, Heung-Sik;Kim, Dong-Pyo
    • Carbon letters
    • /
    • v.1 no.3_4
    • /
    • pp.154-157
    • /
    • 2001
  • Composite adsorbents were prepared by mixing water plant sludge with phenolic resin having the ratio of 1 : 1, 1 : 2, and 1 : 3 respectively, curing from $100^{\circ}C$ to $170^{\circ}C$ under $N_2$ atmosphere, and then activating with $N_2$ at $700^{\circ}C$. Thermal property, specific surface area and morphology of the composite adsorbents as well as their precursors were measured by TGA, BET and SEM respectively. Removal efficiency of the composite adsorbents to ${NH_4}^+$ and TOC was compared with those of commercial zeolite and activated carbon. The adsorbents presented very promising TOC removal efficiency of 98%, which was identical level to that of commercial activated carbon while they displayed removal efficiency, only 32%, of ${NH_4}^+$. Therefore, this composite adsorbent considered as the alternative material of commercial activated carbon, used as an expensive removal agent of organic substances and THM in water treatment plant and it also suggested a possibility of practical application in other processes.

  • PDF

Improving Coagulation Performance with pH Preadjustment in Drinking Water Treatment (정수처리에서 pH 저감에 의한 응집효율향상에 관한 연구)

  • Lee, Hwan;Lee, Cheol-Hyo;Jung, Chang-Gue;Lee, Yoon-Jin
    • Journal of Environmental Health Sciences
    • /
    • v.29 no.2
    • /
    • pp.1-6
    • /
    • 2003
  • This paper reports on a pilot scale comparison of PACS coagulation with and without pH preadjustment. The pH of the water was adjusted with carbon dioxide and sulfuric acid. Process performance was assessed on the basis of total organic carbon(TOC), UV absorbance, turbidity and disinfection by-product(DBP) precursors. Coagulation pH appeared to be a determining factor for maximum NOM removal. The optimum coagulation pH in order to decrease TOC and turbidity were pH 7. Preadjustment of pH 7 increased TOC removal to as much as 43, 47 percent with sulfuric acid and carbon dioxide. Moreover, coagulation at pH 7 caused a reduction in UV$_{254}$, THMFP and HAAFP compared to the baseline coagulation. For preadjustment of pH 7 with carbon dioxide, the percentage of TOC, UV$_{254}$, THMFP and HAAFP shows the reduction rate of 3.8, 0.5, 4.8, 9.4% comparing to the coagulation rendition using sulfuric acid. Acid addition to depress pH during coagulation decrease Langelier Saturation Index(LSI), potentially causing increase corrosion in water distribution systems. LSI for carbon dioxide and sulfuric acid at pH 6 was -2.3, -3.3. Therefore, carbon dioxide was more effective at controlling corrosion than sulfuric acid.

Variations of Disinfection By-products in a Chlorinated Drinking Water Distribution System

  • Lee, Soo-Hyung;Park, Jeong-Kun;Lee, Hyung-Jun;Kim, He-Kap
    • Environmental Sciences Bulletin of The Korean Environmental Sciences Society
    • /
    • v.4 no.2
    • /
    • pp.71-78
    • /
    • 2000
  • The chlorination of municipal drinking water supplies leads to the formation of so-called disinfection by-products(DBPs), many of which have been reported to cause harmful health effects based on animal studies. This study was conducted: 1) to observe seasonal changes in the major DBPs at four sampling sites on a drinking water distribution system located in Chunchon, Kangwon Do; and 2) to examine the effects of major water quality parameters on the formation of DBPs. During the field sampling, the water temperature, pH, and total and free chlorine residuals were all measured. The water samples were then analyzed for total organic carbon(TOC) and eight disinfection by-products in the laboratory. Chloroform, dichloroacetic acid, and trichloroacetic acid were the major constituents of the measured DBPs. The concentrations of the total DBPs were highest in fall, particularly in October, and lowest in summer. The concentrations of the total DBPs increased with increasing TOC concentrations. Multiple regression analyses showed that the concentrations of chloroform, bromodichloromethane, and chloral hydrate were linearly correlated with the pH. Other water parameters were not included in the regression equations. Accordingly, these results suggest that TOC and pH are both important factors in the formation of DBPs.

  • PDF

Characterization of Humic Acid in the Chemical Oxidation Technology(I) - Characteristics by Photocatalytic Oxidation Process - (화학적 산화법에 의한 부식산의 분해 처리기술에 관한 연구(I) - 광산화공정을 통한 부식산의 분해특성 분석 -)

  • Kim, Jong Boo;Rhee, Dong Seok
    • Analytical Science and Technology
    • /
    • v.13 no.2
    • /
    • pp.234-240
    • /
    • 2000
  • The efficiency of Photocatalytic Oxidation Process were investigated for the treatment of Aquatic Humic Substances (AHS). In UV-only system, pH 7-9 was the optimum pH range for TOC removal, and alkali range was the optimum pH for absorbance decrease. In UV/$TiO_2$ system, the optimum $TiO_2$ dosage was 50ppm and over 50ppm of $TiO_2$ dosage was not effective for removal of AHS. In UV/$H_2O_2$ system, optimum $H_2O_2$ dosage was 20mM, when over 20mM dosage, removal of TOC (Total Organic Carbon) and absorbance was decreased. Radical scavenger affected on the photo-oxidation of AHS. Removal rate of TOC and absorbance was decreased by addition of carbonate ions and TOC removal was more effected than that of absorbance.

  • PDF

Characteristics of distribution and decomposition of organic matters in stream water and sewage effluent (하천수와 하수처리장 방류수의 유기물 분포 및 분해 특성)

  • Seo, Hee-Jeong;Kang, Yeoung-Ju;Min, Kyoung-Woo;Lee, Kyoung-Seog;Seo, Gwang-Yeob;Kim, Seung-Ho;Paik, Kye-Jin;Kim, Seong-Jun
    • Analytical Science and Technology
    • /
    • v.23 no.1
    • /
    • pp.36-44
    • /
    • 2010
  • This study was performed to investigate the distribution and decomposition characteristics of organic matter in stream water and sewage effluent located in Gwangju. Average of dissolved organic carbon (DOC) to total organic carbon (TOC) ratio was approximately 73.9% in the Youngsan river system. The concentration of refractory dossolved carbon (RDOC) was 3.7 mg/L corresponding to 80.9% of the DOC. The ratio of recalcitrant organic carbon was relatively higher than that of biodegradable organic carbon in stream. Oxidation efficiencies in the stream were 45.0% for BOD, 63.0% for $COD_{Mn}$ and 106.5% for CODcr. In case of sewage effluent was 33.6%, 65.7% and 136.1% respectively. Mean decomposition rate ($K_d$) of Youngsan river mainstream, its tributary sites and sewage effluent were about $0.042\;day^{-1}$, $0.043\;day^{-1}$ and $0.028\;day^{-1}$, respectively and the difference was not significant between the mainstream and its tributary sites (t-test, p>0.05). $K_d$ of the sewage effluent was lower than that of stream water.

The Relationship between Phytoplankton Productivity and Water Quality Changes in Downstream of Nakdong River (낙동강 하류에서 식물플랑크톤 생산력과 수질 변화와의 관계)

  • 박홍기;정종문;박재림;홍용기
    • Journal of Environmental Science International
    • /
    • v.8 no.1
    • /
    • pp.101-106
    • /
    • 1999
  • The relationship between primary productivity and changes in water quality was investigated at Mulgum station, a site downstream of the Nakdong River, Korea. Phytoplankton production was characterized by blooms of Microcystis aeruginosa during the summer and Stephanodiscus hantzschii during the winter. Primary production and secondary production by bacterioplankton ranged from 1.5~53.5 mg-C/ι day and 0.1~0.3 mg-C/ι day, respectively. Distribution of total organic carbon appeared to be highly correlated with phytoplankton biomass, especially during blooms of M. aeruginosa, when particulate organic carbon was 81% of total organic carbon and the main source of organic materials supplied into the water. The correlation coefficient between chlorophyll-a and BOD was 0.86. Thus it was concluded that autochthonous phytoplankton mostly affected the BOD level. Total bacterial numbers were also highly correlated with chlorophyll-a ($r^2$= 0.84) and the bacterial community appears to be regulated by phytoplankton biomass in this area.

  • PDF

Development of Regression Models for Estimation of Unmeasured Dissolved Organic Carbon Concentrations in Mixed Land-use Watersheds (복합토지이용 유역의 수질 관리를 위한 미측정 용존유기탄소 농도 추정)

  • Min Kyeong Park;Jin a Beom;Minhyuk Jeung;Ji Yeon Jeong;Kwang Sik Yoon
    • Journal of Korean Society on Water Environment
    • /
    • v.39 no.2
    • /
    • pp.162-174
    • /
    • 2023
  • In order to prevent water pollution caused by organic matter, Total Organic Carbon(TOC) has been adopted indicator and monitored. TOC can be divided into Dissolved Organic Carbon(DOC) and Particulate Organic Carbon(POC). POC is largely precipitated and removed during stream flow, which making DOC environmentally significant. However, there are lack of studies to define spatio-temporal distributions of DOC in stream affected by various land use. Therefore, it is necessary to estimate the past DOC concentration using other water quality indicators to evaluate status of watershed management. In this study, DOC was estimated by correlation and regression analysis using three different organic matter indicators monitored in mixed land-use watersheds. The results of correlation analysis showed that DOC has the highest correlation with TOC. Based on the results of the correlation analysis, the single- and multiple-regression models were developed using Biochemical Oxygen Demand(BOD), Chemical Oxygen Demand(COD), and TOC. The results of the prediction accuracy for three different regression models showed that the single-regression model with TOC was better than those of the other multiple-regression models. The trend analysis using extended average concentration DOC data shows that DOC tends to decrease reflecting watershed management. This study could contribute to assessment and management of organic water pollution in mixed land-use watershed by suggesting methods for assessment of unmeasured DOC concentration.