• 제목/요약/키워드: Biochemical oxygen demand (BOD)

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Stage by stage design for primary, conventional activated sludge, SBR and MBBR units for residential wastewater treatment and reusing

  • Aziz, Shuokr Qarani;Omar, Imad Ali;Bashir, Mohammed J.K.;Mojiri, Amin
    • Advances in environmental research
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    • 제9권4호
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    • pp.233-249
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    • 2020
  • To date, there is no central wastewater (WW) treatment plant in Erbil city, Kurdistan region, Iraq. Therefore, raw WW disposes to the environment and sometimes it used directly for irrigation in some areas of Erbil city. Disposal of the untreated WW to the natural environment and using for irrigation it causes problems for the people and the environment. The aims of the current work were to study the characteristics, design of primary and different secondary treatment units and reusing of produced WW. Raw WW samples from Ashty city-Erbil city were collected and analyzed for twenty three quality parameters such as Total Suspended Solids (TSS), total dissolved solids, total volatile and non-volatile solids, total acidity, total alkalinity, total hardness, five-day Biochemical Oxygen Demand (BOD5), Chemical Oxygen Demand (COD), biodegradability ratio (BOD5/COD), turbidity, etc. Results revealed that some parameters such as BOD5 and TSS were exceeded the standards for disposal of WW. Design and calculations for primary and secondary treatment (biological treatment) processes were presented. Primary treatment units such as screening, grit chamber, and flow equalization tank were designed and detailed calculation were illustrated. While, Conventional Activated Sludge (CAS), Sequencing Batch Reactor (SBR) and Moving Bed Biofilm Reactors (MBBR) were applied for the biological treatment of WW. Results revealed that MBBR was the best and economic technique for the biological treatment of WW. Treated WW is suitable for reusing and there is no restriction on use for irrigation of green areas inside Ashty city campus.

다변량통계분석 및 유역환경모델을 이용한 금호강 중·상류 유역의 수질특성평가 (Assessment of Water Quality Characteristics in the Middle and Upper Watershed of the Geumho River Using Multivariate Statistical Analysis and Watershed Environmental Model)

  • 서영민;권구호;최윤영;이병준
    • 한국물환경학회지
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    • 제37권6호
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    • pp.520-530
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    • 2021
  • Multivariate statistical analysis and an environmental hydrological model were applied for investigating the causes of water pollution and providing best management practices for water quality improvement in urban and agricultural watersheds. Principal component analysis (PCA) and cluster analysis (CA) for water quality time series data show that chemical oxygen demand (COD), total organic carbon (TOC), suspended solids (SS) and total phosphorus (T-P) are classified as non-point source pollutants that are highly correlated with river discharge. Total nitrogen (T-N), which has no correlation with river discharge and inverse relationship with water temperature, behaves like a point source with slow and consistent release. Biochemical oxygen demand (BOD) shows intermediate characteristics between point and non-point source pollutants. The results of the PCA and CA for the spatial water quality data indicate that the cluster 1 of the watersheds was characterized as upstream watersheds with good water quality and high proportion of forest. The cluster 3 shows however indicates the most polluted watersheds with substantial discharge of BOD and nutrients from urban sewage, agricultural and industrial activities. The cluster 2 shows intermediate characteristics between the clusters 1 and 3. The results of hydrological simulation program-Fortran (HSPF) model simulation indicated that the seasonal patterns of BOD, T-N and T-P are affected substantially by agricultural and livestock farming activities, untreated wastewater, and environmental flow. The spatial analysis on the model results indicates that the highly-populated watersheds are the prior contributors to the water quality degradation of the river.

Candida sp. LSY2 중금속 내성주를 이용한 BOD 분석 (BOD Determination by Heavy Metal Tolerant Candida sp. LSY2)

  • 김말남;이선영
    • 환경생물
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    • 제17권4호
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    • pp.415-420
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    • 1999
  • 용존 유기물의 농도를 BOD로 신속히 측정하여 폐수 처리 공정에 feed back할 수 있는 Candida BOD sensor를 이용하여 BOD를 측정하였다. Glucose, acetic acid, aspartic acid 및 glutamic acid에 대한 sensitivity는 lactose, sucrose및 lactic acid의 sensitivity보다 더 높게 나타나서 오염물질의 종류에 따라 BOD sensor의 출력 신호가 다르게 제시되었다.$Zn^{2+}$내성주가 충전된 BOD sensor는 중금속 비내성주의 경우와 유사한 정도의 감응도를 나타내었으나 $Cd^{2+}$ 내성주를 사용하였을 때는 매우 낮은 sensitivity를 보였다. 수용액의 $Cd^{2+}$의 농도가 증가함에 따라 중금속 비내성주와 $Zn^{2+}$ 내성주의 sensor 의 sensitivity는 거의 일정하였으나 $Cd^{2+}$ 내성주의 BOD sensor의 경우에는 sensitivity가 오히려 감소하였다. 반면 수용액 중의 $Zn^{2+}$ 의 농도가 증가함에 따라서는 중금속 비내성주, $Zn^{2+}$ 내성주 및 $Cd^{2+}$ 내 성주 모두 거의 동일한 감응도를 나타내었다.

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오염하천 정화를 위한 호기성 인공습지의 운영인자 평가 (Parameter Estimation of the Aerated Wetland for the Performance of the Polluted Stream Treatment)

  • 김둘선;이동근
    • 청정기술
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    • 제25권4호
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    • pp.302-310
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    • 2019
  • 호기조와 혐기/무산소조를 직렬로 연결한 인공습지를 이용하여 크게 오염된 하천수를 처리하였다. 호기조는 자연 공기 배출 시스템을 통하여 공기가 연속적으로 공급되어 호기성 상태가 유지되었다. 인공습지의 성능에 영향을 미치는 최적의 영향인자를 조사하기 위하여 체류시간을 다르게 한 5개의 파일럿 플랜트를 사용하였다. 호기조에서 BOD (biochemical oxygen demand)와 COD (chemical oxygen demand)의 제거율은 1차 반응 속도식을 나타내었고, COD 제거 속도 상수는 BOD보다 약간 낮았다. 온도 의존성은 COD (θ = 1.0079)와 BOD (θ = 1.0083)제거에 대한 값이 거의 동일했으나 T-N 제거의 온도 의존성(θN)은 1.0189로 다소 높게 나타났다. SS제거율은 98%로 높았고 수력학적 부하 속도(Q/A)가 증가함에 따라 제거 효율이 증가하는 경향을 보였다. 혐기/무산소조에서 BOD와 COD 제거의 주요 메커니즘은 호기조와 완전히 다르게 나타났다. 혐기/무산소조에서 COD와 COD는 생물학적 탈질을 위한 탄소원으로 공급되었고 T-P는 혐기/무산소조 내의 orthophosphate와 자갈 사이의 양이온 교환에 의해 제거되는 것으로 조사되었다. 인공습지는 여과된 고형물에 의해 막힘 없이 성공적으로 운영되었고 고형물들은 매우 빠르게 연속적으로 분해되었다.

The Biodegradation Characteristics of the Mixtures of Bunker-A, B Oils with Dispersants in the Seawater

  • BAEK Joong-Soo;KIM Gwang-Su;CHO Eun-il
    • 한국수산과학회지
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    • 제29권6호
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    • pp.787-796
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    • 1996
  • The biodegradation experiment, the TOD analysis and the element analysis for dispersant, Bunker-A oil and Bunker-B oil were conducted to study the biodegradation characteristics of a mixture of Bunker-A oil with dispersant and a mixture of Bunker-B oil with dispersant in the seawater. The results of biodegradation experiment showed 1mg of dispersant to be equivalent to 0.26 mg of $BOD_5$ and to 0.60 mg of $BOD_{20}$ in the natural seawater. The results of TOD analysis showed each 1 mg of dispersant, Bunker-A oil and Bunker-B oil to be equivalent to 2.37 mg, 2.94 mg and 2.74 mg of TOD, respectively. The results of element analysis showed carbon, hydrogen, nitrogen and phosphorus contents of dispersant to be $82.1\%,\;13.8\%,\;1.8\%\;and\;2.2\%$, respectively. Carbon and hydrogen contents of Bunker-A oil were found to be $73.3\%\;and\;13.5\%$, respectively, and carbon, hydrogen and nitrogen contents of Bunker-B oil to be $80.4\%,\;12.3\%\;and\;0.7\%$, respectively. Accordingly, the detection of nitrogen and phosphorus in dispersant shows that dispersants should be used with caution in coastal waters, with relation to eutrophication. The biodegradability of dispersant expressed as the ratio of $BOD_5/TOD$ was found to be $11.0\%$. As the mix ratios of dispersant to Bunker-A oil (3 mg/l) and a mixture of Bunker-B oil (3mg/l) were changed from 1 : 10 to 5 : 10, the biodegradabilities of a mixture of Bunker-A oil with dispersant and Bunker-B oil with dispersant increased from $2.1\%\;to\;7.2\%$ and from $1.0\%\;to\;4.4\%$, respectively. Accordingly, the dispersant belongs to the organic matter group of middle-biodegradability while mixtures in the mix ratio range of $1:10\~5:10$ belong to the organic matter group of low-biodegradability. The deoxygenation rate constant $(K_1)$ and ultimate biochemical oxygen demand $(L_0)$ obtained from the biodegradation experiment and Thomas slope method were found to be 0.125/day and 2.487 mg/l for dispersant (4 mg/l), respectively. $K_1\;and\;L_0$, were found to be $0.079\~0.131/day$ and $0.318\~2.052\;mg/l$ for a mixture of Bunker-A oil with dispersant and to be $0.106\~0.371/day$ and $0.262\~1.106\;mg/l$ for a mixture of Bunker-B oil with dispersant, respectively, having $1:10\~5:10$ mix ratios of dispersant to Bunker-A oil and Bunker-B oil. The ultimate biochemical oxygen demands of the mixtures increased as the mix ratio of dispersant to Bunker-A, B oils changed from 1 : 10 to 5 : 10. This suggests that the more dispersants are applied to the sea for the cleanup of Bunker-A oil or Bunker-B oil, the more decreases the dissolved oxygen level in the seawater.

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유량변동에 따른 탐진 A와 B유역에서의 오염물질 유출 특성 (Characteristics of the Pollutants Ronoff on the Tamjin A and B Watershed with Discharge Variation)

  • 박진환;임병진;정재운;김대영;오태윤;이동진;김갑순
    • 환경영향평가
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    • 제21권6호
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    • pp.917-925
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    • 2012
  • In this study, we report the runoff characteristics of pollutants for Tamjin A and B watershed in Tamjin river basin using statistical analysis, such as correlation analysis and regression equation. Flow rate and water qualtiy data collected from 2 sampling sites(Tamjin A and B watershed) during 3 years(2009~2011) were analyzed for biochemical oxygen demand(BOD), total nitorgen(TN), total phosphorus(TP) and suspended solid(SS). The results showed that strong correlations were observed between flow rate and SS in Tamjin A, while weak correlations were observed among the BOD, TN, and TP. In Tamjin B, strong correlations were observed among the flow rate, SS and T-P except BOD and TP. Meanwhile, the values of $R^2$ for regression equations between flow rate and pollutants load were greater than 0.7. Results of these statistics indicated that there was a good agreement between flow rate and pollutants load. Also, the flow rate exponents of regression equations for BOD, TN, and TP were smaller than 1 in Tamjin A. In Tamjin B, flow rate exponents of regression equation for BOD and TP were smaller than 1. These results indicated that concentrations of BOD, TN, TP in Tamjin A and concentrations of BOD and TP were decreased as the flow rate was increased. This means that rater than nonpoint sources, point sources affect BOD, TN and TP in Tamjin A and BOD and TP in Tamjin B.

하천수 BOD 예측을 위한 용존 자연유기물질의 synchronous 형광 스펙트럼 분석 (Examining Synchronous Fluorescence Spectra of Dissolved Organic Matter for River BOD Prediction)

  • 허진;박민혜
    • 한국물환경학회지
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    • 제23권2호
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    • pp.236-243
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    • 2007
  • Fluorescence measurements of dissolved organic matter (DOM) have the superior advantages over other analysis tools for the applications to water quality management due to their rapid analysis. It is known that protein-like fluorescence characteristics are well corelated with microbial activities and biodegradable organic matter. In this study, potential biochemical oxygen demand (BOD) predictor were explored using the fluorescence peak intensities and/or the integrated fluorescence intensities derived from synchronous fluorescence spectra and the first derivative spectra of river samples. A preliminary study was conducted using a mixture of a river and a treated sewage to test the feasibility of the approach. It was demonstrated that the better BOD predictor can be derived from synchronous fluorescence spectra and the derivatives when the difference between the emission and the excitation wavelengths (${\Delta}{\gamma}$) was large. The efficacy of several selected fluorescence parameters was rivers in Seoul. The fluorescence parameters exhibited relatively good correlation coefficients with the BOD values, ranging from 0.59 to 0.90. Two parameters were suggested to be the optimum BOD predictors, which were a fluorescence peak at a wavelength of 283 nm from the synchronous spectrum at the ${\Delta}{\gamma}$ value of 75 nm, and the integrated fluorescence intensity of the first derivatives of the spectra at the wavelength range between 245 nm and 280 nm. Each BOD predictor showed the correlation coefficients of 0.89 and 0.90, respectively. It is expected that the results of this study will provide important information to develop a real-time efficient sensor for river BOD in the future.

A pilot-scale study on a down-flow hanging sponge reactor for septic tank sludge treatment

  • Machdar, Izarul;Muhammad, Syaifullah;Onodera, Takashi;Syutsubo, Kazuaki
    • Environmental Engineering Research
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    • 제23권2호
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    • pp.195-204
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    • 2018
  • A pilot scale study was conducted on a down-flow hanging sponge (DHS) reactor installed at a sewage treatment plant in Banda Aceh, Indonesia for treatment of desludging septic tank wastewater. Raw wastewater with an average biochemical oxygen demand (BOD) and total suspended solids of 139 mg/L and 191 mg/L, respectively, was pumped into the reactor. Two different hydraulic retention times (HRTs, 3 h and 4 h) were investigated, equivalent to organic loadings of 1.11 and $0.78kg\;BOD/m^3/d$, respectively. The average BOD concentration in the final effluent was 46 and 26 mg/L at HRTs of 3 and 4 h, respectively. The concentration of retained sludge along the reactor height was 10.2-18.7 g VSS/L-sponge, and the sludge activities were 0.24-0.32 and 0.04-0.40 mg/g VSS/h for heterotrophs and nitrification, respectively. Values of water hold-up volume, dispersion coefficient, and number of tank in-series found from tracer studies of clean sponge and biomass-loaded sponge confirmed that growth of retained sludge on the sponge module improved hydraulic performance of the reactor. Adoption of the DHS reactor by this Indonesian sewage treatment plant would enhance the role of the current desludging septic tank wastewater treatment system.

토양미생물을 이용한 축산폐수 처리의 공정별 제거효율 및 동력학적 상수 (Swine wastewater treatment with soil microbes and its efficiency and dynamic parameters)

  • 박완철;신남철
    • 한국환경농학회지
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    • 제19권2호
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    • pp.177-182
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    • 2000
  • 토양 미생물을 이용한 고농도 축산폐수의 과부하 처리를 위한 공정개발 연구결과 유기물 제거율은 99%이었다. 상온 혐기조에서 $0.7kg\;BOD/m^3/d$ 이하에서 처리수의 BOD 농도는 150mg/L 이하를 이었다. 상온 혐기조를 운전한 실험에서 후속 폭기조의 물질 대사계수(km)는 $0.73hr^{-1}$, 세포증식계수(Y)는 0.433 g/VSS/g BODrm/d 였으며 중온으로 운전한 경우 후속 폭기조에서 각각 $1.45hr^{-1}$과 0.776 g VSS/g BODrm/d 로 반응계수 값이 두 배에 가깝게 개선되었다.

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7변수 대수선형모형을 이용한 낙동강 오염부하량 추정 (Seven-Parameter Log Linear Model for Estimating Constituent Loads in Nakdong River)

  • 이아연;최대규;김상단
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2010년도 학술발표회
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    • pp.1400-1404
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    • 2010
  • 본 연구에서는 현재 시행되고 있는 오염총량관리제 모니터링 시스템에 적용가능한 부하량 추정기법에 대하여 제시하였다. 수정 TANK 모형을 통하여 8일 간격 유량자료의 1일 간격 유량자료로 의 확장을 시행하였다. 그리고 최소분산 비편향 추정기법을 통한 7변수 대수 선형 모형으로 오염 부하량을 추정하였다. 그 결과 TOC 및 BOD 부하량 추정에서 만족스러운 결과를 확인할 수 있었다. 연구의 적용의 일환으로, 낙동강유역의 TOC 및 BOD 항목의 부하량 유황 곡선을 작성하여 전체적인 분포를 살펴보았다.

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