• Title/Summary/Keyword: 건식 탈황

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$O_2$-$NH_3$처리한 활성탄의 탈황능 향상에 관한 연구

  • 고윤희;서경원
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 1994.11a
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    • pp.90-96
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    • 1994
  • 본 연구는 에너지를 집중적으로 사용하는 발전소와 대규모 공장 단지에서 발생하는 배기가스 중에 포함된 황산화물의 제거 방법에 관한 것으로서, 활성탄의 적절한 전처리를 통해 이산화황 흡착능을 향상시켜 머지 않은 장래에 엄격히 적용될 대기오염 기준을 만족시킴과 동시에, 오염 물질의 제거 효율이 높고 폐기물 매립의 부담이 없는 건식 탈황 공정의 효율향상에 기여하는 것을 목적으로 하고 있다. Activated Char나 활성탄을 이용하여 황산화물과 질소산화물을 동시에 제거하기 위해서는 Carbon 표면을 적절하게 처리함으로써 활성탄의 촉매활성을 향상시키는 것이 필요하다. 따라서 본 연구에서는 활성탄을 열 및 $O_2$-NH$_3$ 혼합가스로 전처리하여 표면의 특성 변화와 SO$_2$ 흡착능에 미치는 영향을 살펴보았다. Coconut Shell로부터 제조한 활성탄을 NH$_3$의 농도를 변화시켜가며 $O_2$와의 혼합가스로 973~1173K에서 열처리하는 방법에 의해 전처리하여, 이률 고정층 반응기에서 SO$_2$흡착 및 반응실험을 수행하였고, 이 과정 중의 활성탄 표면의 특성변화를 원소분석, TPD(Temperature Programmed Desorption), FTIR(Fourier Transform Infrared Spectroscopy), Acid-Base Titration, SEM(Scanning Electrolic Microscopy)등의 분석 방법을 통해서 알아보았다. 그 결과, 활성탄을 열 및 $O_2$-NH$_3$혼합가스로 처리하여 환원성 분위기 하에서 표면 활성점을 증가시킴으로써 황산화물 흡착제거율이 향상됨을 얻었다.

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Investigation of Catalytic Deactivation by Small Content Oxygen Contained in Regeneration Gas Influenced on DSRP (직접 황 회수 공정으로 유입되는 재생가스에 함유된 미량산소의 촉매활성저하 원인 규명)

  • Choi, Hee-Young;Park, No-Kuk;Lee, Tae Jin
    • Clean Technology
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    • v.20 no.3
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    • pp.212-217
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    • 2014
  • In order to regenerate the sulfidated desulfurization sorbent, oxygen is used as the oxidant agent on the regeneration process. The small amount of oxygen un-reacted in regeneration process is flowed into direct sulfur recovery process. However, the reactivity for $SO_2$ reduction can be deteriorated with the un-reacted oxygen by various reasons. In this study, the deactivation effects of un-reacted oxygen contained in the off-gas of regeneration process flowed into direct sulfur recovery process of hot gas desulfurization system were investigated. Sn-Zr based catalysts were used as the catalyst for $SO_2$ reduction. The contents of $SO_2$ and $O_2$ contained in the regenerator off-gas used as the reactants were fixed to 5.0 vol% and 4.0 vol%, respectively. The catalytic activity tests with a Sn-Zr based catalyst were for $SO_2$ reduction performed at $300-450^{\circ}C$ and 1-20 atm. The un-reacted oxygen oxidized the elemental sulfur produced by $SO_2$ catalytic reduction and the conversion of $SO_2$ was reduced due to the production of $SO_2$. However, the temperature for the oxidation of elemental sulfur increased with increasing pressure in the catalytic reactor. Therefore, it was concluded that the decrease of reactivity at high pressure is occurred by catalytic deactivation, which is the re-oxidation of lattice oxygen vacancy in Sn-Zr based catalyst with the un-reacted oxygen on the catalysis by redox mechanism. Meanwhile the un-reacted oxygen oxidized CO supplied as the reducing agent and the temperature in the catalyst packed bed also increased due to the combustion of CO. It was concluded that the rapidly increasing temperature in the packed bed can induce the catalytic deactivation such as the sintering of active components.

Study on the Desulfurization Characteristic of Limestone Depending on the Operating Parameters of In-Furnace Desulfurization for Oxy-Fuel Combustion Using Drop Tube Furnace (순산소연소 조건에서 Drop tube furnace를 이용한 운전변수에 따른 석회석의 탈황특성 연구)

  • Choi, Wook;Jo, Hang-Dae;Choi, Won-Kil;Park, Yeong-Sung;Keel, Sang-In;Lee, Hyung-Keun
    • Korean Chemical Engineering Research
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    • v.49 no.6
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    • pp.857-864
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    • 2011
  • Oxy-fuel combustion with many advantages such as high combustion efficiency, low flue gas flow rate and low NOx emission has emerged as a promising CCS technology for coal combustion facilities. In this study, the effects of the direct sulfation reaction on $SO_2$ removal efficiency were evaluated in a drop tube furnace under typical oxy-fuel combustion conditions represented by high concentrations of $CO_2$ and $SO_2$ formed by gas recirculation to control furnace combustion temperature. The effects of the operating parameters including the reaction temperature, $CO_2$ concentration, $SO_2$ concentration, Ca/S ratio and humidity on $SO_2$ removal efficiency were investigated experimentally. $SO_2$ removal efficiency increased with reaction temperature up to 1,200 due to promoted calcination of limestone reagent particles. And $SO_2$ removal efficiency increased with $SO_2$ concentrations and the humidity of the bulk gas. The increase of $SO_2$ removal efficiency with $CO_2$ concentrations showed that $SO_2$ removal by limestone was mainly done by the direct sulfation reaction under oxy-fuel combustion conditions. From the impact assessment of operation parameters, it was shown that these parameters have an effects on the desulfurization reaction by the order of the Ca/S ratio > residence time > $O_2$ concentration > reaction temperature > $SO_2$ concentration > $CO_2$ concentration > water vapor. The semi-empirical model equation for to evaluate the effect of the operating parameters on the performance of in-furnace desulfurization for oxy-fuel combustion was established.

Effect of Limestone Characteristics on In-Furnace Desulfurization under Hot Gas Combustion (석회석 분말을 이용한 노내 고온 건식 탈황 특성 연구)

  • Kim, Sang-in;Lee, Byung-hwa;An, Ke-ju;Hwang, Min-young;Kim, Seung-mo;Jeon, Chung-hwan
    • 한국연소학회:학술대회논문집
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    • 2012.11a
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    • pp.43-45
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    • 2012
  • The effect of limestone characteristics on in-furnace desulfurization was experimentally investigated at hot gas combustion condition in a drop tube furnace (DTF). Flue gas was measured by Gas analyzer in order to figure out $SO_2$ content. The experiments were performed under excess sulfur 3000ppm condition to examine the effect of operating variables such as reaction temperatures, Ca/S ratios on the $SO_2$ removal efficiencies. The results show that the $SO_2$ removal efficiency increased with reaction temperature and Ca/S ratio increase. When considering the economics, $1200^{\circ}C$ and Ca/S ratio 2 condition is optimized to reduce $SO_2$ emission.

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A Numerical Study of $SO_2$ Efficiency Improvement in the DSI process of FGD (Vortex에 의한 DSI공정 중 혼합효율 향상에 관한 연구)

  • Chung, J.D.;Kim, J.W.
    • Journal of ILASS-Korea
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    • v.14 no.1
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    • pp.1-7
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    • 2009
  • This study carried out numerical analysis of flow field of combustion gas and sorbent to test sorbent efficiency of DSI process. To provide rapid mixing for increase utilization rate of sorbent, streamwise vorticity can be introduced into the flowing streams by other means; for example, by installing vortex generators immediately downstream of the wavy trailing edge. Computing results show that the degree of sorbent dispersion depends strongly on duct structure. Highest dispersion efficiency received when vortex generator was installed inside of duct. The results presented in this study a optimum condition for the development of practical DSI process.

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Optimization of In-Line Dry Scrubbing FGD process using Calcium Hydroxide and Effect of Additives (소석회를 사용한 In-Line형 건식탈황공정의 최적화와 첨가제의 영향)

  • 박재만;신창섭
    • Journal of the Korean Society of Safety
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    • v.12 no.2
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    • pp.102-111
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    • 1997
  • An In-line dry scrubbing FGD process was investigated. Calcium hydroxide was entrained in flue gas and the SO$_2$ removal efficiency by humidity and additives were examined. The range of reaction temperature was $200^{\circ}C$~$500^{\circ}C$ and the concentration of $SO_2$ was around 900ppm. By the increase of humidity in flue gas, the removal efficiency was increased. The effect of NaOH as a additive was very high and got high conversion of $Ca(OH)_2$, however in case of RH 90%, it was reverse. The effect of particle size and flow rate were examined. And the reaction rate constant and effective diffusivity also calculated.

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Model Development of Spray Dryer Absorber FGD Process (Spray Dryer Absorber 배연탈황공정의 모델 개발)

  • Jang, Sun-Hee;Oh, Eui-Kyung;Lee, Hyung-Keun;Kim, Sun-Geon
    • Clean Technology
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    • v.2 no.1
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    • pp.80-95
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    • 1996
  • A mathematical model has been developed for simulating the spray dryer absorber (SDA) used in semi-dry flue gas desulfurization process. Fundamental equations include the component mass and heat balances in both gas and droplet phases and the equation of motion for a single droplet. The model developed described the pilot-plant data much better than the existing SPRAYMOD-M model. The effect of the process variables, whose values were chosen within the operation limits of the actual pilot plants, on % $SO_2$ removal or conversion of the sorbent were calculated, and discussed in terms of $SO_2$ absorption rate, the residence time of flue gas, the velocity and drying time of droplets. Finally, the % $SO_2$ removal was calculated with two independent process variables and the results were shown on three-dimensional or two-dimensional diagrams with the lines of constant % $SO_2$ removal, so that they can be easily applied to preliminary design of the SDA.

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Preparation of the Inexpensive Fiberglass-Reinforced Activated Carbon Assemblies, and Development of Dry De-NOXSO System as Its Application (저렴한 유리강화 활성탄소섬유를 이용한 건식 동시 탈황 탈질 시스템의 개발)

  • Jeong, Ae-Young;Lee, Si-Hyun;Kim, Dong-Pyo
    • Proceedings of the KIEE Conference
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    • 1998.11c
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    • pp.1065-1068
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    • 1998
  • On the study, The activated carbon assemblies(ACA) were prepared by activation of the coated glass mate(woven type) with phenolic resin at $700^{\circ}C$ under $N_2$ after drying and curing processes. Surface of the ACA was continuously modified with $N_2$, $CO_2$ or $NH_3$ at $700^{\circ}C$ for 2 hour for comparison of adsorptive characteristics between the ACA and commercial activated carbon cloth. The ACA showed high surface areas up to $2440\;m^2/g$ when converted into the coated carbon base, and the surface was investigated by FT-IR and XPS. The basic ACA modified with $NH_3$ displayed the efficient removal capability of $SO_2$, which is 75% of that in commercial activated carbon cloth. Therefore, it has proved the applicability of ACA as an inexpensive materials for Dry de-SOX system.

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A study on the hot gas cleanup of waste-derived fuel gas (폐기물 합성가스의 활용을 위한 고온 정제 공정 적용 연구)

  • Kim, Narang;Yoo, Youngdon;Jung, Kijin;Kim, Jeongheon;Kim, Byunghwan
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.172.2-172.2
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    • 2011
  • 다양한 저급연료나 폐기물로부터 가스엔진이나 연료전지의 연료로 사용하기위한 연료가스를 얻기 위한 방법으로 가스화 기술을 적용할 수 있다. 폐기물의 가스화를 통해 발생된 합성가스에는 CO, $H_2$, $CO_2$와 같은 주요성분 이외에 황화합물($H_2S$, COS), 염소화합물(HCl), 고형 물질(분진)등의 오염물질이 포함되어 있으므로, 이용목적에 따라 적절한 정제 기술이 필요하게 된다. 현재 가장 널리 알려진 저온 습식 정제공정은 장치운전이 쉽고 오염물질 제거효율이 높은 장점이 있으나, 합성가스 온도를 상온까지 낮추기 때문에 현열 손실이 발생하는 단점을 가지고 있다. 고온 건식 정제공정에 의해 $300^{\circ}C$ 이상의 고온에서 오염물질의 제거가 가능하다면 에너지 이용효율을 높일 수 있고, 습식공정에 의해 발생되는 폐수처리에 따른 비용 절감효과도 얻을 수 있다. 폐기물 합성가스를 최종 적용처에 이용하기위한 고온 정제 공정의 적용을 위해 흡착제를 이용하여 탈황, 탈염 실험을 실시하였고, 실험결과로부터 장치 설계의 기초인자를 도출하였다.

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