• Title/Summary/Keyword: $CO_2$ 전환율

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A Study on gasification characteristics of Indonesia Adaro Subbituminous Coal (PDTF를 이용한 인도네시아 Adaro탄의 석탄가스화 특성 실험 연구)

  • 고경호;정재화;안달홍
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 1999.05a
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    • pp.17-21
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    • 1999
  • 석탄가스화기는 IGCC의 핵심으로서 석탄을 고온에서 열분해 연소 및 가스화하여 연료가스인 저/중열량 가스(CO,H$_2$)로 전환하는 장치이며, Texaco,Destec 및 Shell 등 분류층 가스화기가 발전용으로서 개발중에 있다. 전력연구원에서는 가압분류층 가스화기(Pressured Drop Tube Furnance)를 이용하여 석탄의 가스화 특성을 연구하고 있다. 석탄가스화 공정은 탄종과 운전조건에 따라 그 반응 특성의 편차가 매우 심하고 가스화 특성 실험시 탄종이 자국위주로 되어 있어 우리나라에 많이 수입되는 석탄에 대한 가스화특성에 대한 정보가 많지 않다. 따라서 본 연구는 상용가스화기의 운전조건을 모사한 분위기하에서 석탄가스화 특성을 결정하는 것이 목적이며, Adaro탄을 대상으로 15기압 가압하에서 반응온도 140$0^{\circ}C$, 산소/석탄비 0~l.5, 석탄입자 45~63$mu extrm{m}$, 그리고 석탄 공급율은 6g/min으로 실험조건을 주어 산소/석탄비 변화시 탄소전환율 및 냉가스효율에 대한 석탄가스화 반응 특성을 평가하였다.(중략)

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Investigation of Transformation Efficiency of Rice Using Agrobacterium tumefaciens and High Transformation of GPAT (glycerol-3-phosphate acyltransferase) Gene Relative to Chilling Tolerance (Agrobacterium tumefaciens를 이용한 벼의 형질전환 효율의 검토 및 내한성 관련 GPAT (glycerol-3-phosphate acyltransferase) 유전자의 형질전환)

  • Seo, Mi-Suk;Bae, Chang-Hyu;Choi, Dae-Ock;Rhim, Seong-Lyul;Seo, Suk-Chul;Song, Pill-Soon;Lee, Hyo-Yeon
    • Journal of Plant Biotechnology
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    • v.29 no.2
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    • pp.85-92
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    • 2002
  • This study has been focused on improving transformation efficiency of rice using Agrobacterium tumefaciens. We have demonstrated the effect of this system when the GPAT gene related to the cold-resistance was transferred by Agrobacterium tumefaciens in rice. Transformation conditions were modified using intron $\beta$-glucuronidase (GUS) expression as a reporter gene in the rice. In this study, mature seed-derived calli of rice (Oruza sativa L. cv. Dongjin) were pre-cultured for 3 days and then infected with Agrobacterium. When this infected calli were cultured in the dark for 10 days on co-cu]lure medium containing 50 mg/L of CaCl$_2$, 30 mg/L of acetosyringone, 2 mg/L of 2,4-D, 120 mg/L of betaine, high GUS expression was observed. In the present transformation system, the efficiency of transformation of GPAT gene was about 54%. Stable integration of GPAT gene into chromosomal DNA was proven by southern blot analysis of genomic DNA isolated from T$_{0}$ progenies. The progenies (T1 generation) derived from primary transformant of 5 lines were segregated with a 3 (resistant) : 1 (sensitive ratio) in medium containing hygromycin. This high frequency transformation system can be used as a useful tool in transformation of another monocotyledon.n.

Thermodynamic and Spectroscopic Analysis of Gas Hydrate-Based $CO_2$ Separation Process (가스 하이드레이트 기반 $CO_2$ 분리 공정의 열역학적 및 분광학적 해석)

  • Park, Sungmin;Lee, Seungmin;Lee, Youngjun;Kim, Yunju;Seo, Yongwon
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.05a
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    • pp.146.1-146.1
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    • 2011
  • 석탄가스화복합발전(IGCC)공정에서 가스화기를 거쳐 생성된 합성가스로부터 $CO_2$를 효과적으로 분리/회수하기 위해 가스 고형화법을 제안하였다. 가스 하이드레이트 형성과정에서의 반응특성을 살펴보기 위하여 반응시간에 따른 가스소모량과 기상의 $CO_2$ 조성 변화를 측정하였다. 순수계와 촉진제 첨가계 (TBAB (10, 40 wt%), TBAF (10, 34 wt%), THF (4, 19 wt%))에 대하여 하이드레이트 생성 후의 기상과 하이드레이트상의 $CO_2$ 조성을 측정하였으며, 그 결과 하이드레이트 형성법에 의해 고농도의 $CO_2$가 하이드레이트상에 포집되는 것을 확인하였다. 가스 소모량 측정실험에서는 THF 19.1 wt%를 첨가하였을 때 가장 큰 소모량을 보였으며, TBAF 10 wt%를 첨가하였을 때 가장 적은 가스소모량을 보였다. $CO_2$ 조성 변화 실험에서는 가스 소모량 실험과 마찬가지로 THF 19.1 wt%를 첨가하였을 때 가장 큰 조성변화를 보였다. 이는 THF의 첨가로 인하여 가스 하이드레이트로의 전환율 증가로 많은 양의 $CO_2$ 기체가 하이드레이트 상에 포집되었음을 나타낸다. 속도론적인 측면에서는 모든 실험조건에서 하이드레이트 형성반응이 1시간 이내에 대부분 종결되는 것을 볼 수 있었다. 또한 $^1H$-NMR을 통하여 혼합가스 하이드레이트의 구조적인 분석을 진행하였다. 본 실험에서 얻어진 결과는 가스 하이드레이트 형성법을 이용한 합성가스 분리 공정 개발에 중요한 기초자료가 될 것으로 사료된다.

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Factors Affecting Introduction of rolC Gene in Lycium chinense Mill. (구기자나무(Lycium chinense Mill.)로의 rolC유전자 도입에 미치는 요인)

  • 박용구;최명석;김병원;정원일;노광수
    • Korean Journal of Plant Tissue Culture
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    • v.22 no.6
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    • pp.329-334
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    • 1995
  • Transformation system of rolC gene, dwarf gene in Lycium chinenese Mill. established by using system. Pin-punctured leaves induced numerous adventious buds in abaxial side when cultured on 3/2 MS medium containing 2.0 mg/L zeatin. Survival rate and shoot regeneration frequency of leaf explants decreased as kanamycin sulfate level increased. Shoot buds were not regenerated on 3/2 MS medium containing 10 mg/L kanamycin sulfate and 2.0 mg/L zeaein. Of the level tested, 10 mg/L of kanamycin sulfate was optimum in selection of kanamycin sulfate resistant plant. Co-culture time of bacteria and leaf explants was affected at the frequency of shoot regeneration and survival of leaf explants. Leaf explants co-cultivated during above 48hr severely decreased survival rate and shooting rate. Best result on survival rate and shooting rate were obtained when exposed for 24 h. 80 explants of 105 leaf explants survived on 3/2 MS medium containing 2.0 mg/L zeatin and 10 mg/L kanamycin sulfate, and 15 shoots was regenerated on the same medium. To select kanamycin sulfate resistant plant, regenerate as cultured on 3/2 MS medium containing 10 mg/L kanamycin sulfate, and obtained 5 kanamycin resistant plants. Southern blot analysis conformed that the rolC gene was incorporated into the genomic DNA of kanamycin resistant plants.

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A Study on Catalysts for Simultaneous Removal of 1,2-Dichlorobenzene and NOx (1,2-Dichlorobenzene 및 질소산화물 동시제거를 위한 촉매연구)

  • Park, Kwang Hee;Hong, Sung Chang
    • Applied Chemistry for Engineering
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    • v.20 no.5
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    • pp.522-526
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    • 2009
  • The catalytic oxidation of 1,2-dichloribenzene (1,2-DCB) and simultaneous catalytic reduction of nitrogen oxides over the single catalyst has been investigated over various metals (Ru, Mn, Co and Fe) supported on $Al_2O_3$ and $CeO_{2}$. The activity of the different catalysts for catalytic oxidation of 1,2-dichloribenzene depended on the used metal, Ru/Co/$Al_2O_3$, Mn-Fe/CeO2 and Cr/$Al_2O_3$ (commercial catalysts) being the most actives ones. In the catalytic oxidation of chlorobenzene (CB), Ru/Co/$Al_2O_3$ is better than Pt-Pd/$Al_2O_3$, which is the well-known catalyst good for VOC oxidation. Furthermore, it has a good durability on the deactivation by $Cl_2$ and sulfur. For nitrogen oxides (NOx) removal, NOx conversion was 70% at $260^{\circ}C$.

Comparative Studies on K2CO3-based Catalytic Gasification of Samhwa Raw Coal and Its Ash-free Coal (삼화 원탄과 무회분탄의 촉매(K2CO3) 가스화 반응성 비교 연구)

  • Kong, Yongjin;Lim, Junghwan;Rhim, Youngjoon;Chun, Donghyuk;Lee, Sihyun;Yoo, Jiho;Rhee, Young-Woo
    • Clean Technology
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    • v.20 no.3
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    • pp.218-225
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    • 2014
  • Catalytic gasification of raw coals at mild condition is not realized yet mainly due to deactivation of catalysts via their irreversible interaction with mineral matters in coal. In this work, the gasification behavior of ash-free coal (AFC) was compared with that of the parent raw coal. In order to modify the gasification conditions, the raw coal gasified with fixed variables (water supply, space velocity, temperature, catalysts) in a fixed bed reactor. When catalysts are added by physical mixing method with coal, $K_2CO_3$ was the most effective additives for steam gasification of coal. However, the activity of ash-free coal (AFC) was much less reactive than raw coal due to high temperature extraction in a 1-methylnaphthalene under 30bar at $370^{\circ}C$ for 1 h, almost removed oxygen functional groups, and increased carbonization. The addition of $K_2CO_3$ in AFC achieved higher conversion rate at low temperature ($700^{\circ}C$). At that time, the molar ratio of gases ($H_2/CO$ and $CO_2/CO$) was increased because of water-gas shift reaction (WGSR) by addition of catalysts. This shows that catalytic steam gasification of AFCs is achievable for economic improvement of gasification process at mild temperature.

CO Oxidation Over Pt Supported on Al-Ce Mixed Oxide Catalysts with Different Mole Ratios of Al/(Al+Ce) (서로 다른 몰비의 Al/(Al+Ce)를 가진 Al-Ce 혼합산화물에 담지된 Pt 촉매 상에서의 일산화탄소 산화반응)

  • Park, Jung-Hyun;Cho, Kyung-Ho;Kim, Yun-Jung;Shin, Chae-Ho
    • Clean Technology
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    • v.17 no.2
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    • pp.166-174
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    • 2011
  • The xAl-yCe oxide catalysts with different mol ratios of Al/(Al+Ce) were prepared by a co-precipitation method and Pt supported on xAl-yCe oxide catalysts were synthesized by an incipient wetness impregnation method. The catalysts were characterized by X-ray Diffraction (XRD), $N_2$ sorption, and $H_2$/CO-temperature programmed reduction ($H_2$/CO-TPR) to correlate with catalytic activities in co oxidation. Among the catalysts studied here, Pt/1Al-9Ce oxide catalyst showed the highest activity in dry and wet reaction conditions and the catalytic activity showed a typical volcano-shape curve with respect to Al/(Al+Ce) mol ratio. When the presence of 5% water vapor in the feed, the temperature of $T_{50%}$ was shifted ca. $30^{\circ}C$ to lower temperature region than that in dry condition. From CO-TPR, the desorption peak of $CO_2$ on Pt/1Al-9Ce oxide catalyst showed the highest value and well correlated the catalytic performance. It indicates that the Pt/1Al-9Ce oxide catalyst has a large amount of active sites which can be adsorbed by co and easy to supplies the needed oxygen. In addition, the amount of pentacoordinated $Al^{3+}$ sites obtained through $^{27}Al$ NMR analysis is well correlated the catalytic performance.

Optimal Design of Carbon Dioxide Dry Reformer for Suppressing Coke Formation (코크 생성 억제를 위한 이산화탄소 건식 개질 반응기의 최적 설계)

  • Lee, Jongwon;Han, Myungwan;Kim, Beomsik
    • Korean Chemical Engineering Research
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    • v.56 no.2
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    • pp.176-185
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    • 2018
  • As global warming accelerates, greenhouse gas reduction becomes more important. Carbon dioxide dry reforming is a promising green-house gas reduction technology that can obtain CO and $H_2$ which are high value-added materials by utilizing $CO_2$ and $CH_4$ which are greenhouse gases. However, there is a significant coking problem during operation of the dry reforming reactor. Because the carbon dioxide dry reforming is a strong endothermic reaction, the temperature of the reactor drops near the reactor inlet and causes coke formation. To solve this problem, it is important to ensure that the reaction takes place in a temperature range where coke production is minimized. In this study, we proposed a design method that can maintain reaction temperature in the region where the coke is rarely generated by using the new catalyst configuration method. The design method also optimizes the reactor by solving the optimization problem which minimizes the reactor length for a given reaction conversion by using the fuel flow rate, catalyst density, and output temperature by section as optimization variables.

Syngas Concentration and Efficiency in Heavy Residual Oil Gasification with 1 Ton/Day-Class Entrained-Bed Reactor (1톤/일급 분류층 가스화기에서 중질잔사유의 가스화 합성가스 조성 및 효율 변화)

  • 주지선;나혜령;윤용승
    • Journal of Energy Engineering
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    • v.12 no.1
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    • pp.58-64
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    • 2003
  • With the 1 ton/day-class entrained-bed gasification system, heavy residual oil from local refinery was gasified at the operating conditions of 1,000~1,20$0^{\circ}C$ and 3 $kg_f$/$\textrm{cm}^2$ in order to determine the variation of syngas composition, carbon conversion, and cold gas efficiency. Produced syngas consists of mainly CO, H$_2$, $CO_2$, and the methane concentrations. Results yielded a maximum syngas composition of 45% H$_2$ and 26%, CO at the 31 kg/hr feeding condition. The maximum carbon conversion and cold gas efficiency were 87% and 68%, respectively at the feeding conditions of 20 kg/hr and oxygen/feed ratio of 1.2. When oxygen feeding amount that is one of the most important operating parameter in gasification was increased, concentration of hydrogen in the syngas is greatly increased comparing to the concentration of CO and $CO_2$. The temperature exhibited about 11$0^{\circ}C$ raise while oxygen/feed ratio changed from 0.6 to 1.2. Methane concentration showed enhanced dropping rate with increase in gasifier temperature and the useful relationship between the gasifier temperature and methane concentration existed such that it can be employed as an indirect measure of inside gasifier temperature.

Decomposition Reaction of Methanol over Ni-Cu/SiO$_2$Catalyst (Ni-Cu/SiO$_2$촉매 상에서의 메탄올 분해 반응)

  • 박지영;문승현;윤형기;박성룡;이상남;정승용
    • Journal of Energy Engineering
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    • v.5 no.1
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    • pp.65-71
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    • 1996
  • Decomposition reaction of methanol was conducted on Ni-Cu/SiO$_2$catalysts with several variables. Variables used in this study are S.V(Space Velocity), partial pressure of methanol, reaction temperature, and composition rate of Ni-Cu. The range of S.V is 10,000-30,000h$\^$-1/, the temperature range is 150-400$^{\circ}C$ and values of Cu/(Ni+Cu) are 0, 0.25, 0.5, 0.75, and 1. Over Ni/SiO$_2$, and Ni-Cu/SiO$_2$, the conversion rate of decomposition reaction of methanol arrived at 100% with increasing of temperature. At this time the selectivity of CO on Ni/SiO$_2$, was suddenly decreased, but on Ni-Cu/SiO$_2$, it was still sustained highly. The main products of reaction were CO and H$_2$, and by-products were CO$_2$ and CH$_4$mainly.

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