• 제목/요약/키워드: Sulfide Production

검색결과 129건 처리시간 0.033초

Clostridium autoethanogenum을 이용한 합성가스 발효에 대한 비타민과 황 공급원의 영향 (Effect of Vitamin and Sulfur Sources on Syngas Fermentation Using Clostridium autoethanogenum)

  • 임홍래;안태광;박소은;김영기
    • 공업화학
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    • 제30권6호
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    • pp.681-686
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    • 2019
  • 이 연구에서는 합성가스를 기질로 사용하는 Clostridium autoethanogenum 배양 공정에서 에탄올 생산성 향상을 위하여 배지 성분의 농도가 균주 성장과 에탄올 생산에 미치는 영향을 조사하였다. C. autoethanogenum 배양에 사용되는 기본 배지 구성 성분 중 비타민 종류인 D-Ca-pantothenate, vitamin B12와 황 공급원인 sodium sulfide를 조사 대상 성분으로 선정하여 이 성분들의 농도를 달리하였을 때 균주 성장과 에탄올 생산에 미치는 영향을 확인하였다. D-Ca-pantothenate는 0.5, 5, 50, 500 mg/L 농도를 시험하였으며 0.5 mg/L에서 에탄올 생산량이 약간 증가하는 경향을 보였지만 시험한 농도 범위에서 균주의 성장이나 에탄올 생산에 대한 주목할 만한 영향은 관찰되지 않았다. Vitamin B12는 0.1, 1.0, 10, 100 mg/L의 농도범위에서 균주 성장과 에탄올 생산에 미치는 영향을 관찰하였으며, 0.1 mg/L 농도에서 에탄올 생산농도가 일반적 기본배지 농도인 10 mg/L에서보다 245% 증가되는 것을 확인하였다. Sodium sulfide는 0.5, 5, 10 g/L 농도범위에서 균주 성장과 에탄올 생산에 미치는 영향을 분석하였으며, 기본배지의 사용농도인 0.5 g/L을 초과하여 과잉 공급하였을 때, 균주 성장 저해 현상이 관찰되었다. 결과적으로 연구에 사용된 세 가지 배지 성분 중, D-Ca-pantothenate와 sodium sulfide는 배지 내 성분 농도에 따른 에탄올 생산농도 향상을 이루지 못하였으나, vitamin B12는 기본 배지 내 일반적인 농도의 1/100을 사용함으로써 에탄올 생산농도 향상을 이룰 수 있었다.

매립가스 발전시설의 가동률 및 발전량에 미치는 주요 영향요소 분석 (The Analysis of Main Factors Which Impact on Operation Rate and Power Production of Landfill Gas Power Plant)

  • 천승규
    • 대한환경공학회지
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    • 제38권3호
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    • pp.128-134
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    • 2016
  • S 매립장 매립가스 발전시설을 대상으로 발전량에 미치는 주요 요소와 그 영향도를 분석하였다. 50 MWh 24시간의 정상가동 일수는 2007년부터 2014년까지의 총 운전기간 일수대비 70.9%이었으며, 실제 생산한 전력은 이론적인 최대 발전 가능량 3,428,400 MW의 79.3%이었다. 발전효율에 영향을 미치는 주요 요소는 정기점검 등이 44.0%, 황화수소로 인한 감축운전이 37.4% 그리고 공기예열기 세정 18.6% 순이었다. 그러나 황화수소 감축운전 기간이 2년인 점을 감안하면 고농도 황화수소 발생이 매립가스 발전에 가장 큰 영향을 미치고 있었다. 장기적인 발전 가능량 분석결과 매립종료 해인 2018년 35.9 MWh 이었으며 이후 지속적으로 감소하여 2028년 16.6 MWh, 2038년에는 8.4 MWh 이하가 될 것으로 예측되었다.

Development of a Method to Measure Hydrogen Sulfide in Wine Fermentation

  • Park, Seung-Kook
    • Journal of Microbiology and Biotechnology
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    • 제18권9호
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    • pp.1550-1554
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    • 2008
  • A hydrogen sulfide $(H_2S)$ detecting tube was developed for the quantitative determination of $H_2S$ produced by yeast during laboratory scale wine fermentations. The detecting tube consisted of a small transparent plastic tube packed with an $H_2S$-sensitive color-indicating medium. The packed medium changed color, with the color change progressing upward from the bottom of the tube, upon exposure to $H_2S$ produced by yeast during fermentation. A calibration study using a standard $H_2S$ gas showed that the length of the portion that darkened was directly related to the quantity of $H_2S$ (${\mu}g$) with a high correlation coefficient ($r^2$=0.9997). The reproducibility of the $H_2S$ detecting tubes was determined with five repetitive measurements using a standard $H_2S$ solution [5.6${\mu}g$/200 ml (28 ppb)], which resulted in a coefficient of variation of 3.6% at this level of $H_2S$. With the sulfide detecting tubes, the production of $H_2S$ was continuously monitored and quantified from laboratory scale wine fermentations with different yeast strains and with the addition of different levels of elemental sulfur to the grape juice. This sulfide detecting tube technology may allow winemakers to quantitatively measure $H_2S$ produced under different fermentation conditions, which will eventually lead winemakers to better understand the specific factors and conditions for the excessive production of $H_2S$ during wine fermentation in a large production scale.

The Wine Yeast Strain-Dependent Expression of Genes Implicated in Sulfide Production in Response to Nitrogen Availability

  • Mendes-Ferreira, A.;Barbosa, C.;Jimenez-Marti, E.;Del Olmo, M.;Mendes-Faia, A.
    • Journal of Microbiology and Biotechnology
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    • 제20권9호
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    • pp.1314-1321
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    • 2010
  • Sulfur metabolism in S. cerevisiae is well established, but the mechanisms underlying the formation of sulfide remain obscure. Here, we investigated by real-time RT-PCR the dependence of expression levels of MET3, MET5/ECM17, MET10, MET16, and MET17 along with SSU1 on nitrogen availability in two wine yeast strains that produce divergent sulfide profiles. MET3 was the most highly expressed of the genes studied in strain PYCC4072, and SSU1 in strain UCD522. The strains behaved differently according to the sampling times, with UCD522 and PYCC4072 showing the highest expression levels at 120 h and 72 h, respectively. In the presence of 267 mg assimilable N/l, the genes were more highly expressed in strain UCD522 than in PYCC4072. MET5/ECM17 and MET17 were only weakly expressed in both strains under any condition tested. MET10 and SSU1 in both strains, but MET16 only in PYCC4072, were consistently upregulated when sulfide production was inhibited. This study illustrates that strain genotype could be important in determining enzyme activities and therefore the rate of sulfide liberation. This linkage, for some yeast strains, of sulfide production to expression levels of genes associated with sulfate assimilation and sulfur amino acid biosynthesis could be relevant for defining new strategies for the genetic improvement of wine yeasts.

미생물 성장 특성에 기초한 독립영양탈질의 화학양론식 연구 (A Study on the Reaction-Stoichiometry of Autotrophic Denitrification based on Growth Characteristic of Microorganism)

  • 이수원;김규동;최영균;김동한;정태학
    • 상하수도학회지
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    • 제18권2호
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    • pp.121-127
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    • 2004
  • It is necessary to supply external carbon source for enhancement of biological nitrogen removal from domestic wastewater with low influent C/N ratio. Sulfide was chosen as a cost effective electron donor and reaction stoichiometry for autotrophic denitrification was investigated by conducting bench-scale experiments in this study. Higher sulfur to nitrogen (S/N) ratio than the calculated value from theoretical reaction stoichiometry was required when the anoxic reactor was operated at open condition because dissolved oxygen introduced by surface aeration reacted with sulfide with ease. In addition, higher sulfate production and lower yield of microorganism could be observed under the same condition. It was possible to obtain reliable reaction stoichiometry for autotrophic denitrification by establishing pure anoxic condition. Linear relationship between bacterial growth and consumption of nitrate, sulfide, alkalinity, and sulfate production enabled to derive a relatively correct reaction stoichiometry for autotrophic denitrification when sulfide was used as an electron donor.

돈분 및 음식물쓰레기 혼용 혐기소화 시 황화수소 가스 모니터링 (Monitoring of Hydrogen Sulfide in Anaerobic Co-digestion of Swine Manure and Food Waste)

  • 신중두;성시우;김현욱;김삼권;이명선
    • 유기물자원화
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    • 제16권4호
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    • pp.43-49
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    • 2008
  • 본 연구의 목적은 석유화학에너지를 대체하기 위해 바이오가스 생산을 위한 돈분 및 음식물쓰레기 혼용 혐기소화 시 황화수소가스 농도 및 발생비율을 모니터링 한 것이었다. 바이오가스 생산을 위한 혼합혐기 소화는 휘발성 고형물 2%기준 다양한 돈분 및 음식물쓰레기 혼합비율하에서 시럼병을 이용하여 수행하였다. 황화수소가스 발생비율은 처리별 소화기간에 따라 다양하다 할지라도, 수급원료를 돈분만을 이용한 경우는 음식물 쓰레기와 비교할 때 황화수소 발생량은 2.4배 낮게 나타난 것으로 관측되었다. 돈분과 음식물쓰레기 혼합비율에 따른 황화수소가스 농도에 미치는 영향에 대해서는 음식물쓰레기 혼합비율이 높으면 높을수록 황화수소 농도가 높게 나타났다. 황화수소가스 평균 농도는 돈분처리, 0.1452% 에서부터 음식물쓰레기 처리, 0.3420% 까지 다양 하였다. 돈분 및 음식물쓰레기 혼용 혐기발효 시 바이오가스 조성비율은 메탄가스가 53.2%, 이산화탄소 23.9%, 황화수소 0.3% 및 수분을 포함한 기타 22.7%로 이루어져 있는 것으로 나타났다.

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하수관내 침전물의 황화수소가스 발생에 관한 연구 (Production of Hydrogen Sulfide Gas from Sediments in Concrete Sewer)

  • 조선형;고영송;남상호
    • 상하수도학회지
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    • 제10권3호
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    • pp.83-91
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    • 1996
  • The pulverized wastes originated from kitchen garbage grinder cause an additional load in sewage treatment plant and water environment. Therefore, several problems occur in sewer, such as microbial corrosion, odor, psychoda and fly interrupting flow of sewage etc. by their precipitation with earth and sand. This study was conducted on two experiments: hydrogen sulfide gas generation from sediments in sewer and anaerobic batch test. In anaerobic batch test, gas generation was increased when organic compounds were increased in concentration. Sulfide was decreased upon decreasing in sulfate concentration. In $H_2S$ gas generation test along the depth of sediments there were two different sampling sites which are apart from about 50 cm each other in a menhole. The one has the thickness of 55 cm from the surface, the other, of 60 cm. The hydrogen sulfide gas production rates were measured based on ranges from 0 to 10 cm, 10 to 20 cm, 20 to 30 cm for two samples. The results obtained were 1.08, between 0 to 10 cm in depth for the sample thickness of 55 cm and 3.07, 5.36, $5.42{\mu}g/g-VS{\cdot}hr$ in order of depth for the sample thickness of 60 cm, respectively.

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건설폐기물, 생활폐기물의 용출특성 분석과 BMP test를 통한 최종메탄(CH4) 및 황화수소(H2S) 수율 산정 (Estimation of Ultimate Methane and Hydrogen Sulfide Yields for C&D Waste and MSW Using BMP Test)

  • 정석영;정성엽;장순웅
    • 신재생에너지
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    • 제10권1호
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    • pp.30-40
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    • 2014
  • The main object of this study was to offer information about incoming waste in landfill and to evaluate biochemical methane and hydrogen sulfide potentials of landfill wastes. We examined brick, soil, mixed waste (C&D waste and MSW) samples for the study. The leaching experiments showed that BOD, COD and sulfate were determined in the range of 0~18,816 mg/kg, 85~21,100 mg/kg and 160~1,205 mg/kg, respectively in 6hr extraction test. An accumulated extraction tests for 140day were determined BOD 226~197,219 mg/kg, COD 436~242,588 mg/kg and Sulfate 1,090~25,140 mg/kg. Also, BMP (biochemical methane potential) tests were carried out to examine methane and hydrogen sulfide yields for the 3 different wastes. As a result, methane yield was determined to 262.68 mL $CH_4/g$ VS of MSW and 0~17.75 mL $CH_4/g$ VS in brick, soil and C&D waste. Higher hydrogen sulfide yield was observed to 0.079mL $H_2S/g$ VS in C&D waste. This result indicate that brick and soil could be sources of sulfate, and higher production of hydrogen sulfide could be odor problem and inhibitor of methane production.

고온 부식환경에 대한 Fe-Cr-X 합금의 열역학적 반응경로에 관한 연구 (A Study of Thermodynamical Reaction Path in Fe-Cr-X Alloys at High Temperature Corrosion Environments)

  • 이병우;김우열
    • 수산해양기술연구
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    • 제32권4호
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    • pp.411-420
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    • 1996
  • The structure of the scale formed on the surface of Fe - Cr - X alloys exposed to 1143K high sulfidation($Ps_2$ = 1.11$\times$$10^-7$ atm, $Po_2$ = 3.11$\times$$10^-20$ atm) or sulfidation/oxidation(($Ps_2$= 1.06$\times$$10^-7$ atm, ($Po_2$ = 3.11$\times$$10^-18$ atm) environment has been observed and analysed using XRD, SEM/EDS. To investigate the possibility of protective film formed on the surface of the alloys, Aluminium, Nickel were selected as alloying elements. Thermodynamic phase stability diagram was used to predict the reaction path of scale formed on Fe - Cr - X alloys. Parabolic rate constant($K_p$) value with 6wt% Al in Fe - 25Cr alloy decreased significantly compared with the Fe - 25Cr alloy without 6wt% Al. Since thin layer of defect free sulfide film, (Al, Cr)Sx, was formed at the alloy/scale interface. Fe - rich sulfide scale at outer layer and Cr - rich sulfide scale containing porosity at inner layer of Fe - 25Cr alloy have been observed. The reaction path for these scales could be predicted by the thermodynamic stability diagram.

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Beneficial Effects of Lactobacillus casei ATCC 334 on Halitosis Induced by Periodontopathogens

  • Lee, Ki-Ho;Baek, Dong-Heon
    • International Journal of Oral Biology
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    • 제39권1호
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    • pp.35-40
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    • 2014
  • Halitosis is caused by consumption of certain foods or drinks and production of volatile sulfur compounds (VSCs) by periodontopathogens. VSCs-related halitosis is not easily removed using mechanical or chemical therapies such as dental floss, plaque control and mouth rinse. Lactobacillus are known to be probiotics and stimulate immune systems of human. Furthermore, L. casei ATCC 334 and L. rhamnosus GG have an effect on protection of dental caries in vitro studies. The aim of this study was to investigate effect of Lactobacillus on halitosis by Fusobacterium nucleatum- and Porphyromonas gingivalis-producing VSCs and to analyze inhibitory mechanism. The periodontopathogens were cultivated in the presence or the absence Lactobacillus, and the level of VSCs was measured by gas chromatograph. For analysis of inhibitory mechanisms, the susceptibility assay of the spent culture medium of Lactobacillus against F. nucleatum and P. gingivalis was investigated. Also, the spent culture medium of Lactobacillus and periodontopathogens were mixed, and the emission of VSCs from the spent culture medium was measured by gas chromatograph. L. casei and L. rhamnosus significantly reduced production of VSCs. L. casei and L. rhamnosus exhibited strong antibacterial activity against F. nucleatum and P. gingivalis. The spent culture medium of L. casei inhibited to emit gaseous hydrogen sulfide, methyl mercaptan and dimethyl sulfide from the spent culture medium of periodontopathogens. However, the spent medium of L. rhamnosus repressed only dimethyl sulfide. L. casei ATCC 334 may improve halitosis by growth inhibition of periodontopathogens and reduction of VSCs emission.