• 제목/요약/키워드: fluidized media

검색결과 46건 처리시간 0.038초

혐기성 BAC 유동층 반응기에서 Start-up 방법 및 미생물 부착 특성 연구 (A Study on the Start-up Method and Characteristics of Microorganisms Attachment in an Anaerobic BAC FluidizedBed Reactor)

  • 박동일;신승훈;안재동;최석규
    • 한국환경보건학회지
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    • 제22권1호
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    • pp.82-90
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    • 1996
  • The objectives of this study were to examine the start-up method and characteristics of biomass attachment on the media in an anaerobic fluidized bed reactor(AFBR). The media adopted was the granular activated carbon which was successfully capable of adsorbing organics and biomass. The reactor was operated at 5 kg $COD/m^3\cdot day$ and 24hr of HRT. There were important problems in the AFBR's start-up, which has been reported very long and unstable. Therefore, this research was to solve the problem of the start-up and it was performed, comparing two start-up ways that were initial fluidized system and initial static-fluidized system. The results were summarized as follows: (1) On the whole initial static-fluidized system was superior to initial fluidized system in the aspects of biogas production rate, methane content and COD removal efficiency etc. (2) At the steady state methane production rate and recoverable bioenergy of initial static-fluidized system were $2.074 m^3CH_4/m^3\cdot day$, $0.488 m^3CH_4/kgCOD_{removed}\cdot day$, and 81.3kcal/day, respectively. (3) Thickness of biofilm was about $5.11 \mu m$, $\rho_{bw}$ and $\rho_{bd}$ were $1.022 g/cm^3, 0.0953g/cm^3$ respectively. (4) Biomass concentration of fluidized state was about 35 mg/g GAC. In conclusion the efficient method on the start-up of the AFBR using GAC as media was initial static-fluidized system and the period of static state needed to reach steady state was considered about twenty days.

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이상 유동층 반응기의 동특성에 관하여 (The Dynamic Characteristics of a Two Phase Fluidized Beds)

  • 서명교;서정호;강준수
    • 한국식품과학회지
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    • 제25권3호
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    • pp.210-213
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    • 1993
  • 본 실험의 목적은 공극률과 상향유속의 관계에서 세입자의 유동특성을 고찰하는 데 있다 Column 내경은 유동층의 유속과 공극률과의 관계에 큰 영향을 미치지 못했으며 유속과 공극률과의 관계는 다음과 같다. $\frac{u}{u_t}={\varepsilon}^{3.703}$----모래$\frac{u}{u_t}={\varepsilon}^{3.5665}$----이온 교환수지$\frac{u}{u_t}={\varepsilon}^{4.066}$---GAC 또 유동층 매질입자는 구형을 사용하는 것이 일정유속에서 공극률을 낮게 유지할 수 있어 좋았고 실제로 미생물막 유동층 반응기에서는 미생물막이 매질에 부착되면 비중이 감소하므로 매질의 비중이 높을수록 유동층을 유지하기가 쉽다.

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다공성 담체를 이용한 유동상 및 하이브리드 반응기에서의 질소제거 (Nitrogen Removal in Fluidized Bed and Hybrid Reactor using Porous Media)

  • 전병희
    • 대한환경공학회지
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    • 제27권5호
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    • pp.542-548
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    • 2005
  • 부착 미생물을 이용한 다공성 담체 유동상 반응기는 하폐수중의 유기물 및 질소제거에 많이 적용되어져 왔다. 특히 생물막이 형성된 담체에서는 호기, 무산소 그리고 혐기영역이 공존하여 동시적 질산화/탈질 반응에 의한 질소제거에 유리한 환경이 제공된다고 알려져 있다. 이러한 반응을 활성화시키기 위해서는 담체표면과 내부에서 산소와 유기물등의 적절한 기질확산이 이루어져야 한다. 그러나 하폐수중의 유기물농도나 생물막의 마찰조건등 운전조건에 따라서는 표면에서의 종속영양균의 과잉성장에 의해 질소 제거 반응이 저해되기도 한다. 다공성 담체 유동상 반응기에 막모듈을 결합시킨 하이브리드 반응기는 단일조내에서 활성화된 동시적 질산화/탈질 반응으로 종래의 유동상 반응기에 비해 30% 이상 질소제거 효율이 증가하였다. 미소전극 연구를 통해 담체내부의 탈질율을 조사할 수 있으며 유동상 반응기에 비하여 하이브리드 반응기내 담체내부에서는 탈질반응에 대한 유기물의 확산에 대한 제한인자가 작으며 따라서 보다 높은 탈질율을 유지할 수 있음을 보였다.

선회류 생물학적 유동상의 최적 메디아 충전량에 관한 연구 (A Study on Optimal Packing Volume of Media in Swirl Flow Biological Fluidized Bed)

  • 최두형;김환기
    • 대한환경공학회지
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    • 제22권2호
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    • pp.331-340
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    • 2000
  • 기존의 2상 생물학적 유동상은 산소 공급의 한계 및 유동 분산판 폐쇄 등의 문제점을 가지고 있다. 이러한 문제를 해결하기 위하여 3상의 선회류 유동상을 고안하여 그 운전특성을 연구하였다. 합성 폐수의 평균 TOC농도는 약 $70mg/{\ell}$($62{\sim}84mg-TOC/{\ell}$)이었고, HRT는 1.6시간, 평균입경이 0.397 mm인 모래의 충전량을 200에서 $600m{\ell}/{\ell}$까지 단계적으로 변화시키며, 미생물의 농도 및 처리 수질을 측정하였다. 실험 결과 기존 유동상 반응기의 분산장치의 폐색과 산소공급의 제한 등 연속운전에 지장을 주는 단점을 보완할 수 있었다. 실험 기간 중에 반응조의 DO의 농도는 $3mg/{\ell}$이상을 유지할 수 있었으며, TOC 제거율은 91~94 %, MLVSS농도는 $2,360{\sim}3,860mg/{\ell}$, F/M 비는 $0.59{\sim}1.04kg-TOC/kg-MLVSS{\cdot}day$, 생물막의 두께는 $35{\sim}71{\mu}m$, Media-g당 MLVSS는 8.4~17.3 mg/g, 그리고 슬러지 발생량은 $1.08{\sim}2.35kg-SS/m^3{\cdot}day$의 변화를 보였다. 충전량에 따른 MLVSS농도 변화를 분석한 결과 충전량이 $400{\sim}450m{\ell}/{\ell}$일 때 MLVSS농도를 가장 높게 유지할 수 있었고, Media-g당 MLVSS농도 측면에서는 충전량이 $250m{\ell}/{\ell}$일 때 가장 높은 농도를 유지할 수 있었다. 유출수의 SS는 $350{\sim}450m{\ell}/{\ell}$에서 낮게 나타났다. 적정 처리효율에서 F/M 비가 낮고, 슬러지 발생량이 적은 최적조건에서의 생물막의 두께는 약 $54{\mu}m$, g-Media당 MLVSS의 농도는 13 mg이였으며, 충진량은 $350{\sim}400m{\ell}/{\ell}$(35~40%)임을 알 수 있었다. 최적 충전 상태에서 광학 현미경으로 Media를 관찰할 때 Epistylis sp.의 고착성미생물을 일부 관찰할 수 있었으며, Media 표면을 전자현미경으로 촬영한 결과 구균류가 부착 성장하는 것을 알 수 있었다.

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간접 포기식 유동상의 이상적 설계에 관한 연구 (A Study on the Optimal Design in the Indirect Aerated Fluidized Bed)

  • 안송엽;김환홍;권희태
    • 한국환경과학회지
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    • 제8권1호
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    • pp.95-100
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    • 1999
  • Process intensification without any increase in bed requires the exploitation of fluid mechanical phenomena as the basis for elegant solutions to the process engineering problems which result from the need to retain and control the immobilized biomass, and for biomass recovery. The fluidized bed biological reactor provides a solution to these needs. The wastewater treatment characteristics of the fluidized bed was filled with sand media. Indirect aeration were studied experimentally. The researcher was filled with sand particle size(0.60~0.42mm) in three reactors with different section area(A)/height(H), in the state BOD loading 4.5kg-$BOD_5/m^3$ㆍd, and under the fixed state of hydraulic retention time for around 32 minutes.

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염색폐수 처리성능에 대한 호기성 고정 및 유동층 생물막공법과 회전매체를 가진 완전혼합 활성슬러지 공법의 비교연구 (A comparative study of dyeing wastewater treatment capability for Aerobic Packed/Fluidized-Bed and Moving Media Complete Mixing Activated Sludge system)

  • 김홍태;김규창
    • 한국환경과학회지
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    • 제8권4호
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    • pp.525-532
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    • 1999
  • This study was conducted to evaluate capability of dyeing wastewater treatment for 3 type reactors. These reactors were Packed Bed Reactor(PBR), Fluidized Bed reactor(FBR) and Moving Media Complete Mixing Activated Sludge reactor(MMCMAS). Experiments of PBR and FBR were performed by various packing ratios and organic loading rates, experiments of MMCMAS were performed by various organic loading rates. In order to obtain ${SBOD}_5$ removal efficiencies of more than 90%, the F/Mv ratios of PBR, FBR, MMCMAS were 0.11 kgBOD/kgMLVSS$\cdot$d, 0.12 kgBOD/kgMLVSS$\cdot$d, and 0.37 kgBOD/kgMLSS$\cdot$d, respectively. So MMCMAS system which has more active microorganisms showed better capability of organic removal and also stronger dynamic and shock loadings than those of PBR and FBR. In PBR and FBR, the media packing ratio of 20% showed better performance of organic matters removal effciencies than 10% and 30%, but sludge production rate at media packing ratio of 30% was relatively lower than that of 10% and 20%. When more than 90% organic matters removal efficiency was obtained, the ratios of attached biomass to total biomass at PBR, FBR, MMCMAS were 89~99%, 87~98%, and 54~80%, respectively. The ratio of attached biomass to total biomass was low in MMCMAS. This was formation of thin biofilm due to shear force between rotaing disc and water. The average sludge production rates(kgVSS/kgBODrem.) of PBR, FBR and MMCMAS were 0.20, 0.29 and 0.54, respectively.

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도금폐수처리를 위한 입상활성탄 유동 메디아 적용 유동상 멤브레인 여과기술의 적용가능성 평가에 관한 연구 (Study on Feasibility of Fluidized Bed Membrane Reactor with Granular Activated Carbon Particles as Fluidized Media to Treat Metal-plating Wastewater)

  • 장수민;권대은;김정환
    • 멤브레인
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    • 제28권4호
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    • pp.252-259
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    • 2018
  • 실 산성 도금폐수를 입상활성탄(GAC)이 유동메디아로 첨가된 유동상 멤브레인 반응기를 이용하여 처리하였다. GAC 유동조건에서 적용 투과플럭스에 대해 시간에 따른 흡입압의 증가는 관찰되지 않았다. 폐수의 중성 pH에서 파울링 속도는 산성 조건에 비해 GAC 유동조건에서 크게 감소하였다. 해당 폐수의 용액 pH 증가는 입자크기의 증가를 가져왔고 이는 멤브레인 표면에서 상대적으로 성긴 구조의 케이크층 형성을 야기시켰다. 유동상 멤브레인 반응기에서 GAC 유동 하에 95%이상의 COD 제거율이 관찰되었으며 총부유물질은 거의 완벽하게 제거되었다. 실 도금폐수의 pH에서, 유동상 멤브레인 반응기의 구리 및 크롬의 제거는 거의 관찰 되지 않았다. 그러나 pH를 중성으로 증가 시켰을 시 구리와 크롬의 제거율은 각각 99%와 94%까지 증가를 하였다. 적용해 준 pH에 상관 없이, 시안의 경우 95% 이상의 제거율을 달성하였다. 이는 유기물과 시안 착물 형성으로 인해 유동상 멤브레인 반응기 내 GAC의 강한 흡착으로 제거된 것으로 사료된다.

Biofilm Processes for Volume Decrease in Recirculating Water Treatment Systems for Aquaculture

  • Kim Jeong-Sook;Yoon Gil-Ha;Ghim See-Jun;Kang Lim-Seok;Lee Byung-Hun
    • Fisheries and Aquatic Sciences
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    • 제1권2호
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    • pp.242-249
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    • 1998
  • The engineering aspect of water treatment processes in the recirculating aquaculture system was studied. To recycle the water in the aquaculture system, a wastewater treatment process was required to maintain high water quality for the growth and health of the cultured fish. In this study, three different biofilm processes were used to reduce the concentration of organic matters and ammonia from the recirculating water - two phase fluidized bed, three phase fluidized bed, and trickling filter. The objectives of this research were to evaluate the optimum treatment conditions of the biofilm processes for the recirculating aquaculture system, and thereby reduce the volume of biofilm processes, which are commonly used for the recycle water treatment processes for aquaculture. The result of this study showed that the removal efficiency of organic matters by trickling filter was found to be lower than that of the fluidized bed. In the trickling filter system, anthracite showed better organic removal efficiency than crushed stone as a media. In the two phase fluidized bed, the maximum removal efficiency of either organics or ammonia was obtained when both the packing rate of media was maintained to $40\%$ of total reactor depth excepting sediment zone and the bed expansion rate was maintained to $100\%$. When 100 tilapia (Oreochromis niloticus) of each average 200g was reared, the pollutant production rate was 0.07g $NH_4\;^+-N/kg$ fish/day and 0.06g P04-3-P/kg fish/day, and sludge production rate was 0.39 g SS/kg fish/day. In the two phase and three phase fluidized bed, the volume of water treatment tank could be calculated from an empirical equation by using the relationship between the influent COD to $NH_4\;^+-N$ ratio (C/N, -), media concentration (Cm, g/L), influent ammonia nitrogen concentration (Ni, mg/L), effluent ammonia nitrogen concentration (Ne, mg/L), bed expansion rate $(E,\;\%)$, and influent flowrate $(Q,\;m^3/hr)$. The empirical equation from this study is $$V_2\;=\;10^{3.1279}\;C/N^{3.5461}\;C_m\;^{-3.7473}\;N_i\;^{4.6477}\;E^{0.0326}\;N_e\;^{-0..8849}\;Q\;(Two\;Phase\;FB) V_3\;=\;10^{11.7507}\;C/N^{-1.2330}\;C_m\;^{-6.5715}\;N_i\;^{1.5091}\;N_e\;^{-1.8489}\;Q (Three\;Phase\;FB)$$

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혐기성 유동층 생물막 반응기에서 순환유속 증가에 따른 층공극률 및 유기성 폐수 처리특성에 관한 연구 (A Study on the characteristics of the bed porosity and organic wastewater treatment with the circulation velocity in the anaerobic fluidized bed biofilm reactorA Study on the characteristics of the bed porosity and organic wastewater treatment with the circulation velocity in the anaerobic fluidized bed biofilm reactor)

  • 김재우;안재동
    • 환경위생공학
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    • 제10권3호
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    • pp.1.1-15
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    • 1995
  • This study was performed to estimate the characteristics of the organic wastewater treatment and bed porosity with the circulation velocity in the anaerobic fluidized bed biofilm reactor. The results were as follows; 1. With Increasing circulation velocity the fluidized bed expanded smooth and with increasing initial particle volume the fluidized bed was increased. 2. With increasing circulation velocity the gasproduction was increased, but at 1.Scnt/sec of circulation velocity AFBBR showed the highest value of methane production rate per removed COD. Therefore, for the purpose of economical operation in AFBBR, 1.5cm/sec of circulation velocity was optimum 3. The microorganisms were colonized in the crevice of the media. 4. On fluidization, COD, VA,55 profiles with the reactor height were not showed. In conclusion, AFBBR suit the organic wastewater treatment's purpose, and at 1.5cm/sec of circulation velocity the system is economical in an energy Point of view.

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Hydrogen Sulfide Removal by Immobilized Thiobacillus novellas on $SiO_2$ in a Fluidized Bed Reactor

  • Cha, Jin-Myung;Shin, Hyun-Jae;Roh, Sung-Hee;Kim, Sun-Il
    • Journal of Microbiology and Biotechnology
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    • 제17권2호
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    • pp.320-324
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    • 2007
  • The removal of hydrogen sulfide ($H_2S$) from aqueous media was investigated using Thiobacillus novellas cells immobilized on a $SiO_2$ carrier (biosand). The optimal growth conditions for the bacterial strain were $30^{\circ}C$ and initial pH of 7.0. The main product of hydrogen sulfide oxidation by T. novellus was identified as the sulfate ion. A removal efficiency of 98% was maintained in the three-phase fluidized-bed reactor, whereas the efficiency was reduced to 90% for the two-phase fluidized-bed reactor and 68% for the two-phase reactor without cells. The maximum gas removal capacity for the system was 254 g $H_2S/m^3/h$ when the inlet $H_2S$ loading was $300g/m^3/h(1,500ppm)$. Stable operation of the immobilized reactor was possible for 20 days with the inlet $H_2S$ concentration held to 1,100 ppm. The fluidized bed bioreactor appeared to be an effective means for controlling hydrogen sulfide emissions.