• Title/Summary/Keyword: Nitrate removal

Search Result 402, Processing Time 0.025 seconds

Characteristics of Immobilized PVA Beads in Nitrate Removal

  • Cho Kyoung-Sook;Park Kyoung-Joo;Jeong Hyun-Do;Nam Soo-Wan;Lee Sang-Joon;Park Tae-Joo;Kim Joong-Kyun
    • Journal of Microbiology and Biotechnology
    • /
    • 제16권3호
    • /
    • pp.414-422
    • /
    • 2006
  • Before applying PVA bio-beads to practical biological treatment of nitrate-containing wastewater, their characteristics were examined. PVA bio-beads could steadily produce nitrogen gas from nitrate for 28 batches with 0.04 ml/l/h of the maximum gas production rate; however, the maximum gas production rate dropped remarkably thereafter with apparent deformation of beads. Addition of 2.2% solution containing 1% casamino acid, 1% yeast extract, 0.1% mineral solution, and 0.1% vitamin solution to the culture medium resulted in not only recovery of activity of deactivated beads, but also a higher rate of gas production. Calculation of economic benefit for the use of bio-beads in a long-run operation indicated that reactivation of bio-beads by chemicals had economical advantages over packing new bio-beads in the system. The continuously stirred bioreactor exhibited a satisfactory performance at HRT of 20.0 h. With a 9.5 mg $NO_{3}^{-}N/l/h$ nitrate removal rate, nitrate could completely be removed without nitrite accumulation. The use of PVA bio-beads in nitrate removal appears very promising.

Nitrate Removal by Pseudomonas fluorescens K4 Isolated from a Municipal Sewage Treatment Plant

  • Lee, O-Mi;Oh, Jong-Hyeok;Hwang, Doo-Seong;Choi, Yun-Dong;Chung, Un-Soo;Park, Jin-Ho;Kim, Min-Ju;Jeong, Seong-Yun;Lee, Sang-Joon
    • 한국환경과학회지
    • /
    • 제16권11호
    • /
    • pp.1219-1223
    • /
    • 2007
  • The removal of nitrogen compounds from a wastewater is essential and it is often accomplished by bio-logical process. An aerobic nitrate-removing bacterium was isolated from a municipal sewage treatment plant and soil. On the basis of its morphological, cultural and physiological characteristics and 16S rRNA sequencing data, this strain was identified as Pseudomonas fluorescens, and named as P. fluorescens K4. The optimal conditions of the initial pH and temperature of media for its growth were $7.0{\sim}8.0$ and $30^{\circ}C$, respectively. P. fluorescens K4 was able to remove 99.9% of nitrate after 24 h in a culture. The strain could grow with a nitrate concentration up to 800 mg/l and was able to remove 99.9% of nitrate after 104 h of incubation. The optimal electron donor was sodium citrate for a nitrate removal. The strain K4 showed a capability of a complete nitrate removal when the initial C/N ratio was 1.0. An effect of the initial seed concentration was observed for a cell of 10% (v/v) for a nitrate removal. Especially P. fluorescens K4 could completely remove 200 mg/l ammonium for 3 days.

수생식물을 이용한 질산염 제거에 관한연구 (Nitrate Removal From Synthetic Medium With aquatic Macrophytes)

  • 사리타 버셀;조해용;이병규
    • 한국산학기술학회:학술대회논문집
    • /
    • 한국산학기술학회 2010년도 춘계학술발표논문집 2부
    • /
    • pp.1105-1107
    • /
    • 2010
  • The removal of nitrate from aqueous solutions of a synthetic medium was examined using two different aquatic plants, such as Hydrocharis dubia and Salvinia sp. The selected macrophytes were incubated in the laboratory in the container containing a previously prepared soultion of NH4NO3. Hydrocharis dubia reduced the nitrate level to 60.4% in a synthetic medium containing 100mg/L of nitrate. The efficiency of nitrate removal was further increased 78% with initial nitrate concentration of 300mg/L.

  • PDF

Reduction of nitrate in groundwater by hematite supported bimetallic catalyst

  • Hamid, Shanawar;Lee, Woojin
    • Advances in environmental research
    • /
    • 제5권1호
    • /
    • pp.51-59
    • /
    • 2016
  • In this study, nitrate reduction of real groundwater sample by 2.2%Cu-1.6%Pd-hematite catalyst was evaluated at different nitrate concentrations, catalyst concentrations, and recycling. Results show that the nitrate reduction is improved by increasing the catalyst concentration. Specific nitrate removal by 2.2%Cu-1.6%Pd-hematite increased linearly with the increase of nitrate concentration showing that the catalyst possesses significantly higher reduction capacity. More than 95% nitrate reduction was observed over five recycles by 2.2%Cu-1.6%Pd-hematite with ~56% nitrogen selectivity in all recycling batches. The results from this study indicate that stable reduction of nitrate in groundwater can be achieved by 2.2%Cu-1.6%Pd-hematite over the wide range of initial nitrate inputs.

전기투석을 이용한 지하수 중의 질산성질소 제거 (The removal of Nitrate-nitrogen from ground water by electrodialysis)

  • 민지희;김한승
    • 상하수도학회지
    • /
    • 제22권3호
    • /
    • pp.307-314
    • /
    • 2008
  • In this study, the effects of applied voltage, solution pH and coexistence of other ions such as sulfate ion (${SO_4}^{2-}$) and chloride ion ($Cl^-$) were investigated on the removal of nitrate-nitrogen ($NO_3{^-}-N$) from ground water by electrodialysis. The examined operating conditions were evaluated for optimizing the removal efficiency of $NO_3{^-}-N$. Real ground water samples taken from a rural area of Yongin city and artificial ones with components similar to the real ground water were tested for the study, which contained $NO_3{^-}-N$ concentration of 17mg/L that exceeds current drinking water quality standard of 10 mg/L. The increase in the removal rate of $NO_3{^-}-N$ was observed as the applied voltage increased from 5V to 30V, while no significant increase in the removal rate appeared at the applied voltage beyond 20V during a given operating time. The removal rate appeared to get lower at both acidic and basic condition, compared to neutral pH. Coexistence of of ${SO_4}^{2-}$and $Cl^-$ demanded much longer operating time to achieve a given removal rate or to meet a certain level of treated water concentration. When nitrate ion was combined with ${SO_4}^{2-}$and $Cl^-$, the removal rate was reduced by 4.29% and 10.83%, respectively.

이온교환수지 분말이 코팅된 탄소전극을 이용한 음이온 혼합용액에서 Nitrate 이온의 선택적 제거율 향상 (Enhancement of Selective Removal of Nitrate Ions from a Mixture of Anions Using a Carbon Electrode Coated with Ion-exchange Resin Powder)

  • 여진희;최재환
    • 공업화학
    • /
    • 제24권1호
    • /
    • pp.49-54
    • /
    • 2013
  • 혼합용액에서 nitrate 이온을 선택적으로 제거하기 위해 복합탄소전극을 제조하였다. 질산이온 선택성 수지(BHP55, Bonlite Co.) 분말을 탄소전극 표면에 코팅하여 전극을 제조하였다. 제조한 전극으로 BHP55 셀을 제작하여 chloride, nitrate, sulfate 이온이 혼합된 용액에 대해 축전식 탈염 실험을 수행하였다. 그리고 BHP55 셀에서의 질산 이온 제거량을 이온교환막을 결합한 MCDI 셀의 결과와 비교하였다. BHP55 셀에서 이온의 총 흡착량은 MCDI 셀에서 보다 31% 증가한 $38.3meq/m^2$를 나타냈다. 또한 BHP55 셀에서 질산 이온의 흡착량은 $15.9meq/m^2$ (전체 흡착량의 42%)이었고, 이는 MCDI 셀에서 보다 2.1배 큰 것으로 나타났다. 실험결과 제조한 복합탄소전극은 음이온 혼합용액에서 질산 이온을 선택적으로 제거하는데 매우 효과적임을 알 수 있었다.

ZanF를 이용한 질산성 질소 환원 및 암모늄부산물 동시제거

  • 이승학;이광헌;이성수;박준범
    • 한국지하수토양환경학회:학술대회논문집
    • /
    • 한국지하수토양환경학회 2003년도 총회 및 춘계학술발표회
    • /
    • pp.107-110
    • /
    • 2003
  • Reduction of nitrate by zero valent iron (Fe$^{0}$ ) has been previously studied, but the proper treatment for the by-product of ammonium has not been reported. However, in terms of nitrogen contamination, ammonium may be regarded as another form of nitrogen contaminants since it can be oxidized to nitrate again under aerobic conditions. This study is focused on simultaneous removal of nitrate and its by-product of ammonium, with the ZanF (Zeolite anchored Fe), a product derived from zeolite modified by Fe(II) chloride followed by reduction with sodium borohydride. Batch experiments were performed without buffer at two different pH condition with ZanF, iron filing, Fe(II)-sorbed zeolite, and pure zeolite to estimate the nitrate reduction and the ammonium production. At higher pH, removal rate of nitrate was reduced in both ZanF and iron filings. ZnF removed 60 % of nitrate at initial pH of 3.3 with no production of ammonium, while iron filing showed equivalent production of ammonium to the reduced amount of nitrate. In terms of nitrogen contamination, ZanF removed about 60 % and 40 % at initial pH of 3.3 and 6, respectively, while iron filing presented negligible removal against total nitrogen including nitrate and ammonium.

  • PDF

하천수정화 연못-습지 시스템 부들 습지셀의 초기 질산성질소 제거 (Nitrate Removal Rate in Cattail Wetland Cells of a Pond-Wetland System for Stream Water Treatment)

  • 양홍모
    • 한국환경복원기술학회지
    • /
    • 제5권6호
    • /
    • pp.24-29
    • /
    • 2002
  • Nitrate removal rate in three cattail wetland cells was investigated. They were a part of a pond-wetland system for stream water treatment demonstration. The system was composed of two ponds and six wetland cells. The acreage of each cell was approximately $150m^2$. The earth works for the system were finished from April 2000 to May 2000 and cattails were planted in the three cells in June 2000. Waters of Sinyang Stream flowing into Kohung Estuarine Lake were pumped into a primary pond, whose effluent was discharged into a secondary pond. The reservoir was formed by a tidal marsh reclamation project and located in southern coastal area of Korean Peninsula. Effluents from the secondary pond were funneled into the three cells. Volumes and water quality of inflow and outflow were analyzed from July 2000 through January 2001. Inflow and outflow averaged $20.2m^3/day$ and $19.8m^3/day$, respectively. Hydraulic retention time was about 1.6 days. Average influent and effluent nitrate concentration was $1.98mg/{\ell}$, $1.38mg/{\ell}$, respectively. Nitrate removal rate averaged $82.6mg\;m^{-2}\;day^{-1}$. Seasonal changes of nitrate retention rates were closely related to those of wetland cell temperatures. The average nitrate removal rate in the cells was a little lower, compared with that of $125.0mg\;m^{-2}\;day^{-1}$ for the wetlands operating in North America. This could be attributed to the initial stage of the cells and inclusion of three cold months into the seven-month study period. Root rhizosphere in wetland soils and litter-soil layers on cell bottoms could not developed. Increase of standing density of cattails within a few years will establish both root zones suitable for the nitrification of ammonia to nitrates and substrates beneficial to the denitrification of nitrates into nitrogen gases, which may lead to increase of the nitrate retention rate.

천연 zeolite와 미생물을 이용한 NH4+ 및 NO3-의 동시 제거 (Simultaneous Removal of Ammonium and Nitrate by Natural Zeolite and Bacteria)

  • 이선희;이지혜;김덕겸;이창수;강경석;김인호
    • Korean Chemical Engineering Research
    • /
    • 제46권5호
    • /
    • pp.971-976
    • /
    • 2008
  • 현재 암모늄과 질산이온에 의한 수질 오염은 생태계에 있어 심각한 문제로 떠오르고 있다. 미생물에 의한 생물학적인 제거 공정은 질화 과정과 탈질 과정으로 구분되는데 암모늄이온은 질화 과정에 의해 질산염 이온으로 산화되고 질산염 이온은 다음 단계인 탈질 과정에서 질소 기체로 되어 제거 된다. 천연 제올라이트는 양이온 교환능이 뛰어나 암모늄이온($NH_4{^+}$)의 제거에 우수한 것으로 알려져 있지만 흡착만으로 암모늄과 질산이온($NO_3{^-}$)을 충분히 제거할 수 없다. 이러한 문제를 해결하기 위해 제올라이트와 미생물을 이용해 생물학적인 방법으로 암모늄과 질산이온을 동시에 제거하기 위한 실험을 수행하였다. 암모늄이온의 제거는 분말형 Beneficial bacteria(Savio, USA)의 종배양 단계를 거쳐 제올라이트가 충진된 컬럼과 진탕배양을 동시에 하였을 경우에 14시간 후에 완전히 제거되었고 질산이온은 제올라이트에 미생물을 자연 흡착시켜 컬럼 처리시 4시간 후에 100% 제거됨을 확인하였다.

Performance evaluation of nitrate removal in high TDS wet scrubber wastewater by ion exchange resin with dissolved air flotation (DAF) process

  • Kim, Bongchul;Yeo, Inseol;Park, Chan-gyu
    • Membrane and Water Treatment
    • /
    • 제13권1호
    • /
    • pp.1-6
    • /
    • 2022
  • The regulations of the International Maritime Organization (IMO) have been steadily strengthened in ship emissions. Accordingly, there is a growing need for development of related technologies for the removal of contaminants that may occur during the treatment of SOx and NOx using a wet scrubber. However, this system also leads to wastewater production when the exhaust gas is scrubbed. In this research, we evaluated the performance of an ion selective resin process in accordance with scrubber wastewater discharge regulations, specifically nitrate discharge, by the IMO. Accelerated real and synthetic wastewater of wet scrubbers, contained high amounts of TDS with high nitrate, is used as feed water in lab scale systems. Furthermore, a pilot scale dissolved air flotation (DAF) using microbubble generator with ion exchange resin process was combined and developed in order to apply for the treatment of wet scrubber wastewater. The results of the present study revealed that operating conditions, such as resin property, bed volume (BV), and inlet wastewater flow rate, significantly affect the removal performance. Finally, through a pilot test, DAF with ion exchange resin process showed a noticeable improvement of the nitrate removal rate compared to the single DAF process.