• Title/Summary/Keyword: 생물학적 침출법

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Membrane Screening for Kimpo Landfill Leachate Treatment (김포매립지 침출수처리를 위한 분리막의 분리특성연구)

  • 변기수;고상열;노수홍
    • Proceedings of the Membrane Society of Korea Conference
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    • 1995.04a
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    • pp.64-66
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    • 1995
  • 쓰레기매립지 침출수는 중금속과 난분해성 유기물질을 고농도로 함유하고 있어 기존의 생물학적 방법은 처리효율이 낮고, 화학적 산화법은 비용이 많이드는 처리하기가 어려운 폐수이다. 본 연구에서는 기존의 처리방법을 막분리공정으로의 대체가능성을 조사하기 위해 김포 수도권매립지의 침출수를 대상으로 Nanofiltration막인 MPF-34, XU-45와 역삼투막인 Desal-CA, LSY-CPA, SW-30, UOP-CA의 분리특성을 평막실험장치를 사용하여 조사하였다.

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Characteristics of treatment by Electrolysis with a change of electrodes in sanitary landfill leachate (전기분해법에서의 전극변화에 따른 위생매립장 침출수의 처리특성)

  • Huh, Mock;Kim, Byung-Hyun;Kim, Gwang-Jin
    • Journal of the Korea Organic Resources Recycling Association
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    • v.10 no.1
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    • pp.68-74
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    • 2002
  • This study was performed to examine the availability of electrolysis for removal of remaining biologically refractoty humus and residual color of leachate which is biologically pretreated in domestic waste matter sanitary landfill by recycling to landfill. The obtained results were as follows; 1) The electrolysis of leachate through covered bed represented that the removal efficiency of CODcr and color range from 70~80%, in color removal the only electrolysis for a treatment of leachate meet the critia of effluent. 2) The highest removal efficiency was represented in pH 7~8. 3) At anode used Al, Fe, Stainless the removal efficiency of CODcr and color was high in order of Fe, Al, stainless, in considering the settled ability of reaction product in economic or after electro coagulation the removal efficiency was highest when anode was the Fe electrode. 4) In this study conditions for removed both CODcr and Color ar the same time represented thar anode was used Fe, electrode-distance was 2cm and reaction time was 40min in 8volts.

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Characterization of Water Quality and the Aerobic Bacterial Population in Leachate Derived from Animal Carcass Disposal (가축 매몰지 침출수에 대한 수질 특성 및 호기성 미생물 분포에 관한 연구)

  • Choi, Nag-Choul;Choi, Eun-Ju;Kim, Bong-Ju;Park, Jeong-Ann;Kim, Song-Bae;Park, Cheon-Young
    • The Journal of Engineering Geology
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    • v.23 no.1
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    • pp.37-46
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    • 2013
  • Leakage of leachate from animal carcass disposal is a significant issue because disease can easily spread to humans and other livestock. In this study, we analyzed the physicochemical properties of leachate and tested for the presence of aerobic bacteria in leachate using molecular biology methods, for 16 animal carcass disposals in the first stage (after burial for 5 months). Leachate physicochemical analysis revealed higher total coliforms, TOC, $NH^{4+}$, and $NO^{3-}$ concentrations compared with previously published data. In most leachate samples, the concentrations of $NH^{4+}$ and $NO^{3-}$ exceeded the Korean guideline values for drinking water. In 16S rRNA sequence analysis of the distribution of leachate under aerobic conditions, Bacillus pumilus, Lysinibacillus sphaericus, and B. sphaericus were observed with high frequency, whereas no food-poisoning-related bacteria such as B. cereus or Salmonella were detected. The present findings improve our knowledge of the transport of leachate from animal carcass disposal sites through geologic media, and are useful in risk analysis and for subsequent studies.

An experimental study to develop operation technique of solid waste landfill for utilization of biomass (바이오매스 활용형 폐기물 매립지공법 개발을 위한 실험적 연구)

  • Kim, Hye-Jin;Park, Jin-Kyu;Jeong, Min-Kyo;Lee, Nam-hoon
    • Journal of the Korea Organic Resources Recycling Association
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    • v.15 no.1
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    • pp.171-177
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    • 2007
  • In order to investigate the effect of the methanogenic bacteria in bacteria in leachate on the degradability of landfill waste, this study has created 4 cylinder-shape PVC lysimeters (Diameter: 30cm, Height: 200cm, Volume: 140L) and for the biological treatment and recirculation of the leachate, two anaerobic batch reactors (Diameter: 20cm, Height: 30cm) were created. To simulate a conventional landfill, no recycling was done in L1. In L2, 1,068ml of leachate (twice of rainfall amount) was recycled. In L3 and L4, the leachate was anaerobically digested in a dark room (with $35{\pm}1^{\circ}C$) for a week and them recycled by 1,064ml and 2,128ml, respectively, with recycled water only. In terms of cumulative $CH_4$ production, however, L3 and L4 were much higher (three times) than L1 and L2. Between L3 and L4, the latter was 1.23 times higher than the former in terms of cumulative CH4 production. In other words, the more the methanogenic bacteria-activated leachate is recycled, the more active the degradation due to active methane fermentation by the recyled methanogenic bacteria. And methane recovery is different according to the amount of recycled the methanogenic bacteria in leachate.

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