• Title/Summary/Keyword: 질소 제거

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Removal of Organic Matter, Nitrogen and Phosphorus in an UASB Sewage Treatment Process with Recycle of Aerated Bio-Filter Effluent (UASB를 이용한 혐기성 하수처리공정에서 ABF 유출수 반송에 따른 유기물질과 질소 및 인 제거)

  • Tian, Dong-Jie;Byun, Byeong-Su;Lim, Hyun-Suk;Jun, Hang-Bae
    • Journal of Korean Society of Environmental Engineers
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    • v.35 no.5
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    • pp.381-387
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    • 2013
  • Nitrogen and phosphorus removal was investigated in an UASB-ABF (Up-flow anaerobic sludge blanket - aerated bio-filter) anaerobic sewage treatment system. Successful removal of nitrogen and phosphorus with organic matters was possible in the UASB-ABF system from the results of 160 days operation with the influent raw domestic sewage. Removal efficiencies of organic matter (as TCOD) showed 64% in UASB without recycle of the ABF effluent, however, they increased to 92%, 95%, 96% with 120%, 180% and 240% recycle of the ABF effluent, respectively. Increasement of the organic matter removal was not prominent at recycle ratio above 180%. Apparent increase in TN removal occurred with recycle of the ABF effluent. TN removal efficiency was 18% without recycle, but it increased to 82% with 240% recycle of the ABF effluent. And stable nitrification above 95% was possible as a result of efficient removal of organic matter in the UASB with and without recycle of the effluent. Removal of both TP and $PO{_4}^{3-}$-P also increased remarkably with recycle of the effluent. Without recycle of the effluent, that is at strict anaerobic condition in UASB, TP was not removed, however, its removal efficiency increased to 51%, 63%, 71% at recycle ratios of 120%, 180%, 240%, respectively mainly at UASB.

Biological Phosphorus and Nitrogen Removal in Anaerobic-Aerobic Activated Sludge Process (활성오니를 이용한 인 및 질소의 생물학적 제거)

  • CHOI Seung-Tae;PARK Mi-Yeon;CHANG Dong-Suck
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.27 no.6
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    • pp.690-695
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    • 1994
  • Simultaneous removal of phosphorus and nitrogen from wastewater was studied by the anaerobic-aerobic system of activated sludge. In the anaerobic stage, most of the influent glucose was removed and orthophosphate was released, when the nitrate and/or nitrite concentration in the wastewater was almost zero. The amount of the released phosphorus was found to be directly proportional to the amount of the removed glucose. When the ratio of phosphorus to glucose in the influent was less than 0.04, the phosphorus in the wastewater was almost completely removed during the aerobic state. Under the anaerobic condition, activated sludge released phosphate and excess removal of phosphate occurred during the aerobic condition. Namely, the stress received in anaerobic period stimulated the uptake of phosphorus in aerobic period. The amounts of phosphorus release in the anaerobic and uptake in the aerobic stage were less in proportional to the concentration of $NO_x-N$. Further, if the initial ratio of $NO_2-N$/glucose was less than 0.37, the inorganic nitrogen in the influent could be completely removed.

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Effects of Operating Parameters on the Removal Performance of Ammonia Nitrogen by Electrodialysis (전기투석에 의한 암모니아성질소의 제거 시 운전인자의 영향)

  • Yoon, Tae-Kyung;Lee, Gang-Choon;Jung, Byung-Gil;Han, Young-Rip;Sung, Nak-Chang
    • Clean Technology
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    • v.17 no.4
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    • pp.363-369
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    • 2011
  • To evaluate the feasibility of electrodialysis for ammonia nitrogen removal from wastewater, the effects of operating parameters such as diluate concentration, applied voltage and flow rate on the removal of ammonia nitrogen were experimentally estimated. The removal rate was evaluated by measuring the elapsed time for ammonia nitrogen concentration of diluate to reach 20 mg/L. Limiting current density (LCD) linearly increased with ammonia nitrogen concentration and flow rate. The elapsed time was linearly proportional to initial concentration of diluate. Due to relatively large equivalent ion conductivity and ion mobility of ammonia nitrogen, the removal rate increased consistently with flow rate. Increase in the applied voltage gave positive effect to removal rate. From the operation of the electrodialysis module used in this research, the flow rate of 3.2 L/min and 80~90% of applied voltage for LCD are recommended as the optimum operating condition for the removal from high concentrate ammonia nitrogen solution.

용존산소 제거용 중공사 탈기막의 방사선장하에서의 영향평가에 대한 연구

  • 김문수;이두호;강덕원
    • Proceedings of the Korean Radioactive Waste Society Conference
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    • 2004.06a
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    • pp.229-229
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    • 2004
  • 원자력발전소에서 원자로 냉각재 중의 용존산소 제어는 원자로 냉각재 계통에서의 전면 부식과 다양한 형태의 응력부식균열(SCC)를 완화시키는데 기여한다. 원자로 냉각재 계통내에 용존 되어있는 산소는 발전소 기동 시에는 하이드라진($N_2H_4$)을 넣거나 인위적 배기를 통해 제거하고, 정상운전 중에는 체적제어탱크(VCT)에 수소를 가압하여 제거시킨다. 계통내로 유입되는 용존산소를 최대한 억제하기 위하여 대부분의 원자력발전소는 원자로 보충수 탱크 상층부에 질소를 주입하여 탱크로 유입되는 공기를 차단하고 있으나, 이 과정에서 일부 수중에 용해되어 들어가는 질소는 계통 내에서 NH$_3$를 형성하여 화학체적제어계통(CVCS)의 이온교환 수지탑에 치환됨으로서 기포화 되어있는 Li을 계통으로 빠져나오게 하여 계통 pH에 영향을 미친다.(중략)

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부유상의 Batch식 배양에서의 암모니아 및 아질산염의 제거특성

  • Jo, Sun-Ja;Jeong, Yong-Ju;Lee, Na-Eun;Son, Hyeong-Sik;Cha, Mi-Seon;Lee, Sang-Jun
    • 한국생물공학회:학술대회논문집
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    • 2003.04a
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    • pp.348-350
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    • 2003
  • Using acclimated sludges with inorganic nitrogen medium for three months and raw sludges, we investigated characteristics of biological nitrogen removal. As results, the acclimated sludges accomplished nitrification efficiently. But raw sludges have hardly done ammonium-nitrification and there was a increasing of ammonium concentration in flask with raw sludges for established experimental period of 72 hrs.

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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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Fluoride and nitrate removal in the decentralized water treatment plants by electroadsorption using carbon nano-tube electrodes (소규모 급수 시설의 불소 및 질산성질소 이온 제거를 위한 탄소나노튜브 전극을 활용한 전기흡착 연구)

  • Han, Song-Hee;Chang, In-Soung;Chae, Ki-Woong;Joung, Seun-Young;Lee, Cheol-Ku
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.6
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    • pp.2904-2912
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    • 2011
  • Water qualities in the decentralized water treatment plants do not frequently satisfy the water standard limit, in particular, fluoride and nitrate are notorious for the poor removal. In this study, an electro-adsorption equipped with carbon nonotube (CNT) electrodes were carried out to effectively remove the nitrate and fluoride in the decentralized water treatment plants. Two types of CNT electrodes, coating and sintering electrodes were applied. Coating electrodes were made based on different kinds of binder and sintering electrodes were made based on different sintering temperature. Removal of fluoride and nitrate when the coated electrodes with organic binder were used for electro-adsorption were 46 and 99.9% respectively, which were better performances than the coated electrodes with inorganic binder were used. On the other hand, removal of fluoride and nitrate when the electrodes sintered at higher temperature ($1,000^{\circ}C$) were 77 and 87% respectively, which were better performances than the electrodes sintered at lower temperature ($850^{\circ}C$). As a consequences, the electro-adsorption equipped with a CNT electrodes could be an potential alternative process for the removal of fluoride and nitrate in a decentralized water treatment plants if proper current density and contact time were applied.

Reduction of the Nitrogen in the Secondary Effluent by the Hybrid Sequential Aerobic-Anoxic Natural System (자연현상을 이용한 질산화-탈질공정에 의한 하수처리장 유출수의 질소제거)

  • Kim, Young-Chul;Chung, Paul-Gene;An, Ik-Sung
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.3
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    • pp.323-329
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    • 2005
  • In this paper, performance of a hybrid sequential aerobic-anaerobic natural system was investigated. Continuous aerobic and anoxic conditions were created by alternatively placing waste stabilization pond (WSP) and wale. hyacinth pond (WHP). Two pilot-scale treatment lines were built and operated; The first consists of WSP integrated with WHP and the second of WSP connected with Dark Pond(DP), namely control system ponds which were used to examine the effects of water hyacinth on nitrification and de-nitrification. The overall performance in nitrogen was 86% reduction in WSP-WHP and 36% in WSP-control pond system. Nitrogen was mostly removed by nitrification and de-nitrification which simultaneously occurred in the same water hyacinth ponds. For the de-nitrification, benthic layer was found out to be adequate support as a carbon source. In addition, WSP-WHP system was very effective in reducing phosphorus. Overall P removal efficiency in WSP-WHP is 81%, while it is only 16% in WSP-control. difference in phosphorus reduction between those two systems is thought to be caused by the plants and probably their roots producing extra-cellular materials, but these aspects need to be further studied.

Ammonia-nitrogen Removal in Sea Water by Using Electrolysis (전기분해법에 의한 해수내의 암모니아성 질소 제거)

  • 이병헌;이제근;길대수;곽순열
    • Journal of Aquaculture
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    • v.10 no.4
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    • pp.435-438
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    • 1997
  • Biological ammonia removal system have been used conventionally for the seawater fish farming. But this process requires long hydraulic retention times and large area. Also it has a trouble of NO3-N accumulation in the system. Therefore, this study was conducted to find out the feasibility of effective nitrogen removal efficiency in the sea water fish farming system by electolysis. As the result, electrolysis system showed a good ammonia and nitrate nitrogen removal and E. coli sterilization efficiencies. Because of the high salinities in the seawater for electron transfer, electrolysis is an effictive water treatment process for seawater fish farming. The relation among ammonia removal efficiency, hydraulic retention time (HRT) and electric wattage (watt) with 10 mm electrod distance isas follow ; log [$NH_4^$+-N(%)]=0.431log(HRT(sec)$\times$Watt)+0.88(r=0.950) And the relation between ammonia removal efficiency and residual chlorine concentration in the seawater is as follow; $$NH_4^+-N(%)=48\cdotlog[Residual\;chlorine(mg/\ell)+28(r=0.892)$$

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