• 제목/요약/키워드: ammonia nitrogen removal

검색결과 274건 처리시간 0.024초

Ammonia Nitrogen Removal and Recovery from Swine Wastewater by Microwave Radiation

  • La, Joohee;Kim, Taeyoung;Jang, Jae Kyung;Chang, In Seop
    • Environmental Engineering Research
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    • 제19권4호
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    • pp.381-385
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    • 2014
  • Microwave (MW) radiation was developed to remove and recover ammonia nitrogen in the real swine wastewater. The effect of operating parameters of MW radiation such as initial pH, power, radiation time, aeration, and stirring for removal ammonia nitrogen in swine wastewater was determined. The pH, radiation time, and power were significantly influenced on the removal of ammonia nitrogen, and aeration and stirring showed relatively minor effect on the removal of ammonia nitrogen. Optimum condition was achieved to retrieve the nitrogen efficiently at pH 11, 700 W for 5 min in MW radiation process. Through this process, 83.1% of ammonia nitrogen concentration was reduced in swine wastewater and also 82.6% of ammonia nitrogen was recovered as ammonium sulfate at the optimized condition. The high ammonia removal and recovery efficiency of the MW radiation method indicated that MW radiation was an effective technique to remove and recover ammonia nitrogen in the swine wastewater.

PVA에 고정화된 질화세균에 의한 암모니아성 질소제거 (Removal of #NH_3-N$ by using Immobilized Nitrifier Consortium in Polyvinyl Alcohol)

  • 서근학;김용하;조진구;김병진;서재관;박은주;김성구
    • 한국환경과학회지
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    • 제8권4호
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    • pp.479-483
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    • 1999
  • Nitrifier consortium immobilized in polyvinyl alcohol was used for the removal of ammonia nitrogen from synthetic aquaculture water in the airlift bioreactor. At the aeration rate fo 0.15 vvm and bead packing volume fraction of 20%, airlift bioreactor was operated effectively for a removal of ammonia nitrogen and for a stability of operation. Ammonia nitrogen removal rate by airlift bioreactor was continuously increased with decreasing hydraulic residence time. At the HRT(hydraulic residence time) of 0.3 hour, ammonia nitrogen removal rate was 84.3 g/$m^3$.d and the highest ammonia nitrogen removal rate was 130.8 g/$m^3$.d when HRT was 0.1 hour.

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PVA에 고정화된 질화세균군에 의한 암모니아성 질소 제거 I. 충진율 및 공기 유입량이 암모니아성 질소제거에 미치는 영향 (Removal of NH(sub)3-N by Using Immobilized Nitrifier Consortium in PVA[Polyvinyl Alcohol]-I. Effect of Packing Fraction and Aeration Rate on Ammonia Nitrogen Removal)

  • 서근학;김병진;오창섭
    • KSBB Journal
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    • 제16권3호
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    • pp.314-319
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    • 2001
  • A nitrifier consortium immobilized in polyvinyl alcohol was used to remove ammonia nitrogen from synthetic wastewater in an airlift bioreactor. The minimum aeration rates were 0.4, 0.6, 0.8 and 1.0 vvm for 5, 10, 15 and 20% immobilized bead packing volume fraction, respectively. The efficient packing fraction and the aeration rate for ammonia nitrogen removal were 15% and 2.4 vvm, respectively. With a hydraulic retention time of 0.5hr, the removal rate and the efficiency of ammonia nitrogen removal were 1685 g/㎥$.$day and 48% at an influent ammonia nitrogen concentration of 75 g/㎥.

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양이온 교환수지에 의한 암모니아성 질소 제거 (Ammonia Nitrogen Removal by Cation Exchange Resin)

  • 이동환;이민규
    • 한국환경과학회지
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    • 제11권3호
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    • pp.263-269
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    • 2002
  • This study was conducted to know the removal characteristics of ammonia nitrogen by commercially available cation exchange resins. Eight acidic cation exchange resins were investigated in batch reactors. Among them, the most effective resin for ammonia removal in solution was PK228, which was a strong acidic resin of $Na^{+}$ type. PK228 was compared with activated carbon and natural zeolite. The effects of cation exchange capacity, ammonia concentration, resin amount, temperature and pH on ammonia removal by PK228 were investigated in batch reactor, and the effect of effluent velocity in continuous column reactor. Strong acidic resins of porous type were more effective than week acidic resins or gel type resins for ammonia removal in solution. PK228 was more effective than activated carbon and natural zeolite for ammonia removal in batch reactor. With increasing initial ammonia concentration, the amount of ammonia removed by PK228 increased, but the proportion of removed ammonia to initial ammonia concentration decreased. The effect or temperature on ammonia removal by PK228 was very slight. The ammonia removal to acidic solution was more effective than that at basic solution. With decreasing effluent velocity of solution through column, breakthrough point extended, and ammonia removal capacity increased.d.

Nitrification of low concentration ammonia nitrogen using zeolite biological aerated filter (ZBAF)

  • Kim, Jin-Su;Lee, Ji-Young;Choi, Seung-Kyu;Zhu, Qian;Lee, Sang-Ill
    • Environmental Engineering Research
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    • 제25권4호
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    • pp.554-560
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    • 2020
  • This study focuses on nitrification through a biological aerated filter (BAF) that is filled with a zeolite medium at low concentrations of ammonia. The zeolite medium consists of natural zeolite powder. The BAF is operated under two types of media, which are a ball-type zeolite medium and expanded poly propylene (EPP) medium. Nitrification occurred in the zeolite BAF (ZBAF) when the influent concentration of ammonia nitrogen was 3 mg L-1, but the BAF that was filled with an EPP medium did not experience nitrification. The ammonia nitrogen removal efficiency of ZBAF was 63.38% and the average nitrate nitrogen concentration was 1.746 mg/L. The ZBAF was tested again after a comparison experiment to treat pond water, and municipal wastewater mixed pond water. The ZBAF showed remarkable ammonia-nitrogen treatment at low concentration and low temperature. During this period, the average ammonia nitrogen removal efficiency was 64.56%. Especially, when water temperature decreased to 4.7℃, ammonia nitrogen removal efficiency remained 79%. On the other hand, the chemical-oxygen demand (COD) and phosphorus-removal trends were different. The COD and phosphorus did not show as efficient treatment as the ammonia-nitrogen treatment.

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

  • 윤태경;이강춘;정병길;한영립;성낙창
    • 청정기술
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    • 제17권4호
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    • pp.363-369
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    • 2011
  • 고농도의 암모니아성질소를 함유하는 폐수의 처리에 전기투석공정의 적용성이 실험적으로 평가되었다. 처리 성능은 전기투석공정의 운전인자 중 유입농도, 운전전압, 그리고 유속이 암모니아성질소의 제거효율에 미치는 영향으로 측정되었다. 한계전류밀도는 유입농도와 유입유속이 증가함에 따라 선형적으로 증가하였고, 유입농도에 따라 목표농도에 도달하는 시간은 직선적인 비례관계를 보였다. 상대적으로 큰 암모니아성질소의 이온당량전도도와 이온이동도로 인하여 유입유속의 증가는 제거속도를 지속적으로 증가시켰다. 또한 운전전압의 증가에 따라 제거속도는 증가하였다. 본 연구에 사용된 전기투석모듈에서 고농도의 암모니아성질소를 제거하는 운전조건으로 유입유속은 3.2 L/min, 운전전압은 한계전류밀도에 해당하는 전압의 80~90%가 추천된다.

Leclercia Adecarboxylata를 이용한 합성폐수의 암모니아성질소 제거특성 및 질소거동 (Removal Characteristic of Ammonia Nitrogen and Behavior of Nitrogen in Synthetic Wastewater Using Leclercia Adecarboxylata)

  • 이현희;배재근
    • 대한환경공학회지
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    • 제29권4호
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    • pp.460-465
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    • 2007
  • 본 연구에서는 고농도 암모니아성질소로 오염된 고체배지로부터 분리해 낸 Leclercia adecarboxylata를 이용하여 암모니아성질소의 제거특성 및 기작을 파악하여 폐수처리의 적용가능성에 대해 살펴보았다. 질소제거에 있어서 가장 널리 알려진 생물학적 질산화와 후탈질에 의한 질소의 대기로의 방출이 아닌 질소합성균주를 이용한 질소의 체내합성을 이용한 영양물질의 제거 가능성에 대해 접근해 보았다. L. adecarboxylata는 무염분조건에서 암모니아성질소의 제거와 균체중식이 가장 왕성했으나, 염분이 4%를 넘어서게 되면 그 효율은 급격히 저하되었다. 약 80 mg/L의 암모니아성질소는 20시간 이내에 거의 대부분 제거되었으나, 500 mg/L인 시료는 탄소원의 부족으로 인해 50시간 이상 처리후에도 50%의 제거율에도 미치지 못해 탄소원이 많을수록 질소제거율은 높음을 알 수 있었다. 탄소원이 모두 소모되고 난 이후에는 더 이상 질소제거는 이루어지지 않았으나, 탄소원을 추가로 공급했을 때 제거효율은 다시 증가했다. 시료의 pH는 미생물의 증식에 의해 8에서 6.36까지 감소했다. 암모니아성질소가 제거되는 동안 아질산성질소와 질산성질소의 축적은 일어나지 않았고, TKN값은 큰 차이를 보이지 않은 것으로 미루어 볼 때 유기질소로의 합성을 추측할 수 있었다. 유기질소 중 단백질의 농도를 측정해 본 결과 초기시료에서는 불검출 되었으나, 48시간 경과후의 시료에는 193.1 mg/L의 단백질이 검출 되었다. 따라서 L. adecarboxylata는 암모니아성질소를 유기질소로 합성하는 능력이 탁월하여 폐수중의 암모니아성질소의 제거에 이용가치가 클 것으로 판단된다.

A Study on the Chemical Treatment Techniques of High Concentration Ammonia Nitrogen in Food Wastewater

  • Tae-Hwan JEONG;Su-Hye KIM;Woo-Taeg KWON
    • 웰빙융합연구
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    • 제6권3호
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    • pp.33-36
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    • 2023
  • Purpose: Since the food wastewater contains a high concentration of nitrogen, it is very important to find a way to efficiently remove it. Research design, data and methodology: A total of four experiments were conducted under different conditions to remove ammonia nitrogen present in the food wastewater. The experiment was designed by adding sodium hypochlorite to the raw food wastewater and varying conditions such as pH control, aeration/precipitation, and stirring. Results: The ammonia nitrogen removal rate in Experiment 1 was about 12% (sodium hypochlorite added), ammonia nitrogen increased about 4.7% in Experiment 2 (sodium hypochlorite added after aeration/precipitation in a bioreaction tank, stirring), and decreased about 52.5% (sodium hypochlorite added after controlling and stirring). Conclusions: When the concentration of sodium hypochlorite was high, ammonia nitrogen was best removed, and the pH was adjusted to 12, and sodium hypochlorite was added after stirring, and the removal was the second best. If the method of this study is further studied and developed, it can be basic data for ammonia nitrogen removal in the future.

BAC Pilot Plant 를 이용한 겨울철 암모니아성 질소 제거 및 THMs 변화 (Removal of Ammonia Nitrogen and Reduction of THMs in Low Temperature by BAC Pilot Plant)

  • 강은조;서영진;이원권;전병희;이지형;윤정효;김동윤
    • 상하수도학회지
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    • 제9권4호
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    • pp.107-114
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    • 1995
  • The raw drinking water quality is getting worse because of the winter drought and the conventional treatment system is'nt suitable to obtain the satisfied quality of water. So, the advanced water system, BAC(Biological Activated Carbon) process is said to be effective to remove dissolved organics and ammonia nitrogen. In our study, the BAC pilot plant using Nak-dong river water is tested in low temperature. Following results are found from the study. The ammonia nitrogen removal rate of BAC system using wood-based carbon (PICABIOL) was 99% in $6^{\circ}C$ temperature. Chlorine dosage in wood-based BAC effluent was reduced to 67% of that in sand filtered wate. It resulted from the removal of ammonia nitrogen. Also, THM formed by chlorine addition in wood-based BAC effluent was decreased to 65% of that in sand filtered water. In the case of dual-filter, the removal efficiency of ammonia nitrogen was increased 30% more than in conventional sand filter. According to this result, the ammonia nitrogen load to BAC system could be lessened by the use of dual-filter.

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고정화된 질화 세균군에 의한 암모니아성 질소 제거 (Removal of Ammonia-N by Immobilized Nitrifier Consortium)

  • 서근학;김병진;조문철;조진구;김용하;김성구
    • KSBB Journal
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    • 제13권3호
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    • pp.238-243
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    • 1998
  • 양어장 순환수 속의 암모니아성 질소의 제거를 위한 Ba-alginate 와 Ca-alginate 반응기는 0.6시간의 수력학적 체류시간에서 51.0, 52.6 g $NH_3-N/m^3/day$의 거의 유사한 암모니아성 집소의 제거속도릎 나타내었다. Ca-alginate를 이용한 합성양어장수 속의 암모니아성 짖소의 제거 실험에서 본 반응기의 암모니아성 짐소의 제거속도는 수력학적 체류시간이 0.3시간인 지점에서 82.0 g $NH_3-N/m^3/day$로 서 최고의 재거속도릎 나타냈으며 이때 암모니아 제거율은 48% 이었다. 수중의 암모니아의 농도가 2mg/L 정도의 범위에서는 반응기 내에 주입되는 공가량을 0.1 vvm 으로 공급하더라도 용존산소 농도를 7.0 - 5.6 g/m3로 유지 할 수 있었으므로 질화에 필요한 용존산소량을 충분히 유지할 수가 있는 것으로 나타났으며 pH 는 7.2 - 7.9의 범위플 유지할 수가 있어서 pH 변화에 따른 위 해 요소는 없는 것으로 나타났다.

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