• 제목/요약/키워드: Ammonia emission characteristic

검색결과 10건 처리시간 0.024초

양돈 슬러리의 암모니아 발생 특성에 관한 연구 (Study on Ammonia Emission Characteristic of Pig Slurry)

  • 이성현;윤남규;김경원;이인복;김태일;장진택
    • 한국축산시설환경학회지
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    • 제12권1호
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    • pp.7-12
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    • 2006
  • 본 연구에서는 육성 비육돈 슬러리를 이용하여 슬러리의 환경조건에 따라 슬러리로 부터의 암모니아 발생 특성을 분석코자 하였다. 슬러리의 온도와 pH를 조절하여 슬러리로부터 발생하는 암모니아 농도를 측정 분석한 결과 슬러리의 온도가 높을수록 슬러리로 부터 발생하는 암모니아 농도는 급격히 증가하는 것으로 나타났고, 슬러리의 pH를 5, 6, 7, 8의 4수준으로 조절하여 각각의 온도에 따라 발생하는 암모니아 농도를 측정한 결과 pH 5, 6에서는 암모니아 가스가 검출되지 않았으나 pH 7, 8에서는 많은 양의 암모니아 가스가 검출되었고 양돈 슬러리의 pH가 높을수록 발생하는 암모니아 가스가 많이 발생하는 것으로 분석되었다. 본 연구결과 슬러리의 온도를 낮추어 주거나 슬러리의 pH를 낮춤으로써 슬러리로부터 발생하는 악취가스를 크게 줄일 수 있을 것으로 판단되었다.

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10 kW 급 암모니아-수소 혼소엔진을 위한 암모니아 개질 촉매 및 반응기 설계에 관한 연구 (A Study on Ammonia Reforming Catalyst and Reactor Design for 10 kW Class Ammonia-Hydrogen Dual-Fuel Engine)

  • 이상호;최영;박철웅;김홍석;이영덕;김영상
    • 한국수소및신에너지학회논문집
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    • 제31권4호
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    • pp.372-379
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    • 2020
  • Ammonia-hydrogen dual-fuel engine is a way to reduce greenhouse gas emission because ammonia and hydrogen are carbon-free fuels. In ammonia-hydrogen dual-fuel engine, hydrogen is supplied to improve the combustion characteristic of ammonia. In this study, an ammonia reformer was developed to supply hydrogen for 10 kW class ammonia-hydrogen dual-fuel engine. Thermodynamic characteristic and catalyst were investigated for ammonia reforming. Heat transfer was important for high ammonia conversion of ammonia reformer. 99% of ammonia conversion was obtained when 10 LPM of ammonia and 610℃ of hot gas were supplied to the ammonia reformer.

Emission characteristic of ammonia in cement mortars using different sand from area of production

  • Jang, Hongseok;So, Hyoungseok;So, Seungyoung
    • Environmental Engineering Research
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    • 제21권3호
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    • pp.241-246
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    • 2016
  • This paper discusses the influence of organic matter contained in aggregate on the emission characteristic of ammonia ($NH_3$) from cement mortar. $NH_3$ can be released to indoor-outdoor environment through diffusion in mortar (or concrete) and have resulted in the increasing air pollution, and especially well known as a harmful gas for the human body. The concentration of $NH_3$ released from cement concrete was then compared to the contents of organic matter contained in the aggregate. The result indicates that the contents of organic matter in the aggregate significantly differ with types of aggregate from different areas of production. The organic matter becomes organic nitrogen through the process of microbial breakdown for a certain period and pure ammonium ion ($NH_4{^+}$) is produced from the organic nitrogen. The $NH_4{^+}$ was reacted with alkaline elements in the cement and released as $NH_3$ from cement concrete through a volatile process. The released $NH_3$ was proportional to the contents of $NH_4{^+}$ adsorbed in the aggregate from different areas of production and the concentrations of $NH_3$ emission from cement mortar according to the aggregate differ by more than 4 times.

$NH_3$-SCR 반응기 내에서의 $NH_3$/NOx 및 SCR 촉매 온도가 DeNOx 성능에 미치는 영향 (Effect of $NH_3$/NOx ratio and Catalyst Temperature on DeNOx Performance in the $NH_3$-SCR reactor)

  • 홍길화;공호정;황인구;박심수
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회B
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    • pp.3096-3101
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    • 2008
  • Selective Catalytic Reduction (SCR) technology is well-known to be effective for the reduction of NOx emission. So car manufacturers has adopted Ures-SCR system to be satisfied with emission regulation. This paper discusses the effective of $NH_3/NOx$ ratio and SCR catalyst temperature in the $NH_3$-SCR reactor on DeNOx performance. So it is shown the characteristic of NOx conversion and ammonia slip using the $NH_3$ instead of Urea-Solution. From the result of this study, it is found to optimize $NH_3/NOx$ ratio to have the best case of high NOx conversion and low ammonia slip at variable SCR catalyst temperatures. Lastly, it is also found the characteristics of NOx conversion and ammonia slip with compared with Urea.

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Urea 수용액의 배기가스 유동장내 분무 특성과 분무 균일도에 관한 연구 (A Study on the Characteristic and Droplet Uniformity of Spray Injection to Exhaust Gas Flow from Urea Solution Injector)

  • 오정모;차원심;김기범;이진하;이기형
    • 한국자동차공학회논문집
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    • 제19권3호
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    • pp.83-89
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    • 2011
  • Diesel engines can produce higher fuel efficiency and lower $CO_2$ emission, they are subject to ever more stringent emission regulation. However, there are two major emission concerns fo diesel engines like such as particulate matter (PM) and nitrogen oxides (NOx). Moreover, it is not easy to satisfy the regulations on the emission of NOx and PM, which are getting more strengthened. One of the solutions is to apply the new combustion concept using multistage injection such as HCCI and PCCI. The other solution is to apply after-treatment systems. For example, lean NOx trap catalyst, Urea-SCR and others have various advantages and disadvantages Especially, Urea-SCR system have advantages such as a high conversion efficiency and a wide operation conditions. Hence the key factor to implementation of Urea-SCR technology, good mixing of urea(Ammonia) and gas, reducing Ammonia slip. Urea mixer components are required to facilitate evaporation and mixing because the liquid state of urea poses significant barriers for evaporation, and the distance to mixer is the most critical that affect mixer performance. In this study, to find out the distance from injector to mixer and simulation factor, a laser diagnostics and high speed camera are used to analyze urea injector spray characteristics and to present a distribution of urea solution in transparent manifold In addition, Droplet Uniformity Index is calculated from the acquired images by using image processing method to clarify the distribution of spray.

Development of a variable resistance-capacitance model with time delay for urea-SCR system

  • Feng, Tan;Lu, Lin
    • Environmental Engineering Research
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    • 제20권2호
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    • pp.155-161
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    • 2015
  • Experimental research shows that the nitric oxides ($NO_X$) concentration track at the outlet of selective catalytic reduction (SCR) catalyst with a transient variation of Adblue dosage has a time delay and it features a characteristic of resistance-capacitance (RC). The phenomenon brings obstacles to get the simultaneously $NO_X$ expected to be reduced and equi-molar ammonia available to SCR reaction, which finally inhibits $NO_X$ conversion efficiency. Generally, engine loads change frequently, which triggers a rapid changing of Adblue dosage, and it aggravates the air quality that are caused by $NO_X$ emission and ammonia slip. In order to increase the conversion efficiency of $NO_X$ and avoid secondary pollution, the paper gives a comprehensive analysis of the SCR system and tells readers the key factors that affect time delay and RC characteristics. Accordingly, a map of time delay is established and a solution method for time constant and proportional constant is carried out. Finally, the paper accurately describes the input-output state relation of SCR system by using "variable RC model with time delay". The model can be used for a real-time correction of Adblue dosage, which can increase the conversion efficiency of $NO_X$ in SCR system and avoid secondary pollution forming. Obviously, the results of the work discover an avenue for the SCR control strategy.

사료내 Zeolite 첨가가 비육돈의 생산성과 도체특성에 미치는 영향 (Effect of Dietary Zeolite Treated on the Performance and Carcass Characteristics in Finishing Pigs)

  • 김재황;김삼철;고영두
    • Journal of Animal Science and Technology
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    • 제47권4호
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    • pp.555-564
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    • 2005
  • 본 연구는 비육돈에 대한 황토의 주성분인 zeolite의 첨가효과를 구명하기 위하여 증체량, 사료요구율, 육질, 악취제거 및 경제성 등을 조사하였으며 생후 93일령의 비육돈 120두(4처리$\time$3반복$\time$10두)를 공시하여 출하시까지 70일간 사양시험을 실시하였다. 일당증체량은 비육돈 전기의 경우 zeolite 4% 첨가구가 1.00kg으로서 대조구의 0.8kg에 비하여 약 25%로 크게 향상되었다(P<0.05). 그러나 비육돈 후기의 일당 증체량은 대조구(0.78kg)를 포함한 모든 처리구에서 0.74-0.83kg으로서 유의한 차이는 없었다. 사료요구율은 시험 전기간 동안 대조구에서는 3.43으로서 가장 높았으며, 그 다음은 zeolite 1%구와 2%로서 각각 3.24와 3.13이었으며 zeolite 3% 첨가구는 3.00으로서 약 7.4%의 개선효과가 나타났다(P<0.05). 시험 전기간 동안의 $NH_3$ 가스 발생량은 zeolite 4% 첨가구가 대조구에 비하여 약 33.9-53.9%의 개선효과가 나타났다(P<0.05). 도체중과 등지방 두께는 대조구와 zeolite 첨가구 간에 차이가 없었으며, A등급 출현율은 zeolite 4% 첨가구가 60.00%로서 대조구의 36.67%에 비하여 높게 나타났다. 경제성 분석 결과, 증체 kg당 사료비는 zeolite 4% 첨가구는 910원, 2% 첨가구는 919원, 1% 첨가구는 941원 및 대조구는 982원으로서 zeolite를 4% 첨가함으로써 개선효과가 크게 나타났다. 이상의 결과, 비육돈에 대하여 zeolite를 4% 수준으로 첨가․급여하면 사료요구율, 육질 A등급 출현율, 분내 암모니아가스 발생량 및 경제성면에서 효과적인 것으로 사료된다.

광촉매가 첨가된 스코리아/황토 콘크리트의 NOx 제거 특성 (The photo-removal Characteristic of NOx by photocatalyst/scoria/loess concrete)

  • 고성현;이재훈;홍종현;류성필;김문훈;문경종
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계 학술발표회 논문집(II)
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    • pp.593-596
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    • 2006
  • The environment-friendly building material, photocatalyst/scoria/loess concrete, was prepared using scoria and loess (which have merits as building materials) and photocatalyst (which has the functions to compose the environmental contaminants and of self cleaning). In order to apply this material as a building material, the compressive and flexible strengths, and water absorptivity (which have been set by Korea Industrial Standard) were measured. In order to know the environment-friendly characteristics of this material, several tests, such as, the tests of emissivity and emission power of far infrared ray and acoustic absorptivity, antibacterial test for Escherichia coli and Pseudomonas aeruginosa, antifungal test for mixed fungal strains, and deodorization test of ammonia were carried out. Moreover, the removal characteristics of NOx, and formaldehyde (HCHO) by photocatalyst/scoria/loess concrete were examined as the following different parameters: the removal characteristics of these contaminants with the substitution ratio and the kind of photocatalyst, light source, UV intensity of sunlight, relative humidity, intial NOx concentration.

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음식물류폐기물 처리시설에서의 악취발생 특성 및 관리방안 (The Characteristic and Management of Odor Emitted from Foodwaste Treatment Facility)

  • 유승성;김영두;이준연;차영섭;김은숙;전재식;선우영;엄석원;채영주
    • 환경영향평가
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    • 제21권3호
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    • pp.353-365
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    • 2012
  • This study is understanding characteristics and analyzing contributions of the odor causing compounds of complex-odor & major specified odor materials, and contribution analysis, caused pre-treatment facilities(input and storage) and post-treatment facilities(heating and drying). The target of this study is feeds-production-facilities, located in Seoul. The averaged complex-odor compounds on the boundary line is 21 times higher, and it is 15 times higher than emission standards. In cracking&collection(pre-treatment facilities), the concentration of compounds is 4,881 times, 2,080 times in drying, and 1,442 times in putting&storing facilities. Ammonia occupies the largest portion of the results of monitoring specified odor compounds in input&storage facilities, followed Acetaldehyde > Hydrogen sulfide > Methyl mercaptan. In cracking&collection, Ammonia also occupies most of odor compounds, followed Methyl mercaptan > Acetaldehyde > Dimethyl disulfide > Dimethyl sulfide > Hydrogen sulfide. Acetaldehyde > Methyl mercaptan in drying facilities. On the boundary line, however, the concentration of specified odor compounds stays below emission standards. The result of contribution analysis is that methyl mercaptan has the highest contribution in input & storage, as well as cracking&collection facilities, followed Acetaldehyde > Hydrogen sulfide > Dimethyl sulfide > Dimethyl disulfide. In the drying facilities, the contribution shows Methyl mercaptan > Acetaldehyde > i-Valeraldehyde and Butyraldehyde. Therefore, to decrease odor in foodwaste treatment facilities, proper prevention facilities need to be installed and operated, according to characteristics of individual odor compounds, based on monitored data.

박제표본 제작방법에 따른 휘발성유기화합물 방출 특성 연구 (Study on VOCs Emission Characteristic of Taxidermied Mounting Techniques)

  • 오정우;정용재
    • 헤리티지:역사와 과학
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    • 제56권2호
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    • pp.136-146
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    • 2023
  • 박제표본과 같은 생물학적 물질은 다양한 산이나 휘발성물질을 방출할 수 있다. 박제표본에 사용되는 보존제와 제작재료, 제작방법에 따라 발생하는 유기화합물의 방출 특성에 관한 연구는 전무한 실정이다. 따라서, 박제표본에서 발생하는 유기화합물을 알아보기 위해 재료별 표본, 수장고 표본을 대상으로 열화 실험하였다. 오계를 대상으로 나프탈렌과 붕사를 보존제로 사용하고, 대패톱밥, 신문지, 폴리스틸렌폼을 몸심재료로 사용하여 제작한 표본과, 동물수장고에서 수장하고 있던 오계 박제표본(2015년도)을 고온환경(50℃)과 고습환경(95%)에 각각 2주간 열화 실험하였다. 박제표본의 열화 실험결과 고습환경보다 고온환경에서 발생하는 유기화합물의 농도가 더 높은 경향을 보였다. 보존제로는 나프탈렌을 사용한 표본에서 벤젠, 톨루엔, 자일렌과 p-디클로로벤젠이 검출되어 나프탈렌이 주요 유기화합물을 방출하는 요인인 것을 확인할 수 있었고, 대패톱밥, 신문지, 폴리스틸렌폼을 사용한 표본에서도 유기화합물이 검출되 재료의 열화로 인한 것으로 보인다. 또한, 재료별 표본에서 암모니아가 검출되었는데 부패가 진행되어 검출된 것으로 보이며, 특히 고온열화에서 붕사를 사용한 표본이 나프탈렌을 사용한 표본보다 암모니아가 약 9배 높게 측정되었다. 이는 고온환경이 나프탈렌의 승화성을 가속시켜 살충·방충효과로 생물학적 피해를 예방한 결과라 판단된다. 나프탈렌은 발암 가능성 물질로 보존제로 사용할 경우 적정 사용관리가 필요하며, 박제표본은 제작기법에 따라 다양한 유기화합물이 방출할 수 있기 때문에 제작재료와 보존제 등의 조건에 따라 체계적인 보존관리방안이 필요한 것으로 사료된다.