바이오매스 활용형 폐기물 매립지공법 개발을 위한 실험적 연구

An experimental study to develop operation technique of solid waste landfill for utilization of biomass

  • Kim, Hye-Jin (Dept. of environmental Engineering, Anyang University) ;
  • Park, Jin-Kyu (Dept. of environmental Engineering, Anyang University) ;
  • Jeong, Min-Kyo (Dept. of environmental Engineering, Anyang University) ;
  • Lee, Nam-hoon (Dept. of environmental Engineering, Anyang University)
  • 투고 : 2007.01.30
  • 심사 : 2007.03.06
  • 발행 : 2007.03.30

초록

메탄활성 침출수가 매립폐기물 분해에 미치는 영향을 알아보기 위해 내경 30cm, 높이 200cm, 실용량 140L의 원통형 PVC로 모형매립조 4기를 제작하였으며, 침출수의 생물학적처리와 재순환을 위한 혐기화조를 내경 20cm 높이 30cm로하여 2기 제작하였다. L1은 일반적인 매립지를 모사하기 위해 재순환을 행하지 아니하였고, L2는 침출수를 우수의 2배인 1,068ml로 재순환하였다. L3와 L4는 발생된 침출수를 $35{\pm}1^{\circ}C$로 유지되는 암실에서 1주일간 혐기성소화조에서 소화시킨 후 상등수를 L3, L4에 각각 1,064ml, 2.128ml 재순환하였다. 누적메탄발생량이 L3와 L4가 L1과 L2에 비해 약 3배 높게 발생하였으며, 메탄활성 침출수의 재순환량이 더 많은 L4이 L3보다 1.23배 높게 나타났다. 이는 메탄활성 침출수 재순환이 재순환되는 메탄균에 의해 분해가 더 활성화 된 것으로 판단되며, 메탄활성 침출수의 재순환 양에 따라 메찬회수율이 다르다는 것을 알 수 있다.

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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