• Title/Summary/Keyword: Nitrogen and Phosphorus removal

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Organic Carbon, Nitrogen and Phosphorus Removal in High-concentration Organic Wastewater using the Media attached Microorganism (미생물 접촉재를 이용한 고농도 유기폐수의 유기물 및 질소 ${\cdot}$ 인 제거)

  • Kim, Pan-Soo;Son, Han-Hyung;Lee, Sang-Ho
    • Proceedings of the KAIS Fall Conference
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    • 2007.05a
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    • pp.299-302
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    • 2007
  • 본 연구는 하 ${\cdot}$ 폐수 중의 유기물뿐만 아니라 질소, 인을 생물학적으로 제거하는 실험을 수행하였다. 공정 내 미생물의 유실을 방지하고 미생물이 고농도 상태로 유지 가능한 부착성장의 한 공법인 RBC에 끈상 나선형 미생물 접촉재를 설치한 반웅기를 이용하였다. 원수는 Glucose 1,800 mg/L, $NH_{4}Cl$ 500 mg/L, $KH_{2}PO_{4}$ 5mg/L를 혼합한 인공폐수를 제조하여 공정에 주입하였고, 그 결과 각각 미생물이 폐수에 적응하는 단계인 Period 1에서는 각 수질 분석 항목의 농도가 점차적으로 감소하는 경향을 보였으며, 정상상태라고 판단한 Period 2에서는 최종적으로 유입수에 대한 유출수의 제거율은 각각 $TCOD_{Cr}$ 94%, BOD 87%, T-N 85%, T-P 89%의 결과를 나타내었다.

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Development on the Process for Nitrogen and Phosphorus Removal in Municipal Wastewater Treatment System (기존활성슬러지법으로 운전중인 하수처리장의 탈질$\cdot$탈인 공정 상용화)

  • 김대명;양익배;김수복;변병결;김영규;권기석;장덕진;장성환;임영택;홍성민;홍민
    • Environmental engineer
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    • v.18 s.188
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    • pp.70-75
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    • 2002
  • 1999년부터 2001년까지 2년동안 G-7 환경공학기술개발사업의 일환으로 CNR공법을 이용한 하수처리장의 탈질$\cdot$탈인을 위한 상용화기술개발연구의 결과를 요약하면 다음과 같다. CNR공법은 우리나라의 일반적인 하수성상에서 6시간의 체류시간에서도 운전관리가 원활하면 동절기와 유기물 부하변동에도 질소를 10mg/l, 인을 1mg/l로 제거 할 수 있는 공법이다. CNR공법은 현재 하수처리장의 활성슬러지조내의 용적과 체류시간을 그

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Development of Nitrogen and Phosphorus Removal Technology using Cilium Media for Municipal Wastewater (CNR공법을 이용한 하수처리장의 질소, 인제거를 위한 상용화 기술개발 - 기존 활성슬러지 공법으로 운영중인 하수처리장의 탈질, 탈인 제거기술개발)

  • 김영규;정문식;장덕진;서정범;김현용;김민호;김인배;김영주;차지영;장성환;양익배;김대명;김수복
    • Environmental engineer
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    • s.169
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    • pp.65-73
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    • 2000
  • 1999년 G-7 환경공학기술개발사업의 일환으로 CNR공법을 이용한 하수처리장의 탈질, 탈인을 위한 상용화기술개발연구의 결과를 요약하면 다음과 같다. 1999년 3월부터 1999년 12월 16일까지의 실험기간 중 1톤 PILOT 반응조와 2000년 1월 18일부터 2000년 4월 30일까지의 실험기간 중 구리하수처리장에 설치한 50톤 PILOT의 운전결과는 다음과 같다. CNR공법은 우리나라의 일반적인 하수성상에서 운전관리가 원활하면 동절기와 유기물 부

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Stability Evaluation of Phased Isolation Intra-Clarifier Ditch Process on Short-Term Hydraulic Shock Loading (단기 수리학적 충격부하시 침전지 내장형 상분리 산화구공정의 처리 안정성 평가)

  • Hong, Ki-Ho;Chang, Duk
    • Journal of Korean Society of Water and Wastewater
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    • v.19 no.6
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    • pp.791-799
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    • 2005
  • The phased isolation intra-clarifier ditch system used in this study is a simplified novel process enhancing simultaneous removal of biological nitrogen and phosphorus in municipal wastewater in terms of elimination of additional pre-anaerobic reactor, external clarifier, recycle of sludge, and nitrified effluent recirculation by employing intrachannel clarifier. Laboratory-scale phased isolation ditch system was used to assess the treatability on municipal wastewater. When the system was operated at the HRTs of 6~12hours, SRTs of 9~31days, and cycle times of 2~8hours, the system showed removals of BOD, TN, and TP as high as 88~97%, 70~84%, and 65~90%, respectively. The rainfall in Korea is generally concentrated in summer because of site-specific characteristics. Especially, the wet season has set in on June to August. In combined sewers, seasonal variations are primarily a function of the amount of stormwater that enters the system. In order to investigate the effect of hydraulic shock loading on system performance, the laboratory-scale system was operated at an HRT of 6hours (two times of influent flowrate) during two cycles (8hours). The system performance slightly decreased by increasing of influent flowrate and decreasing of system HRT. Nitrification efficiency and TN removal were slightly decreased by increasing of influent flowrate (decreasing of system HRT), whereas, the denitrification was not affected by hydraulic shock loading. However, the higher system performance could be achieved again after four cycles. Thus, the phased isolation technology for enhanced biological nutrient removal in medium- and small-scale wastewater treatment plants suffering fluctuation of influent quality and flowrate.

Advanced Treatment of Wastewater Using Symbiotic Co-culture of Microalgae and Bacteria (미세조류와 박테리아의 공생 배양을 이용한 하폐수 고도처리)

  • Mujtaba, Ghulam;Lee, Kisay
    • Applied Chemistry for Engineering
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    • v.27 no.1
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    • pp.1-9
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    • 2016
  • The co-culture system of microalgae and bacteria enables simultaneous removal of BOD and nutrients in a single reactor if the pair of microorganisms is symbiotic. In this case, nutrients are converted to biomass constituents of microalgae. This review highlights the importance and recent researches using symbiotic co-culture system of microalgae and bacteria in wastewater treatment, focusing on the removal of nitrogen and phosphorus. During wastewater treatment, the microalgae produces molecular oxygen through photosynthesis, which can be used as an electron acceptor by aerobic bacteria to degrade organic pollutants. The released $CO_2$ during the bacterial mineralization can then be consumed by microalgae as a carbon source in photosynthesis. Microalgae and bacteria in the co-culture system could cooperate or compete each other for resources. In the context of wastewater treatment, positive relationships are prerequisite to accomplish the sustainable removal of nutrients. Therefore, the selection of compatible species is very important if the co-culture has to be utilized in wastewater treatment.

A Study on Performance Evaluation for the Bio-retention Non-point Source Pollution Treatment System (생물 저류 방법 적용을 통한 비점오염원 처리시설의 성능평가에 관한 연구)

  • Lee, Jang-Soo;Park, Yeon-Soo;Cho, Wook-Sang
    • Clean Technology
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    • v.19 no.3
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    • pp.295-299
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    • 2013
  • This study was purposed and performed to evaluate removal efficiency of non-point source pollution in the process and system based on bio-retention design criteria regulated by EPA. Basic Column Reactors (BCR) were prepared for optimal determinations of inflow rate of first rainfall runoff and composition and ratio of soil layers. Removal efficiencies of non-point source pollution from synthetic runoff and real first rainfall runoff, directly sampled from motor way and parking lot, were analyzed, respectively. Removal efficiency of SS, BOD, COD, T-N, and T-P were all shown to be more than 80%.

Control of Algal Blooms in Eutrophic Water Using Porous Dolomite Granules

  • Huh, Jae-Hoon;Choi, Young-Hoon;Lee, Shin Haeng;Cheong, Sun Hee;Ahn, Ji Whan
    • Journal of the Korean Ceramic Society
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    • v.54 no.2
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    • pp.108-113
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    • 2017
  • The use of aluminum-based coagulants in water pretreatment is being carefully considered because aluminum exposure is a risk factor for the onset of Alzheimer's disease. Lightly burned-dolomite kiln dust (LB-DKD) was evaluated as an alternative coagulant because it contains high levels of the healthful minerals calcium and magnesium. An organic pore forming agent (OPFA) was incorporated to prepare porous granules after OPFA removal through a thermal decomposition process. A spray drying method was used to produce uniform and reproducible spherical granules with low density, since fine dolomite particles have irregular agglomeration behavior in the hydration reaction. The use of fine dolomite powder and different porosity granules led to a visible color change in raw algae (RA) containing water, from dark green to transparent colorlessness. Also, dolomite powders and granules exhibited a mean removal efficiency of 48.3% in total nitrogen (T-N), a gradual increase in the removal efficiency of total phosphorus (T-P) as granule porosity increased. We demonstrate that porous dolomite granules can improve the settling time and water quality in summer seasons for the emergent treatment of excessive algal blooms in eutrophic water.

Analysis of the current status and implications of nitrogen recovery from livestock manure (가축분뇨로부터 질소 회수 연구 현황 및 시사점 분석)

  • Im, Seongwon;Kim, Sangmi;Kim, Jimin;Kim, Dong-Hoon
    • Journal of the Korea Organic Resources Recycling Association
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    • v.29 no.1
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    • pp.37-46
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    • 2021
  • Nitrogen and phosphorus in livestock manure are environmental pollutants, but also could be valuable industrial resources. In the present study, we (1) introduced various nitrogen removal technologies such as stripping, thermal method, membrane, and electrodialysis, (2) reviewed relevant studies reported in 2011-2020, in particular, full-scale experiences, and (3) assessed each technologies based on the above survey results. In addition, we provided the information on the appropriate range of the pH, temperature, gas and liquid ratio, and so on in ammonia stripping process, and expected mass balance when it is connected to biogasification process. We hope the content herein can be helpful for making policy and operating full-scale plant in Korea.

Effect of Cut-off Intervals on Nutrients Removal Efficiency in Hydrophytes at the Artificial Vegetation Island (인공수초재배섬에서 수생식물 지상부 절취주기별 수중영양염류 제거효율)

  • Park, Hae-Kyung;Byeon, Myeong-Seop;Choi, Myung-Jae;Yun, Seok-Hwan;Jeon, Nam-Hui
    • Journal of Korean Society on Water Environment
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    • v.25 no.2
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    • pp.221-226
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    • 2009
  • We investigated the most effective cutting interval for underwater nutrient removal through cut off the emergent part of hydrophytes at artificial vegetation island (AVR) which was installed for the purpose of water quality improvement in Lake Paldang. We divided the planting area of Phragmites japonica into three parts according to the cutting intervals. The shoot height and relative growth rate of P. japonica, nutrient contents and biomass of cut off P. japonica were measured at each cutting interval. The amount of nutrients which were removed through cut off at each cutting interval was calculated. P. japonica showed full growth, 80% and 60% of full growth before first cut off at three-months, two-months and one-month cutting interval condition respectively. Three-month cutting interval condition showed the largest biomass of cut off P. japonica and one-month cutting interval condition showed the least. However the cut off P. japonica showed the highest content of nutrients at one-month cutting interval condition and the least at three-month cutting interval condition. The amount of phosphorus and nitrogen removal at two-month cutting off condition is the largest among three cutting interval conditions indicating that cut off the emergent part of P. japonica every two months is the most effective to remove the nutrients from water at AVR in eutrophic lakes.

Effect of Indirect Oxidation on the Design of Sewage/wastewater Reuse System with an Electrolysis Reactor (전기분해 반응조의 간접산화 효과가 하.폐수 재활용 시스템 설계에 미치는 영향)

  • Shin, Choon-Hwan
    • Clean Technology
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    • v.15 no.2
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    • pp.116-121
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    • 2009
  • In this paper, we investigated the effect of an indirect oxidation zone in an electrolysis reactor that used Ti/$IrO_2$ as the anode and SUS 316L as the cathode. Based on our preliminary results, the electrolysis reactor was operated with pole plate interval of 6 mm, current density 1.0 $A/dm^2L$ and electrolyte concentration 15%. The removal efficiency, COD (chemical oxygen demand), was additionally increased by 55% and 12.5${\sim}$15.0% in the direct and indirect oxidation zones, respectively. The removal efficiencies of T-N (total nitrogen) and T-P (total phosphorus) were found to be 88% and 75%, respectively. It was shown that the additional effect of the indirect oxidation zone on the removal was nearly negligible. Also, as the removal of COD,T-N and T-P took place during the initial2${\sim}$5 days of reaction, it was concluded that there was no need to extend the retention time of the electrolysis reactor.