• 제목/요약/키워드: $NH_3$gas

검색결과 808건 처리시간 0.039초

Nitrocarburising 처리된 탄소강의 내식특성에 미치는 Post Oxidation 효과 (The Effect of Post Oxidation on Corrosion Characteristics of Gas Nitrocarburised Carbon Steels)

  • 김영희;정광효
    • 열처리공학회지
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    • 제12권1호
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    • pp.9-20
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    • 1999
  • The effect of post oxidation, water-quenched after holding in air for 5~420 seconds or cooling or furnace cooling, on corrosion resistance and phase formation characteristics of the surface layer of SM20C and SM45C carbon steels after gas nirtrocarbursing in the $NH_3-5%CO_2-N_2$ gas atmosphere at $580^{\circ}C$ for 3hours is studied. The compound layers of two steels consist of ${\varepsilon}-Fe_{2-3}N$, ${\gamma}^{\prime}-Fe_4N$ and $Fe_3O_4$, phases, however, the quantity of ${\gamma}^{\prime}-Fe_4N$ phase increases for the furnace cooled specimen compared to that of air cooling specimen. With increasing $NH_3$ content in the gas mixture and also increasing the keeping time in the air after gas nitrocarburising, the ${\varepsilon}-Fe_{2-3}N$ phase of compound layer increases, while the decreased current density recognizing the improvement of corrosion resistance are shown. the passive current density of SM45C steel is lower than that of SM20C steel at the same nitrocarburising conditions.

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강화도 지역에서 겨울철 $PM_{205}$의 화학적 성분 특성 (Characteristics of Chemical Species in $PM_{205}$ during the Winter in Kangwha)

  • 여현구
    • 한국대기환경학회지
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    • 제16권4호
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    • pp.309-316
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    • 2000
  • Chemical compositions of air pollutants with fine particles (<2.5 ${\mu}{\textrm}{m}$, PB2.5) were evaluated at background site. Kangwha. in Korea during the winter season. The data set was obtained for seventeed days with 24-hour sampling from December 11 to 16, 1996 and from January 9 to 1997. The chemical species have been measured {{{{ {SO }`_{4 } ^{2- } }}}}, {{{{ { NO}`_{3 } ^{- } }}}}, {{{{ { NH}`_{4 } ^{+ } }}}}. OC and EC in the particulate phase, NH3 HNO3, HCl and SO2 in the gas phase using the three stage filter pack method. Mean concentration ($\mu\textrm{g}$/m3) of this study were : 35.42 for PM2.5 8.78 for organic carbon (OC) 7.25 for nss {{{{ {SO }`_{4 } ^{2- } }}}}, 4.94 for {{{{ { NO}`_{3 } ^{- } }}}}, 3.58 for {{{{ { NH}`_{4 } ^{+ } }}}} and 1.48 for elemental carbon (EC) respectively. Contributive rates of major particulate components in PM2.5 were OC (25%) nss- {{{{ {SO }`_{4 } ^{2- } }}}}(20%) ,{{{{ { NO}`_{3 } ^{- } }}}}(14%) {{{{ { NH}`_{4 } ^{+ } }}}}(10%) and EC (4%) respectively and these components could be accounted for 73% of PM2.5 mass. Reactive forms of {{{{ { NH}`_{4 } ^{+ } }}}} were considered as NH4HO3 and NH4{{{{ {SO }`_{4 } ^{2- } }}}} during the sampling periods. {{{{ { NO}`_{3 } ^{- } }}}}/({{{{ { NO}`_{3 } ^{- } }}}} + HNO3) and {{{{ {SO }`_{4 } ^{2- } }}}}/({{{{ {SO }`_{4 } ^{2- } }}}} + SO2) were calculated 0.8 and 0.9 respectively. Most of these compounds might be formed in partiiculate phase in the air. Correlation coefficient between OC and EC was 0.866 which might have the same sources during the sampling periods,.

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선택적촉매환원과 흡착을 이용한 복합 탈질공정 연구 (A Study on Hybrid DeNOx Process Using Selective Catalytic Reduction and Adsorption)

  • 문승현;전동환;박성열
    • 대한환경공학회지
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    • 제29권12호
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    • pp.1329-1336
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    • 2007
  • 본 연구에서는 간헐적으로 발생되는 고농도의 NO를 효율적으로 제거할 수 있는 혼합 공정으로 선택적촉매환원(Selective Catalytic Reduction, SCR)과 활성탄소섬유(Activated Carbon Fiber, ACF)흡착이 결합된 신 개념의 공정을 설계하고 특성을 고찰하였다. NO를 흡착한 ACF에 열과 진공을 동시에 가하여 재생 실험을 수행한 결과, $140^{\circ}C$에서 600 mmHg의 진공으로 탈착하였을 때 가장 높은 재생효율을 보였다. SCR공정에는 상용촉매를 사용하였으며, 반응온도 $300^{\circ}C$, $NO/NH_3$몰비 1.0인 조건에서 실험을 수행하였다. ACF 재생공정에서 발생한 NO를 SCR공정으로 처리하였을 경우 98%의 매우 우수한 제거효율을 보였다. 그러나 지속적으로 유입되는 300ppm의 NO와 ACF에서 탈착되는 NO를 기존의 SCR공정에서 동시에 처리하였을 때 약 1분간 고농도의 NO가 배출되었다. 따라서 ACF의 재생시 발생하는 고농도의 NO를 기존의 SCR공정에서 병행처리할 때는 탈착속도를 조절하거나 고농도로 배출되는 짧은 시간 동안 $NH_3$농도를 높여서 주입할 필요가 있으며, 소규모의 SCR공정을 추가로 설치하여야 한다. SCR과 ACF를 결합한 공정을 이용하여 NO를 처리하였을 때, 간헐적으로 2배의 농도를 가지는 NO가 유입되어도 80% 이상의 탈질 효율을 가지는 공정의 구현이 가능하였으며, 반복 사용에도 활성이 유지되어 안정적인 운전이 가능함을 입증하였다.

Cycle-CVD법으로 증착된 TiN 박막의 ALD 증착기구와 특성에 관한 연구 (A Study on the Atomic-Layer Deposition Mechanism and Characteristics of TiN Films Deposited by Cycle-CVD)

  • 민재식;손영웅;강원구;강상원
    • 한국재료학회지
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    • 제8권5호
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    • pp.377-382
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    • 1998
  • Ti[N ($C_{2}$$H_{5}$ $CH_{3}$)$_{2}$]$_{4}$ [tetrakis(ethylmethylammino)titanium.TEMAT]와 $NH_{3}$를 반응가스로 하여 각각 펄스(pulse) 형태로 시분할 주입되는 새로운 박막 증착방법(이하 Cycle-CVD라 함)을 이용하여 TiN박막이 $SiO_2$.기판위에 증착되었다.Cycle-CVD에서 반을로 내로 주입되는 반응가스와 Ar가스는 TEAM 펄스, Ar 펄스,$NH_{3}$펄스, Ar 펄스의 순서로 시분할주입되었고, 이렇게 차례대로 주입되는 4개의 펄스를 하나의 cycle로 규정하고, Cycle-CVD는 이러한 cycle이 연속하여 반복적으로 주입되도록 설계되었다. 기판온도가 $170^{\circ}C$-$210^{\circ}C$에서는 atomic layer deposition(ALD)특성을 보였고, $200^{\circ}C$에서 충분한 반응가스의 펄스시간 후에 cycle당 증착된 박막의 두께가 0.6nm/cycle로 포화되는 양상을 보여주었는데, 이는 cycle당 증착된 TiN 박막의 두께가 1.6 monolayer(ML)/cycle에 해당된다. 이와 같이 반등가스의 흡착을 이용ㅇ하여 TiN이 제한된 표면반응만에 의하여 ALD 기구에 의해 증착이 이루어지므로 TiN 박막의 두께는 단지 cycle 횟수만으로 정확하게 제어할 수 있었고, 우수한 step coverage 특성을 얻었다. 또한 반응가스간의 기상반응을 방지함으로써 입자의 발생을 억제할 수 있었고, 상대적으로 낮은 온도임에도 불구하고 4at% 이하의 낮은 탄소함량을 갖는 양호한 특성을 보여주었다.

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선택적 촉매환원법에 의한 배기가스중 NOx 저감에 관한 연구 (A Study of NOx Removal in Flue Gas by Selective Catalytic Reduction)

  • 박해경;김경림;최병선;이인철;최익수
    • 한국대기환경학회지
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    • 제4권2호
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    • pp.38-46
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    • 1988
  • NOx is an important air pollution material which is generated when fossil fuels are burning, NOx removal in flue gas by selective catalytic reduction was studied over various catalysts in a fixed bed continuous flow reactor. The ranges of experimental conditions were at the temperatures between $200^\circ$C and $350^\circ$C, the $NH_3/NOx$ mole ratios between 0.8 and 1.4, oxygen concentrations between 1.5% and 3% and the space velocities between 5, 000 $hr^-1$ and 12, 500 $hr^-1$. The efficiency of NOx removal in the ranges of experimental conditions was highest at the temp. of 300$^\circ$C, oxygen concentration of 2.5-2.6% and $NH_3/NOx$ mole ratios of 1.0-1.2. The catalyst with high activity for NOx removal in flue gas was found to be $MoO_3-V_2O_5/TiO_2$.

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LNT 촉매 후단의 NH3 생성 특성 (NH3 Generation Characteristics of a LNT Catalyst Downstream)

  • 서충길
    • 동력기계공학회지
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    • 제20권1호
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    • pp.18-23
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    • 2016
  • As diesel engines have high power and good fuel economy on top of less $CO_2$ emissions, their market shares are increasing not only in commercial vehicles but also in passenger cars. LNT, urea-SCR and combination of them have been developed for after-treatment of the exhaust gas to reduce NOx on diesel vehicles. The aim of this study is to investigate the $NH_3$ generation characteristics of LNT catalyst downstream. It was found from the experiments of the LNT catalyst that $H_2$ was useful as a reductant in SCR catalyst because it can enhance the de-NOx performance and improve $NH_3$ selectivity. The $NH_3$ generation of the LNT, when hydrothermally aged at $900^{\circ}C$ for 18 hr, increased to about 90ppm at $300^{\circ}C$ due to Pt sintering and Ba agglomeration. LNT catalyst was most sulfur poisoning at $500^{\circ}C$. The $NH_3$ slip increased due to the reduction of residence time according to SV increase.

Adsorption of ammonia using mesoporous alumina prepared by a templating method

  • Yeom, Changjoo;Kim, Younghun
    • Environmental Engineering Research
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    • 제22권4호
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    • pp.401-406
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    • 2017
  • Ammonia, $NH_3$, is a key chemical widely used in chemical industries and a toxic pollutant that impacts human health. Thus, there is a need for the development of effective adsorbents with high uptake capacities to adsorb $NH_3$. An adsorbent with a high surface area and a small pore size is generally preferred in order to have a high capacity for the removal of $NH_3$. The use inorganic nanoporous materials as gas adsorbents has increased substantially and emerged as an alternative to zeolite and activated carbon. Herein, mesoporous alumina (MA) was prepared and used as an $NH_3$ adsorbent. MA showed good pore properties such as a uniform pore size and interlinked pore system, when compared to commercial adsorbents (activated carbon, zeolite, and silica powder). MA has free hydroxyl groups, serving as useful adsorption sites for $NH_3$. In an adsorption isotherm test, MA exhibited 4.7-6.5 times higher uptake capacities for $NH_3$ than commercial adsorbents. Although the larger surface areas of adsorbents are important features of ideal adsorbents, a regular and interlinked adsorbent pore system was found to be a more crucial factor to adsorb $NH_3$.

Emissions of Odor, Ammonia, Hydrogen Sulfide, and Volatile Organic Compounds from Shallow-Pit Pig Nursery Rooms

  • Kafle, Gopi Krishna;Chen, Lide
    • Journal of Biosystems Engineering
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    • 제39권2호
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    • pp.76-86
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    • 2014
  • Purpose: The objective of this study was to measure emissions of gases (ammonia ($NH_3$), hydrogen sulfide ($H_2S$) and carbon dioxide ($CO_2$)), volatile organic compounds (VOC) and odor from two shallow pit pig nursery rooms. Gas and odor reduction practices for swine operations based on the literature were also discussed. Methods: This study was conducted for 60 days at a commercial swine nursery facility which consisted of four identical rooms with mechanical ventilations. Two rooms (room 1 (R1) and room 2 (R2)) with different pig numbers and ventilation rates were used in this study. The pig manure from both the R1 and R2 were characterized. Indoor/outdoor temperatures, ventilation rates/duration, $NH_3$, $H_2S$, $CO_2$, and VOC concentrations of the ventilation air were measured periodically (3-5 times/week). Odor concentrations of the ventilations were measured two times on two days. Three different types of gas and odor reduction practices (diet control, chemical method, and biological method) were discussed in this study. Results: The volatile solids to total solids ratio (VS/TS) and crude protein (CP) value of pig manure indicated the pig manure had high potential for gas and odor emissions. The $NH_3$, $H_2S$, $CO_2$ and VOC concentrations were measured in the ranges of 1.0-13.3, 0.1-5.7, 1600-3000 and 0.0-1.83 ppm, respectively. The $NH_3$ concentrations were found significantly higher than $H_2S$ concentrations for both rooms. The odor concentrations were measured in the range of $2853-4432OU_E/m^3$. There was significant difference in odor concentrations between the two rooms which was due to difference in pig numbers and ventilation duration. The literature studies showed that simultaneous use of dietary control and biofiltration practices will be more effective and environmentally friendly for gas and odor reductions from pig barns. Conclusions: The gas and odor concentrations measured in the ventilation air from the pig rooms indicate an acute need for using gas and odor mitigation technologies. Adopting diet control and biofiltration practices simultaneously could be the best option for mitigating gas and odor emissions from pig barns.

충전탑에서 흡수에 따른 물질전달과 수력학적 거동에 관한 연구 (A Study on Hydraulic Behavior and Mass Transfer by Absorption in Packing Tower)

  • 김석택
    • 한국환경과학회지
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    • 제9권5호
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    • pp.393-396
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    • 2000
  • Packing tower has been used in the chemical industry and the protection of environment for a long time. In the view of environmental protection purification of exhaust gas can be performance effective by gas absorption in counter-current packing tower. In this study characteristics of hydraulic and mass transfer were investigated in D. $0.3m {\times} H. 1.4m$ packing tower with 50mn plastic Hiflow-ring. This study was carried out "Test systems were experimented in conditions of Air, $Air/H_2O. NH_3-Air/H_2O, NH_3-Air/H_2O-H_2SO_4$ and $SO_2-Air/H_2O-NaOH$ under steady state" The extent of test included dry and wetting pressure drop physical law separation efficiency and hold-up as function of gas and liquid load.quid load.

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Fabrication and Ammonia Gas Sensing Properties of Chemiresistor Sensor Based on Porous Tungsten Oxide Wire-like Nanostructure

  • Vuong, Nguyen Minh;Kim, Do-Jin;Hieu, Hoang Nhat
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 춘계학술발표대회
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    • pp.25.2-25.2
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    • 2011
  • The tungsten oxide wire-like nanostructure is fabricated by deposition and thermal oxidation of tungsten metal on porous single wall carbon nanotubes (SWNTs). The morphology and crystalline quality of materials are investigated by SEM, TEM, XRD and Raman analysis. The results prove that $WO_3$ wire-like nanostructure fabricated on SWNTs show highly porous structures. Exposure of the sensors to NH3 gas in the temperature range of 150~300$^{\circ}C$ resulted in the highest sensitivity at $250^{\circ}C$ with quite rapid response and recovery time. Response time as a function of test concentrations and NH3 gas sensing mechanism is reported and discussed.

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