• 제목/요약/키워드: Nitrate Reduction

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Nitrate Reduction and Pigment Formation of Chinese-Style Sausage Mixes Caused by Micrococcaceae

  • Guo, H.L.;Chen, M.T.;Liu, D.C.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권8호
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    • pp.1173-1177
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    • 2000
  • This study investigated the nitrate reduction ability of Micrococcaceae on pigment formation in Chinese- style sausage. One hundred ppm sodium nitrite and 150 ppm sodium nitrate was added asepticly to ground pork which was then inoculated with $10^7CFU/g$ of either Micrococcus varians, Staphylococcus carnosus or Staphylococcus xylosus. All samples were cured at $20{^{\circ}C}$ or $30{^{\circ}C}$ for 3 days and then color, residue nitrite, nitrosyl pigment and residue nitrate were determined. The results indicated that samples inoculated with S. xylosus had higher a- and b- values due to nitrate reduction and pigment production after 3 days curing and these values were higher at the higher curing temperature. The nitrosyl pigment of the samples with S. xylosus had highest values after 3 days curing at both $20{^{\circ}C}$ and $30{^{\circ}C}$. However, sample inoculated with S. carnosus and S. xylosus had lower nitrate contents than the sample inoculated with M. varians. At $30{^{\circ}C}$ as well as S. carnosus and M. varians had a stronger decreasing in nitrate concentration during curing at $20{^{\circ}C}$. Moreover, samples inoculated with S. xylosus and S. carnosus had a higher residual nitrite content during curing at $20{^{\circ}C}$ or $30{^{\circ}C}$. In conclusion, two Staphylococci strains tested were most optimum starter cultures for improving pigment formation during Chinese-style sausage curing.

Nitrate Metabolism Affected by Osmotic Stress and Nitrate Supply Level in Relation to Osmoregulation

  • Kim, Tae-Hwan
    • 한국초지조사료학회지
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    • 제20권2호
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    • pp.77-84
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    • 2000
  • Eight-week old perennial ryegrass (Lolium perenne L. cv. Reveille) plants were exposed to different NO3-concentrations or osmotic stress with NaCI. Previously labeled "N was chased during 14 days of non-labeled'NO3 feeding in order to investigate NO3 metabolism in relation to osmoregulation. The short termmeasurement of osmotic potential showed that the extemal concentration of Nos- had not great effect on theosmotic potential, but that osmotic adjustment was observed in NaCl-treated plants. Total uptake of NO 3 - waslargely increased by increasing supply level of NO3 while it was depressed by exposing to osmotic stress.Nitrate reduction increased to more than 29% by increasing extemal NO,- concentration from 1 mM to 10mM. When osmotically stressed with NaCI, nitrate reduction was depressed to about 37% as compared to thecontrol. The decrease in translocation of reduced N into leaves was also observed in NaCl exposed plants. Inthe medium exposed to 10 mM NO,., osmotic contribution of nitrate to cumulative osmotic potential wasdecreased, and it was osmotically compensated with soluble carbohydrate. When osmotically stressed withNaC1, the contribution of chloride was much higher than that of nitrate. The present data indicate that N03-in plant tissues, factually affected by the assimilation of this ion, plays an active role in osmotic regulation incorrelation with other osmotica such carbohydrate and chloride.(Key words : Nitrate metabolism, Osmotic stress, Nitrate supply level, Osmoregulation)ate supply level, Osmoregulation)

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팔라디움과 인디움을 담지한 Al 층간가교 몬모릴로나이트 촉매의 수중 질산성질소 환원 특성 (The Reduction Properties of Nitrate in Water with Palladium and Indium on Aluminum Pillared Montmorillonite Catalyst)

  • 정상조
    • 한국물환경학회지
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    • 제34권6호
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    • pp.621-631
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    • 2018
  • In this study, catalyst was made through incipient wetness method using palladium (Pd) as noble metal, indium (In) as secondary metal, and montmorillonite (MK10) and Al pillared montmorillonite (Al-MK10) as supporters. The nitrate reduction rate of the catalysts was measured by batch experiments where H2 gas was used as reducing agent and formic acid as pH controller. Transmission electron microscopy (TEM) equipped with energy dispersive spectroscopy (EDS) and X-ray photoelectron spectroscopy (XPS) were all used to determine the elemental distribution of Pd, In, Al, and Si on catalysts. It was observed that Al pillaring increased the Al/Si elemental composition ratio and point of zero charge of MK10, but decreased its BET specific surface area and pore volume. The nitrate reduction rate of Al-MK10 Pd/In was 2.0 ~ 2.5 times higher than that of MK10 Pd/In using artificial groundwater (GW) in ambient temperature and pressure. Nitrate reduction rates in GW were 1.2 ~ 1.7 times lower than those in distilled deionized water (DDW). Nitrate reduction rates in acidic conditions were higher than those in neutral condition in both GW and DDW. The amount of produced NH3-N over degraded NO3- at acid conditions was lower than that of neutral condition. Even though the leaching of Pd after reaction was measured in DDW it was not detected when both Al-MK10 Pd/In and MK10 Pd/In were used in GW. The modification of montmorillonite as a supporter significantly increased the reductive catalytic activities of nitrates. However, the ratio of producing ammonia by-products to degraded nitrates in ambient temperature and pressure was similar.

표면개질된 영가철 나노입자를 이용한 질산성 질소 제거율 향상에 대한 연구 (A Study on Enhancement of Nitrate Removal Efficiency using Surface-Modified Zero-Valent Iron Nanoparticles)

  • 임태숙;조윤철;조장환;최상일
    • 한국환경과학회지
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    • 제25권4호
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    • pp.517-524
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    • 2016
  • In order to treat groundwater containing high levels of nitrate, nitrate reduction by nano sized zero-valent iron (nZVI) was studied using batch experiments. Compared to nitrate removal efficiencies at different mass ratios of $nitrate/Fe^0$, the removal efficiency at the mass ratio of 0.02% was the highest(54.59%). To enhance nitrate removal efficiency, surface modification of nZVI was performed using metallic catalysis such as Pd, Ni and Cu. Nitrate removal efficiency by Cu-nZVI (at $catalyst/Fe^0$ mass ratio of 0.1%) was 66.34%. It showed that the removal efficiency of Cu-nZVI was greater than that of the other catalysts. The observed rate constant ($k_{obs}$) of nitrate reduction by Cu-nZVI was estimated to $0.7501min^{-1}$ at the Cu/Fe mass ratio of 0.1%. On the other hand, TEM images showed that the average particle sizes of synthetic nZVI and Cu-nZVI were 40~60 and 80~100 nm, respectively. The results imply that catalyst effects may be more important than particle size effects in the enhancement of nitrate reduction by nZVI.

질산성질소에 파과된 이온교환수지의 생물학적 직접 재생 (Direct Bio-regeneration of Nitrate-laden Ion-exchange Resin)

  • 남윤우;배병욱
    • 한국물환경학회지
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    • 제29권6호
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    • pp.777-781
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    • 2013
  • Ion-exchange technology is one of the best for removing nitrate from drinking water. However, problems related to the disposal of spent brine from regeneration of exhausted resins must be overcome so that ion exchange can be applied more widely and economically, especially in small communities. In this background, a combined bio-regeneration and ion-exchange system was operated in order to prove that nitrate-laden resins could be bio-regenerated through direct contact with denitrifying bacteria. A nitrate-selective A520E resin was successfully regenerated by denitrifying bacteria. The bio-regeneration efficiency of nitrate-laden resins increased with the amount of flow passed through the ion-exchange column. When the fully exhausted resin was bio-regenerated for 5 days at the flowrate of 30 BV/hr and MLSS concentration of $125{\pm}25mg/L$, 97.5% of ion-exchange capacity was recovered. Measurement of nitrate concentrations in the column effluents also revealed that less than 5% of nitrate was eluted from the resin during 5 days of bio-regeneration. This result indicates that the main mechanism of bio-regeneration is the direct reduction of nitrate by denitrifying bacteria on the resin.

흄드 실리카가 영가철에 의한 질산성질소 환원에 미치는 영향 (The Effect of Fumed Silica on Nitrate Reduction by Zero-valent Iron)

  • 조동완;전병훈;김용제;송호철
    • 대한환경공학회지
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    • 제32권6호
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    • pp.599-608
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    • 2010
  • 다양한 반응조에서 흄드 실리카(silica(fumed))가 질산성질소 처리를 위한 영가철 공정에 미치는 영향을 알아보기 위한 회분실험(batch experiment)을 수행하였다. 반응조는 질산성질소만 주입한 경우, 질산성질소와 지하수 환경에 존재하는 이온들을 주입한 경우, 실제 질산성질소로 오염된 지하수로 구성하였다. 지하수 환경을 가진 반응조에서 질산성질소 환원 속도가 빠르게 진행되었으며, 영가철/흄드 실리카 공정이 영가철 단독 공정에 비해 약 2.5 배의 반응 상수값($k_{obs}$)을 나타냈다. 전반적으로 주요 부산물인 암모늄은 영가철 단독 공정에서 약 70% 환원율로 발생하였으며, 영가철/흄드 실리카 공정의 경우에는 암모늄 발생율이 저감되었다. 수중 pH 는 영가철이 산화되면서 pH 가 상승하였으며, 지하수 환경에서는 상대적으로 낮게 유지되었다. 모든 반응조에서 영가철/흄드 실리카 공정의 pH 가 낮게 유지되었으며, 지하수 환경에서 질산성질소가 고농도로 존재할 경우에는 저농도에 비해 pH 상승폭이 큰 것으로 나타났다. 또한 등온흡착실험을 수행한 결과, 흄드 실리카가 암모늄에 대한 흡착능을 보였다. 전반적인 결과들을 통해 흄드 실리카가 질산성질소를 처리하는 영가철 공정에 유용한 매질임을 확인하였다.

히드라진과 질산니켈-아연과의 반응에서 얻은 활성화시킨 촉매를 이용한 방향족 니트로화합물의 환원 (Reduction of Nitroarenes with Hydrazine Monohydrate by Activated Nickel Nitrate-Zinc Catalyst)

  • 윤태호;표상현;박문규;한병희
    • 대한화학회지
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    • 제38권5호
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    • pp.397-403
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    • 1994
  • 질산니켈과 아연을 에탄올 용매하에서 환류반응시켜 얻은 활성화시킨 촉매는 히드라진 존재하에서 방향족 니트로화합물을 주로 아족시 화합물로 환원시켜 주었다. 그러나 질산니켈 대신 염화니켈을 사용하여 얻은 촉매는 같은 조건하에서 단지 방향족 아민만을 얻을 수 있었다. 활성화시키지 않고, 방향족 니트로화합물, 염화니켈이나 질산니켈, 아연 그리고 히드라진 혼합물을 환류반응 시킬 때는 낮은 수율의 아조, 아족시와 아민 화합물을 얻을 수 있었다.

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논과 갯벌에서 톨루엔의 혐기성 생분해에 미치는 전자수용체의 영향 (Effect of Electron Acceptor on Anaerobic Toluene Biodegradation in Rice Field and Tidal Mud Flat)

  • 조경숙
    • 한국미생물·생명공학회지
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    • 제31권2호
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    • pp.197-200
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    • 2003
  • In oil-contaminated environments, anaerobic biodegradation of toluene depended on the concentration and distribution of terminal electron acceptor as well as the physicochemical properties such as DO concentration, redox potential and pH. This study showed the anaerobic biodegradation of toluene in two different soils by using nitrate reduction, ferric iron reduction, sulfate reduction and methanogensis. Toluene degradation rates in the soil samples taken from rice filed and tidal mud flat by nitrate reduction were higher than those by other processes. Tho soil samples from the two fields were enriched for 130 days by providing toluene as a sole carbon source and nitrate or sulfate as a terminal electron acceptor. The toluene degradation rates in the enriched denitrifying consortia obtained from the rice field and tidal mud flat soil were 310.7 and 200.6 $\mu$mol$ L^{-1}$ / $d^{-1}$, respectively. The toluene (legradation rates in the enriched sulfate-reducing consortia from the fields ranged fi-om 149.1 to 86.1$\mu$mol $L^{-1}$ / $d^{-1}$ .

The pH as a Control Parameter for Oxidation-Reduction Potential on the Denitrification by Ochrobactrum anthropi SY 509

  • Kim, Sung-Hong;Song, Seung-Hoon;Yoo, Young-Je
    • Journal of Microbiology and Biotechnology
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    • 제14권3호
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    • pp.639-642
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    • 2004
  • The pH as a control parameter for oxidation-reduction potential (ORP) was investigated through the denitrification by Ochrobactrum anthropi SY509 under non-growing condition. The optimal pH of nitrate reductase was 7.0, and the minimal ORP level was -250 mV for the denitrification under aerobic condition. In the case of anaerobic condition, the optimal pHs of nitrate and nitrite reductase were shifted to 10.0 and 9.0, respectively, and the minimal ORP levels of nitrate and nitrite reductase were decreased to -370 mV and -340mV, respectively. In the case of alkaline pH and anaerobic condition, the denitrification efficiency of nitrate was increased up to about 2-fold over that of neutral pH and anaerobic condition. Therefore, the combined control of pH and ORP in the anaerobic condition is shown to be an important parameter in the biological denitrification process.