• 제목/요약/키워드: Maximum Nitrogen Removal

검색결과 133건 처리시간 0.026초

반응표면법을 이용한 아쿠아포닉스 전처리조 최적 운전 조건 평가 모델 (Evaluation Model of Optimal Operating Conditions for Aquaponics Pretreatment Using Response Surface Methodology)

  • 김지수;박건우;최진서;박정환
    • 한국수산과학회지
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    • 제57권1호
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    • pp.32-40
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    • 2024
  • The aim of this research was to apply a method designed to derive the factors influencing total ammonia removal when operating an additional pretreatment system at Aquaponics. The Box-Behnken method, among response surface analysis methods was used to characterize and determine the optimal nitrification conditions when operating the pretreatment system. Among the mathematically and statistically calculated prediction equations, the total ammonia nitrogen concentration Y1 measured on day 8 was derived as Y1=-195.8+2.23X1+42.9X2+47.5X3+0.1856X12-1.380X1X2-1.770X1X3, and the time taken to reach the maximum total ammonia nitrogen concentration during the experiment period was derived as Y2=271-5.04X1+60.5X2-64.8X3+0.1654X12+6.54X32-0.600X1X3-9.00X2X3. The coefficients of determination of the regression models of Y1 and Y2 were 93.99% and 94.46%, respectively. The modified coefficients of determination were also high, at 89.48% and 88.91%, respectively. The prediction coefficients of determination of Y1 and Y2, were 70.68% and 62.11%, respectively, which was relatively lower than that of Y1, but still indicated a reliable prediction performance.

해수 조건에서 모래유동층 여과조의 TAN 부하량과 수온에 따른 질산화 효율 (Nitrification Efficiency of the Fluidized Sand Biofilter by TAN Leading Rates and Temperatures in the Simulated Seawater Aquaculture Condition)

  • 박정환
    • 한국수산과학회지
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    • 제38권6호
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    • pp.347-352
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    • 2005
  • These experiments investigated the conditioning pattern and the nitrification efficiency of a fluidized sand biofilter (FSB) for seawater application. The FSB fed artificial nutrient was fully conditioned within 22 weeks. The maximum nitrification efficiency of the FSB was achieved at a superficial water velocity (SWV) of 1.0 cm/sec. After fixing the superficial water velocity at 1.0 cm/sec, the nitrification rates of the FSB were assessed at 3 total ammonia nitrogen (TAN) loading rates (250, 500, 1,000 g TAN/$m^3$/day) and 3 water temperatures (12, 16, $20^{\circ}C$). The TAN concentration in the simulated culture tank ranged from 2.87 to 9.72 mg/L at TAN loading rate of 1,000 g TAN/$m^3$/day, while that ranged from 0.45 to 1.26 mg/L at TAN loading rate of 500 g TAN/$m^3$/day. The ranges of TAN concentration in the former were too high for aquatic organisms and those in the latter were acceptable. Therefore, the safe TAN loading rate for the FSB in seawater conditions was decided as 500 g TA/$m^3$/day. From these results, daily TAN removal rates (g TAN/$m^3$/day) of FSB under conditions of inlet TAN concentration (C, mg/L) and water temperature (T, $^{\circ}C$) were calculated by the following non-linear multi-regression equation: TAN removal rate: f(z)=-1,311.295+655.714LnT+225.775LnC ($r^2=0.962$).

125 MW급 우드펠릿 발전소에서 탈질설비 운전조건이 질소산화물 발생량에 미치는 영향 (Effect of the De-NOx Facility Operating Condition on NOx Emission in a 125 MW Wood Pellet Power Plant)

  • 전문수;이재헌
    • 플랜트 저널
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    • 제18권3호
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    • pp.52-61
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    • 2022
  • 본 연구는 실제 운영중인 영동에코발전본부 1호기 125 MW 우드펠릿 발전소를 대상으로 탈질설비 운전조건이 NOx 발생량에 미치는 영향을 시험하였다. SNCR 요소 유량 증가에 따라 NOx 농도는 점차 감소하였으나 SCR 후단 암모니아 슬립은 상승하였다. 시험대상 보일러는 고온의 내부온도로 인해 SNCR 운영에 불리한 구조이며 노즐의 최적위치 검토가 필요할 것이다. SCR 희석공기 온도변화는 NOx 발생량에 영향을 미치지 않았다. SCR 암모니아 유량 증가는 SCR 후단 NOx 농도를 감소시켰고 NOx 제거효율도 증가시켰다. 다만 암모니아 슬립 자체 기준치를 초과하지 않는 암모니아 유량 111 kg/h가 최대 운전기준으로 추정된다. SCR 믹서 압력 상승은 NOx 농도를 감소시키고 제거효율도 최대로 측정되어 NOx 생성을 가장 효과적으로 억제하는 변수로 파악되었다.

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농업 소유역 격자단위 오염부하량 평가 (Assessment of Cell Based Pollutant Loadings in an Intensive Agricultural Watershed)

  • 강문성;조재필;전종안;박승우
    • 한국농공학회논문집
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    • 제51권5호
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    • pp.87-94
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    • 2009
  • The objectives of this paper were to estimate cell based pollutant loadings for total maximum daily load (TMDL) programs and to evaluate the applicability of the agricultural nonpoint source (AGNPS) model for an intensive agricultural watershed in Korea. The model was calibrated and validated at a watershed of 384.8 ha of drainage area using the observed data from 1996 through 2000 in terms of runoff, suspended solid, total nitrogen, and total phosphorus on a hourly basis. Analysis of spatial variations of pollutant loadings for rainfall frequencies of various intensities and durations were conducted. In addition, the validated model was applied to estimated the TMDL removal efficiency for best management practices (BMPs) scenarios which were selected by taking into account the pollutant characteristics of the study watershed. The model can help to understand the problems and to find solutions through landuse changes and BMPs. Thus, the method used for this study was able to identify TMDL quantitatively as well as qualitatively for various sources pollution that are spatially dispersed. Also it provides an assessment of the impact of BMPs on the water bodies studied, allowing the TMDL programs to be complemented more effectively.

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.

A Review on the Photochemical Oxidant Modeling as Applied to Air Quality Studies in Complex Terrain

  • Hwa-Woon Lee;Yoo
    • 한국환경과학회지
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    • 제1권1호
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    • pp.19-33
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    • 1992
  • The high oxidants, which occur the daily maximum concentrations in the afternoon, are transported into the other region via long range transport mechanisms or trapped within the shallow mixing boundary layer and then removed physically (deposition, transport by mountain wind, etc.) and chemically (reaction with local sources). Therefore, modeling formation of photochemical oxidants requires a complex description of both chemical and meteorolog ital processecs . In this study, as a part of air quality studies, we reviewed various aspects of photochemical modeling on the basis of currently available literature. The result of the review shows that the model is based on a set of coupled continuity equations describing advection, diffusion, transport, deposition, chemistry, emission. Also photochemical oxidant models require a large amount of input data concerned with all aspects of the ozone life cycle. First, emission inventories of hydrocarbon and nitrogen oxides, with appropriate spatial and temporal resolution. Second, chemical and photochemical data allowing the quantitative description of the formation of ozone and other photochemically-generated secondary pollutants. Third, dry deposition mechanisms particularly for ozone, PAN and hydrogen peroxide to account for their removal by absorption on the ground, crops, natural vegetation, man-made and water surfaces. Finally, meteorological data describing the transport of primary pollutants away from their sources and of secondary pollutants towards the sensitive receptors where environmental damage may occur. In order to improve our present study, shortcomings and limitation of existing models are pointed out and verification Process through observation is emphasized.

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Al 스크랩으로부터 금속회수에 관한 연구 (A Study of the Metal Recovery from the Aluminium Scrap)

  • 김준수;임병모;윤의박
    • 자원리싸이클링
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    • 제4권1호
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    • pp.25-30
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    • 1995
  • 본 연구에서는 Al 스크랩으로부터 재생지금 제조시 시료의 예비처리, 용제첨가 및 용해분위기가 Al 회수율에 미치는 영향을 조사하였다. 실험결과에 따르면 Al 드로스는 용탕표면에서의 산화반응에 의해 발생하였다. 예비처리의 영향에 다르면 탈지하지 않고 압착한 칩 bale 시료의 경우에는 압착하지 않은 칩 시료에 비해 약 14%의 회수율이 증가하였으며, Al seed 용해공법을 채택하는 경우에는 탈지하지 않고 단지 세편과 압착만을 행하여도 97%의 높은 회수율을 얻을 수 있었다. Al 스크랩 용해시 7wt%까지 첨가된 염에 의해 회수율은 최대 95%까지 증대되었으며, 탄소 및 질소분위기에서도 역시 회수율은 증가하였으나, 염과 탄소의 혼합분 첨가시 과잉 첨가된 탄소는 오히려 회수율을 감소시켰다.

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코발트 기반 프러시안블루 유사체를 이용한 수중 암모늄 이온의 선택적 흡착 (Selective adsorption of ammonium ion via cobalt-based Prussian blue analogue)

  • 김태환;날게스 데흐바시 니아;윤여명;김태현;황유훈
    • 상하수도학회지
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    • 제38권2호
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    • pp.95-107
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    • 2024
  • This study proposes the use of a cobalt-based Prussian blue analogue (Co-PBA; potassium cobalt hexacyanoferrate), as an adsorbent for the cost-effective recovery of aqueous ammonium ions. The characterization of Co-PBA involved various techniques, including Fourier-transform infrared spectroscopy, X-ray diffraction, scanning electron microscopy, nitrogen adsorption-desorption analysis, and zeta potential. The prepared Co-PBA reached an adsorption equilibrium for ammonium ions within approximately 480 min, which involved both surface adsorption and subsequent diffusion into the interior. The isotherm experiment revealed a maximum adsorption capacity of 37.29 mg/g, with the Langmuir model indicating a predominance of chemical monolayer adsorption. Furthermore, the material consistently demonstrated adsorption efficiency across a range of pH conditions. Notably, adsorption was observed even when competing cations were present. Co-PBA emerges as a readily synthesized adsorbent, underscoring its efficacy in ammonium removal and selectivity toward ammonium.

Anaerobic Filter에 의한 양돈폐수의 전처리 특성 평가 (Evaluation of Swine Wastewater Pretreatment Using Anaerobic Filter)

  • 강호;문서연
    • 대한환경공학회지
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    • 제37권7호
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    • pp.418-425
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    • 2015
  • 본 논문에서는 양돈폐수의 전처리 공정으로 부유성 세라믹 담체로 충진한 Anaerobic Filter (AF)을 이용하여 신재생에너지 메탄가스의 생산 가능성과 전처리 후 유출수의 후속 고도처리 적정성을 평가하였다. 유입 COD 농도가 14,000 mg/L인 양돈폐수를 Anaerobic Filter에 점진적으로 유기물부하(OLR)를 증가시키면서 혹은 수리학적 체류시간을 짧게 유지하면서 $35^{\circ}C$에서 운전한 결과는 다음과 같다. Anaerobic Filter는 HRT 0.5일(OLR 28 g TVS/L-d)에서 최대 메탄발생량 1.74 v/v-d를 달성하였으며, Biogas 기준 TVS 제거효율은 HRT 3일(OLR 4.67 g TVS/L-d)로 운전하였을 때 63%를 얻었다. 반면 유출수 분석에 의한 TCOD 제거효율은 75%를 상회하였다. 유출수의 알카리도는 모든 운전 조건에서 2,050~2,980 mg/L as $CaCO_3$로서 후속 질소제거 시 야기될 수 있는 알카리도 파괴를 상쇄할 수 있을 것이다. HRT 2일 이하의 운전조건에서 Anaerobic Filter 유출수의 COD/TKN 비는 10~35 범위로서 고도처리 시 적정비인 8 이상을 만족하였으며 COD/TP 비는 38~56범위로서 적정비 33 이상 유지가 가능하였다.

살수여상공법을 이용한 양어장 순환수처리 (Recycling Water Treatment of Aquaculture by Using Trickling Filter Process)

  • 김정숙;이병헌
    • 한국수산과학회지
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    • 제29권2호
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    • pp.230-237
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    • 1996
  • 본 연구는 살수여상공법을 양어장 순환수 처리 장치로 설치하여 유기물질 제거 효율, 암모니아 제거효율, 동력학적 상수, 슬러지 생산량과 산소소요량 등의 최적 운전방법을 도출하였다. 유기물질 부하율이 $0.500\~0.082kg\;COD/m^3/day$에서 $66.4\~81.2\%$의 SCOD 제거 효율과 $74.5\~84.0\%$의 SBOD 제거 효율을 보였다. 암모니아 부하율이 $0.271\~0.044kg\;NH_4^+-N/M^3/day$에서 $43.7\~61.8\%$ 의 암모니아성 질소 제거 효율을 보였으며 암모니아 제거량은 $27.2\~119.5mg\;NH_4^+-N/L/day$로 나타났다. Eckenfelder 식에 의해 구한 K, n값은 각각 $0.168\;min^{-1}$과, 0.132로 나타났으며 총 생성된 슬러지 생산량은 0.233g VSS/day로 kg BOD 제거량당 생성되는 슬러지 생산량은 0.572 kg VSS/kg $BOD_{rem}$로 나타났다. 산소소요량은 3.89mg $O_2/L/hr$로 수리학적부하가 $6.712\~40.341\;m^3/m^2/day$에서 $1.33\~7.22\;mg\;O_2/L/hr$로 수리학적 부하가 증가할수록 산소소요량이 증가하였으며 미생물당 산소소모율은 1.08kg $O_2/kg$ VSS로 나타났다.

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