• 제목/요약/키워드: GAC filter

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고도정수처리용 Filter/Adsorber Granular Activated Carbon 특성 평가: 마모지수, floater, water-soluble ash 및 흡착특성 평가 (Evaluation on Filter/Adsorber Granular Activated Carbon using in Advanced Drinking Water Treatment: Abrasion number, Floater, Water-soluble ash, and Adsorption characteristics)

  • 박병주;도시현;김태양;홍성호
    • 상하수도학회지
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    • 제30권1호
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    • pp.77-85
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    • 2016
  • The characteristics of filter/adsorber granular activated carbon (F/A GAC) were investigated by measuring various parameters, which include surface area, pore volume, abrasion number, floater, and water-soluble ash. The correlation between parameters was also evaluated. Moreover, rapid small-scale column test (RSSCT) was conducted for adsorption characteristics. Thirteen F/A GAC were tested, and the average values of abrasion number and water-soluble ash were 88.9 and 0.15%, respectively. F/A GAC with the larger external surface area and greater mesopore volume had the lower abrasion number, which indicated that it was worn out relatively easily. Water-soluble ash of coconut-based GAC (about 2.6%) was greater than that of coal-based GAC (less than 1%), and the pH of solution was increased with GAC, which had the higher water-soluble ash. On the other hand, floater of thirteen F/A GAC was divided as two groups, which one group had relatively higher floater (2.7~3.5%) and the other group had lower floater (approximately 0.5%). The results of RSSCT indicated that coconut-based GAC (i.e. relatively higher water-soluble ash) had less adsorption capacity. Moreover, adsorption capacity of coal-based GAC with larger surface area and greater mesopore volume was superior to others.

정수장 활성탄 여과지의 생물막과 그 활성도 (Biofilms and their Activity in Granular Activated Carbons Established in a Drinking Water Treatment Plant)

  • 이지영;김세준;정익상;조경제
    • 상하수도학회지
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    • 제24권6호
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    • pp.661-674
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    • 2010
  • Bacterial biomass and its activity were measured in two kinds of granular activated carbon (GAC), the experimental and existing biofiltration system in a drinking water plant. The bacterial biomass was around 210 to 250 nmol P/g WW with phospholipid concentration at acclimation of ozonation treatment. The phospholipid biomass shows more or less a declining gradient along filter depth and no clear seasonality in its values. On the other hand, the microbial activity of [$^3H$]-thymidine and [$^{14}C$]-acetate incorporation within cells increased significantly along the filter depth, showing the difference of three fold between the upper and bottom layer. These factors support the different microbial composition or metabolic activity along the depth of GAC column. Turnover rates, the rate of bacterial biomass and production of biofilm, ranged from 0.26 /hr to 0.37 /hr, indicating a highly rapid recovery itself at amature state. In the non-ozonation treatment, the bacterial biomass was lower than in the ozonation and biological activity also declined towards the filter depth. The biomass levels during cessation of ozonation in the existing GAC filters were 68% of the actively ozonated state.

A comparative study of granular activated carbon and sand as water filtration media with estimation of model parameters

  • Chatterjee, Jaideep;A, Shajahan;Pratap, Shailendra;Gupta, Santosh Kumar
    • Advances in environmental research
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    • 제6권1호
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    • pp.35-51
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    • 2017
  • The use of Granular Activated Carbon (GAC) and naturally occurring silica (Sand) as filtration media in water and waste water treatment systems is very common. While GAC offers the additional functionality of being an "adsorptive" filter for dissolved organics it is also more expensive. In this paper we present an experimental evaluation of the performance of a bed of GAC for colloid removal and compare the same with that from an equivalent bed of Sand. The experiments are performed in an "intermittent" manner over extended time, to "simulate" performance over the life of the filter bed. The experiments were continued till a significant drop in water flow rate through the bed was observed. A novel "deposition" and "detachment" rate based transient mathematical model is developed. It is observed that the data from the experiments can be explained by the above model, for different aqueous phase electrolyte concentrations. The model "parameters", namely the "deposition" and "detachment" rates are evaluated for the 2 filter media studied. The model suggests that the significantly better performance of GAC in colloid filtration is probably due to significantly lower detachment of colloids from the same. While the "deposition" rates are higher for GAC, the "detachment" rates are significantly lower, which makes GAC more effective than sand for colloid removal by over an order of magnitude.

산화망간피복여재를 이용한 용존망간 제거 (Soluble Manganese Removal Using Manganese Oxide Coated Media (MOCM))

  • 김진근;정세채;고수현
    • 상하수도학회지
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    • 제20권6호
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    • pp.813-822
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    • 2006
  • Soluble manganese removal was analyzed as a function of filter media, filter depth, presence or absence of chlorination, and surface manganese oxide concentration in water treatment processes. Sand, manganese oxide coated sand (MOCS), sand+MOCS, and granular activated carbon(GAC) were used as filter media. Manganese removal, surface manganese oxide concentration, turbidity removal, and regeneration of MOCS in various filter media were investigated. Results indicated that soluble manganese removal in MOCS was rapid and efficient, and most of the removal happened at the top of the filter. When filter influent (residual chlorine 1.0mg/L) with an average manganese concentration of 0.204mg/L was fed through a filter column, the sand+MOCS and MOCS columns can remove 98.9% and 99.2% of manganese respectively on an annual basis. On the other hand, manganese removal in sand and the GAC column was minimal during the initial stage of filtration, but after 8 months of filter run they removed 99% and 35% of manganese, respectively. Sand turned into MOCS after a certain period of filtration, while GAC did not. In MOCS, the manganese adsorption rate on the filter media was inversely proportional to the filter depth, while the density of media was proportional to the filter depth.

BAC 공정에서 운전기간 및 여층깊이 변화에 따른 생물막 생체량 및 용존유기물질 생분해 특성 평가 (Evaluation of Biomass of Biofilm and Biodegradation of Dissolved Organic Matter according to Changes of Operation Times and Bed Depths in BAC Process)

  • 손형식;정철우;최영익;이건;손희종
    • 한국환경과학회지
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    • 제23권6호
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    • pp.1101-1109
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    • 2014
  • In this study we followed biofilm formation and development in a granular activated carbon (GAC) filter on pilot-scale during the 12 months of operation. GAC particles and water samples were sampled from four different depths (-5, -25, -50 and -90 cm from surface of GAC bed) and attached biomass were measured with adenosine tri-phosphate (ATP) analysis and heterotrophic plate count (HPC) method. The attached biomass accumulated rapidly on the GAC particles of top layer throughout all levels in the filter during the 160 days (BV 23,000) of operation and maintained a steady-state afterward. During steady-state, biomass (ATP and HPC) concentrations of top layer in the BAC filer were $2.1{\mu}g{\cdot}ATP/g{\cdot}GAC$ and $3.3{\times}10^8cells/g{\cdot}GAC$, and 85%, 83% and 99% of the influent total biodegradable dissolved organic carbon ($BDOC_{total}$), $BDOC_{slow}$ and $BDOC_{rapid}$ were removed, respectively. During steady-state process, biomass (ATP and HPC) concentrations of middle layer (-50 cm) and bottom layer (-90 cm) in the BAC filter were increased consistently. Biofilm development (growth rate) proceed highest rate in the top layer of filter (${\mu}_{ATP}=0.73day^{-1}$; ${\mu}_{HPC}=1,74day^{-1}$) and 78%~87% slower in the bottom layer (${\mu}_{ATP}=0.14day^{-1}$; ${\mu}_{HPC}=0.34day^{-1}$). This study shows that the combination of different analytical methods allows detailed quantification of the microbiological activity in drinking water biofilter.

입상 활성탄 여과지에서 세균의 재성장과 생물막 형성 세균의 분리 및 동정 (Bacterial regrowth in biofilms formed in granular activated carbon filter adsorbers and the bacterial isolation and identification)

  • 이규철;권순복;이병기;박종근
    • 상하수도학회지
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    • 제22권2호
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    • pp.205-212
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    • 2008
  • This study aimed to investigate the biofilm formation, bacterial regrowth, and bacterial community structure in the granular-activated carbon (GAC) filter adsorbers (FAs) used in water treatment plants. In 2005 and 2006, raw water, settled water, GAC FA by depth, and filtered water were collected twice a year from water treatment plants (WTPs) B and S. The number of heterotrophic bacteria, including mesophilic and psychrophilic bacteria, in such collected waters was investigated along with the total number of coliforms therein. Heterotrophic bacteria were detected in most samples, mainly at the surface layers of the GAC FAs, and fewer such bacteria were found in the lower and bottom layers. An increase in the bacterial number, however, was observed in the samples from various depths of the GAC FAs in WTPs B and S compared with the surface layers. An increase in the bacterial number was also detected in the filtered water. This may indicate that there is a regrowth of the bacteria in the GAC FA. Considering, however, that heterotrophic bacteria were not found in the filtered water, it can be deduced that most bacteria are removed in the chlorination process. Coliforms were detected at the surface layer of the GAC FAs, but their regrowth was not observed. MicroLog systems were used to identify the bacteria community distribution. Eight genera and 14 species, including Pseudomonas spp., were detected in WTP B, and 8 genera and 9 species, including Aeromonas spp., in WTP S. Further studies are required to elucidate their role in the biofilms in water treatment processes.

오존공정이 입상활성탄공정에서 용존유기물질의 제거에 미치는 영향 (Effect of Ozonation on Removal of Dissolved Organic Matter by Granular Activated Carbon Process)

  • 안효원;채선하;왕창근;임재림
    • 대한환경공학회지
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    • 제30권6호
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    • pp.601-608
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    • 2008
  • 본 연구의 목적은 파일롯 규모의 입상활성탄지에서 흡착과 생물학적 제거 기작이 진행되는 장기간의 운전동안 전처리공정으로서 오존처리의 영향을 평가하는 것이다. 공정별로 용존 또는 생분해성 유기물질의 제거, DOM의 성상과 특성변화와 미생물의 증식의 변화를 평가하였다. 오존공정이 존재하는 입상활성탄 공정(전오존처리+활성탄 여과지; Pre O$_3$ + F/A, 후오존처리 + 활성탄 흡착지; Post O$_3$ + GAC)은 오존의 위치(전오존 후오존)에 상관없이 입상활성탄 단독공정(활성탄 여과지; F/A, 활성탄 흡착지; GAC)에 비해 생물학적 제거능이 활성화된 장기간 운영 후에 DOC, 친수성 용존유기물(HPI), BDOC와 AOC의 제거율이 10$\sim$20% 정도로 높았다. 오존공정은 전반적인 DOC 제거에는 큰 영향을 주지는 못했지만, AOC를 약 20% 정도로 감소시켜 관로내 미생물의 재증식을 저감하는데 기여할 것으로 생각된다. 활성탄 여재에 고정된 미생물의 생체량인 Biomass는 전처리로서 오존처리의 유.무에 상관없이 공정별로 큰 차이를 보이지 않은 반면에, 유출수에서의 HPC는 F/A나 GAC에 비해 Post O$_3$ + GAC에서 매우 낮았다.

소독부산물 제어를 위한 실공정 F/A 운영에 관한 고찰 (Evaluation of Filter-Adsorber(F/A) Process for Removal of Disinfection By-products(DBPs))

  • 김성수;이경혁;임재림;채선하;강병수;문필중;안효원
    • 대한환경공학회지
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    • 제27권10호
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    • pp.1035-1042
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    • 2005
  • 입상활성탄 공정은 수처리에서 널리 사용되고 있으며, S와 B정수장은 기존의 급속여과지의 여재를 활성탄으로 교체하여 F/A 공정으로 운영하고 있다. 소독부산물의 제어를 위해 F/A가 도입된 금강수계 S정수장과 낙동강 수계 B정수장의 운영결과를 토대로 용존유기물질(DOC)과 소독부산물(DBPs) 등의 효율평가와 F/A공정 운영인자 등에 대하여 검토하였다. 두 정수장 원수의 용존유기물질 특성은 친수성과 소수성이 유사한 범위를 보이고 있으며, F/A공정에서 운영 초기 흡착능에 의한 빠른 파과특성을 나타내었다. F/A에서 소독부산물의 제거특성은 운영초기에 THM과 HAA 모두 제거효율이 우수하였으나, 운영기간이 경과되면서 THM제거율은 급격히 감소하였으며, HAA의 제거율은 동절기 저수온 시기를 제외하고는 생물학적 제거기작에 의해 높은 제거효율을 나타냈다. F/A공정은 활성탄흡착지(Post GAC) 공정과 비교하여 높은 유기물 부하, 잔류염소, 응집제 또는 응집보조제, 망간, 빈번한 역세척 등의 여러 가지 이유로 인해 여재 물성치 및 흡착능의 감소가 빠르게 나타났다. F/A공정이 실공정으로 도입되어 1년 이상 운영되어진 결과를 보면 활성탄 여재의 물성치 및 흡착능의 빠른 감소 경향이 있지만, 소독부산물 중 $HAA_5$항목이 문제시되는 정수장의 경우 기타여과지로 인증을 받은 F/A공정은 향후 점점 더 강화되는 수질기준의 만족을 위한 대안공정의 하나로서 적용이 가능하리라 판단된다.

흡착 소재별 도로 노면 유출 오염원의 저감성 비교 연구 (Feasibility Study with Several Sorption Materials to Treat Road Runoff Pollutions)

  • 박상우;오재일;최영화
    • 상하수도학회지
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    • 제20권5호
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    • pp.709-717
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    • 2006
  • This research was conducted to figure out the feasibility of several sorption materials to treat various pollutants in road runoff. In advance of the major feasibility test with various sorption materials, the separation process with $1.2{\mu}m$ filter was conducted and showed that slight portion of pollutants was removed(Orgamic pollutant - 20%, Nutrient salt - 50%, Heavy metals - 0~30%). To remove dissolved pollutants in runoff, various materials were tested through an isotherm sorption experiment. As a result, GAC showed most effective material among them to lessen most contaminants such as organic compounds and nutrients. On the other hand, ion-exchange resin and Zeolite showed limited usefulness on the some heavy metals. Freundlich model was most suitable for the current experiment data, and the amount of adsorbent (GAC) could calculated based on this model.