• 제목/요약/키워드: EPS(Extracellular Polymeric Substances)

검색결과 46건 처리시간 0.024초

Insight into influence of iron addition in membrane bioreactor on gel layer fouling

  • Zhang, Haifeng;Lu, Xin;Yu, Haihuan;Song, Lianfa
    • Membrane and Water Treatment
    • /
    • 제8권6호
    • /
    • pp.543-551
    • /
    • 2017
  • Membrane fouling in membrane bioreactor (MBR) remains a primary challenge for its wider application. The focus of this study to investigate the influence of iron distribution in activated sludge on gel layer fouling in MBR. Significant reduction in the transmembrane pressure (TMP) rise rates was observed in the presence of iron as result of retarding the gel layer formation time. The spatial distribution of iron had a significant impact on the stratification structure of extracellular polymeric substances (EPS) fractions, such as proteins (PN) and polysaccharides (PS). A mitigation of PN or PS from the supernatant to the EPS inner layers was observed in the presence of iron. Compared with the control reactor, the reduction in PN and PS of the supernatant and lower PN/PS rates of the LB-EPS were beneficial to decrease the membrane fouling potential during the gel layer formation. Consequently, the iron addition managed to control gel layer fouling could be a useful strategy in MBR.

호기성 그래뉼 슬러지를 이용한 칼슘이온의 생물흡착에 관한 연구 (A Study on Biosorption of Calcium Ion Using Aerobic Granular Sludge)

  • 김현구;안대희
    • 한국환경과학회지
    • /
    • 제28권8호
    • /
    • pp.677-687
    • /
    • 2019
  • This study evaluated the biosorption properties of calcium ion using Aerobic Granular Sludge (AGS). A sequencing batch reactor was used to induce the production of Extracellular Polymeric Substances (EPS) through salinity injection, and the calcium ion adsorption efficiency was analyzed by a batch test. The EPS contents showed significant changes (104-136 mg/g MLVSS) at different salinity concentrations. The calcium ion adsorption efficiency was highest for AGS collected at 5.0% salinity, and it was confirmed that the biosorption efficiency of AGS was increased owing to the increase in EPS content. The results of the Freundlich isotherms showed that the ion binding strength (1/n) was 0.3941-0.7242 and the adsorption capacity ($K_f$) was 2.4082-3.3312. The specific surface area and the pore size of the AGS were $586.1m^2/g$ and 0.7547 nm, respectively, which were not significantly different from each other. It was confirmed that the influence of biological properties, such as EPS content, was relatively large among the factors affecting calcium ion adsorption.

활성 과황산염을 이용한 슬러지 가용화 (Sludge solubilization using sono-activated persulfate)

  • 문상재;남세용
    • 유기물자원화
    • /
    • 제29권3호
    • /
    • pp.35-40
    • /
    • 2021
  • 초음파로 활성화된 과황산염을 이용한 슬러지의 가용화 정도를 확인하기 위하여 VSS 감량화율, 가용화율 및 체외고분자물질을 주요 지표로 측정하여 초음파 및 수산화나트륨을 이용한 알칼리·초음파 방법과 비교하였다. 과황산염·초음파 조건에서 VSS 감량화율은 27.6%, 가용화율은 58.9%로 증가하였고, TB-EPS as Carbohydrate와 Protein은 각각 770 mg/L, 2,162 mg/L 용출되었다. 초음파 및 알칼리·초음파 방법에 비하여 VSS감량화율 및 가용화율이 높았으며, TB-EPS지표로 볼 때 세포의 파괴 및 용출에서도 과황산염·초음파 조건에서 더 효율적이었다.

박테리아 세포외 중합체(EPS)에 의한 비소, 크롬, 우라늄의 흡착 및 산화상태 변화 (Adsorption and Redox State Alteration of Arsenic, Chromium and Uranium by Bacterial Extracellular Polymeric Substances (EPS))

  • 박현성;고명수;이종운
    • 자원환경지질
    • /
    • 제43권3호
    • /
    • pp.223-233
    • /
    • 2010
  • 세포외 중합체(EPS)의 존재 유무에 따라 Pseudomonas aeruginosa가 용존 비소, 크롬, 우라늄의 흡착 및 산화상태의 변화에 미치는 영향을 회분식 실험을 통해 조사하였다. 배양한 미생물의 표면을 세척한 것과 세척하지 않은 것으로 구분하여 무영양 상태에서 1.1 mg/L의 As(V)와 Cr(VI), 0.5 mg/L의 U(VI)와 반응시키며 시간에 따라 각각의 총 용존 함량과 산화상태 변화를 측정하였다. As(V)의 경우 EPS 존재 여부와 관계없이 흡착은 발생하지 않았으나 EPS가 보존된 박테리아는 As(V)의 약 60%를 As(III)로 환원하였다. 표면을 세척하지 않은 박테리아는 총 용존 크롬의 45%를 제거하였으며 잔류된 용존 크롬의 64%를 Cr(III)로 환원하였다. 우라늄의 경우, 박테리아 표면을 세척하지 않았을 때 U(VI)의 약 80% 이상이 용액으로부터 제거되었다. 이러한 원소 환원은 박테리아가 분비한 EPS 자체의 환원 능력 또는 EPS로부터 보호받아 생육성이 보존된 박테리아의 해독성 환원에 의한 것으로 여겨진다. 이 연구 결과는 자연 환경에서 대부분 바이오필름 상태로 존재하는 미생물이 비소, 크롬, 우라늄의 산화상태 및 이동도 조절에 지대한 영향을 미칠 수도 있음을 의미한다.

Bacillus 미생물과 활성슬러지의 포자화에 따른 체외고분자물질 생성에 관한 연구 (Production of Extracellular Polymeric Substances by Sporulation of Bacillus sp. and Activated Sludge)

  • 이상호
    • 상하수도학회지
    • /
    • 제25권1호
    • /
    • pp.85-93
    • /
    • 2011
  • The structural components of microorganism are quite related to the toxin and environmental conditions. The vegetative and dormant cells are quite affected by the physical and chemical environments to survive and they will be dormant when they are in the extreme environment. The mechanism to activate the microorganisms however, is not well defined yet in the area of activation state and sporulation state through the analysis of EPS. Other than that even the main mechanism of prior to acquisition of analysis values is not well understood. Therefore, what kind of specific environment to affect the activation and sporulation will be discussed through the analysis of the extracellular polymeric substances(EPS). EPS are a high molecular weight mixture of polymers presenting both outside of cells and interior of microbial aggregates. They are a major complex materials in microbial aggregation for sustaining them together in a three dimensional matrix. Three commonly used extraction methods were applied to this study their effectiveness and quantification in extracting EPS from several Bacillus microorganisms and activated sludge. Three extraction methods used for this study are regular centrifugation with formaldehyde (RCF), Steaming, and EDTA extraction. The results of EPS contents such as the quantitative proteins, carbohydrates and the ratio of protein versus carbohydrate from the several species with the several specific methods showed in this research. This study aims to get comparable results of the quantitative production of EPS and the effectiveness of sedimentation for Bacillus microorganisms and activated sludge from several wastewater treatment plans. The results revealed that the protein amount extracted was the highest by the Steaming method of three extraction methods before sporulation and the carbohydrate amount extracted was the highest by the RCA method of three extraction methods after sporulation. The higher amount of protein compared with carbohydrate from Bacillus microorganisms affected higher sedimentation efficiency, however it could not be found the relation between the EPS production and sedimentation efficiency for the activated sludge.

Assessment of Characteristics of Biofilm Formed on Autotrophic Denitrification

  • JANG AM;BUM MINSU;KIM SUNGYOUN;AHN YEONGHEE;KIM IN S;BISHOP PAUL L
    • Journal of Microbiology and Biotechnology
    • /
    • 제15권3호
    • /
    • pp.455-460
    • /
    • 2005
  • A pilot-scale sulfur particle autotrophic denitrification (SPAD) process for the treatment of municipal wastewater was operated for 10 months at Shihwa, Korea, and higher than $90\%\;NO^{-}_{3}-N$ removal efficiency was observed. Plate counting showed that the lower part of the denitrifying column reactor had the most autotrophic denitrifiers. The biofilm thickness formed on sulfur particles from the SPAD reactor was approximately $25-30\;{\mu}m$, measured by DAPI (4,6-diamidino-2-phenylindole) staining. The presence of bacteria inside the highly porous sulfur particle was also monitored by SEM observation of the internal surfaces of broken sulfur particles. Biofilm extracellular polymeric substances (EPS) analysis showed that the ratio of carbohydrate to protein decreased with the reactor heights at which biofilm-formed sulfur particles were obtained.

Effects of N-acetylcysteine on biofilm formation by MBR sludge

  • Song, WonJung;Lade, Harshad;Yu, YoungJae;Kweon, JiHyang
    • Membrane and Water Treatment
    • /
    • 제9권3호
    • /
    • pp.195-203
    • /
    • 2018
  • N-acetylcysteine (NAC) has been widely used as an initial mucolytic agent and is generally used as an antioxidant to help alleviate various inflammatory symptoms. NAC reduces bacterial extracellular polymeric substances (EPS) production, bacterial adhesion to the surface and strength of mature biofilm. The efficacy has been shown to inhibit proliferation of gram-positive and gram-negative bacteria. In membrane bioreactor (MBR) processes, which contain a variety of gram negative bacteria, biofilm formation has become a serious problem in stable operation. In this study, use of NAC as an inhibitor of biofilm contamination was investigated using the center for disease control (CDC) reactors with MBR sludge. Biomass reduction was confirmed with CLSM images of membrane surfaces by addition of NAC, which was more efficient as the concentration of NAC was increased to 1.5 mg/mL. NAC addition also showed decreases in EPS concentrations of the preformed biofilm, indicating that NAC was able to degrade EPS in the mature biofilm. NAC addition was also effective to inhibit biofilm formation by MBR sludge, which consisted of various microorganisms in consortia.

Impact of the Isolation Source on the Biofilm Formation Characteristics of Bacillus cereus

  • Hussain, Mohammad Shakhawat;Oh, Deog-Hwan
    • Journal of Microbiology and Biotechnology
    • /
    • 제28권1호
    • /
    • pp.77-86
    • /
    • 2018
  • The human pathogen and food spoiler Bacillus cereus can form biofilms that act as a persistent source of contamination, which is of public health concern. This study aimed to understand how the source of isolation might affect the behavior of biofilm formation. Biofilm formation abilities of 56 strains of B. cereus isolated from different environments, including human food poisoning, farm, and food, were determined. Crystal violet assay results revealed significant (p < 0.05) differences in biofilm formation abilities among the strains isolated from different sources only at an early stage of incubation. However, strain origin showed no impact on later stage of biofilm formation. Next, correlation of the group of isolates on the basis of their biofilm-forming abilities with the number of sessile cells, sporulation, and extracellular polymeric substance (EPS) formation was determined. The number of sessile cells and spores in biofilms was greatly influenced by the groups of isolates that formed dense, moderate, and weak biofilms. The contribution of extracellular DNA and/or proteins to EPS formation was also positively correlated with biofilm formation abilities. Our results that the source of isolation had significant impact on biofilm formation might provide important information to develop strategies to control B. cereus biofilm formation.

미세조류 분리/회수를 위한 세포외 고분자물질 생물 응집제 활용 (Application of extracellular polymeric substances (EPSs)-bioflocculant for recovery of microalgae)

  • 최오경;;김종락;맹승규;김극태;이재우
    • 상하수도학회지
    • /
    • 제35권1호
    • /
    • pp.63-69
    • /
    • 2021
  • Microalgae are primary producers of aquatic ecosystems, securing biodiversity and health of the ecosystem and contributing to reducing the impact of climate change through carbon dioxide fixation. Also, they are useful biomass that can be used as biological resources for producing valuable industrial products. However, harvesting process, which is the separation of microalgal biomass from mixed liquor, is an important bottleneck in use of valorization of microalgae as a bioresource accounting for 20 to 30% of the total production cost. This study investigates the applicability of sewage sludge-derived extracellular polymeric substance (EPS) as bioflucculant for harvesting microalgae. We compared the flocculation characteristics of microalgae using EPSs extracted from sewage sludge by three methods. The flocculation efficiency of microalgae is closely related to the carbohydrate and protein concentrations of EPS. Heat-extracted EPS contains the highest carbohydrate and protein concentrations and can be a best-suited bioflocculant for microalgae recovery with 87.2% flocculation efficiency. Injection of bioflocculant improved the flocculation efficiency of all three different algal strains, Chlorella Vulgaris, Chlamydomonas Asymmetrica, Scenedesmus sp., however the improvement was more significant when it was used for flocculation of Chlamydomonas Asymmetrica with flagella.

Membrane fouling and sludge characteristics in submerged membrane bioreactor under low temperature

  • Yuan, Yuan;Zhang, Jianqiao
    • Membrane and Water Treatment
    • /
    • 제10권5호
    • /
    • pp.331-338
    • /
    • 2019
  • This study aimed to investigate the membrane fouling and sludge characteristics in a pilot-scale submerged membrane bioreactor (MBR) operated under low temperature ($7^{\circ}C$). To elucidate the mechanisms of membrane fouling at low temperature, we studied the correlation between MBR performances and physicochemical properties of sludge including extracellular polymeric substance (EPS), relative hydrophobicity (RH) and floc size during long-term operation. The MBR was shown able to remove chemical oxygen demand (COD) stably and efficiently (>90 %) in the case of overgrowth of filamentous bacteria (bulking sludge) at low temperature. On the other hand, the occurrence of filamentous bulking greatly accelerated membrane fouling, as indicated by membrane filtration period of 14 days for filamentous bulking at $7^{\circ}C$, in comparison with that of 27 days for non-bulking sludge at $24^{\circ}C$ The overgrowth of filamentous bacteria resulting from low-temperature condition led to an increased release of EPS, higher RH, smaller floc size and lower fractal dimension of sludge. These factors accelerated the formation of compact cake layer on membrane surface in association with performance diminution in terms of increase in transmembrane pressure (TMP) of the membrane and thus the decrease in membrane permeability.