• 제목/요약/키워드: 호기성 슬러지 가용화

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자가발열 고온호기성 소화(ATAD)방식을 이용한 하수잉여슬러지 저감기술 개발

  • 한국정수공업㈜ 기술연구소, 수원대학교 환경공학과, 한국정수공업주식회사
    • 환경기술인
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    • 통권184호
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    • pp.64-69
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    • 2001
  • 1998년 기준으로 하수처리장에서 발생하는 슬러지는 약 144만톤/년으로 발생량 대부분을 단순매립과 해양투기로 처리하고 있어서, 각종 규제가 강화됨에 따라 처리방안에 대한 대안 마련이 시급한 실정이다. 특히 단순매립 시에는 슬러지 대부분이 유기물로 부패되어 매립지 내에서 악취, 침출수, 해충 등의 2차 환경오염을 야기시키고 있다. 따라서 본 연구개발의 목표는 자가발열 고온호기성 소화(Autothermal Thermophilic Aerobic Digest

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무기슬러지 분리와 슬러지 가용화를 적용한 고효율 호기성 소화기술(CaviTec II)에 의한 슬러지 감량 및 반수류 부하 저감 (Reduction of sludge production and recycled nutrients loading by high-rate aerobic digestion(CaviTec II) with inorganic sludge separation and sludge solubilization)

  • 이동우;배강형;조건상;김성홍
    • 상하수도학회지
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    • 제28권4호
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    • pp.411-417
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    • 2014
  • The performance of the new aerobic digestion system combined with inorganic sludge separation unit and sludge solubilization unit, CaviTec II, is evaluated. Anaerobic digester effluent sludge is used for feed sludge of CaviTec II system. By addition of CaviTec II, the amount of cake generated is reduced by 27%, and the soluble nitrogen is reduced by 92%.

알칼리 전처리에 의한 슬러지 호기성 소화 및 액비 특성 변화 (Effect of Alkaline Pretreatment on Sludge Aerobic Digestion and Fertilizer Value)

  • 황응주
    • 대한환경공학회지
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    • 제30권1호
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    • pp.90-96
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    • 2008
  • 슬러지 직매립 금지와 런던협약에 따른 해양투기의 금지로 인해 하수슬러지의 처리 대안 연구가 다방면으로 진행되고 있으며 본 연구에서도 슬러지를 안정화시켜 액비로 재활용하는 기술에 대한 실험연구가 수행되었다. 슬러지 가용화를 위해 알칼리 전처리를 도입하였고 전처리된 슬러지를 호기성 소화조의 기질로 투입하여 유기물 및 질소화합물의 성상 변화를 관찰하였다. 또한 pot test를 통해 처리된 슬러지의 액비 이용 가능성을 평가하였다. 그 결과 알칼리 전처리된 슬러지를 호기성 소화조의 기질로 투입할 경우 전처리되지 않은 슬러지를 투입할 경우에 비해 SS 분해율은 57%에서 66%로 VSS 분해율은 59%에서 69%로 증가하였으며, 슬러지를 전처리할 경우 소화조의 체류시간 감소가 예측되었다. 알칼리 전처리와 호기성 소화를 통해 TCOD의 94.1%가 감소되었고, 최종 SCOD는 220$\sim$230 mg/L로 낮아 유기물이 안정화됨을 나타내었다. 소화조에서 질산화와 이로 인한 pH 저하 현상이 발견되었으며 전처리하지 않은 경우(445.4 mgN/L)가 전처리한 경우(223.1 mgN/L)보다 높은 질산농도와 낮은 pH값(최저 3.0)을 보였다. 슬러지를 액비로 이용할 경우 오이 묘목 잎의 성장은 소화 처리된 슬러지, 전처리 및 소화된 슬러지, 처리되지 않은 슬러지, 증류수의 순으로 높았으며 질산성 질소의 농도, 슬러지 투입량은 잎의 성장과 정의 상관성을 보였다. 전처리와 소화를 병행할 경우 처리하지 않은 슬러지보다 잎과 줄기의 생육 모두를 향상시켰으나, 소화만을 거친 슬러지는 처리하지 않은 슬러지보다 잎의 성장은 크게 향상시키고 줄기의 성장은 다소 저하시켰다.

호기성소화에서 가용화가 슬러지 감량화에 미치는 영향 (Sludge Reduction by Mechanical Solubilization in the Aerobic Digestion)

  • 윤상현;장현섭;황선진
    • 상하수도학회지
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    • 제20권5호
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    • pp.763-770
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    • 2006
  • The purpose of this study was to investigate the effects of mechanical(ball-mill) solubilization of excess sludge especially focused on the TSS(total suspended solid) reduction during the conventional aerobic digestion of sewage sludges including primary and/or excess sludge, HRT was examined at the 10 days and 20 days. According to the results of this study, TSS removal efficiency of solubilized excess sludge was almost two times higher than that of non-solubilized excess sludge. And as the proportion of the primary sludge increased, TSS removal efficiency became worse because primary sludge rarely contained microbial cells which could be easily solubilized physically. It was also proved that by the application of proper solubilization techniques to the excess sludge, HRT for the aerobic digestion could be lessened(above 50%) dramatically keeping the same or better digestion performance. The fact that between primary and excess sludges, only the excess sludge is quite effective in the sludge solubilization and in it's reduction says that excess sludge releasing sources are key-point in the sludge cake reduction field as a source control.

호기성 호열미생물에 의한 하수슬러지 감량화 효율에 관한 연구 (A Study on Volume Reduction of Waste Sludge by Aerobic Thermophilic Bacteria)

  • 배윤선;김순영;남덕현;박철휘;김진수
    • 상하수도학회지
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    • 제19권4호
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    • pp.497-505
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    • 2005
  • Domestic Sewage Treatment Plants are mostly based on biological treatment, in which large amounts of excess sludge are generated and occupy about 40 ~ 60% of the total sewage treatment costs. Several methods for sludge treatment has been so far reported as upgrading biodegradation of sludge; heat treatment, chemical treatment, including thermo-alkali and ozone, mechanical treatment including ultrasonic pulverization. But, it has a limitation in case of reducing the amount of excess sludge which are already producted. In this study, application of excess sludge reduction process using thermophilic aerobic bacteria for activated sludge was examined. The research was carried out two different stage. one for a biological wastewater treatment and the other for a thermophilic aerobic solubilization of the waste sludge. A portion of excess sludge from the wastewater treatment step was into the thermophilic aerobic sludge solubilization reactor, in which the injected sludge was solubilized by thermophilic aerobic bacteria. The solubilized sludge was returned to the aeration tank in the wastewater treatment step for its further degradation. Sludge solubilization reactor was operated at $63{\pm}2^{\circ}C$ with hydraulic retention time(HRT) of 1.5 ~ 1.7 day. Control group was operated with activated sludge process(AS) and experiment group was operated with three conditions(RUN 1, RUN 2, RUN3). RUN 1 was operated with AS without sludge solubilization reactor. RUN 2 were operated with AS with sludge solubilization reactor to examine correlation between sludge circulation ratio and sludge reduction ratio by setting up sludge circulation ratio to 3. RUN 3 was operated with sludge circulation ratio of 3 and MLSS concentration of 1,700~2,000mg/L to examine optimum operation condition. The quantity of excess sludge production was reduced sharply and in operation of RUN 3, sludge The quantity of excess sludge production was reduced sharply and in operation of RUN 3, sludge solubilization ratio and sludge reduction ratio were 53. 7%, 95.2% respectively. After steady state operation, average concentration of TBOD, SBOD, $TCOD_{Cr}$, $SCOD_{Cr}$, TSS, VSS, T-N, T-P of effluent were 4.5, 1.7, 27 .8, 13.8, 8.1, 6.2, 15.1, 1.8mg/L in the control group and were 5.6, 2.0, 28.6, 19.1, 9.7, 7.2, 16.1, 2.0mg/L in the experimental group respectively. They were appropriate to effluent standard of Sewage Treatment Plants.