• 제목/요약/키워드: $H_2S$ removal

검색결과 779건 처리시간 0.028초

유기담체인 Peat 및 Rock wool을 사용한 바이오필터에 의한 황화수소(H2S)의 제거특성 (Characteristics of Hydrogen-sulfide(H2S) removal by a Biofilter with Organic Materials, Peat and Rock wool)

  • 김남진
    • 유기물자원화
    • /
    • 제9권3호
    • /
    • pp.136-144
    • /
    • 2001
  • 악취중 황화수소의 생물학적 제거시스템에서 바이오필터의 미생물 담체로 유기담체인 Peat와 Rock wool을 사용하고 미생물원으로 소화 슬러지를 식종했다. 유입 황화수소 농도를 증가시켜 완전히 제거되는 황화수소의 유입 부하를 완전 제거능, 제거를 보여준 최대의 제거량을 최대 제거능으로 정의하였다. 단위 중량 및 단위 체적 기준으로 비교한 완전 제거능 및 최대 제거능은 Peat보다 Rock wool의 결과가 높았다. 동력학적 반응속도 해석에 의한 황화수소의 최대 제거속도($V_m$) 및 포화정수($K_s$)를 이용한 속도해석 결과는 황화수소의 농도가 증가할수록 Rock wool의 반응속도가 빠르게 진전되었다.

  • PDF

망만계 탈황제에 의한 황화수소 제거에 관한 연구 (A Study on the Removal of Hydrogen Sulfide by the Manganese Based Sorbents)

  • 손병현;최성원;김영식;정종현;조상원;오광중
    • 한국환경보건학회지
    • /
    • 제22권4호
    • /
    • pp.1-9
    • /
    • 1996
  • Experiments have been made to test the practical feasibility of using calcined manganese ore to desulfurize hot reducing gas. In this study, the effects of particle size of sorbents, temperature of sulfidation, flow rate and sorbent characteristics on the $H_2S$ removal efficiency of calcined manganese ore were investigated. Experimental results showed that the removal efficiency of $H_2S$ was optimum when the temperature was about 800$\circ$C and that the smaller particle size the higher the $H_2S$ removal efficiency. When the temperature was above 800$\circ$C, the reactivity of sorbent has lowered because agglomeration of sorbent increased intraparticle transport resistance, and this phenomenon was confirmed by SEM photographs. As the temperature increases, capacity for the $H_2S$ removal was increased but the equilibrium concentration of $H_2S$ was not affective.

  • PDF

Simultaneous Removal of H2S, NH3 and Toluene in a Biofilter Packed with Zeocarbon Carrier

  • Park, Byoung-Gi;Shin, Won-Sik;Jeong, Yong-Shik;Chung, Jong-Shik
    • 한국환경과학회지
    • /
    • 제17권1호
    • /
    • pp.7-17
    • /
    • 2008
  • Simultaneous removal of $NH_3,\;H_2S$ and toluene in a contaminated air stream was investigated over 185 days in a biofilter packed with Zeocarbon granule as microbial support. In this study, multi-microorganisms including Nitrosomonas and Nitrobacter for nitrogen removal, Thiobacillus thioparus (ATCC 23645) for $H_2S$ removal, and Pseudomonas aeruginosa (ATCC 15692), Pseudomonas putida (ATCC 17484) and Pseudomonas putida (ATCC 23973) for toluene removal were used simultaneously. The empty bed residence time (EBRT) was 40-120 seconds and the feed (inlet) concentrations of $NH_3,\;H_2S$ and toluene were 0.02-0.11, 0.05-0.23 and 0.15-0.21 ppmv, respectively. The observed removal efficiency was 85%-99% for $NH_3$, 100% for $H_2S$, and 20-90% for toluene, respectively. The maximum elimination capacities were 9.3, 20.6 and $17g/m^3/hr\;for\;NH_3,\;H_2S$ and toluene, respectively. The results of kinetic model analysis showed that there were no particular evidences of interactions or inhibitions among the microorganisms, and that the three bio degradation reactions took place independently within a finite area of biofilm developed on the surface of the Zeocarbon carrier.

Bioscrubber와 Biofilter 병합 시스템에 의한 H2S 제거특성 ([ H2S ] Removal Characteristics by Combined System of Bioscrubber and Biofilter)

  • 빈정인;이병헌;감상규;이민규
    • 한국환경과학회지
    • /
    • 제16권6호
    • /
    • pp.763-769
    • /
    • 2007
  • This study compared the performance of a bioscrubber, a biofilter, and a combined system of bioscrubber and biofilter employed being operated at the laboratory-scale. for the removal of hydrogen sulfide. The bioscrubber maintained 100% removal of hydrogen sulfide up to inlet load of $56\;g-S/m^3{\cdot}hr$, while the removal efficiency was decreased with the increase of inlet load. The biofilter showed 100% removal efficiency up to inlet load of $126\;g-S/m^3{\cdot}h$ and the maximum elimination capacity of $126\;g\;S/m^3{\cdot}h$ for the inlet load of $224\;g-S/m^3{\cdot}h$. On the other hand, the combined system of bioscrubber and biofilter showed 100% removal for an inlet hydrogen sulfide load of up to $85\;g-S/m^3{\cdot}h$ and the maximum elimination capacity of $153\;g-S/m^3{\cdot}h$ for inlet loads of $224\;g-S/m^3{\cdot}h$.

고온에서 천연산 망간광석과 황화수소의 반응특성 (Reaction of Natural Manganese Dioxide with Hydrogen Sulfide at High-Temperature)

  • 손병현;오광중;김영식
    • 청정기술
    • /
    • 제2권1호
    • /
    • pp.69-79
    • /
    • 1996
  • 석탄가스화기에서 방출되는 황을 제어하는 것은 가스정화시스템에서 연료가스 중의 황화수소를 제거하는 것이다. 이에 본 연구에서는 천연산 망간광석의 황화수소 제거능에 영향을 미치는 탈황제의 입자크기, 황화반응 온도 및 탈황제 특성에 대해서 고찰하였다. 실험결과 황화수소 제거능은 반응온도 $700^{\circ}C$에서 효과적이었으며 입자크기가 작을수록 탈황효율은 증가하였으나 그 차이는 크지 않았다. 온도가 증가할수록 탈황제의 응집으로 인해 입자 내 물질전달저항이 증가하여 반응성이 저하되며 SEM 사진으로 탈황제의 응집을 확인할 수 있었다. 실험으로부터 구한 평형비 ($P_{H_2O}/P_{H_2S}$)는 ${\log}(P_{H_2O}/P_{H_2S})=5653/T-3.7909$였다. 천연산 망간광석의 황화수소 제거능이 기존에 개발되어 있는 탈황제들과 비슷하기 때문에 탈황제로 사용할 수 있음을 알았다.

  • PDF

Construction of a Biofilter Immobilized with Rhodococcus sp. B261 for Removal of H2S Gas Generated by Livestock

  • Yun, Soon-Il
    • Journal of Applied Biological Chemistry
    • /
    • 제51권6호
    • /
    • pp.307-314
    • /
    • 2008
  • To explore the optimal conditions for the removal of $H_{2}S$ gas by biofiltration, various conditions, including inlet $H_{2}S$ concentration, flow rate, moisture, and cell number, were examined. Heterotrophic bacteria were isolated from the compost of the animal excreta. A strain that effectively removed $H_{2}S$ was selected and identified as Rhodococcus rhodochrous B261 by analysis of its 16S rDNA sequence. A cell number of $10^{7}\;cfu/g^{-}compost$ was sufficient to dominate the microbiota, and an effective removal was observed at $H_{2}S$ gas concentrations below 220 mg/L. The moisture content of 33-38% was suitable for activation of the microbial activity and delaying the desiccation. Higher flow rates resulted in lower removal rates of the $H_{2}S$ gas. Under the conditions of $10^7\;cfu/g^{-}compost$, $H_{2}S$ gas concentrations of 220 mg/L, and moisture content of 33-38%, the inlet $H_{2}S$ gas concentrations of 120 and 400 mg/L were completely removed for 34 and 12 days, respectively. The amount of sulfur removed was $2.99{\times}10^{-9}H_{2}S-S/cell$, which was suggested as the amount of sulfur removed by a single cell. The biofilter consisting of the compost and R. rhodochrous B261 could be suitable for a long-term biofilteration for the removal of $H_{2}S$ and other malodorous compounds.

MDEA를 이용한 $H_2S$의 습식탈황 고찰 (A Study on Wet Process of $H_2S$ removal with MDEA)

  • 한근희;조아라;이종섭;민병무
    • 한국신재생에너지학회:학술대회논문집
    • /
    • 한국신재생에너지학회 2008년도 추계학술대회 논문집
    • /
    • pp.238-241
    • /
    • 2008
  • In this study, absorption behaviors of absorbents and additives were measured for removing of $H_2S$ and COS from syn-gas in IGCC process, such as MDEA and HMDA. The experimental variables were concentration of absorbents and reaction temperature. From these experiments, the loading ratios of $H_2S$ were decreased with increasing of concentration of absorbents and absorption temperatures. These results will be applied to basic data for designing of $H_2S$ removal process in IGCC.

  • PDF

BIO-CLOD를 이용한 소화슬러지의 악취저감에 대한 연구 (The Study on the Odor Removal of Digested sludge using BIO-CLOD)

  • 성일화
    • 한국산학기술학회논문지
    • /
    • 제16권12호
    • /
    • pp.8665-8672
    • /
    • 2015
  • 본 연구에서는 하수처리장의 소화슬러지(digest sludge)를 대상으로 악취제거 및 유기물제거에 대한 타당성을 검토하고자 BIO-CLOD를 넣은 반응조와 넣지 않은 반응조에 대하여 24시간, 48시간, 72시간 후 ammonia, methyl mercaptan(MMC) 및 $H_2S$에 대해서 측정하였다. BIO-CLOD를 침적시킨 반응조(BIO-CLOD)에서 24시간 내에 ammonia는 48%인 것에 비해 $H_2S$와 MMC는 98%이상의 높은 제거율을 보인 반면에 BIO-CLOD를 침적시키지 않은 반응조(Non BIO-CLOD)에서는 24시간 내에 ammonia가 45%, $H_2S$는 71%, MMC는 84%로서 악취제거 가능성을 보였다. 암모니아 농도는 시간이 지남에 따라 감소하면서 질산성질소농도는 증가하는 질산화 현상을 보였으며, 소화슬러지내의 유황계 악취성분들이 호기성 미생물들에 의해 산화 분해되어 용액 중의 황산염농도를 증가시키는 데는 BIO-CLOD효과가 있었음을 알 수 있었으며, 황산염농도증가와 대기중의 $H_2S$ 제거율간에는 상관관계가 있음을 알수 있었다. 반응조 유출수에서 유기물의 감소는 짧은 시간 내에서는 BIO-CLOD가 영향을 주지 않았으며, HRT 12시간과 HRT 24시간으로 운전하였을 때 경제적인 면에서 HRT 12시간을 고려해야 할 것으로 판단되었다.

종속영양세균과 독립영양세균을 고정화한 Polyurethane Biofilter의 돈분뇨 악취제거 (Removal of Malodorous Gases from Swine Manure by a Polyurethane Biofilter Inoculated with Heterotrophic and Autotrophic Bacteria.)

  • 이연옥;조춘구;류희욱;조경숙
    • 한국미생물·생명공학회지
    • /
    • 제30권1호
    • /
    • pp.91-97
    • /
    • 2002
  • Removal of malodorous gases from swine manure by a polyurethane biofilter inoculated with heterotrophic and autotrophic bacteria was investigated. Ammonia, hydrogen sulfide and other gases could be efficiently treated at 3~3.6 second of empty bed retention time by the polyurethane biofilter. In the range of SV $200~l,200h^{-1}$ , the average removal efficiency of odor was about 89% when the odor unit of inlet gas was below 4100. Odor elimination capacity of the polyurethane biofilter was$ 1.8$\times$10^{5}$ $~5.0$\times$10^{7}$OUㆍm$^{-3}$$h^{-1}$ that were 84~90% of the inlet load. The critical loads of $NH_3$ and $H_2$S, which mean 97% removal with respect to the inlet loads, were 31 and $27 g.m^{-3}$$h^{-1}$ , respectively. The maximum elimination capacities of $NH_3$ and $H_2$S were 56 and $157 gㆍm^{-3}$ ㆍh$^{-1}$ , respectively. Although the removability for$ NH_3$ and $H_2$S was not influenced by $H_2$S$NH_3$ ratio (ppmv/ppmv), the $H_2$S removability was inhibited by high $H_2$S concentration more than 80 ppmv.

황산화 균주가 부착된 다공성 세라믹 biofilter를 이용한 $H_2S$ 제거 (Removal of Hydrogen Sulfide Using Porous Ceramic Biofilter Inoculated with Sulfur Oxidizing Bacteria)

  • 박상진;조경숙
    • 한국대기환경학회지
    • /
    • 제15권5호
    • /
    • pp.649-655
    • /
    • 1999
  • Biofiltration of polluted gas streams contained $H_2S$ was studied. The experiments were performed in a laboratory-scale reactor with a porous ceramic media inoculated with sulfur oxidizing bacterium, TAS which was isolated from activiated sludge. The concentration of $H_2S$ in the inlet gas varied from 109 to 3,841 ppm, at the various space velocities(SV) of 50 $h^{-1}$ to 250 $h^{-1}$. Various tests have been conducted to evaluate the effects of such parameters as pH, concentration of sulfate ion and retention time on the pressure drop and maximum elimination capacity. The removal efficiency of $H_2S$ decreased as the $H_2S$ concentration or gas velocity increased in the inlet gas. Pressure drop was insignificant in this system. The maximum elimination capacity could reach up to 16.35g-S/kg-dry packing material/day.

  • PDF