• 제목/요약/키워드: Ammonia nitrogen

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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.

질화세균군이 고정화된 PVP(Polyvinyl Alcohol) bead 제조 및 암모니아성 질소 제거 (Preparation of Nitrifier Immobilized PVA(Polyvinyl Alcohol) Bead and Removal of Ammonia Nitrogen)

  • 서근학;조진구
    • 한국환경과학회지
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    • 제10권3호
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    • pp.233-237
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    • 2001
  • Immobilized nitrifier bead in airlift bioreactor were used to remove high levels of ammonia nitrogen from synthetic wastewater. Polyvinylalcohol(PVA) bead for immmobilization of nitrifier consortium were prepared by PVA-boric acid method by varying concentration of PVA and nitrifier consortium. By determining viscosity, sphercity and tailing, the characteristics of prepared beads were investigated and the continous immobilization process was developed. Synthetic wastewater containg 25g/$\textrm{m}^3$ of ammonia nitrogen could be treated within 0.5 hour and the highest removal rate of ammonia nitrogen was 934.2g/$\textrm{m}^3{\cdot}$ day.

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완두잎의 광호흡에 미치는 무기질소의 영향 (Effect of Inorganic Nitrogen on Photorespiration of Pea Leaves)

  • 이인철
    • Journal of Plant Biology
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    • 제27권4호
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    • pp.253-261
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    • 1984
  • Leaf discs isolated from the pea seedling grown in nutrient solution containing 5mM ammonia or nitrate exhibited a half level of photorespiration as compared with the nitrogen free control. The manifestation of the ammonia effect appeared somewhat earlier than that of nitrate effect, but this difference subsided as the culture periods was extended. The total amount of ${CO}_2$ fixed by leaves from nitrogen-supplemented seedlings showed approximately 1.5 fold increase over the control with the ammonia effect being manifested earlier than the nitrate effect. The activities of peroxisomal serine: glyoxylate aminotransferase were always higher with ammonia than nitrate, the two types of nitrogen source, however, had similar effect on conversion rate of glyoxylate into glycine. These results indicate that exogenous ammonia does not act directly as an effector of this aminotransferase in vivo. But changes in the level of the pool size of glycine and serine, both of which are the intermediates of photorespiratory process, suggest that exogenous ammonia inhibit the transformation of serine from glycine metabolically.

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고농도 암모니아성 질소를 함유한 프로피온산의 혐기성 분해시 오염물질 및 미생물 거동 (Behaviors of Pollutants and Microorganisms in an Anaerobic Digestion of Propionate Containing High Ammonia Nitrogen Level)

  • 이채영;김대성;안원식;신항식
    • 유기물자원화
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    • 제14권3호
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    • pp.126-137
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    • 2006
  • 고농도 암모니아성 질소를 함유한 프로피온산의 처리시 유기물과 입상슬러지의 거동을 평가하기 위하여 12개월간 상향류 혐기성 슬러지 블랭킷 (UASB) 반응조를 운전하였다. UASB 반응조의 경우 암모니아성 질소 농도 6000mg-N/L까지는 80%의 COD 제거가 가능하였다. 암모니아성 질소 농도를 고농도로 유지하는 경우 유출수의 프로피온산의 농도는 증가하였으나 초산 농도는 상대적으로 매우 낮게 유지되었다. 암모니아성 질소 농도 8000mg-N/L에서는 낮은 메탄 발생량에도 불구하고 유출수의 휘발성 현탁 고형물 농도가 증가하였으며, 이는 입상슬러지의 체외고분자 물질의 감소에 기인하는 것으로 판단된다. 개미산, 초산 및 프로피온산을 기질로 이용한 비메탄 활성도는 암모니아성 질소 농도 증가에 따라 감소하는 경향을 보였다. 일반화된 비선형 모델을 이용하여 산정한 동력학적 상수값은 개미산, 초산 및 프로피온산을 기질로 사용한 경우 각각 3.279, 0.999 및 0.609로 나타났다. 비메탄 활성도에 50% 저해를 미치는 암모니아성 질소 농도는 개미산, 초산 및 프로피온산을 기질로 이용한 경우 각각 2666, 4778 및 5572mg-N/L로 나타나 수소 이용 메탄균의 저해가 가장 큰 것으로 나타났다. 입상슬러지는 대나무 모양(bamboo-shape form)의 methanothrix 형태의 미생물이 주종을 이루고 있으며, hydrogen-producing acetogens와 hydrogen-consuming methanogens이 존재하는 것으로 나타났다.

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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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기체투과막을 이용한 암모니아성 질소 회수방안 (Recovery of Ammonia Nitrogen using Gas-permeable Membranes)

  • 이상훈;채상엽
    • 멤브레인
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    • 제32권3호
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    • pp.191-197
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    • 2022
  • 기체투과막 기술을 이용하여 가축분뇨 폐기물 등으로부터 암모니아성 질소를 효과적으로 회수할 수 있다. 이는 폐기물 내 암모니아 기체가 폐기물에 함침된 기체투과막의 미세공극을 투과하여 막반대편에 도달하게 된다. 투과된 암모니아 기체분자는 막 반대편에 존재하는 용액 내 황산 등 산에 의해 포획 및 회수된다. 막 유입부 내 암모니아성 질소 제거 효과를 높이기 위해서는 우선 유입 폐기물 내 pH를 높게 유지해야 하는데 pH 상승에 필요한 염기성 약품 투입비용이 문제가 될 수 있다. 기존 연구에서는 보다 저렴한 소석회 투입하거나 폭기 혹은 질산화억제를 통해 높은 pH를 효과적으로 유지시키는 방안이 거론되고 있다. 한편 암모니아성 질소 회수에 쓰이는 기체투과막의 재질은 적절한 내열성이나 내화학성 이외에도 소수성을 띈다는 특징이 있으며 이를 통해 막기공을 통해 암모니아 기체를 선택적으로 투과시킬 수 있다. 향후 연구에서는 다양한 성상을 가진 현장 폐기물을 이용하여 실증 Test를 수행하고 이를 기반으로 최적 설계/운전 조건 규명 및 경제성 제고 방안을 수립하여야 한다.

소량의 질소를 포함한 천연가스 수증기 개질 반응에서 GHSV 변화에 따른 암모니아 생성 반응에 관한 연구 (A Study on Ammonia Formation with Nitrogen Impurity at a Natural Gas Steam Reforming Catalytic Process)

  • 김철민;박상현;이주한;이상용
    • 한국수소및신에너지학회논문집
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    • 제30권6호
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    • pp.601-607
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    • 2019
  • Ammonia would be formed in natural gas containing small amount of nitrogen reforming process in the process natural gas, which might damage the Pt catalyst and Prox catalyst. In the article, the effect of nitrogen contents on the formation of ammonia in the reforming process has been studied. In the experiments, Ru based and Ni based catalysts were used and the concentration of ammonia in the reformate gas at various gas hourly space velocity was measured. Experimental result shows that relatively higher ammonia concentration was measured with Ru based catalyst than with Ni based catalyst. It also shows that the concentration of ammonia increased rapidly after most of the methane converted into hydrogen. Based on the experimental results to reduce ammonia concentration it might be better to finish methane conversion at the exit position of the reforming reactor to minimize the contact time of catalyst and nitrogen with high concentration of hydrogen.

Paramecium bursaria와 공생하는 Chlorella와 Chlorella ellipsoidea의 질소대사에 관한 비교연구 (A Comparative Study on the Nitrogen Metabolism of Symbiotic Chlorella from Paramecium bursaria with Chlorella ellipsoidea)

  • 장남기
    • Journal of Plant Biology
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    • 제29권3호
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    • pp.145-156
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    • 1986
  • The excretion of ammonia and glutamine synthetase activities were measured in aposymbiotic Paramecium and symbiotic Paramecium. The uptake of nitrate and ammonia, and specific enzyme activities of nitrate reductase, glutamate dehydrogenase and glutamine synthetase were investigated in symbiotic Chlorella from Paramecium bursaria and Chlorella ellipsoidea. The ammonia concentration in the culture media of aposymbiotic Paramecium was increased according to the growth of the Paramecium but it was not changed in symbiotic Paramecium. Nitrate, the major nitrogen source, was taken up at a rate of 0.635 nmol/ 106 Chlorella/hr in Chlorella ellipsoidea. Most of ammonia was assimilated to glutamine by glutamine synthetase, of which acitivty was 1,467 $\mu$mol/mg protein/min in Chlorella elliposidea. Contrary to Chlorella ellipsoidea, ammonia and glutamine transported from the Paramecium were the nitrogen source of symbiotic Chlorella and ammonia was taken up at a rate of 3.854 nmo./106 Chlorella/hr into synmbiotic Chlorella. Most of ammonia were assimilated to glutamate by glutamate dehydrogenase in symbiotic Chlorella. The glutamate dehydrogenase (GDH/NADH) activity was 0.851 $\mu$mol/mg protein/min.

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퇴비화 공정의 1차 발효단계에서 질소성 물질의 거동 평가 (An Assessment on the Behavior of Nitrogenous Materials during the First High-rate Phase in Composting Process)

  • 정연구;김진수
    • 유기물자원화
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    • 제8권3호
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    • pp.81-88
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    • 2000
  • 음식쓰레기, 슬러지 등과 같이 C/N비가 낮은 폐기물을 호기성으로 퇴비화하는 경우 질소 성분이 많이 손실될 수 있으며, 이는 비료성분의 손실, 악취를 비롯한 환경오염 발생 등을 유발할 수 있다. 본 연구에서는 퇴비화 공정에서 질소성 물질의 보존방법을 도출하기 위한 기초 연구로 음식쓰레기를 실험실 규모로 퇴비화하면서 일반적인 호기성 퇴비화 공정에서 일어나는 질소의 거동을 분석하였다. 음식쓰레기는 종이나 나무조각과 혼합하여 퇴비화하였으며, 질소성 물질의 거동을 평가하기 위해 퇴비시료에 포함된 암모니아, 산화성 질소, 유기성 질소를 측정하였다. 배가스로 손실되는 질소도 황산으로 흡수시켜 정량하였다. 퇴비화 반응의 활성화 여부가 유기성 질소의 무기화에 큰 영향을 미치는 것으로 조사되었다. 활성이 좋은 퇴비를 식종한 경우 반응 초기부터 유기성 질소의 무기화가 활발히 진행되어 많은 양의 질소가 손실된 반면 초기의 낮은 pH 기간이 길어지면 유기성 질소의 분해가 지연되는 것으로 나타났다. 암모니아 손실량은 주입된 공기량의 영향이 큰 것으로 판단되며, 암모니아 손실이 증가하면 퇴비의 암모니아 함량이 크게 감소하였다. 질소에 대한 물질수지 분석을 통하여 초기 질소의 28~38%가 암모니아로 전환되었으며, 전환된 암모니아의 77~94%가 가스로 손실된 것으로 나타났다.

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질소비료의 심층시비에 의한 논과 밭 토양의 암모니아 배출 억제 효과 (Reducing the Effect of Ammonia Emissions from Paddy and Upland Soil with Deep Placement of Nitrogen Fertilizers)

  • 홍성창;김민욱;김진호
    • 한국환경농학회지
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    • 제41권4호
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    • pp.230-235
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    • 2022
  • BACKGROUND: Ammonia gas emitted from nitrogen fertilizers applied in agricultural land is an environmental pollutant that catalyzes the formation of fine particulate matter (PM2.5). A significant portion (12-18%) of nitrogen fertilizer input for crop cultivation is emitted to the atmosphere as ammonia gas, a loss form of nitrogen fertilizer in agricultural land. The widely practiced method for fertilizer use in agricultural fields involves spraying the fertilizers on the surface of farmlands and mixing those with the soils through such means as rotary work. To test the potential reduction of ammonia emission by nitrogen fertilizers from the soil surface, we have added N, P, and K at 2 g each to the glass greenhouse soil, and the ammonia emission was analyzed. METHODS AND RESULTS: The treatment consisted of non-fertilization, surface spray (conventional fertilization), and soil depth spray at 10, 15, 20, 25, and 30 cm. Ammonia was collected using a self-manufactured vertical wind tunnel chamber, and it was quantified by the indophenol-blue method. As a result of analyzing ammonia emission after fertilizer treatments by soil depth, ammonia was emitted by the surface spray treatment immediately after spraying the fertilizer in the paddy soil, with no ammonia emission occurring at a soil depth of 10 cm to 30 cm. In the upland soil, ammonia was emitted by the surface spray treatment after 2 days of treatment, and there was no ammonia emission at a soil depth of 15 cm to 30 cm. Lettuce and Chinese cabbage treated with fertilizer at depths of 20 cm and 30 cm showed increases of fresh weight and nutrient and potassium contents. CONCLUSION(S): In conclusion, rather than the current fertilization method of spraying and mixing the fertilizers on the soil surface, deep placement of the nitrogen fertilizer in the soil at 10 cm or more in paddy fields and 15 cm or more in upland fields was considered as a better fertilization method to reduce ammonia emission.