• Title/Summary/Keyword: 축산폐수 공공처리시설

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Advanced Swine Wastewater Treatment with using Membrane Bioreator(A/O) and Nanofiltration (MBR(Membrane Bioreactor: A/O)공정과 나노여과를 이용한 축산폐수 고도처리)

  • 장경국;배태현;김은영;장하원;탁태문
    • Proceedings of the Membrane Society of Korea Conference
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    • 2004.05b
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    • pp.115-118
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    • 2004
  • 축산폐수에 대한 방류수 수질기준 항목에 COD의 추가 및 질소와 인의 기준이 강화(1999년)됨에 따라 많은 축산폐수처리시설의 보강과 새로운 기술도입이 요구되고 있다. 따라서 대부분의 공공처리시설에서는 질소 및 인을 제거하기 위하여 2차 처리단계에서 무산소조(탈질조)와 호기성(포기조)를 연계한 생물학적 질소제거를 실시하고, 최종처리단계에서 응집제 투입에 의한 응집ㆍ침전공정후 모래여과 또는 활성탄 흡착공정에 의한 인과 색도제거 하는 등, 생물학적 처리 및 물리ㆍ 화학적 처리시설이 추가적으로 보완ㆍ적용단계에 있다.(중략)

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Study on the characteristics of nonpoint source runoff at livestock manure treatment plants (가축분뇨처리시설의 비점오염원 유출특성에 관한 연구)

  • Cho, Sung Jin;Rhee, Han Pil
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.566-566
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    • 2016
  • 정부의 4대강 물 관리 종합대책에 따르면, 수계 전체 오염원중 비점오염원이 차지하는 오염부하가 22~37%에 달하는 것으로 추정되고 있다. 하지만 이러한 중요성에도 불구하고 농업지역 비점오염물질 저감을 위한 대책은 논과 밭과 같이 농경지에 관한 것이 대부분이었으며, 축산은 관리 기준의 가장 기초라고 할 수 있는 지목분류기준에 조차 별도의 기준이 없는 실정이다. 가축분뇨공공처리시설과 가축분뇨자원화시설은 가축분뇨를 처리하여야 하는 점오염원이지만, 차량 운반시 발생되는 일부 분뇨와 처리장 세척 시 발생되는 일부 오염물질들이 비점오염원으로 작용하고 있으며 이에 대한 관리가 미흡한 실정이다. 따라서 본 연구에서는 가축분뇨공공처리시설과 가축분뇨자원화시설에서 강우시 발생되는 유출특성을 분석하였으며, 이를 통해 가축분뇨처리시설의 비점오염 관리 처리시설 설치 시에 중요한 기초자료로 활용하고자 한다. 본 연구에서는 경상북도 영천시, 경기도 용인시, 전라북도 정읍시, 강원도 횡성군 등 축산밀집 지역을 대상으로 연 5회 강우시 모니터링을 실시하였으며, 모니터링자료를 바탕으로 유량가중평균농도(Event Mean Concentration, EMC)를 산정하였다. 영천시 가축분뇨자원화시설의EMC 산정결과 평균 BOD 5.1 mg/L, TN 6.90 mg/L, TP 0.91 mg/L로 산정되었으며, 용인시 개별처리농가의 경우 BOD 6.8 mg/L, TN 3.74 mg/L, TP 1.04 mg/L로, 횡성군 가축분뇨공공처리장의 경우 BOD 4.5 mg/L, TN 3.56 mg/L, TP 1.60 mg/L로, 정읍시 가축분뇨공공자원화시설의 경우 BOD 4.3 mg/L, TN 6.82 mg/L, TP 0.48 mg/L로 산정되었다. BOD, TN은 영천시 가축분뇨자원화시설에서 가장 높게 나타났고, TP의 경우 횡성군 축산폐수공공처리장의 경우 높게 나타났다. 유출특성을 분석한 결과 가축분뇨자원화시설의 경우 대부분 콘크리트 기반으로 조성된 토지위에 조성되어 강우시 유량은 급격하게 상승하며, 강우가 종료되면 바로 감소하는 불투수층 지역의 특성을 나타났다. 본 연구에서 분석된 유츨특성과 EMC는 비점오염 처리시설이나 가축분뇨공공처리시설 설치시 기초데이터로 활용이 가능할 것으로 판단되며, 향후 가축분뇨처리시설의 지속적인 모니터링과 모니터링지점 확대로 자원화시설 강우유출수의 DataBase화를 통한 지속적인 연구 및 관리가 되어야 할 것으로 판단된다.

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Combined Treatment of Livestock Wastewater with Sewage Using Phanerochaete chrysosporium PSBL-1 (Phanerochaete chrysosporium PSBL-1을 이용한 축산폐수와 하수의 연계처리)

  • Lee, Soon-Young;Cho, Hong-Sik;Won, Chan-Hee
    • Journal of Korean Society of Environmental Engineers
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    • v.28 no.3
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    • pp.286-291
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    • 2006
  • We studied possibility of mixing treatment of livestock wastewater and sewage using Phanerochaete chrysosporium PSBL-1. Our study showed that 97.6% of SS and 95% of T-P removal efficiency was achieved when 2 mL BF02(a coagulant) and 100 mL C-210EL(a cationic polymer) were added to the mixture(2:1, v/v) of livestock wastewater and sewage. We studied treatment characteristic of Phanerochaete chrysosporium PSBL-1, after were mixed pretreated wastewater and sewage by dillution ten times about livestock wastewater. The removal efficiency of NBDCOD(non-biodegradable COD), $NH_3-N$ and T-N was increased according to increase of pH. That is, T-N concentration of effluent was satisfied 60 mg/L by drain water waterqulity standard of livestock wastewater public treatment facilities with 35 mg/L from a lapse of five days at pH 6.7, 51 mg/L from a lapse of three days at pH 8 and 33 mg/L from a lapse of one day at pH 10. Moreover $COD_{Mn}$ concentration of effluent was satisfied 40 mg/L by drain water waterqulity standard of livestock wastewater public treatment facilities after a laps of one day at all pH. Organics and nitrogen concentrations of effluent were higher case with addition of V.A.(veratryl alcohol) than case without addition of V.A.(veratryl alcohol). $COD_{Mn}$ concentration of effluent satisfied drain water qulity standard of livestock wastewater public treatment facilities from a lapse of one day, when C/N rate(3:1) of influent was not controled. T-N satisfied that from a lapse of two days, when C/N rate was controled with $4{\sim}6$.

A Study on the Evaluation of Two-Phase Anaerobic Process for Public Livestock Wastewater Treatment Plant (이상혐기공정의 축산폐수 공공처리시설 적용 가능성에 관한 실험적 연구)

  • Oh, Sung Mo;Kim, Moon Ho;Bae, Yoon Sun;Park, Chul Hwi
    • Journal of Korean Society of Water and Wastewater
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    • v.21 no.3
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    • pp.331-339
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    • 2007
  • The purpose of this study was to investigate the biodegradability and performance of organic removal and methane production rate when treating piggery wastewater using a pilot scale two-phase anaerobic system operated up to a volumetric rate of $10m^3/day$. The pilot scale two-phase anaerobic process is consisted of a continuous-flow stirred-tank reactor (CFSTR) for the acidification phase and an Upflow Anaerobic Sludge Blanket reactor (UASB) for the methanogenesis. The acidogenic reactor played key roles in reducing the periodically applied shock-loading and in the acidification of the influent organics. The acidogenic CFSTR was operated at organic loading rates (OLR) between 1.8 and $14.4kgCOD/m^3{\cdot}day$, and the UASB reactor was operated between 0.5 and $5.6kgCOD/m^3{\cdot}day$. A stable maximum biogas production rate was $81m^3/day$ and the methane conversion rate of the organic matter varied from 0.30 to $0.42L\;CH_4/g\;COD_{removed}$(0.40) at hydraulic retention time (HRT) above 3.5days. The methane contents ranged from 73 to 82% during the experimental period. It is known that most of the removed organic matter was converted to methane gas, and the produced biogas might be high quality for its subsequent use.

Optimum Management Plan of Swine Wastewater Treatment Plant for the Removal of High-concentration Nitrogen (고농도 질소제거를 위한 축산폐수 처리시설 적정관리 방안)

  • Shin, Nam-Cheol;Jung, Yoo-Jin;Sung, Nak-Chang
    • Korean Journal of Environmental Agriculture
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    • v.19 no.3
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    • pp.194-200
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    • 2000
  • The amount of swine wastewater reaches about $197,000m^3$ per day at live-stock houses in the whole country. A half of the swine wastewater resources are too small to be restricted legally. This untreated wastewater causes the eutrophication in the water bodies. In case of swine wastewater treatment, the solid-liquid separation must be performed because feces(solid phase) and urine(liquid phase) have large differences in nitrogen and phosphorus concentration. It is necessary to assess exactly the concentration of the pollutants in swine wastewater for planning the wastewater treatment facilities. A full-scale operation was carried out in K city and the plant is consists of conventional plant, the supplementary flocculation basin of chemical treatment process and $anaerobic{\cdot}aerobic$ basin for nitrogen removal. The improved full-scale swine wastewater treatment plant removed the $1,500{\sim}3,000mg/l$ of total-nitrogen(T-N) to 120mg/l of T-N and $131{\sim}156mg/l$ of total-phosphorus(T-P) to $0.15{\sim}1.00mg/l$ of T-N. Accordingly, as a results of operational improvement, the removal efficiencies of T-N and T-P were over $92{\sim}96%$, 99%, respectively. The continuous supply of organic carbon sources and the state of pH played important roles for the harmonious metabolism in anaerobic basin and the pH value of anaerobic basin maintained at about 9.0 for the period of the study.

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A study on the estimation of TMDL run-off pathway coefficients for livestock resources (축분자원화물의 총량관리지침 배출구조계수 산정에 관한 연구)

  • Han, Gee-Bong;Lee, Young-Sin
    • Journal of the Korea Organic Resources Recycling Association
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    • v.21 no.3
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    • pp.99-107
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    • 2013
  • In this study, field scale test was conducted to estimate the TMDL coefficients (runoff and leachate:(${\beta}4$)(${\beta}5$)(${\beta}8$)) for the livestock resources applying to agricultural crop land as fertilizer, and the results were obtained as follows. Each waste reduction coefficient(${\beta}4$) was shown to be in the range of 0.94~0.75 for public waste treatment plants and 0.99~0.83 for private waste treatment in the analysis of BOD, COD, SS, T-N, T-P, TOC. Thus private plants showed higher rate. Waste treatment discharge into the land coefficient (${\beta}5$) was also shown to be in the range of 0.4.~0.24 for public plants and 0.75~0.16 for private plants, so it is much lower than other coefficients. However SS and T-P were shown to be much higher for land discharge in private plants than in public plants. Treatment coefficient in the public plants (${\beta}8$) appeared to be average 0.75 for T-P but over 90% treatment efficiency and also large deviation were observed due to 0.2 of some other treatment plants.