• 제목/요약/키워드: biofilter,

검색결과 363건 처리시간 0.025초

Minimizing the Environmental Pollution of Pig Husbandry and Waste Management

  • Mszros, Gy;Kuli, B.;Fenyvesi, L.;Mtys, L.
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 1993년도 Proceedings of International Conference for Agricultural Machinery and Process Engineering
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    • pp.1395-1404
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    • 1993
  • Application of water-saving self-feeders can reduce water consumption of pigs by more than 50% . so the feeding-watering system one of the most important way of the reduction of the slurry. Bioactive deep litter housing can eliminate slurry. Matured urine, faeces and litter can use for the purposes of soil conditioning and fertilizing . Water-saving slurry handling technology can halve manure dilution so it can double the nutrient content of the slurry. By using of straw bale biofilter for reducing emissions of pig houses makes fattening of pigs possible close to populated area. Developed rate control system for slurry application make avoiding over-fertilization possible , can fulfill better the demand of nutrient of plants. By means of computer aided manure utilization system area distribution of soil characteristics can determinate . The system is suitable for planning the utilization of manure and slurry in environment -friendly way.

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유.무기성 악취저감을 위한 최적의 미생물 포괄고정담체 제조법에 관한 연구 (Development of Optimal Bio-encapsulated Media for Organic/Inorganic Odor Reduction)

  • 김선진;김태형;이윤희;장현섭;송지현;황선진
    • 상하수도학회지
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    • 제26권1호
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    • pp.29-35
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    • 2012
  • A bio-encapsuled media was developed to apply on reducing odors produced from organic waste treatment process. The microorganism, candida tropicalis, was encapsulated in sponge media consisted of polyurethane material. Sodium alginate as a natural polymer which does not affect to hydrophilic microbes and PEGDA(poly ethylene glycol diacrylate) as a artificial polymer were used for the encapsuled media. The media was evaluated with TMEDA (N,N,N',N'-tetramethylethylenediamine, 0.02~0.1%) as a catalyst at different temperature 25 and $35^{\circ}C$. The best performance was achieved with 0.02% of TMEDA at $25^{\circ}C$. The microbes' activity in the media was examined by Live/Dead cell method.

Microbacterium esteraromaticum CS3-1의 toluene 분해능에 미치는 benzene, ethylbenzene, xylene의 영향

  • 전연신;이은영;조경숙;류희욱
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2000년도 추계학술발표대회 및 bio-venture fair
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    • pp.179-182
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    • 2000
  • Toluene-degrading bacterium, Microbacterium esteraromaticum CS3-1 was isolated from the biofilter for the removal of BTEX. Microbacterium esteraromaticum CS3-1 was shown to utilize toluene as a primary carbon and energy source. Effect of mixed BTEX gases on toluene degradation rate by M. esteraromaticum CS3-1 was investigated in this study. Toluene degradation rate was 2.26(only toluene), 2.06(toluene+benzene), 2.57(toluene+ethylbenzene), and 4.74(toluene+xylene) mmole $toluene\;{\cdot}\;g-DCW^{-1}\;{\cdot}\;h^{-1}$. Toluene degradation rate was 2.26(only toluene), 1.23(toluene+benzene+ethylbenzene), 1.52 (toluene+ethylbenzene+xylene), and 1.76(toluene+benzene+ethylbenzene+xylene) mmole $toluene\;{\cdot}\;g-DCW^{-1}\;{\cdot}\;h^{-1}$. The presence of BTEX compounds over three mixtures had a negative effect on toluene degradation rate. Toluene degradation rates were enhanced by the presence of ethylbenzene or xylene, whereas the presence of benzene had a negative effect on toluene degradation rate in comparison with toluene degradation rate when only toluene is existent.

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Characteristics of One- & Two-Stage Biofiltration System : Removal of Volatile Organic Compounds

  • Jeong, Gwi-Taek;Lee, Gwang-Yeon;Lee, Kyoung-Min;Cha, Jin-Myeong;Ryu, Hwa-Won;Park, Don-Hee
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2005년도 생물공학의 동향(XVII)
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    • pp.281-286
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    • 2005
  • Biofiltration is a biological process which is considered to be one of the more successful examples of biotechnological applications to environmental engineering, and is most commonly used in the removal of odoriferous compounds. In this study, we have attempted to assess the efficiency with which both single and complex odoriferous compounds could be removed, using one- or two-stage biofiltration systems. The complex gas removal scheme was applied with a 200 ppm inlet concentration of ethanol, 70 ppm of acetaldehyde, and 70 ppm of toluene with EBCT for 45 seconds in a one- or two-stage biofiltration system. The removal yield of toluene was determined to be lower than that of the other gases in the one-stage biofilter. Otherwise, the complex gases were sufficiently eliminated by the two-stage biofiltration system.

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Characterization of Sulfur Oxidation by an Autotrophic Sulfur Oxidizer, Thiobacillus sp. ASWW-2

  • Lee Eun Yaung;Cho Kyung-Suk;Ryu Hee Wook
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제5권1호
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    • pp.48-52
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    • 2000
  • An autotrophic sulfur oxidizer, Thiobacillus sp. ASWW-2, was isolated from activated sludge, and its sulfur oxidation activity was characterized. Thiobacillus sp. ASWW-2 could oxidize elemental sulfur on the broad range from pH 2 to 8. When 5-50 g/L of elemental sulfur was supplemented as a substrate, the growth and sulfur oxidation activity of Thiobacillus sp. ASWW-2 was not inhibited. The specific sulfur oxidation rate of strain ASWW-2 decreased gradually until sulfate was accumulated in medium up to 10 g/L. In the range of sulfate concentration from 10 g/L to 50 g/L, the sulfur oxidation rate could keep over $2.0g-S/g-DCW{\cdot}d$. It indicated that Thiobacillus sp. ASWW-2 has tolerance to high concentration of sulfate.

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혼합균주를 함유한 유동층 생물반응기를 이용한 벤젠의 제거 (Removal of Benzene by the Fluidized Bed Bioreactor including Microbial Consortium)

  • 주준걸;김연재;조성기;오광중;김종우;김동욱
    • KSBB Journal
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    • 제19권3호
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    • pp.206-209
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    • 2004
  • 벤젠의 제거에 효과적인 MY 혼합균주를 획득하였으며, 이중 우점종은 Rhodococcus ruber DSM 43338T로 밝혀졌다. MY 혼합균주가 함유된 유동층 생물반응기는 벤젠에 대한 임계 제거율 (critical removal rate)은 32 g/㎥ h로 나타났으며, 17일간의 연속가동에서도 안정적인 처리효율을 보여주어서, 벤젠의 제거에 뛰어난 성능을 보여주었다.

The Effect of Porosity of Seiving Particles on the Romoval Efficiency of Organic Substances via Biofilter in the Fixed Bed

  • Park Young Gyu
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제7권1호
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    • pp.31-37
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    • 2002
  • This paper was investigated to clarify the possibility of a biodegradation of materials adsorbed on different porous granular-activated carbons (GACs) such as coal-& coconut-based GAC. Total organic carbon, humic substance and ammonia were used to compare their removal efficiencies. The objective of this study is to determine the adsorption capacity of bioregenerated GAC. When raw water reacted with chloride, the yield of THMs increased as a function of the input amount of chloride. The formation of trihalomethanes (THMs) was investigated in water treated with chlorine when humic acid was used as THM precursor. As the input amount of chloride in raw water increased by two or five-fold to remove the $NH_3$, the chloroform of the THMs significantly increased also five or ten-fold. It was found that the chloroform was significantly removed by the treatment of biological activated carbon (BAG) in comparison with the ozone treatment, and the removal efficiency of THMs in coal-typed GAC was $10-30\%$ better than coconut-typed GAC due to the biological degradation on the surface of the activated carbons.

질소산화물 제거를 위한 최적 토양 바이오 필터 혼합비 도출에 관한 연구 (A Study of Optimal Mixture Fraction of Soil Bio-Filter for Removing NOX)

  • 조기철;이내현
    • 한국환경과학회지
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    • 제16권11호
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    • pp.1247-1255
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    • 2007
  • Soil biofiltration is an environmentally-sound technology for elimination of VOCs, odorous and $NO_X$ compounds from a low concentration, high volume waste gas streams because of its simplicity and cost-effectiveness. This study investigated the optimal mixture fraction of briquet ash, compost, soil and loess for $NO_X$ degradation. Extreme vertices design was used to examine the role of four components on $NO_X$ degradation. Under our experimental conditions, 74.5% of $NO_X$ degradation was observed, using a model mixture(25% briquet ash, 10% compost, 30% soil and 40% loess) containing 100 ppb of NO. It was shown that experimental design analysis could allow selecting optimal conditions in such biodegradation processes in this study.

O3/BAC 공정에서 Peroxone 공정 적용에 따른 잔류 과산화수소 제거 특성 (Removal Characteristics of Residual Hydrogen Peroxide (H2O2) according to Application of Peroxone Process in O3/BAC Process)

  • 염훈식;손희종;서창동;김상구;류동춘
    • 대한환경공학회지
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    • 제35권12호
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    • pp.889-896
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    • 2013
  • 수중의 미량 유해물질 제거를 위해 AOP 공정에 대한 관심이 증대되고 있다. 낙동강 하류에 위치한 정수장들은 대부분 $O_3/BAC$ 공정을 채택하여 운전 중에 있으며, AOP 공정의 일종인 peroxone 공정의 적용에 많은 관심을 가지고 있다. 본 연구에서는 $O_3/BAC$ 공정을 운전 중인 정수장에서 과산화수소를 투입할 경우에 후단의 BAC 공정에서의 잔류 과산화수소의 제거 특성을 biofiltration 공정과 함께 평가하였다. 유입수의 수온 및 과산화수소 농도변화 실험에서 biofilteration 공정은 낮은 수온에서 유입수 중의 과산화수소 농도가 증가하면 급격히 생물분해능이 저하된 반면, BAC 공정에서는 비교적 안정적인 효율을 유지하였다. 유입수의 수온을 $20^{\circ}C$, 과산화수소 투입농도를 300 mg/L로 고정하여 78시간 동안 연속으로 투입한 실험에서 biofilteration 공정은 EBCT 5~15분의 경우 운전 24~71시간 후에는 유입된 과산화수소가 거의 제거되지 않았으나, BAC 공정에서는 78시간 후의 과산화수소 제거율이 EBCT 5~15분일 때 38%~91%로 나타났다. 또한, 78시간 동안 연속 투입실험 후의 biofilter와 BAC 부착 박테리아들의 생체량과 활성도는 각각 $6.0{\times}10^4CFU/g$$0.54mg{\cdot}C/m^3{\cdot}hr$$0.4{\times}10^8CFU/g$$1.42mg{\cdot}C/m^3{\cdot}hr$로 나타나 운전초기에 비해 biofilter에서는 생체량과 활성도가 각각 99%와 72% 감소하였으며, BAC의 경우는 각각 68%와 53%의 감소율을 나타내었다. BAC 공정에서 생물분해 속도상수($k_{bio}$)와 반감기($t_{1/2}$)를 조사한 결과, 수온 $5^{\circ}C$에서 과산화수소 농도가 10 mg/L에서 300 mg/L로 증가할수록 $k_{bio}$$1.173min^{-1}$에서 $0.183min^{-1}$으로 감소하였고, $t_{1/2}$은 0.591 min에서 3.787 min으로 증가하였다. 수온 $25^{\circ}C$의 경우 $k_{bio}$$t_{1/2}$$1.510min^{-1}$에서 $0.498min^{-1}$ 및 0.459 min에서 1.392 min으로 나타나 수온 $5^{\circ}C$에 비해 수온이 $15^{\circ}C$$25^{\circ}C$로 상승할 경우 $k_{bio}$는 각각 1.1배~2.1배 및 1,3배~4.4배 정도 증가하였다. $O_3/BAC$ 공정을 운전 중인 정수장에서 peroxone 공정의 적용을 위해 과산화수소 투입을 고려할 경우, 후단의 BAC 공정에서 잔류 과산화수소를 효과적으로 제거 가능하였고, 고농도의 과산화수소 유출사고시에는 BAC 공정의 EBCT를 최대한 증가시켜 운전할 경우 수중의 과산화수소 농도를 최대한 저감시킬 수 있을 것으로 판단된다.

활성탄과 생물여과 공정에서의 유기질소계 염소 소독부산물 제거 특성 (Removal Characteristics of Nitrogenous Organic Chlorination Disinfection By-Products by Activated Carbons and Biofiltration)

  • 서인숙;손희종;최영익;안욱성;박청길
    • 대한환경공학회지
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    • 제29권2호
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    • pp.184-191
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    • 2007
  • 활성탄 공정에서 chloropicrin, DCAN, DBAN 및 TCAN과 같은 질소계 염소 소독부산물의 제거기작은 운전초기에는 흡착이 높은 비중을 차지하나 부착미생물의 활성이 중진되면서 부착미생물에 의한 생분해와 흡착에 의해 제거되었으며, 이들 물질들은 생분해능이 큰 물질들로 조사되었다. 입상활성탄 재질별 chloropicrin, DCAN, TCAN 및 DBAN의 제거 특성은 석탄계와 야자계 재질의 활성탄에서 제거율이 높았고, 목탄계는 상대적으로 낮은 제거능을 보였으며, 안트라사이트 biofilter에서 가장 낮은 제거능을 보였다. 활성탄 재질별 부착 미생물의 생체량과 활성도는 석탄계가 가장 높았고, 야자계, 목탄계, 안트라사이트 순으로 나타났으며, 수온 변화에 따른 chloropicrin, DCAN, TCAN 및 DBAN의 제거 특성은 수온이 $10^{\circ}C$ 이하로 저하될 경우 부착 bacteria의 생체량과 활성도 감소로 제거율이 감소하였다. 안트라사이트를 이용한 생물여과 공정은 수온의 변화에 아주 민감하게 변하는 양상을 나타내었으며, 이는 부착 bacteria에 의한 직접적인 생물분해가 주 제거 메카니즘이기 때문인 것으로 나타났다. Chloropicrin, DCAN, TCAN 및 UBAN과 같은 질소계 염소소독부산물들의 유입농도가 높은 경우 이들의 제거시에는 수온의 영향이 매우 중요하며, 흡착능이 소진된 활성탄이나 흡착능이 없는 여재를 사용한 생물여과 공정에서는 수온이 낮은 동절기에는 이들의 유출 가능성이 있었다.