• Title/Summary/Keyword: $CO_{2}$농도

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Separation and Simulation for Carbon Dioxide from Flaring Gas Using Polysulfone Hollow Fiber Membrane (폴리술폰 중공사막을 이용한 Flaring Gas에서의 이산화탄소 분리 및 전산모사)

  • Lim, Joo Hwan;Lee, Chung Seop;Kim, Hack Eun;Bae, Myong Won;Mo, Yong Gi;Ha, Seong Yong
    • Membrane Journal
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    • v.25 no.2
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    • pp.99-106
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    • 2015
  • Polysulfone (PSF) hollow fiber membrane was prepared to separate $CO_2$ from the flaring gas. Fabricated PSF membrane system was fulfilled under 1 stage, 2 stage membrane process and simulation in order to confirm the operating condition for 99% of $CH_4$ and 1% of $CO_2$ concentration. Also, $25Nm^3/h$ bench scale $CO_2$ separation membrane system was operated under 1% of $CO_2$ concentration during 100 hr, and $CH_4$ recovery ratio was 98%.

Experimental Study on Accelerated Carbonation Characteristics of OPC Paste for CSC-Based Low Carbon Precast Concrete Products (CSC 기반 저탄소 콘크리트 2차제품 제조를 위한 OPC 페이스트의 촉진탄산화 특성에 관한 실험적 연구)

  • Yoon, Jun-Tae;Kim, Young-Jin;Sim, Sang-Rak;Ryu, Dong-Woo
    • Journal of the Korea Institute of Building Construction
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    • v.24 no.3
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    • pp.285-295
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    • 2024
  • This study investigated the impact of accelerated carbonation on Ordinary Portland Cement(OPC) paste that had undergone steam curing at 500℃·hr. Two carbonation environments were examined: atmospheric carbonation(1atm, 20% CO2) and pressurized carbonation(5atm, 99% CO2). Chemical analysis using X-ray diffraction(XRD) and Fourier-Transform Infrared spectroscopy(FT-IR) were conducted, along with physical characterization via scanning electron microscopy(SEM) and compressive strength testing. Results indicated that atmospheric carbonation with 20% CO2 concentration significantly densified the internal microstructure of the OPC paste, leading to enhanced compressive strength. Conversely, pressurized carbonation at 5atm with 99% CO2 concentration resulted in rapid densification of the surface structure, which hindered CO2 diffusion into the sample. This limited the extent of carbonation and prevented the improvement of physical properties.

Effects of Elevated CO2 Concentration and Temperature on Physiological Characters of Liriodendron tulipifera (CO2농도 및 온도 상승이 백합나무의 생리적 특성에 미치는 영향)

  • Lee, Ha-Soo;Lee, Solji;Lee, Jae-Cheon;Kim, Ki Woo;Kim, Pan-Gi
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.15 no.3
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    • pp.145-152
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    • 2013
  • This study aimed to investigate the growth and physiological characters of Liriodendron tulipifera seedlings in responses to two different levels of elevated air temperature and $CO_2$ concentration. The seedlings were grown in environment-controlled growth chambers with two combinations of air temperature and $CO_2$ conditions: (1) $22^{\circ}C$ + ambient $CO_2$ $380{\mu}mol\;mol^{-1}$ and (2) $27^{\circ}C$ + $770{\mu}mol\;mol^{-1}$. Physiological characters such as growth, photosynthesis, and water use efficiency, were monitored for 85 days. The seedlings under the elevated treatment showed a greater amount of growth in tree height, compared with those under the control. Regarding the characteristics of assimilatory organs, the elevated treatment resulted in a greater amount of total leaf area, leaf unfolding, and dry weight per leaf area. No significant differences were found in photosynthesis capacity between the two treatments. The increase in water use efficiency with increased intercellular $CO_2$ partial pressure appeared overall lower in the seedling under the elevated treatment, compared with those under the control. The total leaf area of the seedlings under the elevated treatment was larger than that under the control, indicating a higher amount of photosynthesis. In addition, an increase of root growth was noted under the elevated treatment. A resistance mechanism of water stress may be attributed to a higher amount of organ growth as well as the tree height under the elevated treatment than the control.

Comparison of Fruit Quality of Various Astringent Persimmon Cultivars during Storage in Atmosphere Controlled with High $CO_2$Concentration (떫은감의 품종별 고농도 이산화탄소의 저장효과)

  • 김창배;이숙희;김찬용;윤재탁
    • Food Science and Preservation
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    • v.6 no.4
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    • pp.380-385
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    • 1999
  • Four cultivar of astringent persimmon(Diospyros kaki L. Cheongdobansi, Sagkoksi, Gojongsi, and Hachiya) were evaluated for quality during 160 days storage in condition of air, 12%CO$_2$+3%CO$_2$, and 16%CO$_2$+ 3%CO$_2$at 0∼2$^{\circ}C$. In the fruits of Cheongdobansi, Sagkoksi, and Gojongsi cultivar, the soluble solids content did not change significantly during storage among treatment, but in the fruits of Hachiya cultivar it decreased during storage in the codition of high CO$_2$concentration. Fruits of Cheongdobansi and Sagkoksi, which were stored in higher CO$_2$concentration, had firmer hardness, less weight loss and decay, showed greater rentention of initial peel color, maintained best qulity than air-stored fruit, but had high tannin contents. And it was necessory to remove astringency for edible fruits.

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Influence of the Increase of Dissolved $CO_2$ Concentration on the Marine Organisms and Ecosystems (해수중 용존 $CO_2$ 농도 증가가 해양생물 및 해양생태계에 미치는 영향: 국내외 사례 연구)

  • Lee, Jung-Suk;Lee, Kyu-Tae;Kim, Chan-Kook;Park, Gun-Ho;Lee, Jong-Hyeon;Park, Young-Gyu;Gang, Seong-Gil
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.9 no.4
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    • pp.243-252
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    • 2006
  • Influence of the increasing carbon dioxide concentration in seawater on various marine organisms is assessed in this article with regard to the impacts of anthropogenic $CO_2$ introduced into surface or deep oceans. Recent proposals to sequester $CO_2$ in deep oceans arouse the concerns of adverse effects of increased $CO_2$ concentration on deep-sea organisms. Atmospheric introduction of $CO_2$ into the ocean can also acidify the surface water, thereby the population of some sensitive organisms including coral reefs, cocolithophorids and sea urchins will be reduced considerably in near future (e.g. in 2100 unless the increasing trend of $CO_2$ emission is actively regulated). We exposed bioluminescent bacteria and benthic amphipods to varying concentrations of $CO_2$ and also pH for a short period. The ${\sim}l.5$ unit decrease of pH adversely affected test organisms. However, amphipods were not influenced by decreasing pH when HCl was used for the seawater acidification. In this article, we reviewed the biological adverse effects of $CO_2$ on various marine organisms studied so for. Theses results will be useful to predict the potential risks of the increase of $CO_2$ concentrations in seawater due to the increase of atmospheric $CO_2$ emission and/or sequestration of $CO_2$ in deep oceans.

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하이브리드 강제환기장치의 작동기준 및 설치위치에 관한 고찰

  • Kim, Nam-Gyu
    • The Magazine of the Society of Air-Conditioning and Refrigerating Engineers of Korea
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    • v.38 no.9
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    • pp.10-16
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    • 2009
  • 하이브리드 환기설비 중 강제환기팬은 일반 강제환기방식처럼 팬의 용량은 [강 중 약]의 3단계로 운전이 가능하도록 규정하고 있다. 수동 및 자동환기를 위해 일부 환기업체를 중심으로 $CO_2$ 센서를 설치하여 공동주택의 실내환경 기준 농도인 1,000 ppm을 기준으로 자동으로 작동이 가능하도록 하고 있으며 $CO_2$ 센서는 controller에 내장하고 있다. 이때 환기팬이 자동으로 작동하기 위한 적절한 $CO_2$ 농도 및 $CO_2$ 센서의 적정위치에 대해 검토하고자 한다.

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Changes of Plant Biomass and Proximate Composition of Radish Exposed to Elevated Temperature and $CO_2$ Concentration (온도 및 $CO_2$ 농도 상승에 따른 무의 건물생산 및 일반 영양성분 변화)

  • Seo, Tae-Cheol;Jang, Yoon-Ah;Nam, Chun-Woo;Oh, Sang-Seok;Um, Yeong-Cheol;Han, Jeom-Hwa
    • Journal of Bio-Environment Control
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    • v.21 no.1
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    • pp.20-27
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    • 2012
  • This experiment was conducted to evaluate the long-term effect of the elevated temperature and $CO_2$ concentration on the plant biomass, C/N ratio, and proximate composition of radish. Elevated temperature by 2~2.5 higher than ambient temperature decreased plant biomass by 39% in the spring and 26% in the autumn, respectively. Elevated $CO_2$ concentration by $220{\sim}230{\mu}mol\;mol^{-1}$ higher than ambient $CO_2$ concentration increased plant biomass especially in root. The elevated $CO_2$ concentration, however, could not compensate for the negative effect of elevated temperature on the plant biomass entirely. Elevated temperature increased T/R ratio by 86% in the spring and 60% in the autumn, respectively. Elevated temperature lowered C/N ratio and raised crude protein, crude fat, and ash content in radish root. On the contrary, elevated $CO_2$ concentration raised C/N ratio and lowered the crude protein, crude fiber, and ash contents. These results indicate that climate change affect the biomass yield and internal materials of radish depending on the extent of temperature and $CO_2$ concentration rise in the future.

Effect of CO2 Concentration and Fertilization Time on the Growth of Potted Phalaenopsis (CO2 처리농도 및 공급시간이 분화 호접란의 생육에 미치는 영향)

  • Hwang, Seung Jae;Jeong, Byoung Ryong
    • FLOWER RESEARCH JOURNAL
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    • v.17 no.1
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    • pp.29-35
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    • 2009
  • The study was conducted to examine effective concentration and fertilization time of $CO_2$ for the growth of potted Phalaenopsis in growth chambers. Enrichment level of $CO_2$ was 1,000 or $2,000{\mu}mol{\cdot}mol^{-1}$ and fertilization time was 06:00~12:00, 00:00~06:00, or 18:00~24:00. Two, seven, or twelve month-old clonal micropropagules of Phalaenopsis cultivars were cultured for 99 days. Leaf number, leaf length, leaf width, root length and fresh weight of all Phalaenopsis cultivars in $2,000{\mu}mol{\cdot}mol^{-1}$ $CO_2$ were significantly greater than that of $1,000{\mu}mol{\cdot}mol^{-1}\;CO_2$. $CO_2$ fertilization time was the greatest growth in 0:00~06:00.

Influence of Increased Carbon Dioxide Concentration on the Bioluminescence and Cell Density of Marine Bacteria Vibrio fischeri (이산화탄소 농도 증가에 따른 발광미생물의 상대발광량과 밀도변화에 대한 연구)

  • Sung, Chan-Gyoung;Moom, Seong-Dae;Kim, Hye-Jin;Choi, Tae-Seob;Lee, Kyu-Tae;Lee, Jung-Suk;Kang, Seong-Gil
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.15 no.1
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    • pp.8-15
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    • 2010
  • An experiment was conducted to evaluate the biologically adverse effect of increased carbon dioxide in seawater on marine bacteria, Vibrio fischeri. We measured the bioluminescence and cell density at every 6 hours for 24 hours of the whole incubation period after exposing test microbes to a range of $CO_2$ concentration such as 380(Control), 1,000, 3,000, 10,000 and 30,000 ppm, respectively. Significant effect on relative luminescence(RLU) of V. fischeri was observed in treatments with $CO_2$ concentration higher than 3,000 ppm at t=12 h. However, the difference of RLU among treatments significantly decreased with the incubation time until t=24 h. Similar trend was observed for the variation of cell density, which was measured as optical density using spectrophotometer. The results showed that a significant relationship between $CO_2$ concentration and bioluminescence of test microbes was observed for the mean time. However, the inhibition of relative bioluminescence and also cell density could be recovered at the concentration levels higher than 3,000 ppm. The dissolved $CO_2$ can be absorbed directly by cell and it can decrease the intracellular pH. Our results implied that microbes might be adversely affected at the initial growing phase by increased $CO_2$. However, they could adapt by increasing ion transport including bicarbonate and then could make their pH back to normal level. Results of this study could be supported to understand the possible influence on marine bacteria by atmospheric increase of $CO_2$ in near future and also by released $CO_2$ during the marine $CO_2$ sequestration activity.

Development of $CO_2$ concentration control algorithm considering $CO_2$ consumption rate(I) (탄산가스 소비율을 고려한 $CO_2$농도 제어알고리즘 개발(I))

  • 진제용;홍순호;류관희;노상하
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1992.12a
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    • pp.14-14
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    • 1992
  • 시설원예에 있어서 작물의 생장량을 촉진시켜 수확시기를 앞당기고, 생산량을 증가시키며, 품질을 향상시키기 위하여 탄산가스를 시비하는 재배방법이 도입되고 있다. 그러나 탄산가스의 시비가 작물에 악영향을 주는 경우도 보고되고있어 탄산가스 시비에 주의를 기울여야 한다. 기존의 탄산가스 시비방법은 일정한 농도를 유지하는 것으로 탄산가스 낭비나 고농도에 의한 생육장애 혹은 탄산가스 결핍을 초래하는 등의 문제점을 갖고 있다. (중략)

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