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        검색결과 109

        1.
        2023.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Membrane bioreactor (MBR) provides the benefits on high effluent quality and construction cost without the secondary clarification. Despite of these advantages, fouling, which clogs the pore in membrane modules, affects the membrane life span and effluent quality. Studies on the laboratory scale MBR were focused on the control of particulate fouling, organic fouling and inorganic fouling. However, less studies were focused on the control of biofouling and microbial aspect of membrane. In the full scale operation, most MBR produces high effluent quality to meet the national permit of discharge regulation. In this study, the performance and microbial community analysis were investigated in two MBRs. As the results, the performance of organic removal, nitrogen removal, and phosphorus removal was similar both MBRs. Microbial community analysis, however, showed that Azonexus sp. and Propionivibrio sp. contributed to indirect fouling to cause the chemical cleaning in the DX MBR.
        4,000원
        9.
        2021.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In this study, chemically enhanced steam cleaning(CESC) was applied as a novel and efficient method for the control of organic and inorganic fouling in ceramic membrane filtration. The constant filtration regression model and the resistance in series model(RISM) were used to investigate the membrane fouling mechanisms. For total filtration, the coefficient of determination(R2) with an approximate value of 1 was obtained in the intermediate blocking model which is considered as the dominant contamination mechanism. In addition, most of the coefficient values showed similar values and this means that the complex fouling was formed during the filtration period. In the RISM, Rc/Rf increased about 4.37 times in chemically enhanced steam cleaning compared to physical backwashing, which implies that the internal fouling resistance was converted to cake layer resistance, so that the membrane fouling hardly to be removed by physical backwashing could be efficiently removed by chemically enhanced steam cleaning. The results of flux recovery rate showed that high-temperature steam may loosen the structure of the membrane cake layer due to the increase in diffusivity and solubility of chemicals and finally enhance the cleaning effect. As a consequence, it is expected that chemically enhanced steam cleaning can drastically improve the efficiency of membrane filtration process when the characteristics of the foulant are identified.
        4,300원
        17.
        2020.08 KCI 등재 구독 인증기관 무료, 개인회원 유료
        This short review focuses on fouling by proteins and macromolecules in microfiltration/ultrafiltration. First, an experimental system that enables investigation of how the extent of the adsorption of proteins and macromolecules on membrane surfaces contributes to a decrease in filtrate flux in microfiltration/ultrafiltration is described. Using this system, a causal relationship - not a correlation - indicating that adsorption results in a decrease in filtrate flux could be clearly demonstrated in some cases. Second, a hydration structure at the membrane surface that can suppress adsorption is discussed, inspired by biomaterial research. In their hydrated states, polymers with low-fouling properties have water molecules with a particular structure. Finally, some successful examples of the development of low-fouling membranes via surface modification using low-fouling polymers are discussed.
        4,000원
        19.
        2020.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Although membrane bio-reactor (MBR) has been widely applied for wastewater treatment plants, the membrane fouling problems are still considered as an obstacle to overcome. Thus, many studies and commercial developments on mitigating membrane fouling in MBR have been carried out. Recently, high voltage impulse (HVI) has gained attention for a possible alternative technique for desalting, non-thermal sterilization, bromate-free disinfection and mitigation of membrane fouling. In this study, it was verified if the HVI could be used for mitigation of membrane fouling, particularly the internal pore fouling in MBR. The HVI was applied to the fouled membrane under different conditions of electric fields (E) and contact time (t) of HVI in order to investigate how much of internal pore fouling was reduced. The internal pore fouling resistance (Rf) after HVI induction was reduced as both E and t increased. For example, Rf decreased by 19% when the applied E was 5 kV/cm and t was 80 min. However, the Rf decreased by 71% as the E increased to 15 kV/cm under the same contact time. The correlation between E and t that needed for 20% of Rf reduction was modeled based on kinetics. The model equation, E1.54t = 1.2 × 103 was obtained by the membrane filtration data that were obtained with and without HVI induction. The equation states the products of En and t is always constant, which means that the required contact time can be reduced in accordance with the increase of E.
        4,000원
        20.
        2020.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구에서는 가압식 분리막 여과에서 무기입자의 존재가 유기파울링에 미치는 영향을 관찰하였다. 유기파울링의 유발을 위해 알긴산나트륨(sodium alginate, SA)를 이용한 정밀여과 실험에서 무기 실리카(SiO2) 입자의 존재 유무와 상관 없이 분리막 파울링은 여과초기 완전공극막힘에서 여과시간이 경과할수록 케이크 형성에 의해 주로 지배되었다. 그러나 무기 입자의 존재 시 정압여과에서 알긴산나트륨 파울링 케이크 비저항값과 압축성은 상대적으로 낮게 관찰되었고 이로 인해 낮은 파울링 속도가 관찰되었다. 동일한 시료를 이용한 정량여과 실험을 수행한 결과 정압여과에 비해 정량여과에서 여과초기 공극막힘현상 및 파울링 속도는 더욱 증가하였다. 이와 같은 현상은 파울링층이 지닌 압축성으로 막간차압의 증가 시 케이크 비저항값이 함께 증가하였기 때문인 것으로 판단된다. 알긴산나트륨과 실리카 입자가 함께 존재 시 알긴산나트륨이 단독으로 존재하는 것보다 수리학적 세정을 통한 파울링 제거효과는 더욱 좋은 것으로 관찰되었다.
        4,000원
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