• 제목/요약/키워드: Nitrate reducing

검색결과 140건 처리시간 0.027초

슬러지 식종에 따른 디젤연료에 오염된 토양내 n-alkane 및 isoprenoid의 변화

  • 이태호;박현철;최선열;박태주
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 총회 및 춘계학술발표회
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    • pp.131-134
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    • 2004
  • Several physical and chemical methods have been used for remediation contaminated by oils. However the cost was very high and secondary pollution rose during treating. The purpose of this study was to comprision TPH (total petroleum hydrocarbon) removal from artificially contaminated soil by diesel with and without seeding anaerobic digested sludge. After 120 days of overall at 35$^{\circ}C$, removal efficiency of TPH with seeding sludge was 2-3 times higher than blank. Also, the more amount seeding sludge, TPH removal efficiency and CH$_4$ content more obtained. It was sad that seeding of anaerobic digested sludge was a good method for enhancing TPH removal efficiency without increasing operating cost. Sulfate, nitrate-reducing, methanogenic condition were evaluated for alkane, isoprenoid as target contaminated soil.

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2가철 시멘트 수화물에 의한 질산성 질소의 제거 (Removal of Nitrate by Ferrous Cement Hydrates)

  • 강완협;박태숙;박주양
    • 상하수도학회지
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    • 제19권1호
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    • pp.53-60
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    • 2005
  • Ferrous cement hydrates made from hydrating Portland cement doped with Fe (II) were reported to reductively dechlorinate chlorinated organics and to reduce Cr (VI) to Cr (III). In this study, kinetics of nitrate removal by ferrous cement hydrates were investigated. Nitrate removal kinetics were characterized by experimental variables such as cement hydration, amount of cement addition, Fe (II) dose, pH, and byproducts. As a result, hydrated cement showed better performances than non-hydrated cement due to the formation of LDH (layered double hydroxide). Doping of Fe (II) into the cement was found to improve removal efficiency at high pHs by association with Fe (II) sorbed on cement hydrates as a reactive reductant. Reduction of nitrate produced ammonium as a major product, which accounted for 63.5% of the final products, and nitrite (0.15%) as a minor product. These results indicate that the developed media are effective as sorbent/reducing agents in the nitrate removal and the reaction mechanisms of nitrate removal are sorption and reduction.

협심증 환자의 나이트레이트 정맥투여 시 두통완화를 위한 밸런스테이핑요법의 효과 (The effects of Balance Taping Therapy on Reducing Headache in Patients with Angina Pectoris Undergoing Nitrate IV Therapy)

  • 김경희;권미경;김남선;이규은;정명아;이근연;전은미
    • 임상간호연구
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    • 제19권3호
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    • pp.468-478
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    • 2013
  • Purpose: The purpose of this study was to identify the effects of balancing taping therapy on reducing headache in patients with angina pectoris undergoing nitrate IV therapy. Methods: A non-equivalent control group non-synchronized design was used. A total of 50 patients with angina pectoris undergoing nitrate therapy at G hospital participated in the study. For measuring pain intensity, the Visual Analogy Scale (VAS) and Non-Verbal Pain Behavior Scale were used. Data were analyzed using SPSS 19.0 program. Results: No significant differences were observed between the experimental and control groups in pain intensity. However, the number of times of analgesics of experimental group was significantly lower than those of control group. Conclusion: Balance taping can be effective in pain for patients undergoing nitrate IV therapy. Therefore, utilizing the balance taping can be useful method to reduce headache in patients with angina pectoris during the IV therapy of nitrate.

Ammonium and Nitrate Uptake and Utilization Efficiency of Rice varieties as Affected by Different N-Concentrations

  • Choi Kyung-Jin;Swiader John M.
    • 한국작물학회지
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    • 제50권1호
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    • pp.22-27
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    • 2005
  • To find out the optimum mixture ratio of ammonium and nitrate on rice plant, 4 rice varieties were examined during 14days after transplanting in hydroponics with the different ratio of ammonium to nitrate(100 : 0, 75: 25,50: 50, 25: 75 and 0: 100). The highest N uptake from solution and the maximum plant dry weight were $60\~70\%$ ammonium and $30\~40\%$ nitrate mixture treatment both in Japonica and Tongil type rice plants. And with the same varieties N-uptake and N use-efficiency were compared between 10.0 mM and 1.0 mM nitrogen using $70\%$ ammonium and $30\%$ nitrate for 24 days after transplanting. Rice plants absorbed more nitrogen$(131\~145\%)$ in 10.0mM than 1.0mM treatment but accumulated N in rice plants were almost the same in both treatment. Among the tested rice cultivars, dry matter production and total accumulative nitrogen in rice plants were much high in Tongil type than japonica type rice cultivars. N-recovery ratios of rice plants from uptake N were $90.8-99.0\%$ in low concentration N solution(1.0 mM), but $69.4-81.7\%$ were observed in high concentration N solution(10.0 mM). It means that suppling low concentration N steadily will be better to prevent loss of N without reducing of growth in rice plants.

Abundance of Veillonella spp. does not Reflect Salivary Nitrite Production after Nitrate Ingestion

  • Mitsui, Takahiro;Ishikawa, Taichi;Harasawa, Ryo;Sasaki, Minoru
    • 한국미생물·생명공학회지
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    • 제48권4호
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    • pp.447-454
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    • 2020
  • Veillonella spp. have been reported to be the most prevalent nitrate-reducing bacterial species in the oral cavity. The purpose of this study was to examine the relationship between the abundance of Veillonella spp. and nitrite production after nitrate ingestion. Bacterial samples were obtained from the tongue surfaces of 50 university students. The predominant Veillonella spp., V. atypica, V. dispar, and V. rogosae were identified and enumerated using real-time polymerase chain reaction (qPCR). Salivary nitrate and nitrite were measured before and 30, 60, and 90 min after ingestion of 100 ml of beetroot juice. Increased nitrite concentrations were observed in all participants, with a mean increase of 0.61 (0.42-1.10) mM expressed as the median (interquartile range). Veillonella atypica was detected in 40 subjects (80%), V. dispar in 48 (96%), and V. rogosae in 48 (96%), at quantities ranging from 1.3 × 102 to 2.8 × 107 CFU/ml per subject. The strengths of the correlations of the log colony forming unit (CFU) values of V. atypica, V. dispar, V. rogosae, and the log CFU value of the three species together with the increase in nitrite levels were 0.091, 0.114, -0.228, and 0.060, respectively, none of which were significant (p > 0.05). Our results indicate that the abundance of Veillonella spp. is not related to salivary nitrite production after nitrate ingestion.

Effect of Encapsulating Nitrate in Sesame Gum on In vitro Rumen Fermentation Parameters

  • Mamvura, Chiedza Isabel;Cho, Sangbuem;Mbiriri, David Tinotenda;Lee, Hong-Gu;Choi, Nag-Jin
    • Asian-Australasian Journal of Animal Sciences
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    • 제27권11호
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    • pp.1577-1583
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    • 2014
  • Encapsulation is a method used to protect material from certain undesirable environments, for controlled release at a more favorable time and place. Animal productivity would be enhanced if feed additives are delivered to be utilized at their site of action, bypassing the rumen where they are likely to be degraded by microbial action. A novel method of encapsulation with sesame gum was used to coat nitrate, a known enteric methane mitigating agent, and tested for the effect on methane reduction and other in vitro fermentation parameters using rumen fluid from cannulated Hanwoo steers. Orchard grass was used as basal diet for fermentation. The treatments were matrix (1.1 g sesame gum+0.4 g sesame oil cake) only, encapsulated nitrate (matrix+nitrate [21 mM]), free nitrate (21 mM), and a control that contained no additive. Analyses of fermentation parameters were done at 0, 3, 6, 9, 12, 24, and 48 h time periods. In comparison to control, both free and encapsulated nitrate produced significantly reduced (p<0.01) methane (76% less) and also the total volatile fatty acids were reduced. A significantly higher (p<0.01) concentration of ammonia nitrogen was obtained with the encapsulated nitrate treatment (44%) compared to the free form (28%) and matrix only (20%) (p = 0.014). This might suggest slow release of encapsulated nitrate so that it is fully reduced to ammonia. Thus, this pioneering study found a significant reduction in methane production following the use of sesame gum encapsulated nitrate that shows the potential of a controlled release system in enhancing sustainability of ruminant production while reducing/eliminating the risk of nitrite toxicity.

전기화학적공정에서 질산성질소 제거효율 향상에 관한 연구 (Study on the Improvement of Nitrate Removal Efficiency in Multi-Step Electro-chemical Process)

  • 심주현;강세한;서형준
    • 대한환경공학회지
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    • 제30권2호
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    • pp.155-160
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    • 2008
  • 본 연구에서는 다단계 전기화학적 반응기를 이용하여 환원제의 투입, 전극의 종류, 수리학적 체류시간(HRT : Hydraulic Retention Time) 및 전류밀도 변화에 따른 질산성질소의 제거효율을 살펴보았다. 실험결과, 환원제 투입은 질산성질소 제거효율을 증가시켰으며 에너지투입량은 감소시켰다. 전극종류를 변화시켰을 경우, 질산성질소 제거효율 및 전류효율의 차이는 거의 없었으나 Zn 환원제의 회수를 위해 B-type(1단 : Pt-Zn, 2단 : Pt-Zn, 3단 : Pt-Zn, 4단 : Pt-Zn)을 선정하였다. 수리학적 체류시간 변화실험에서는 수리학적 체류시간과 무관하게 동일전류밀도를 공급한 실험과 수리학적 체류시간 변화에 따른 전류밀도 변화 실험 즉, 단위부피당 동일 전류량 공급 실험을 진행하였다. 실험 결과, 수리학적 체류시간과 전류밀도 변화에 의해 농도분극현상과 적용전류량의 부족현상이 발생하게 된다. 즉 수리학적 체류시간이 감소할수록 농도분극현상은 감소하지만 단위 부피당 적용전류량이 부족하게 된다. 따라서 수리학적 체류시간과 전류밀도 실험을 통해 적절한 운전조건을 도출할 수 있으며, 내부 스페이서의 설치로 확산을 증가시킬 경우 질소제거효율 및 에너지효율이 증가될 수 있을 것으로 예상된다.

이화형비산염환원균의 특성 (Characteristics of Dissimilatory Arsenate-reducing Bacteria)

  • 장용철;다까미자와 카즈히로;조훈;키쿠치 신타로
    • KSBB Journal
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    • 제27권2호
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    • pp.75-85
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    • 2012
  • Although, microbial arsenic mobilization by dissimilatory arsenate-reducing bacteria (DARB) and the practical use to the removal technology of arsenic from contaminated soil are expected, most previous research mainly has been focused on the geochemical circulation of arsenic. Therefore, in this review we summarized the previously reported DARB to grasp the characteristic for bioremediation of arsenic. Evidence of microbial growth on arsenate is presented based on isolate analyses, after which a summary of the physiology of the following arsenate-respiring bacteria is provided: Chrysiogenes arsenatis strain BAL-$1^T$, Sulfurospirillum barnesii, Desulfotomaculum strain Ben-RB, Desulfotomaculum auripigmentum strains OREX-4, GFAJ-1, Bacillus sp., Desulfitobacterium hafniense DCB-$2^T$, strain SES-3, Citrobacter sp. (TSA-1 and NC-1), Sulfurospirillum arsenophilum sp. nov., Shewanella sp., Chrysiogenes arsenatis BAL-$1^T$, Deferribacter desulfuricans. Among the DARB, Citrobacter sp. NC-1 is superior to other dissimilatory arsenate-reducing bacteria with respect to arsenate reduction, particularly at high concentrations as high as 60 mM. A gram-negative anaerobic bacterium, Citrobacter sp. NC-1, which was isolated from arsenic contaminated soil, can grow on glucose as an electron donor and arsenate as an electron acceptor. Strain NC-1 rapidly reduced arsenate at 5 mM to arsenite with concomitant cell growth, indicating that arsenate can act as the terminal electron acceptor for anaerobic respiration (dissimilatory arsenate reduction). To characterize the reductase systems in strain NC-1, arsenate and nitrate reduction activities were investigated with washed-cell suspensions and crude cell extracts from cells grown on arsenate or nitrate. These reductase activities were induced individually by the two electron acceptors. Tungstate, which is a typical inhibitory antagonist of molybdenum containing dissimilatory reductases, strongly inhibited the reduction of arsenate and nitrate in anaerobic growth cultures. These results suggest that strain NC-1 catalyzes the reduction of arsenate and nitrate by distinct terminal reductases containing a molybdenum cofactor. This may be advantageous during bioremediation processes where both contaminants are present. Moreover, a brief explanation of arsenic extraction from a model soil artificially contaminated with As (V) using a novel DARB (Citrobacter sp. NC-1) is given in this article. We conclude with a discussion of the importance of microbial arsenate reduction in the environment. The successful application and use of DARB should facilitate the effective bioremediation of arsenic contaminated sites.

Analysis of a Microbial Community Denitrying Nitrate to Nitrogen Gas in a Nitrate-Contaminated Aquifer

  • Jin-Hun, Kim;Bong-Ho, Son;Su-Yeol, Gwon;Seong-Uk, Eo;Yeong, Kim
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 임시총회 및 추계학술발표회
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    • pp.175-178
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    • 2004
  • Little study has been published specifically addressing the dynamics of nitrate reducing bacteria (NBR) during the bioremediation of nitrate-contaminated aquifer. In our previous study we successfully quantified fumarate-enhanced microbial nitrate reduction rate in a nitrate-contaminated aquifer by using a series of single-well push-pull tests (PPTs). In this study we analyzed the suspended population during PPTs. To monitor changes in the microbial community, PCR amplification of 16S rDNA genes and denaturing gradient gel electrophoresis (DGGE) were used to study the dynamics of the bacterial community in detail. Before the stimulation of NBR, the dominant DGGE bands obtained by PCR were affiliated with V-Proteobacteria consisting of Acinetobacter spp. and Pseudomonas fluorescens. However, as NBR biostimulation proceeded, the dominant patterns of DGGE bands changed, and they were affiliated with Azoarcus denitrificans Td-3 and Flavobacterium xanthum. Azoarcus denitrificans Td-3 is known to completely reduce nitrate to nitrogen gas. The series of single-well push-pull tests in this study should prove useful for conducting rapid, low-cost feasibility assessments for in situ denitrification and provide important information about which microorganisms play a key role in bioremediation of a nitrate contaminated aquifer.

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RO 농축폐액의 처리를 위한 이온교환수지의 생물재생 (Bio-regeneration of Ion-exchange Resin for Treating Reverse Osmosis Concentrate)

  • 배병욱;남윤우
    • 한국물환경학회지
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    • 제30권5호
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    • pp.517-523
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    • 2014
  • In order to remove both nitrate and sulfate present in the concentrate of RO(reverse osmosis) process, a combined bio-regeneration and ion-exchange(IX) system was studied. For this purpose, both denitrifying bacteria(DNB) and sulfate reducing bacteria(SRB) were simultaneously cultivated in a bio-reactor under anaerobic conditions. When the IX column containing a nitrate-selective A520E resin was fully exhausted by nitrate and sulfate, the IX column was bio-regenerated by pumping the supernatant of the bio-reactor, which contains MLSS concentration of $125{\pm}25mg/L$, at the flowrate of 360 BV/hr. Even though the nitrate-selective A520E resin was used, the breakthrough curves of ionic species showed that sulfate was exhausted earlier than nitrate. The reason for this result is due to the fact that the concentration of sulfate in RO concentrate was 36 to 48 times higher than nitrate. The bio-reactor was successfully operated at a volumetric loading rate of 0.6 g $COD/l{\cdot}d$, nitrate-N loading rate of 0.13 g $NO_3{^-}-N/l{\cdot}d$, and sulfate loading rate of 0.08 g $SO_4{^{2-}}/l{\cdot}d$. The removal rate of SCOD, nitrate-N, sulfate was 90, 100, and 85%, respectively. When the virgin resin was fully exhausted and consecutively bio-regenerated for 2 days, 81% of nitrate and 93% of sulfate were reduced. When the virgin resin was repeatedly used up to 4 cycles of service and bio-regeneration, the ion-exchange capacity of bio-regenerated resin decreased to 95, 91, 88, and 81% of virgin resin.