• 제목/요약/키워드: aerobic denitrification

검색결과 134건 처리시간 0.022초

1차 화학 처리된 닭 가공 폐수의 생물학적 처리에 의한 유기물 및 질소제거에 관한 연구 (Study on Organic Matter and Nitrogen Removal by Biological Treatment of Wastewater Processing of Chicken, which is the Primary Chemical Processing)

  • 한형석;최용구;송진호;김호
    • 한국수자원학회논문집
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    • 제47권3호
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    • pp.247-256
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    • 2014
  • 도계량을 현재의 2배까지 증가시킬 예정인 닭 가공 업체인 A사의 생물학적 처리조를 대상으로 하여 처리효율을 2배까지 높이는 방안을 모색하였다. 이를 위해 MLSS 농도가 증가할 경우 이에 따른 유기물 및 질소 제거 효율증가에 대한 근거를 확보하고자 연구를 진행하였다. 연구는 닭 가공 폐수를 1차 화학 처리한 가압부상처리수를 대상으로 진행되었으며 SBR 형태로 진행되어 호기조 상태 25시간 운전 후, 무산소조 상태 5시간으로 운전되었다. MLSS 12,700mg/L로 진행된 실험 결과 호기조 상태 25시간 이내에 질산화가 완벽하게 일어났으며 C/N비 3 : 1 이상 실험군에서의 탈질효율도 90%를 초과하였다. 후에 진행된MLSS 농도대비 유기물 및 질소제거 효율비교에서는 MLSS 농도를 5,600에서 12,700mg/L까지 변화시켰으며 MLSS 농도 10,800mg/L 실험군에서 유기물과 총 질소 농도 모두 배출허용기준치를 만족하는 결과를 보였다.

Effect of the supernatant reflux position and ratio on the nitrogen removal performance of anaerobic-aerobic slaughterhouse wastewater treatment process

  • Tong, Shuang;Zhao, Yan;Zhu, Ming;Wei, Jing;Zhang, Shaoxiang;Li, Shujie;Sun, Shengdan
    • Environmental Engineering Research
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    • 제25권3호
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    • pp.309-315
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    • 2020
  • Slaughterhouse wastewater (SWW) is characterized as one of the most harmful agriculture and food industrial wastewaters due to its high organic content. The emissions of SWW would cause eutrophication of surface water and pollution of groundwater. This study developed a pilot scale anaerobic-aerobic slaughterhouse wastewater treatment process (AASWWTP) to enhance the chemical oxygen demand (COD) and total nitrogen (TN) removal. The optimum supernatant reflux position and ratio for TN removal were investigated through the modified Box-Behnken design (BBD) experiments. Results showed that COD could be effectively reduced over the whole modified BBD study and the removal efficiency was all higher than 98%. The optimum reflux position and ratio were suggested to be 2 alure and 100%, respectively, where effluent TN concentration was satisfied with the forthcoming Chinese discharge standard of 25 mg/L. Anaerobic digestion and ammonia oxidation were considered as the main approaches for COD and TN removal in the AASWWTP. The results of inorganic nutrients (K+, Na+, Ca2+ and Mg2+) indicated that the SWW was suitable for biological treatment and the correspondingly processes such as AASWWTP should be widely researched and popularized. Therefore, AASWWTP is a promising technology for SWW treatment but more research is needed to further improve the operating efficiency.

간헐폭기 생물활성탄 유동상에 의한 매립지침출수 처리 (Leachate Treatment using Intermittently Aerated BAC-Fluidizing Bed)

  • 김규연;이동훈
    • 유기물자원화
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    • 제13권4호
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    • pp.136-147
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    • 2005
  • 난분해성 유기물과 암모니아성 질소의 동시제거를 위해 간헐폭기 생물활성탄 유동상법을 이용하여 고농도 유기물함유 침출수에 대하여 실험을 수행하였다. 간헐폭기시 고려되어야 하는 폭기 시간과 비폭기 시간에 대하여 실험적 검토를 수행하였고 자동컴퓨터제어 가능성에 대하여 고찰하여 보았다. 그 결과 생물활성탄 유동상 반응조에 충전한 활성탄의 물리적 흡착능은 초기의 처리효율에 크게 기여하였으며 간헐폭기 생물활성탄 유동상에 의한 침출수 처리시 정상상태에 도달하는 시간은 40일 정도이었고 TOC와 암모니아성 질소 처리시 양호한 프로세스임을 알 수 있었다. 폭기 및 비폭기시간은 60분 폭기/60분 비폭기의 조건이 30분 폭기/90분 비폭기에 비해 처리효율이 양호하게 나타났고 고농도 유기물함유 침출수 처리실험에서 간헐폭기 생물활성탄 유동상에 의한 처리방법은 높은 TOC제거율, 질산화율 및 탈질율, 난분해성 유기탄소 제거율을 확인할 수 있었다. 또한 간헐폭기시 ORP 곡선의 변화에서 나타나는 굴곡점은 무산소상태의 종결점을 나타내는 파라메터로 이용가능하며 이를 간헐폭기 반응조의 최적 운전모드를 설정하는데 응용할 경우 소규모 자동화가 가능할 것으로 판단되었다.

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폐가스 가습조(유동상호기 및 무산소조)를 포함한 바이오필터공정을 이용한 악취폐가스의 처리 (Treatment of Malodorous Waste Air by a Biofilter Process Equipped with a Humidifier Composed of Fluidized Aerobic and Anoxic Reactor)

  • 임광희
    • Korean Chemical Engineering Research
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    • 제56권1호
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    • pp.85-95
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    • 2018
  • 본 연구에서는 폐가스 가습조(유동상호기 및 무산소조)를 포함한 바이오필터공정으로 이루어진 바이오필터시스템을 구축하여, 돈사 및 계사 설비, 퇴비공장 또는 공공시설에서 발생되는 황화수소, 암모니아 및 휘발성 유기화합물을 포함한 악취폐가스에 대한 처리효율을 제고하고 적정 작업조건을 구축하였다. 복합 악취폐가스 처리실험에서, 암모니아 부하의 경우 폐가스 가습조에서 약 75%가 제거되고, 후 공정인 바이오필터에서 20%이상 제거되었다. 톨루엔 부하의 경우 폐가스 가습조에서 약 20%가 제거되고, 후공정인 바이오필터에서 70% 이상 제거되었다. 따라서 물에 용해도가 높은 암모니아의 경우에는 폐가스 가습조에서 주로 제거되었고, 용해도가 낮은 톨루엔의 경우는 바이오필터에서 주로 제거되었다. 한편 황화수소는 폐가스 가습조에서 거의 흡수되어 바이오필터에서 검출되지 않았다. 황화수소 및 톨루엔의 공급을 중단하였을 때에, 암모니아 부하는 폐가스 가습조에서 약 65%가 제거되고 후 공정인 바이오필터에서 나머지 약 35% 정도가 제거되어, 거의 100%의 암모니아 부하가 제거되었다. 폐가스 가습조에서는 암모니아 외에 톨루엔 및 황화수소의 부하가 추가된 복합 악취폐가스의 경우보다 약 10% 더 적게 암모니아가 제거되었는데, 이것은 탈질에 필요한 톨루엔과 같은 유기화합물의 공급 중단에 기인하였다. 바이오필터시스템의 feed가, 1)복합 악취폐가스일 때, 2)암모니아 폐가스일 때에; 기존 폐가스 가습조 용수에 yeast extract를 보충한 경우 또는 yeast extract를 첨가하지 않고 탄소원으로 glucose를 첨가한 경우, 각각의 경우에 폐가스 가습조에서 흡수되는 암모니아질소 흡수율은, 각각 약 0.28 mg/min, 약 0.23 mg/min 및 약 0.27 mg/min으로 산출되었다. 한편 각각의 무산소조에서 탈질율은 0.42 mg/min, 0.55 mg/min, 및 약 0.27 mg/min이었다. 또한 폐가스 가습조(유동상 호기조)의 bubble column 모델링에서 유동상 호기조 단위부피당 bubble의 비표면적(a)과 향상된 물질전달계수(E $K_y$)의 곱의 값은 0.12/hr로 평가되었다.

연속회분식 반응기(Sequencing Batch Reactor)에서 유기물, 질소 및 인의 거동에 관한 연구 (Study on Behavior of Organic, Nitrogen, and Phosphorus in the Sequencing Batch Reactor)

  • 한기백;박동근
    • 한국환경과학회지
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    • 제6권5호
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    • pp.521-529
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    • 1997
  • In the study, we Investigated the behavior and removal efficiency of organics, nitrogen. phosphorus with operating conditions in SBRs. Substrate used was synthetic wastewater in which the ratio of $COD_{cr}$. : N : P was 100 : 12 : 2. The cycling the in SBRs was adjusted at 6 hours and 8 hours, and then certainly Included anaerobic and aerobic conditions. Also, for each cycling time. we performed 2 series of experiment simultaneously which was set up 10 days and 20 days as SRT. The removal efficiency of $COD_{cr}$. was over 97% in all operating conditions. In the 6 hours cycling time, the removal efficiency of $PO_4^{3-}-P$ reached almost 100% in steady state. And then we could observe a typical phonemena of phosphorus release and uptake, and the removal efficiency of N was 67%, Residual N source was almost TKN and most of the rest remained as $NO_2-N$. Also the difference in both SRTs was not observed practically. In the 8 hours cycling time, dissolution of sludge appeared. and, $PO_4^{3-}-P was not nearly removed but nitrogen was removed up to 75%, And the residual nitrogen was accumulated as $NO_2^--N$.

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재순환에 의한 흡수성 바이오필터 시스템의 오수처리효율 향상 (Enhancement of Sewage Treatment Efficiencies by Recirculation in Absorbent Biofilter System)

  • 권순국;전기설;김성배
    • 한국농공학회논문집
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    • 제47권3호
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    • pp.69-76
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    • 2005
  • An Absorbent Biofilter System (ABS) combined with the recirculation process was investigated for the feasible application in additional removing of organics (BOD, SS) as well as nutrients (TN, TP) from small Community wastewater in Korea. Polyurethane biofilter media with high porosity and large surface area were /used for the aerobic system. A part of treated wastewater was recirculated into the anoxic septic tank to promote removal of nutrients. The concentrations of BOD and SS of treated wastewater satisfied the regulations for small on-site wastewater treatment facility (10 mg/L) during the overall experimental period. The effluent concentrations of BOD and SS were decreased with enhancement of removal efficiencies of 95.7 and $96.7\%$. The nitrogen and phosphorus removal efficiencies by the recirculation increased to $52.9\%\;and\;43.2\%$ in average during the overall experimental period, respectively. With the improvement, these values were increased as much as additional 42 and $18\%$ compared with those of non-recirculation. The rates of nitrification and denitrification were enhanced showing $65\~77\%\;and\;42\~92\%$, respectively. The described process modification is a low cost and effective method of enhancing nitrogen and phosphorus removal, especially on existing systems without changing major design components of a treatment facility.

호흡률에 기반한 연속회분식반응조의 포기공정 제어 (Aeration control based on respirometry in a sequencing batch reactor)

  • 김동한;김성홍
    • 상하수도학회지
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    • 제32권1호
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    • pp.11-18
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    • 2018
  • As the sequencing batch reactor process is a time-oriented system, it has advantages of the flexibility in operation for the biological nutrient removal. Because the sequencing batch reactor is operated in a batch system, respiration rate is more sensitive and obvious than in a continuous system. The variation of respiration rate in the process well represented the characteristics of biological reactions, especially nitrification. The respiration rate dropped rapidly and greatly with the completion of nitrification, and the maximum respiration rate of nitrification showed the activity of nitrifiers. This study suggested a strategy to control the aeration of the sequencing batch reactor based on respirometry. Aeration time of the optimal aerobic period required for nitrification was daily adjusted according to the dynamics of respiration rate. The aeration time was mainly correlated with influent nitrogen loadings. The anoxic period was extended through aeration control facilitating a longer endogenous denitrification reaction time. By respirometric aeration control in the sequencing batch reactor, energy saving and process performance improvement could be achieved.

효과적 공간활용을 위한 Side Stream Plug-Flow Reactor를 이용한 하수 고도처리 공정 적용에 관한 연구 (A study on Applicable to Advanced treatment of using Side Stream Plug-Flow Reactor)

  • 김삼주;현인환;독고석
    • 상하수도학회지
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    • 제22권3호
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    • pp.367-372
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    • 2008
  • This study configured the conventional $A^2O$ (Anaerobic-Anoxic-Aerobic bioreactor) system which the fixed media immersed into the anoxic reactor(Named PFR system : Plug Flow Reactor) for evaluating the removal efficiency of nitrogen in the wastewater. The experimental equipment was a cylinder which was consist of 4 pleated PE Pipes(Length 330M, Diameter 100mm) including 2 rope shape media. As a result, the average effluent T-N removal efficiency of the conventional $A^2O$ system was 17.9, 40.3, 50.6, 44.6% in each mode, but the average effluent T-N removal efficiency of the PFR system could achieve 38.8, 57.1, 71.8, 65.4% in each mode. It indicated that the PFR system caused to the increasing of C/N ratio that effected to the increasing of the denitrification efficiency. Not only the effective T-N removal efficiency but also the controllable install space will give advantages for retrofitting of the wastewater treatment plant with the conventional treatment system to the PFR system.

변형된 활성슬러지공법의 폐수처리에 관한 실험적 연구 (An Experimental Study on Wastewater Treatment by Modified Activated Sludge Process)

  • 채수권;연기석
    • 물과 미래
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    • 제22권1호
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    • pp.117-125
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    • 1989
  • 본 연구는 활성슬러지공법을 변형시킨 무산소일염기일호기반응조를 사용해서 질산화일탈질소반응 및 인의 방출인초과축적반응을 유도하여 합성페수의 유기물, 질소 및 인을 동시에 제거하였다. 무질소조, 무염기 및 호기호 각각에 대한 반응특성을 조사하기 위해 실험실규모의 반응조가 운영되었으며 MLSS농도를 5000, 4200, 3300, 2600, 1900mg/l로, 변화시켜 COD제거율에 대한 생물학적 동력학계수를 결정하였다. 연구결과, 유기물 및 영양염이 변형된 슬러지공법에 의해 동시에 제거될 수 있음을 알았고, ortho-p 제거효율은 66%∼99%로 높게 나타났다.

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하수중의 질소.인 제거를 위한 $A^2$/O공정의 적용 (Application of $A^2$/O Process for Removal of Nitrogen and Phosphorus in Sewage)

  • 안철우;박진식;문추연
    • 한국환경보건학회지
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    • 제26권4호
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    • pp.9-14
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    • 2000
  • In this study, the removal efficiencies of organics, nitrogens and phosphorus from municipal wastewater using $A^2$/O process were investigated. BO $D_{5}$ removal efficiencies were indicated 95% and 94% with HRT of 12 hr and 10 hr, respectively. CO $D_{Cr}$ average removal efficiency and concentration of effluent were indicated 87% and 34mg/$\ell$. SS average removal efficiency and concentration of effluent were indicated 93% and 4~17mg/$\ell$. T-N removal efficiency and concentration of effluent were shown as 60~80% and below 15mg/$\ell$. In aerobic basin, removal efficiency of N $H_4$-N was shown over 97% with N $H_4$-N volume load 0.16kg N $H_4$-N/㎥.d and in anoxic basin, denitrification efficiency was indicated over 80% with return sludge rate 0.5Q and internal recirculation rate 2.5Q. Removal efficiency and effluent concentration of phosphorus were shown over 80% and below 2 mg/$\ell$ with return sludge rate 0.5Q.Q.

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