• Title/Summary/Keyword: biological removal

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Effects of Operation Parameters on Pollutants Removal in a Lab-Scale Multi-Layered Soil Filtration System (하천 수질정화를 위한 실험실 규모 다단식 토양여과 시스템에서 오염물질 제거에 미치는 운전인자의 영향)

  • Won, Se-Yeon;Ki, Dong-Won;Yoon, Min-Hyeok;Maeng, Sung-Kyu;Ahn, Kyu-Hong;Park, Joon-Hong;Song, Kyung-Guen
    • Journal of Korean Society of Environmental Engineers
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    • v.34 no.2
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    • pp.91-96
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    • 2012
  • In this study we investigated the effects of operational parameters of a multi-layered soil filtration (filter depth, filtration velocity, and continuous/intermittent operation) on removal of pollutants in river water. As filter depth increased removal of all the pollutants (COD, TP, TN, and $NH_4$-N) was increased because the increase in filter depth increased in contact time between media and pollutants. The removal of TP and $NH_4$-N more increased with the increase in filter depth, comparing to the biological COD removal which was performed only in the top layer, since the removal mechanism of TP and $NH_4$-N was physicochemical process occurring throughout the whole layers. However, the reduction in filtration velocity resulted in decrease of removal all the pollutants removal due to shorter retention time. Biological COD removal was more influenced with the reduction in filtration velocity (longer retention time), than the removal of TP and $NH_4$-N. Because biological process was occurred only in the top layer which has relatively shorter retention time, comparing with physicochemical process occurred throughout whole media. Therefore, it is desirable that the operation parameters be controlled toward increasing retention time, in order to achieve efficient pollutants removal. The change in operation mode (continuos vs. intermittent operations) did not provide significant effects on the pollutant treatment efficiency by the multi-layered soil filtration system. Our findings suggest that for stable long-term operation it should be considered keeping conditions for biological activity and accelerating clogging.

Nitrate Removal and Recycling Technique (질산 제거 및 재이용 기술)

  • Sim, Sang Jun;Lee, Kyung Hee;Cho, Young Sang
    • Clean Technology
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    • v.3 no.2
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    • pp.31-33
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    • 1997
  • Nitrate contamination in surface water and ground water have increased in Korea. This trend has raised concern because nitrates caused methemoglobinemia in infants. To remove nitrates from waters, various purification processes including ion-exchange, biological denitrification, and chemical denitrification are currently in use for the treatment of water. However, little economically advantageous process exists for the industrial scale treatment of effluents highly polluted with nitrates. A new process has been developed for nitrate and other salts removal from polluted waters. Alumina cement and lime served as precipitating agents to remove nitrate with stirring at basic pH. Decreasing alumina content in alumina cement result in a increasing in nitrate removal yield. Stable removal of nitrate(1000mg/L) was readily achieved by two-stage removal process.

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Biological Phosphorus Removal using the Sequencing Batch Reactor Process (연속회분식반응조를 이용한 생물학적인 인 제거 연구)

  • Yang, Hyung-Jae;Shin, Eung-Bai;Chung, Yun-Chul;Choi, Hun-Geun
    • Journal of Korean Society on Water Environment
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    • v.16 no.4
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    • pp.533-539
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    • 2000
  • A bench-scale reactor using SBR process was experimented with an synthetic wastewater. The main purpose of this investigation was to evaluate applicability in the field and process removal efficiencies in terms of BOD and T-P and its corresponding kinetic parameters. Removal rate of phosphorus was 77% in terms of total phosphorus. Effluent concentrations were $9.8mg/{\ell}$ BOD and $1.1mg/{\ell}$ T-P. Effluent quality was maintained consistently stable by controlling decant volume and operating cycles. The efficiency for phosphorus removal was increased due to decrease in BOD-SS loading value in the range of $0.25{\leq}$aeration time ratio${\leq}0.52$.

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A Study on Microbial Degradation for Removal of Toluene Vapour by Biofilter (Bio 필터를 이용한 Toluene 제거에서 미생물분해에 관한 연구)

  • 하상안;강신묵
    • Journal of environmental and Sanitary engineering
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    • v.14 no.1
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    • pp.24-30
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    • 1999
  • A biological filter for treatment of toluene among volatile organic compounds was studied. The investigation was conducted using specially built stainless steel columns packed with granular activated carbon and cold for removal of toluene. The G.A. and mold as filter material was also coated with Pseudomonas putida microorganisms.The biofilter unit was operated in the condition of moisture content vairation at gas loading rate of 12.5 l/min. Gaseous toluene taken from tedlar bag was analyzed by the use of G.C equipped with F.I.d detector. The removal efficiency of gaseous toluene was 95% at average inlet concentration of 950 ppm during bio-degradation operating condition. Effective removal efficiency was obtained with moisture content 27.5% at activated carbon and 32% at mold in this study. The effective operating condition were obtained with pH 6-8, temperature 28-42℃ for microbial degradation at gas loading rate of 12.5 l/min in packed material.

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Effect of the Total Organic Carbon(TOC) on phosphorus removal by Stapylococcus auricularis (Stapylococcus auricularis에 의한 인 제거에서 총유기탄소의 영향)

  • 최석순
    • Journal of environmental and Sanitary engineering
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    • v.15 no.3
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    • pp.57-61
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    • 2000
  • Stapylococcus auricularis was used for the simultaneous removal of phosphorus and Total Organic Carbon(TOC) in the wastewater from sewage and various industries. In this study, the characteristics of phosphorus removal was investigated with initial ratio of TOC phosphorus in the synthetic wastewater. When the synthetic wastewater containing 15mg/L of phosphorus was treated under anaerobic and conditions, phosphorus was removed completely within 6 hours of operation. And when the initial ratio of TOC to phosphorus was 30, as high as 10 times the removal rate of phosphorus by Acinetobacter calcoaceticus was achieved. These results implied that a long adaptation time, one of the chief problems in biological phosphorus removal process was overcome.

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Estimation of Urea and Vitamin B12 Concentrations in the Body using Two Compartment Model (신 부전증 환자의 요소 및 비타민 B12 의 체내농도 추정)

  • 장호남;박한철
    • Journal of Biomedical Engineering Research
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    • v.3 no.1
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    • pp.9-16
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    • 1982
  • Removal of urea and vitamin B12 was simulated using two pool models with closed loop dialysis, open loop dialysis, and hemodiafiltrations with predilution and postdilulion. It was found that urea removal was limited by dialyzer clearance, however B12 removal was limited both by the resistance between ECF and ICF and by dialyzer clearance. Open loop dialysis was better than closed loop dialysis in terms of dialysate requirement and removal efficiency. Residual renal function plays an important role in removing vitamin B12. Dialysis frequency more than twice/wide does not have great effect on removal efficiency, but has the effect of reducing the difference between maximum and minimum cancentrations during dialysis period.

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Biological Removal Characteristics by the Internal Recycle Rate in the Attached Growth Process (부착증식공정에서 내부 반송율 변화에 따른 생물학적 제거 특성)

  • 박충기;김병욱;임재명
    • Journal of environmental and Sanitary engineering
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    • v.14 no.4
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    • pp.110-116
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    • 1999
  • This study was conducted to investigate the contaminants removal efficiency and the optimal operating parameters by the internal recycle rate (IRR) in the combining A2/O process with fixed film. The average removal efficiency of BOD and COD was 92.5%~94.6%, 73.9%~87.0% in RUN 1 and 91.9%~94.7%, 77.7%~89.0% in RUN 2, respectively. Organic removal efficiency, at two different hydraulic retention time of 10 and 14hr, was similar. At 50% of the internal recycle rate, organic removal efficiency was somewhat higher than the other. Total nitrogen (T-N) and total phosphorus (T-P) were removed, highly, at 50% of internal recycle rate. It could be suggested by this study that the optimum internal recycle rate is 50% and hydraulic retention time is 14hr.

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Performances of Intermittently Aerated and Dynamic Flow Activated Sludge Process (2단간헐폭기 및 유로변경 간헐폭기 활성슬러지 시스템을 이용한 도시하수 처리)

  • 원성연;민경국;이상일
    • Journal of environmental and Sanitary engineering
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    • v.13 no.1
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    • pp.26-31
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    • 1998
  • Removal of nitrogen and phosphate in wastewater is concerned to important for the prevention of eutrophication in receiving water and lake. Conventional activated sludge system designed for organics removal can be retrofitted only by modification of aeration basin to maintain anaerobic and aerobic state. Biological nutrient removal processes(BNR) such as Bardenpho, A$^{2}$/O, UCT, VIP were generally used for the treatment of wastewater. However these BNR processes used in large scale WWTP were not suitable in small scale WWTP(i.e., package type WWTP) due to relatively large fluctuation of flow rate and concentration of pollutants. The purpose of this research was to develop the compact, effective and economical package type WWTP for the removals of carbon and nitrogen in small scale wastewater. Intermittently aerated activated sludge system (IADFAS) were investigated for removal of nitrogen in both domestic wastewater, Bardenpho process was also evaluated. Nitrogen removal of IAAS, IADFAS, Bardenpho were 75, 77 and 67%, respectively.

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Removal Characteristics of Iron, Manganese and Organics in Ground Water Using Ozonation (오존을 이용한 지하수의 철.망간 및 유기물 제거특성)

  • 선창욱;우달식;남상호
    • Journal of environmental and Sanitary engineering
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    • v.12 no.2
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    • pp.43-49
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    • 1997
  • Iron and manganese problems in ground water affect far more water systems than almost any other water quality concern. The purpose of this study is to find the optimum condition of ozonation for the removal of dissolved iron, manganese and other organics in the polluted ground water. We proposed 4mg/l, 8mg/l as optimum ozone dose for the removal of $Fe^{2+},{\;}Mn^{2+}$, respectively. The removal efficiencies of $COD_{Mn}$ and $COD_{Cr}$ in ozone dose of 2mg/l - 6mg/l were about 40-50%. The removal efficiency of $NH_{3}-N$ was about 30-40% at pH8.5. In conclusion, it needs further systematic study and research concerned to treatability of $Fe^{2+},{\;}Mn^{2+}$ and biodegradability of organic compounds using Ozonation followed by biological filtration process in ground water treatment train.

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

  • Jo, Eunyoung;Kim, Younghee;Park, Changyu
    • Journal of Korean Society of Water and Wastewater
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    • v.31 no.6
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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.