• 제목/요약/키워드: GAC(granule activated carbon)

검색결과 4건 처리시간 0.019초

상향류 혐기성 슬러지 블랭킷 반응조를 이용한 침출수 처리시 입상 활성탄 및 입상슬러지 첨가의 영향 (Effect of the Addition of Granular Activated Carbon and Granular Sludge on the Performance of Upflow Anaerobic Sludge Blanket Reactors for Treating Leachate)

  • 이채영
    • 유기물자원화
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    • 제16권4호
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    • pp.91-97
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    • 2008
  • 본 연구에서는 상향류 혐기성 블랭킷 반응조를 이용한 침출수 처리시 입상활성탄과 입상슬러지의 첨가가 반응조의 성능에 미치는 영향을 평가하였다. Control 반응조의 경우 식종물질로 혐기성 소화슬러지를 이용하였으며 GAC 반응조와 Granule 반응조의 경우 Control 반응조와 동일 방식으로 식종하였으며 단지 GAC와 입상슬러지를 소량 첨가하였다. Granule 반응조가 초기 운전기간 동안 가장 짧은 순응기간을 보였으며 GAC 반응조의 경우에도 운전초기에 만족할 만한 성능을 보였다. 그러나 활성탄의 흡착능이 소모됨에 따라 유출수 COD 농도가 점차 증가하는 경향을 보였다. 반응조가 안정화된 후 GAC 반응조가 다른 반응조에 비해 약간 우수한 결과를 보였으며 모든 반응조의 COD 제거율은 수리학적 체류시간 1일에서 90% 이상을 나타내었다. 특히 GAC 반응조의 경우 COD 제거율의 변화 없이 유기물 부하 $4.0{\sim}8.2kg\;COD/m^3.d$에서 95%를 유지하였다. 소량의 입상슬러지 첨가에 의해 초기 운전기간을 단축시킬 수 있었으며 처리효율은 GAC 첨가에 의해 향상되는 것으로 나타났다.

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고도 정수처리장에서의 과불화합물 거동 (Behavior of perfluorinated compounds in advanced water treatment plant)

  • 임채승;김형준;한개희;김호;황윤빈;김극태
    • 상하수도학회지
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    • 제34권5호
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    • pp.323-334
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    • 2020
  • Adsorption by granule activated carbon(GAC) is recognized as an efficient method for the removal of perfluorinated compounds(PFCs) in water, while the poor regeneration and exchange cycles of granule active carbon make it difficult to sustain adsorption capacity for PFCs. In this study, the behavior of PFCs in the effluent of wastewater treatment plant (S), the raw water and the effluents of drinking water treatment plants (M1 and M2) located in Nakdong river waegwan watershed was monitored. Optimal regeneration and exchange cycles was also investigated in drinking water treatment plants and lab-scale adsorption tower for stable PFCs removal. The mean effluent concentration of PFCs was 0.044 0.04 PFHxS g/L, 0.000 0.00 PFOS g/L, 0.037 0.011 PFOA g/L, for S wastewater treatment plant, 0.023 0.073 PFHxS g/L, 0.000 0.00 PFOS g/L, 0.013 0.008 PFOA g/L for M1 drinking water treatment plant and 0.023 0.073 PFHxS g/L, 0.000 0.01 PFOS g/L, 0.011 0.009 PFOA g/L for M2 drinking water treatment plant. The adsorption breakthrough behaviors of PFCs in GAC of drinking water treatment plant and lab-scale adsorption tower indicated that reactivating carbon 3 times per year suggested to achieve and maintain good removal of PFASs. Considering the results of mass balance, the adsorption amount of PFCs was improved by using GAC with high-specific surface area (2,500㎡/g), so that the regeneration cycle might be increased from 4 months to 10 months even if powdered activated carbon(PAC) could be alternatives. This study provides useful insights into the removal of PFCs in drinking water treatment plant.

활성탄 흡착공정에 의한 과불화화합물의 제거 및 활성탄 자동재생 성능 평가 (Evaluation of perfluorinated compounds removal performance and automatic regeneration performance by activated carbon adsorption process)

  • 정진호;이상훈;윤원상;최대희;정진영;한인섭
    • 상하수도학회지
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    • 제36권2호
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    • pp.121-134
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    • 2022
  • In this study, the removal efficiency of PFCs(perfluorinated compounds) in the GAC(granule activated carbon) process based on the superheated steam automatic regeneration system was investigated in laboratory scale and pilot-scale reactor. Among PFCs, PFHxS(perfluorohexyl sulfonate) was most effectively removed. The removal efficiency of PFCs was found to be closely related to the EBCT, and the removal efficiencies of PFOA(perfluorooctanoic acid), PFOS(perfluorooctyl sulfonate), and PFHxS were 43.7, 75, and 100%, respectively, under the condition of EBCT of 6 min. Afterward, PFOA, PFOS, and PFHxS exhibited the earlier breakthrough time in the order. After that, GAC was regenerated, and the removal efficiency of the PFCs before and after regeneration was compared. As a result, it was shown that the PFCs removal efficiency in the regenerated GAC process were higher, and that of PFOA was improved to 75%. The findings of this study indicate the feasibility of the superheated steam automatic regeneration system for the stable removal of the PFCs, and it was verified that this technology can be applied stably enough even in field conditions.

그래뉼 타입 활성탄 필터의 100 나노 미만 다분산 초미세먼지 표면흡착 제거 효율 연구 (Filtration Efficiency of Granular Activated Carbons to Polydisperse Ultrafine Particles through the Surface Adsoprtion)

  • 조경일;강기원;신지윤;김창혁
    • 한국입자에어로졸학회지
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    • 제18권3호
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    • pp.79-86
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    • 2022
  • Many commercial air purifiers currently have deployed granular activated carbon (GAC) filters for removing volatile organic compounds in the indoor air. GACs are generally used to remove gaseous contaminants in the air through adsorption by the inner surfaces of pores. In addition, airborne particles can be also filtered by the surface adsorption of the GACs, which can improve the life-time of the particulate filters. In this study, the filtration efficiency of GACs to ultrafine particles through surface adsorption was investigated at different volume flow rates by deploying a continuous particle filtration system. The polydisperse sodium chloride (NaCl) particles were generated by a set of an atomizer and a diffusion dryer, and then mixed with particle-free air at different volume flow rates. The penetration of ultrafine particles and pressure drop for each experimental condition were measured to figure out the effect of the volume flow rate on the surface adsoprtion of the GACs to particles, ~ 2 mm. The particle filtration efficiency of the GACs decreased as the volume flow rate increased from 4 to 14 lpm. However, the 5 times thicker GAC filter layer decreased the penetration of ultraparticles than a preious study. The filtration efficiency of the single granule was also higher than the previous result in the literature with smaller granule filter materials.