• Title/Summary/Keyword: 탈황

Search Result 456, Processing Time 0.028 seconds

Physical Properties and Sulfidation Kinetics of Mn-Based Sorbent for Hydrogen Sulfide Removal (황화수소 제거를 위한 망간계 탈황제의 물리적 특성과 황화반응 속도)

  • Oh, Kwang-Joong;Shon, Byung-Hyun;Choi, Eun-Hwa;Yi, Gang Woo
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.22 no.11
    • /
    • pp.2067-2076
    • /
    • 2000
  • The experiments have been made to develop manganese-based sorbent(MT, MFT) for the removal of hydrogen sulfide from simulated hot coal gases. Manganese-based sorbents were tested in an ambient-pressure fixed-bed reactor to calculate H2S removal efficiency. and a three hole jet attrition tester to characterize the sorbent physical properties. According to the experimental results of attrition test. the attrition resistance of 5% bentonite containing sorbent was higher than that of 2% bentonite. The attrition resistances of both sorbents increased with induration temperature. Effects of sulfidation temperature. space velocity. and $H_2S$ concentrations on the $H_2S$ removal efficiency were investigated. Experimental results showed that $H_2S$ could be removed from 5,100ppmv to 20ppmv at $450^{\circ}C$, and to 30~65ppmv at $550{\sim}650^{\circ}C$ for both MT/MFT sorbents. As for the change of space velocity, the breakthrough time was decreased with space velocity.

  • PDF

석유제품이 되기까지-중유의 수색화탈황법

  • Korea Petroleum Association
    • Korea Petroleum Association Journal
    • /
    • no.8 s.90
    • /
    • pp.81-87
    • /
    • 1988
  • 지난호 부터 중유를 다루고 있는바, 1. 중유의 종류 2. 제조사의 배합 3.공해성 4. 저황화방법 등의 다음으로 5. 수소화탈황법 3가지를 간단히 개요만 언급했다. 따라서 이번에는 중유에 대한 3가지 탈황법을 보다 상세히 살펴본다 <편집자주>

  • PDF

Desulfurization of hot syngas using zinc oxide sorbent (산화아연을 이용한 고온 탈황 실험)

  • Jung, Kijin;Yoo, Youngdon;Kim, Narang;Kim, Mun-Hyeon;Kim, Jeongheon;Kim, Byunghwan
    • 한국신재생에너지학회:학술대회논문집
    • /
    • 2011.11a
    • /
    • pp.177.2-177.2
    • /
    • 2011
  • 폐기물 합성가스에 포함되어 있는 오염물질 중 황화합물($H_2S$, COS)이 존재할 경우, 다른 연계 공정을 구성하는 설비의 부식, 합성가스 이용 공정의 촉매 피독 문제, 대기 배출시 환경오염 문제 등을 야기 시키므로 제거가 필요하다. 고온 정제 공정을 적용하여 황화합물을 제거하기위해 산화아연을 이용한 고온 탈황 실험을 수행하였다. 고정층 반응기에 탈황제로 선정한 산화아연을 충진하고, 공간속도 $3,000h^{-1}$, 입구 황화합물의 농도 $H_2S$ 1,000ppm, COS 300ppm일 때 반응 온도 변화에 따른 탈황특성을 살펴보았다. 가스 내부에 $H_2S$가 단독으로 존재할 경우에는 $400^{\circ}C$ 이상에서 모두 제거되었으나, $H_2S$와 COS가 동시에 존재할 경우에는 $450^{\circ}C$ 이상에서 모두 제거되는 것을 알 수 있었다. 반응온도 $500^{\circ}C$에서 산화아연 탈황제를 이용한 실험결과 $H_2S$, COS의 파과시간은 각각 1,217, 1,063 min, 흡착능력은 269.9 mg-$H_2S$/g-sorbent, 124.7 mg-COS/g-sorbent으로 파악되었다.

  • PDF

Use of Flue Gas Desulfurization Gypsum as an Activator for a Ground Granulated Blast Furnace Slag (고로슬래그 자극재로써 건식 및 습식 배연탈황석고의 활용가능성 평가)

  • Lee, Hyun-Suk;Kim, Ji-Hyun;Lee, Jae-Yong;Chung, Chul-Woo
    • Journal of the Korea Institute of Building Construction
    • /
    • v.17 no.4
    • /
    • pp.313-320
    • /
    • 2017
  • Flue gas desulfurization gypsum(FDG) is produced when removing sulfur oxides from combustion gas generated by coal power plant. However, the recycling of FDG is still limited to the certain purposes. In order to expand the possible application of FDG, this study aims to utilize FDG as an activator for ground granulated blast furnace slag. FDG produced by dry- and wet-process were used for the experiments. Slag paste specimens were produced by mixing with deionized water and simulated pore solution, and the role of FDG as an activator for blast furnace slag was evaluated using hydration study by XRD analysis and compressive strength development. According to the results, dry-type FDG was found to work as an activator for blast furnace slag without the presence of soluble alkalis. However, wet-type FDG needs assistance by soluble alkalis in order to work as an activator for blast furnace slag. It was also found that the substitution of dry- and wet-type FDG into blast furnace slag can increase the 28 day compressive strength of slag paste. It is expected that efficient and economical recycling of FDG will be possible if quantitative analysis of strength enhancement according to substitution rate of both dry- and wet-type FDG.

Effect of Slurry on the pH and Viscosity for the Preparation of High Attrition Resistance Zinc-based Desulfurization Sorbents by Spray Drying Method (분무건조법에 의한 높은 내마모성 아연계 탈황제를 제조하기 위한 슬러리의 pH와 점도에의 영향)

  • Kwon, Byung Chan;Park, No-Kuk;Han, Gi Bo;Ryu, Si Ok;Lee, Tae Jin
    • Clean Technology
    • /
    • v.12 no.4
    • /
    • pp.232-237
    • /
    • 2006
  • The zinc-based desulfurization sorbents for a fluidized-bed system were prepared by a spray drying method and the effects of the pH and viscosity of the slurry on the attrition resistance of the prepared sorbents were investigated in this work. In order to improve the attrition resistance, alumina sol was used for an inorganic binder and pH of the slurry was changed for its better dispersion in slurry. The attrition resistance of the prepared sorbents decreased due to the phase transition of alumina sol to gel as the slurry pH increased to its basicity. The optimum pH condition for the good attrition resistance of the sorbents was about 6.0 in this study. It was confirmed that the attrition property of the sorbents were varied with the viscosity of the slurry. The attrition resistance of the sorbents prepared by the spray drying method increased as their bulk density increased, while it decreased as the surface area and porosity of the sorbents. The optimum viscosity for the high attrition was in the range 400-500 cP.

  • PDF

Effect of Operating Parameters on Microbial Desulfurization of Coal by Acidithiobacillus ferrooxidans. (Acidithiobacillus ferrooxidans에 의한 생물학적 석탄탈황에 미치는 조업인자의 영향)

    • Microbiology and Biotechnology Letters
    • /
    • v.31 no.4
    • /
    • pp.400-407
    • /
    • 2003
  • In microbial coal desulfurization process (MCDP) by using Acidithiobacillus ferrooxidans, the effect of process variables on pyritic sulfur removal efficiency has been investigated. The inhibitory effect of toxic materials contained in coal matrix on the activity of desulfurizing bacteria have been evaluated in coal extracts, and the results showed that the method was useful to evaluate the applicability of a coal which is to be desulfurization to MCDP. The removal efficiency increased with decreasing particle size and decreases with increasing pulp density, but has no significant influence of particle size and pup densities at high pulp densities over 20 wt%. The mass transfers of gaseous nutrients such as oxygen and carbon dioxide into coal slurry with various pulp densities and coal particle size has been studied in an airlift bioreactor. Mass transfer coefficient was independent of pulp density in coal slurry with fine particle below 175 $\mu\textrm{m}$, but significantly decreased with increasing pulp density over 225 $\mu\textrm{m}$. The coal particles over 575 $\mu\textrm{m}$ were significantly settled to the bottom of bioreactor resulting in poor mixing. Considering mass transfer, pulp density and coal mixing, an optimal size of coal particle for the microbial coal desulfurization process seems to be about 500 $\mu\textrm{m}$.

Comparision of Ca- and Na- Based Dry Sorbent in Desulfurization Characteristics (Ca계 및 Na계 흡수제의 건식 탈황 특성 비교)

  • Moon, Seung-Hyun;Hyun, Ju-Soo
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.31 no.1
    • /
    • pp.21-28
    • /
    • 2009
  • Physico-chemical characteristics of the Ca-based and Na-based dry sorbents were compared using thermo-gravimetric analysis (TGA) and temperature programmed desorption (TPD) methods. The studied characteristics were thermal stability, sulfur dioxide ($SO_2$) absorption capacity and absorption rate at $250^{\circ}C$ which is a typical temperature before a fabric filter, and $SO_2$ absorption capacity at an ambient temperature. Calcium hydroxide ($Ca(OH)_2$) started to decompose into calcium oxide (CaO) at $390^{\circ}C$ and completed at 480~$500^{\circ}C$, showing 76% of an original $Ca(OH)_2$ weight. Sodium bicarbonate ($NaHCO_3$) also converted to sodium carbonate ($Na_2CO_3$) between $95^{\circ}C$ and $190^{\circ}C$, decreasing the weight to 63% of its initial weight. Among four sorbents tested at $250^{\circ}C$, sodium carbonate had the highest capacity, absorbing 0.35 g $SO_2$/g sorbent. Calcium oxide and calcium hydroxide followed that showing 0.156 g and 0.065 g $SO_2$ absorption per absorbent respectively. Ca-based absorbents showed slower rate than sodium carbonate because of initial stagnant step. However, calcium hydroxide caught more $SO_2$ than sodium carbonate at ambient temperature. From this work, it can be concluded that Ca-based absorbent is a proper sorbent for $SO_2$ treatment at low temperature and sodium carbonate, at high temperature.

Microbial Desulfurization of Coal by Iron-Oxidizing Bacteria Thiobacillus ferrooxidans in packed beds (철산화 박테리아 Thiobacillus ferrooxidans를 이용한 충전탑 반응기에서의 석탄의 생물학적 탈황)

  • 류희욱
    • KSBB Journal
    • /
    • v.14 no.1
    • /
    • pp.124-130
    • /
    • 1999
  • To evaluate the technical of microbial coal desulfurization during the storage in coal dumps, microbial pyrite oxidation in a packed column reactor with Thiobacillus ferrooxidans has been investigated. For microbial desulfurization in a packed reactor system, coal particle size over 1.0 mm with uniform size distribution seems to be most suitable as fas as drainage behavior and accessability of pyrite are concerned. When coal samples of 1∼2 and 2∼4 mm particle size were size were used, about 32∼42% of pyritic sulfur was removed within 70 days. The rate of pyritic sulfur oxidation was in the range of 348∼803 mg S/kg coal ·d, and the sulfur removal rates in packed columns were about 15∼25% of those in suspension cultures. Without any circulation of liquid medium, microbial coal desulfurization could be possible by the inoculation of T. ferrooxidans along on the coal dump. It was concluded that a microbial percolation process is one of possible processes for the desulfurization of high sulfur coal during a long-term storage.

  • PDF

A Study on Reaction Characteristics of Fe$_2$O$_3$High-Temperature Desulfurization Sorbents (Fe$_2$O$_3$계 고온건식탈황제의 반응특성 연구)

  • Kang, Suk-Hwan;Rhee, Young-Woo;Kang, Yong;Han, Keun-Hee;Yi, Chang-Keun;Jin, Gyoung-Tae;Son, Jae-Ek;Park, Yeong-Seong
    • Journal of Energy Engineering
    • /
    • v.5 no.2
    • /
    • pp.123-130
    • /
    • 1996
  • Reduction, sulfidation, and regeneration reactions were performed using domestic and Australian iron ore in order to develop a desulfurizing sorbent for the high temperature desulfurization process that is one of major processes in the integrated coal gasification combined cycle (IGCC) system. A TGA (Thermogravimetric Analysis) reactor and a fixed-bed reactor were used. Some basic kinetic information was obtained from BET surface area measurements, SEM photos, cyclic reactions, reaction temperature changes and TGA curves of the sorbents. The rates of both desulfurization and regeneration increased with increasing reaction temperature in the range of 500-700$^{\circ}C$.

  • PDF

A Study on the Reactivity of Zinc-based Sorbents Using Yellow Earth as Support at Middle Temperatures (황토를 지지체로 사용한 중온건식 아연계 탈황제의 반응특성 연구)

  • 박노국;정용화;이종대;류시옥;이태진
    • Journal of Energy Engineering
    • /
    • v.12 no.4
    • /
    • pp.302-308
    • /
    • 2003
  • The peformence tests of zinc-based desulfurization sorbents using the yellow earth as support for the hot gas clean up were carried out. The zinc-based sorbent with 25 wt% yellow earth was prepared, and their properties such as the reaction rate, the sulfur capacity and the attrition resistance, were investigated. The reactivity tests for hot gas desulfurization was performed at middle temperatures (sulfidation/regeneration:480$^{\circ}C$/580$^{\circ}C$). During multi-cyclic desulfurization, the deactivation of zinc-based sorbent was decreased by the addition of yellow earth, and their efficiency was enhanced. The ZnO/yellow earth sorbent had high reactivity, good regenerability, long-term durability (about 19 gS/100 g sorbent for 10-cycles) and high attrition resistance (AI=19.1%). It was concluded that the peroperties of zinc-based sorbent were improved by metal oxides (Fe$_2$O$_3$, Na$_2$O, MnO$_2$, etc) in the yellow earth. From these results, it was confirmed that the desulfurization properties of zinc-based sorbents at middle temperatures could be improved by the yellow earth using as support.