• Title/Summary/Keyword: 광화학 효율

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Evaluation of Photochemical Reflectance Index (PRI) Response to Soybean Drought stress under Climate Change Conditions (기후변화 조건에서 콩 한발스트레스에 대한 광화학 반사 지수 반응 평가)

  • Sang, Wan-Gyu;Kim, Jun-Hwan;Shin, Pyeong;Baek, Jae-Kyeong;Lee, Yun-Ho;Cho, Jung-Il;Seo, Myung-Chul
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.21 no.4
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    • pp.261-268
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    • 2019
  • Climate change and drought stress are having profound impacts on crop growth and development by altering crop physiological processes including photosynthetic activity. But finding a rapid, efficient, and non-destructive method for estimating environmental stress responses in the leaf and canopy is still a difficult issue for remote sensing research. We compared the relationships between photochemical reflectance index(PRI) and various optical and experimental indices on soybean drought stress under climate change conditions. Canopy photosynthesis trait, biomass change, chlorophyll fluorescence(Fv/Fm), stomatal conductance showed significant correlations with midday PRI value across the drought stress period under various climate conditions. In high temperature treatment, PRI were more sensitive to enhanced drought stress, demonstrating the negative effect of the high temperature on the drought stress. But high CO2 concentration alleviated the midday depression of both photosynthesis and PRI. Although air temperature and CO2 concentration could affect PRI interpretation and assessment of canopy radiation use efficiency(RUE), PRI was significantly correlated with canopy RUE both under climate change and drought stress conditions, indicating the applicability of PRI for tracking the drought stress responses in soybean. However, it is necessary to develop an integrated model for stress diagnosis using PRI at canopy level by minimizing the influence of physical and physiological factors on PRI and incorporating the effects of other vegetation indices.

A Study on the VOC Decomposition Factors by Electron Beam Irradiation (전자빔 조사에 의한 VOC 분해 인자에 관한 연구)

  • Kim, Jo-Cheon;Kim, Gi-Jun;Jeon, Jin;Lee, Jae-Hyung;Park, Jong-Rae;Han, Beom-Su;Kim, Jin-Gyu
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2002.04a
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    • pp.195-196
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    • 2002
  • 휘발성 유기화합물(Volatile Organic Compounds; VOCs)은 용제를 사용하는 도장공정, 석유화학공정 등 각종 산업공정과 자동차로부터 배출되어 대기중에 광화학 산화물을 형성하거나 그 자체로 발암성 또는 악취성을 나타내는 물질로 인체에 유해한 영향을 미치며, 한편 간접적으로 온실가스의 역할을 하는 것으로 알려졌다. 가속기를 이용한 전자빔 처리공정의 경우 상온에서 운영되고 2차오염물 발생이 거의 없으며, 특히 유량이 매우 크고 저농도로 배출되는 VOCs의 처리의 경우에 기존의 처리법 보다 더욱 경제적이고 효율적으로 적용될수 있다. (중략)

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A Study on DeNOx and Pressure Drop Characteristics of SCR System (SCR 시스템의 탈질 성능 및 압력손실 특성 연구)

  • 김정일;장인갑;선칠영;천무환
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2002.04a
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    • pp.293-294
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    • 2002
  • 화석연료의 연소로부터 발생되는 질소산화물은 산성비, 광화학스모그 및 오존층 파괴에 관여하는 환경오염물질로서 대기오염의 주범이 되고 있다. 연소 후 배기가스 중의 질소산화물 제어를 위한 선택적 촉매환인공정(Selective Catalytic Reduction: SCR)은 안정적이며 고효율 설계가 가능하여 범용적으로 사용되고 있는 기술이다. SCR 공정은 최초 미국에서 개발되었으나 일본과 독일에서 발전시켜왔으며 국내에서도 공정의 핵심기술인 촉매에 대한 다양한 연구를 수행하여 일부에서는 상용화 수준에 이르고 있다. (중략)

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Selection of adsorbents for recovery VOC in HVRS (아세톤 회수를 위한 HVRS 공정의 흡착제 선정)

  • 안창덕;김흥익;나영수;윤영삼
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2002.11a
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    • pp.411-412
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    • 2002
  • 현재 많은 산업현장에서 휘발성 유기용제를 사용하고 있다. 국내 환경부에서 규제대상 VOC로 고시하고 있는 물질(환경부고시, '98. 7.1.)은 레이드 증기압, 광화학반응성, 물질사용량, 발암성 등 유해성을 감안하여 31개를 선정하여 규제하고 있으며 앞으로 규제대상 물질을 점차로 확대하여 나갈 계획으로 있다. 이에 한정된 자원의 고갈을 방지하고 환경의 보존을 위해 공정상에서 유기용제의 사용을 대체하는 것이 가장 이상적이나, 현재의 여건으로는 맡은 시간이 소요되므로 효율적인 휘발성 유기용제 처리공정 개발이 시급한 실정이다. (중략)

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Physiological Responses of Bupleurum latissimum Nakai, Endangered Plants to Changes in Light Environment (광환경조절에 따른 멸종위기식물 섬시호의 생리적 반응)

  • Lee, Kyeong-Cheol;Wang, Myeong-Hyeon;Song, Jae Mo
    • Journal of Bio-Environment Control
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    • v.22 no.2
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    • pp.154-161
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    • 2013
  • This study was conducted to investigate the physiological responses of Bupleurum latissimum, endangered plants by light condition. We investigated photosynthetic parameters, chlorophyll contents and chlorophyll fluorescence under different shading treatments (Shaded 50%, 70%, 90% and non-treated). Results showed that net apparent quantum yield (AQY) and chlorophyll contents were significantly increased with elevating shading level. However, light compensation point (LCP) and dark respiration ($R_d$) were shown the opposite trend. Especially, non-treated exhibited photoinhibition such as reduction of chlorophyll contents and maximum photosynthesis rate ($Pn_{max}$) also variation trend of stomatal conductance ($g_s$), and transpiration rate (E) were decreased to prevent water loss. Photosynthetic rate ($P_{Nmax}$) and photochemical efficiency (Fv/Fm) of 90% treatment showed a drastic reduction in July. This implies that photosynthetic activity will be sharply decreased with a long period of low light intensity. The 50% treatment showed relatively higher photosynthetic activity than other treated. This result suggested that growth and physiology of B. latissimum adapted to 50% of full sunlight.

Photocatalytic degradation of TCE using solar energy in POFR (플라스틱 광섬유 광촉매 반응기에서 태양에너지를 이용한 TCE의 광촉매 분해)

  • Jeong, Hee-Rok;Moon, Il;Joo, Hyun-Ku;Jun, Myung-Seok
    • Journal of the Korean Solar Energy Society
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    • v.22 no.3
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    • pp.57-65
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    • 2002
  • The photocatalytic degradation of TCE using solar energy in POFR was studied. The use of solar energy was investigated in plastic optica fiber photocatalytic reactor (POFR). In POFR, the main parameters of photocatalytic degradation of TCE were lihgt intensity, thickness of $TiO_2$-coated film on plastic fiber core, the same of total $TiO_2$-coated surface area with changed length. We studied the apparent photonic efficiency and photocatalytic degradation rate of TCE in POFR. The apparent photonic efficiency of various light intensities was decreased by an incresed intensities. The photocatalytic activities of $TiO_2$-coated optical fiber reactor system depended on the coating thickness, and total clad-stripped surface area of POF. Photocatalytic degradation of trichloroethylene ($C_2HCl_3$, TCE) in the gas-phase was elucidated by using $TiO_2$-coated plastic optical fiber reactor. In TCE degradation, in-situ FTIR measurement resulted in mineralization into $CO_2$.

Evaluation of Street Tree Rootage by Transplanting Methods - Photochemical Response Analysis of Different Cultivation for Sorbus alnifolia - (가로수의 이식방법에 따른 수목 활착 평가 - 재배방법별 팥배나무의 광화학적 반응 해석 -)

  • Yoo, Sung Young;Park, So Hyun;Park, Chung In;Kim, Tae Jin
    • Journal of the Korean Institute of Landscape Architecture
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    • v.43 no.1
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    • pp.132-138
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    • 2015
  • Trees, cultivated in containers, are appropriate in soil deformation such as road sites with cutting and filling. This study tested the effectiveness of trees produced in containers for early rootage in street tree transplantation. For the study, Korean Mountain Ashes(Sorbus alnifolia) were used for experimental groups. The groups were categorized into three categories: trees cultivated in containers with mulching treatment(group A), trees cultivated outdoors with mulching treatment (group B), and trees cultivated in containers with weeding treatment(group C). Each group consisted of ten trees of the same size and transplanted to the experimental site. In order to compare each group's rootage, the study was carried out with the chlorophyll fluorescence method by the analysis of photochemical reaction. As a result of the study, group B had the lowest the maximum fluorescence amount(P). The amount of fluorescence increased by OJ transition of the process, and appeared to reduce the photosystem II electron transport efficiency. In photosystem II, electron transfer energy flux through photosystem I(RE1o/RC, RE1o/CS) was also reduced by more than 20% in group B. These results may imply that transplantation of container-cultivated trees with mulching treatment provides the most rapid rootage among the groups. The weeding treatment is also more effective than mulching treatment for rapid rootage of street trees.

De-NOX evaluation of SCR catalysts adding vanadium-graphene nanocomposite (바나듐 담지된 그래핀 나노복합체를 첨가한 SCR 촉매의 제조 및 활성 평가)

  • Jeong, Bora;Lee, Heesoo;Kim, Eok-Soo;Kim, HongDae
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.25 no.6
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    • pp.252-256
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    • 2015
  • Nitrogen oxides ($NO_X$) was emitted from flue gas of stationary sources and exhaust gas of mobile sources, can leads to various environments problems. Selective Catalysts Reduction (SCR) is the most effective $NO_X$ removal system. Commercial $V_2O_5-WO_3/TiO_2$ catalysts, usually containing $V_2O_5$ 0.5~3 wt%, $WO_3$ 5~10 wt%, and $V_2O_5$ is active in the reduction of $NO_X$ but also in the desired oxidation of $SO_2$ to $SO_3$. To reduce the amount of vanadium, using graphene matrix supported vanadium to synthesize nanocomposite. Then, we fabricated to 1 inch honeycomb type of SCR catalysts adding graphene-vanadium nanocomposite. The chemical-physical characteristics and the catalytic activity were performed by XRD, XRF, BET and Micro-Reactor (MR). As a result, the De-NOX performance was showed, similar to the commercial catalyst activity as 77.8 % and using nanocomposite catalyst as 77.1 % at $350^{\circ}C$.

Artificial Photosynthesis System Containing CO2 Conversion Process (이산화탄소 변환 과정이 포함된 인공 광합성 시스템)

  • Kim, Kibum
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.1
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    • pp.63-68
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    • 2018
  • This paper presents an integrated photochemical reaction system (i.e., an artificial leaf) that uses earth-abundant catalysts for artificial photosynthesis with a carbon dioxide ($CO_2$) fixation process. The performance of the system was investigated in terms of the energy capture and conversion capabilities. A wireless configuration was achieved by directly doping cobalt oxide as an oxygen-evolving catalyst for water splitting reaction on the illuminated surface of photovoltaic (PV) cell, as well as molybdenum disulfide ($MoS_2$) as an efficient catalyst for $CO_2$ reduction on the back substrate surfaces of the PV cell. The system produces hydrogen and carbon monoxide (CO) as sustainable fuels (i.e., synthesis gas) at around 4.5% efficiency, which implies more than 75% catalytic efficiency at the cathode. The process of solar-driven $CO_2$ conversion and water-splitting reaction is contained in one system, which is one step closer to the successful realization of artificial photosynthesis.

Physiological Response and Growth Performance of Parasenecio firmus under Different Shading Treatments (차광처리에 따른 병풍쌈의 생리반응 및 생장특성)

  • Lee, Kyeong-Cheol;Lee, Hak-Bong;Park, Wan-Geun;Han, Sang-Sup
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.14 no.2
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    • pp.79-89
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    • 2012
  • This study was conducted to investigate the chlorophyll contents, photosynthetic characteristics, chlorophyll fluorescence, and growth performance of Parasenecio firmus under changing light environment. Parasenecio firmus was grown under non-treated (full sunlight) and three different shading conditions (88~93%, 65~75% and 45%~55% of full sunlight) for the experiment. Total chlorophyll content, photochemical efficiency (Fv/Fm), T/R ratio, specific leaf area (SLA), leaf area ratio (LAR), and leaf weight ratio (LWR) were increased with increasing shading level, but decreased dark respiration. Therefore, light absorption and light utilization efficiency were improved under the low intensity light. Plants under 65~75% of full sunlight had best maximum photosynthetic rate and net apparent quantum yield in May. On the other hand, the non-treated plants had lower maximum photosynthetic rate, photochemical efficiency, and chlorophyll content than the treated ones. Parasenecio firmus considered to be a sciophyte, is fairly sensitive to high intensity light. If 88-93% of full sunlight lasts for a long period, photosynthetic capacity will be sharply decreased, though limiting light. These results suggest that growth of Parasenecio firmus adapted to 65~75% of full sunlight.