• 제목/요약/키워드: biological phosphate removal

검색결과 58건 처리시간 0.024초

Phosphate Binding Protein이 세포질에 발현된 재조합 박테리아를 이용한 인 제거 (Phosphate Removal Using Recombinant Bacteria with Cytoplasmic Phosphate Binding Protein)

  • 최석순;하정협;차형준
    • 공업화학
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    • 제24권5호
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    • pp.558-561
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    • 2013
  • 본 연구에서는 인 결합 단백질(phosphate-binding protein)이 세포질(cytoplasm)에서 발현되는 재조합 대장균(Escherichia coli)을 제조하였으며, 이를 이용하여 수중에 함유된 인의 제거에 대하여 고찰하였다. 이 균주를 6 h 동안 배양하여 1.0, 1.5, 2.0 mg/L의 인을 처리하였을 때, 각각 90, 49, 41%의 제거효율을 도출하였으며, 우수한 인 제거 능력(specific phosphate removal)을 나타내었다. 또한, 세포의 Optical density를 2.5, 5.0으로 조절하여 운전하였을 때, 인의 제거효율이 향상됨을 알 수 있었으며, 2.0 mg/L 인을 80%까지 제거시킬 수 있었다. 이 연구를 통하여 얻어진 새로운 생물기술은 수계의 부영양화 문제를 해결하는데 효과적으로 사용될 수 있을 것이다.

철 코팅 규사의 인산이온 제거 효율 평가 연구 (A study on the evaluation of phosphate removal efficiency using Fe-coated silica sand)

  • 조은영;김영희;박찬규
    • 상하수도학회지
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    • 제31권6호
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    • pp.521-527
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    • 2017
  • Phosphorus is one of the limiting nutrients for the growth of phytoplankton and algae and is therefore one of leading causes of eutrophication. Most phosphorous in water is present in the form of phosphates. Different technologies have been applied for phosphate removal from wastewater, such as physical, chemical precipitation by using ferric, calcium or aluminum salts, biological, and adsorption. Adsorption is one of efficient method to remove phosphates in wastewater. To find the optimal media for phosphate removal, physical characteristics of media was analysed, and the phosphate removal efficiency of media (silica sand, slag, zeolite, activated carbon) was also investigated in this study. Silica sand showed highest relative density and wear rate, and phosphate removal efficiency. Silica sand removed about 36% of phosphate. To improve the phosphate removal efficiency of silica sand, Fe coating was conducted. Fe coated silica sand showed 3 times higher removal efficiency than non-coated one.

산성하천수중 비소제거에 관한 연구

  • 고임범
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 임시총회 및 추계학술발표회
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    • pp.350-353
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    • 2004
  • in order to develop a new technique for the removal of arsenic compoundsfrom acidified water, the removal of arsenic compounds by an acidophilic moss, Jungermannia vulcanicola Steph. was investigated in this study. The result of vial tests for arsenic removal is dependent on the biological activity of moss. The presence of phosphate inhibited the arsenic removal. And the acclimatization of moss by the media containing arsenic increased the its capability of arsenic remova.

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세라믹 담체에 적용된 해양박테리아 4종의 저농도 질소-인 제거 (Low Concentrated Nitrogen-Phosphate Removal of 4 Strains of Marine Bacteria Applied to Ceramic Media)

  • 이건섭;김소정;정영재;김동균;이상섭;오정균;이택견
    • 한국산학기술학회논문지
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    • 제13권10호
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    • pp.4910-4916
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    • 2012
  • 세라믹담체에 적용한 4종의 해양박테리아 (Aeromonas hydrophila, Chryseomonas indologenes, Pseudomonas diminuta, Vibrio parahaemolyticus)의 저농도 질소 인 제거 효율의 변화를 분석하였다. 해양박테리아는 광양만에서 분리 동정하였다. 담체에 적용한 4종의 해양박테리아 모두 대조군에 보다 약 3배 정도의 성장률이 증가하였으며, 암모니아서 질소 제거효율도 30% 이상 증가하였다. 질산성 질소의 제거 효율은 A. hydrophila 균주가 가장 높았으며, 인의 제거는 P. diminuta 균주가 가장 높은 것으로 나타났다. 본 연구의 결과는 세라믹담체는 질소-인 제거 효율 증진에 좋은 재료이며, 분리된 해양박테리아는 현장의 저농도 질소-인 조절에 유용할 수 있음을 보여준다.

Denitrifying Phosphate Accumulating Organisms (dPAOs)을 이용한 영양소제거 및 반응조내 미생물 분포 조사 (Nutrient Removal using the Denitrifying Phosphate Accumulating Organisms (dPAOs) and Microbial Community Analysis in Anaerobic-Anoxic Sequencing Batch Reactor)

  • 박용근;이진우;이한웅;이수연;최의소
    • 미생물학회지
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    • 제38권2호
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    • pp.113-118
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    • 2002
  • 혐기-무산소조건으로 구성된 회분식 반응조에서 질산염을 이용하여 인(P)도 동시에 제거될 수 있는 가능성을 알아보기 위해서 인의 제거 양상을 혐기-호기조건의 반응조와 비교하여 조사하였고, 질산염과 인을 동시에 제거하는 미생물분포를 분석하였다. 그 결과 비교적 낮은 농도의 유기물이 적용되었을 때(평균 CODcr=130mg/ι)두 반응조 모두 인이 효과적으로 제거되었으며 반응조내의 최종 인의 농도를 1 mg P/L. 이하로 유지하였다. 특히, 질산염을 전자수용체로 이용한 혐기-무산소조건의 반응조는 기존의 영양소제거 시스템과 비교하여 5-7 mg (P+N)/ι의 영양소를 추가적으로 제거하여 유기물의 효과적 인 이용이 가능한 것으로 판명되었다. 혐기-무산조 조건의 방응조내 미생물 분포를 조사 한 결과 질소원을 제거하는 미생물군(denitrifying bacteria)과 인을 제거하는 미생물군(polyphosphate accumulating bacteria)이 함께 존재하고 있음이 밝혀졌고, 이들 중 $\beta$-proteobacteria에 속하는 Zoogloea ramigera와 Rhodocyclus에 포함되는Alcaligenes defragrans 등은 탈질능력 이 있으면서 anoxic상태에서 인을 동시에 축적할 수 있는 탈질-탈인균주(denitrifying phosphate accumulating organisms; dPAO)로 조사되었다.

Verification of Enhanced Phosphate Removal Capability in Pure Cultures of Acinetobacter calcoaceticus under Anaerobic/Aerobic Conditions in an SBR

  • Kim, Hyung-Jin;Krishna R. Pagilla
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제7권6호
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    • pp.335-339
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    • 2002
  • Laboratory experiments were conducted using pure cultures of Acinetobacter under an-aerobic/aerobic cyclic conditions to explain the release and uptake of soluble phosphate in an activated sludge process showing enhanced biological phosphate removal (EBPR). Under anaerobic/aerobic cyclic conditions in a Sequencing Batch Reactor (SBR), COD uptake concurrent with soluble phosphate release by Acinetobacter was not significant during the anaerobic periods, indicating that EBPR would not be established in pure cultures. However Acinetobacter cells accumulated higher phosphate content (5.2%) in SBR than that obtained (4.3%) from batch experiments. These results suggest that Acinetobacter sp. may not follow the proposed pattern of behavior of poly-P bacteria in EBPR activated sludge Plants.

음이온 교환수지를 이용한 인제거 향상 (Enhanced removal of phosphate on modified ion exchanger with competing ion)

  • 남주희;이상협;최재우;홍석원;안병렬
    • 상하수도학회지
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    • 제27권1호
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    • pp.121-128
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    • 2013
  • The concern for dissolved phosphate in water/wastewater has been increasing because of the risk for eutrophication. A variety of conventional and advanced technologies were applied to meet the enforced new regulation of phosphate around the world. However, there still remained a lot of challenge because most introduced/developed method, for example, biological and physic-chemical treatment is not easy to satisfy the new regulation of phosphate in water. In order to meet the new regulation, the application of ion exchanger has been tried which showed that the removal efficiency for phosphate was strongly determined by in the presence of the competing ion, especially sulfate. As results, a new class of ion exchanger governed by ligand exchange was developed and investigated to increase the selectivity for phosphate. The current study using organic/inorganic anion exchanger developed with Lewis acid-base interaction confirms the selectivity for phosphate over sulfate. According to isotherm test and column test, the value of the maximum phosphate uptake (Q) showed 64 mg/g as $po{_4}^{3-}$ and the breakthrough for phosphate occurs after 1000 min and completely finishes at 2500 min, respectively.

Increased Microalgae Growth and Nutrient Removal Using Balanced N:P Ratio in Wastewater

  • Lee, Seung-Hoon;Ahn, Chi-Yong;Jo, Beom-Ho;Lee, Sang-Ah;Park, Ji-Yeon;An, Kwang-Guk;Oh, Hee-Mock
    • Journal of Microbiology and Biotechnology
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    • 제23권1호
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    • pp.92-98
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    • 2013
  • Microalgal cultivation using wastewater is now regarded as essential for biodiesel production, as two goals can be achieved simultaneously; that is, nutrient removal efficiency and biomass production. Therefore, this study examined the effects of carbon sources, the N:P ratio, and the hydraulic retention time (HRT) to identify the optimal conditions for nutrient removal efficiency and biomass production. The effluent from a 2nd lagoon was used to cultivate microalgae. Whereas the algal species diversity and lipid content increased with a longer HRT, the algal biomass productivity decreased. Different carbon sources also affected the algal species composition. Diatoms were dominant with an increased pH when bicarbonate was supplied. However, 2% $CO_2$ gas led to a lower pH and the dominance of filamentous green algae with a much lower biomass productivity. Among the experiments, the highest chlorophyll-a concentration and lipid productivity were obtained with the addition of phosphate up to 0.5 mg/l P, since phosphorus was in short supply compared with nitrogen. The N and P removal efficiencies were also higher with a balanced N:P ratio, based on the addition of phosphate. Thus, optimizing the N:P ratio for the dominant algae could be critical in attaining higher algal growth, lipid productivity, and nutrient removal efficiency.

연속회분식 반응기(Sequencing Batch Reactor)를 이용한 분뇨중 유기물과 질소 및 인의 동시제거 (Removal of Simultaneously Biological Organic, Nitrogen, and Phosphorus Removal in Sequencing Batch Reactors using Night-soil)

  • 한기백;박동근
    • 한국환경과학회지
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    • 제6권6호
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    • pp.697-709
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    • 1997
  • Sequencing Batch Reactor(SBR) experiments for organics and nutrients removal have been conducted to find an optimum anaerobic/anoxic/aerobic cycling time and evaluate the applicability of oxidation-reduction potential(ORP) as a process control parameter. In this study, a 61 bench-scale plant was used and fed with night-soil wastewater in K city which contained TCODcr : 10, 680 mg/l, TBm : 6, 893 mg/l, $NH_4^+-N$ : 1, 609 mg/l, $PO_4^{3-}-P$ : 602 mg/l on average. The cycling time In SBRs was adjusted at 12 hours and 24 hours, and then certainly included anaerobic, aerobic and inoxic conditions. Also, for each cycling time, we performed 3 series of experiment simultaneously which was set up 10 days, 20 days and 30 days as SRT From the experimental results, the optimum cycling time for biological nutrient removal with nlght-soil wastewater was respctively 3hrs, 5hrs, 3hrs(anaerobic-aerobic-anoxic), Nitrogen removal efficiency was 77.9%, 77.9%, 81.7% for each SRT, respectively. When external carbon source was fed in the anoxic phase, ORP-bending point indicating nitrate break point appeared clearly and nitrogen removal efficiency increased as 96.5%, 97.1%, 98.9%. Phosphate removal efficiency was 59.8%, 64.571, 68.6% for each SRT. Also, we finded the applicability of ORP as a process control parameter in SBRs.

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