• 제목/요약/키워드: CO2 production

검색결과 3,843건 처리시간 0.04초

Long-Term Stability for Co-Electrolysis of CO2/Steam Assisted by Catalyst-Infiltrated Solid Oxide Cells

  • Jeong, Hyeon-Ye;Yoon, Kyung Joong;Lee, Jong-Ho;Chung, Yong-Chae;Hong, Jongsup
    • 한국세라믹학회지
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    • 제55권1호
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    • pp.50-54
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    • 2018
  • This study investigated the long-term durability of catalyst(Pd or Fe)-infiltrated solid oxide cells for $CO_2$/steam co-electrolysis. Fuel-electrode supported solid oxide cells with dimensions of $5{\times}5cm^2$ were fabricated, and palladium or iron was subsequently introduced via wet infiltration (as a form of PdO or FeO solution). The metallic catalysts were employed in the fuel-electrode to promote $CO_2$ reduction via reverse water gas shift reactions. The metal-precursor particles were well-dispersed on the fuel-electrode substrate, which formed a bimetallic alloy with Ni embedded on the substrate during high-temperature reduction processes. These planar cells were tested using a mixture of $H_2O$ and $CO_2$ to measure the electrochemical and gas-production stabilities during 350 h of co-electrolysis operations. The results confirmed that compared to the Fe-infiltrated cell, the Pd-infiltrated cell had higher stabilities for both electrochemical reactions and gas-production given its resistance to carbon deposition.

기능성 바이오차 생산을 위한 이산화탄소의 영향 평가 (Evaluation of the Effects of Carbon Dioxide on the Production of Engineered Biochar)

  • 이상윤;이태우;권일한
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제27권2호
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    • pp.41-49
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    • 2022
  • To abate the environmental burdens arising from CO2 emissions, biochar offers a strategic means to sequester carbons due to its recalcitrant nature. Also, biochar has a great potential for the use as carbon-based adsorbent because it is a porous material. As such, developing the surface properties of biochar increases a chance to produce biochar with great adsorption performance. Given that biochar is a byproduct in biomass pyrolysis, characteristics of biochar are contingent on pyrolysis operating parameters. In this respect, this work focused on the investigation of surface properties of biochar by controlling temperature and reaction medium in pyrolysis of pine sawdust as case study. In particular, CO2 was used as reaction medium in pyrolysis process. According to pyrolytic temperature, the surface properties of biochar were indeed developed by CO2. The biochar engineered by CO2 showed the improved capability on CO2 sorption. In addition, CO2 has an effect on energy recovery by enhancing syngas production. Thus, this study offers the functionality of CO2 for converting biomass into engineered biochar as carbon-based adsorbent for CO2 sorption while recovering energy as syngas.

Ammonia and Carbon Dioxide Concentrations in a Layer House

  • Kilic, Ilker;Yaslioglu, Erkan
    • Asian-Australasian Journal of Animal Sciences
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    • 제27권8호
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    • pp.1211-1218
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    • 2014
  • Higher concentrations of ammonia ($NH_3$) and carbon dioxide ($CO_2$) in animal barns can negatively affect production and health of animals and workers. This paper focuses on measurements of summer concentrations of ammonia ($NH_3$) and carbon dioxide ($CO_2$) in a naturally ventilated laying henhouse located at an egg production facility in Bursa region, western Turkey. Also, indoor and ambient environmental conditions such as temperature and relative humidity were measured simultaneously with pollutant gas concentrations. The average $NH_3$ concentrations during summer of 2013 was 8.05 ppm for exhaust and 5.42 ppm for inlet while average $CO_2$ concentration was 732 ppm for exhaust and 625 ppm for inlet throughout summer. The overall minimum, average and maximum values and humidity were obtained as $16.8^{\circ}C$, $24.72^{\circ}C$, and $34.71^{\circ}C$ for indoor temperature and 33.64%, 63.71%, and 86.18% for relative humidity. The lowest exhaust concentrations for $NH_3$ and $CO_2$ were 6.98 ppm and 609 ppm, respectively. They were measured in early morning at the maximum diurnal ventilation rate in July 2013 and August 2013. The highest concentrations were 10.58 ppm for $NH_3$ and 904 ppm for $CO_2$ recorded in the afternoon when the ventilation rate was the lowest in June 2013.

이산화탄소 해양지중저장사업의 경제적 파급효과 분석 (The Economic Impacts of CCS Marine Geological Storage Demonstration Project on the National Economy using Input-output Analysis)

  • 이주석;최은철
    • Ocean and Polar Research
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    • 제38권1호
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    • pp.71-79
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    • 2016
  • In this study, we attempt to examine the economic impacts of the CCS marine geological storage demonstration project in Korea using Input-Output analysis utilizing the inter-industry relation table issued in 2013. In particular, this study defines the $CO_2$ ocean storage industry and then added the inter-industry relation table and treated the $CO_2$ ocean storage industry as exogenous. In addition, this study assumed two scenarios based on the means of $CO_2$ transport, which are pipe and ship. After defining the industry and scenarios, this study investigates the production-inducing effect, value added inducing effect, and employment-inducing effect of the industries associated with the $CO_2$ ocean storage industry based on a demand-driven model. The results pertaining to the scenarios are estimated as follows: total production-inducing effects, value added inducing effects, and employment-inducing effects are calculated as 1.9044 won, 1.2487 won and 16.7224 people/billion won, respectively. In addition, compared to other industries, the indirect economic impacts of the $CO_2$ ocean storage industry are ranked high: the rankings of production-inducing effects, value added inducing effects, and employment-inducing effects are fourth, second, and fifth, respectively.

산화제 제어 확산화염의 화염구조 및 NO 생성 특성에 관한 수치해석적 연구 (Numerical Study on Flame Structure and NO Formation Characteristics in Oxidizer-Controlled Diffusion Flames)

  • 이창언;한지웅
    • 대한기계학회논문집B
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    • 제26권5호
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    • pp.742-749
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    • 2002
  • Numerical Study with detailed chemistry has been conducted to investigate the flame structure and NOx formation characteristics in oxygen -enhanced(CH$_4$/O$_2$-$N_2$) and oxygen-enhanced-EGR(CH$_4$/O$_2$-$CO_2$) counter diffusion flame with various strain rates. A small amount of $N_2$is included in oxygen-enhanced-EGR combustion, in order to consider the inevitable $N_2$contamination by $O_2$production process or air infiltration. The results are as follows : In CH$_4$/O$_2$-$CO_2$flame it is very important to adopt a radiation effect precisely because the effect of radiation changes flame structure significantly. In CH$_4$/O$_2$-$N_2$flame special strategy to minimize NO emission is needed because it is very sensitive to a small amount of $N_2$. Special attention is needed on CO emission by flame quenching, because of increased CO concentration. Spatial NO production rate of oxygen-enhanced combustion is different from that of air and oxygen-enhanced-EGR combustion in that thermal mechanism plays a role of destruction as well as production. In case CH$_4$/O$_2$-$CO_2$flame contains more than 40% $CO_2$it is possible to maintain the same EINO as that of CH$_4$/Air flame with accomplishing higher temperature than that of CH$_4$/Air flame. EINO decreases with increasing strain rate, and those effects are augmented in CH$_4$/O$_2$flame.

산화제 제어 화염의 구조 및 NO 생성 특성 (Structure and NO formation characteristics of oxidizer-controlled diffusion flames)

  • 한지웅;이창언
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 추계학술대회논문집B
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    • pp.185-190
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    • 2001
  • Numerical Study with detailed chemistry has been conducted to investigate the flame structure and NOx formation characteristics in oxygen-enhanced$(CH_4/O_2-N_2)$ and oxygen-enhanced-EGR$(CH_4/O_2-CO_2)$ counter diffusion flame with various strain rates. A small amount of $N_2$ is included in oxygen-enhanced-EGR combustion, in order to consider the inevitable $N_2$ contamination by $O_2$ production process or air infiltration. The results are as follows : In $CH_4/O_2-CO_2$ flame it is very important to adopt a radiation effect precisely because the effect of radiation changes flame structure significantly. In $CH_4/O_2-N_2$ flame special strategy to minimize NO emission is needed because it is very sensitive to a small amount of $N_2$. Special attention is needed on CO emission by flame quenching, because of increased CO concentration. Spatial NO production rate of oxygen-enhanced combustion is different from that of air and oxygen-enhanced-EGR combustion in that thermal mechanism plays a role of destruction as well as production. In case $CH_4/O_2-CO_2$ flame contains more than 40% $CO_2$ it is possible to maintain the same EINO as that of $CH_4/Air$ flame with accomplishing higher temperature than that of $CH_4/Air$ flame. EINO decreases with increasing strain rate, and those effects are augmented in $CH_4/O_2$ flame. Complementary study is needed with extending the range of strain rate variation.

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이산화탄소와 온도 그리고 한발 영향에 따른 감자의 생육과 수량반응 (Effect of Carbon Dioxide Concentration, Temperature, and Relative Drought on Growth Responses and Yield in Spring Potato (Solanum tuberosum L.))

  • 이윤호;조현숙;김준환;상완규;신평;백재경;서명철
    • 한국농림기상학회지
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    • 제20권2호
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    • pp.149-158
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    • 2018
  • 본 연구는 지구온난화에 따른 봄 감자에 대한 상승된 $CO_2$농도, 온도 그리고 한발에 미치는 영향을 평가를 위해 국립식량과학원 옥외환경시설에서 수행을 하였다. 감자는 C3식물로 상승된 $CO_2$농도와 적정 온도에 효과적인 생육 반응을 하지만, 괴경비대기의 한발은 수량 증가를 억제 시킨다. 괴경 수량은 상승된 $CO_2$농도와 온도 그리고 한발 처리에 따라 상당히 유의한 차이를 보여 주었다. SAPR 2는 SPAR 1에 비하여 수량이 28% 증가 되었는데, 생육기간 동안 SPAR 2는 $CO_2$ 효과와 적정온도로 주당 괴경수의 증가보다는 개체당 괴경의 크기에 의해 수량이 결정 된 것으로 판단된다. 한편 SPAR 3은 SPAR 2에 비하여 약 56% 수량 감소를 하였다. 괴경비대기의 한발은 형태적으로 간장과 측지수의 감소와 건물중 생산에 저해를 주었다. 생리적으로 엽록소와 질소 양분흡수을 감소시켜 결국 광합성률 감소와 괴경으로 전류 되는 동화산물이 낮아지면서 수량 감소 원인이 된 것으로 판단되었다. 따라서 향후 이상 기후 대응을 위해, 다양한 기후 조건에서 재배되는 감자의 생육을 파악하기 위한 기후변화 시나리오 및 봄 감자의 작부체계 개선이 필요할 것으로 판단된다.

농업부산물과 우분의 병합 소화를 통한 메탄 생산 (Methane Production from the Co-digestion of Cattle Manure and Agricultural Residues)

  • 김재경;허정민;조흠;홍진경;조은혜
    • 한국환경농학회지
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    • 제42권4호
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    • pp.427-434
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    • 2023
  • 본 연구에서는 볏짚과 토마토와 같은 농업부산물이 우분의 혐기성 소화를 통한 메탄 생성에 미치는 영향을 알아보기 위해 각 기질을 단독 소화한 것과 혼합 소화한 것을 비교하였다. 우분의 경우 토마토와 병합 소화했을 때 우분 단독 소화 시보다 메탄 생성량이 증가하였고, 혼합 기질 내 토마토 함량이 중요한 역할을 하였다. 본 연구를 통해 농업부산물을 활용한 분뇨의 바이오가스화 향상 가능성을 확인하였다.

Sensititivity Analysis For Development Of Gulf Of Alaska

  • Pak, Ee-Tong
    • 한국해양학회지
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    • 제11권2호
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    • pp.57-63
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    • 1976
  • It was attempted to analyze the sensitivity of the oil prospect place named MARIA which placed inside Gulf of Alaska. For the analysis, P6031090, ECOANA( computer) which installed in the head office, Shell Oil Co was used and the data needed for computer programming were 1) Unit of Production data 2) Production Schedule 3) Total Gross Yearly Expenses and 4) Total Gross Capital and so on. The important data among the computer output 1) PVPAT (Present Value After Tax): $1,167,077,500 2) Payout After Tax: 3.14 Years (256,284,810 BBL Production) 3) Earning Power: 42% (After Tax) 4) PVPAT/BBL : $1.22 5) Capital/BBL : $2.00. On the other hand, the effect acted upon PVPAT with varying the Platform cost, Facility cost, Pipeline cost and Well cost was observed in comparion with the basic for range from 50% to 200%. Resultantly, the order was 1) Pipeline cost 2) Facility cost 3) Well cost 4) Platform cost for range form 100% to 200%. This project was completed by the contract with Shell Oil Co., and the geological data needed for this analysis were given by the head office and the development project started from Jan. 1976.

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석탄 합성가스 제조를 위한 pilot급 가스화 시스템 운전특성 (Operation Characteristics of Pilot-Scale Gasification System for Coal Syngas Production)

  • 정석우;정우현;이승종;윤용승
    • 신재생에너지
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    • 제3권4호
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    • pp.90-97
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    • 2007
  • Gasification has been regarded as a very important technology to decrease environmental pollution and to obtain higher efficiency. The coal gasification process converts carbon containing coal into a syngas, composed primarily of CO and $H_2$. And the coal syngas can be used as a source for power generation or chemical material production. This paper illustrates the opeartion characteristics and results of pilot-scale coal syngas production facilities. The entrained-bed pilot scale coal gasifier was operated normally in the temperature range of $1,300{\sim}1,400^{\circ}C,\;2{\sim}3kg/cm^2$ pressure. And Indonesian KPC coal produced syngas that has a composition of $46{\sim}54%\;CO,\;20{\sim}26%\;H_2,\;and\;5{\sim}8%\;CO_2$.

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