• Title/Summary/Keyword: 인공광합성

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Photosynthetic Characteristics and Primary Production by Phytoplankton with Different Water Quality of Influent in Open Waters of Constructed Wetlands for Water Treatment (수질정화용 인공습지 개방수역에서 유입수질에 따른 식물플랑크톤의 광합성특성 및 유기물생산력)

  • Choi, Kwang-Soon;Hwang, Gil-Son;Kim, Dong-Sub;Kim, Sea-Won;Kim, Ho-Joon;Joh, Seong-Ju;Park, Je-Chul
    • Korean Journal of Ecology and Environment
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    • v.40 no.1
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    • pp.61-71
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    • 2007
  • The photosynthetic characteristics and primary production by phytoplankton in open waters of two wetlands (the Banwol and the Donghwa wetland) of Sihwa Constructed Wetland with different water chemistry were investigated to provide the information for the wetland management considering the water treatment efficiency. During the study period (from March to October, 2005) the primary productivity in open waters ranged from 481 to 11,275 mgC $m^{-2}$ $day^{-1}$, which is very high compared with the eutrophic level of 600mgC $m^{-2}$ $day^{-1}$. From the analysis of the photosynthesis-irradiance (P-I) model parameters, the photosynthetic characteristics may be affected by different concentration and ratio of nutrient (N and P) between two wetlands. Assimilation number (AN) was higher in the Donghwa wetland (average AN: 8.5gC $gChl^{-1}$ $hr^{-1}$) with high P and low N/P ratio than the Banwol wetland (average AN: 5.8gC $gChl^{-1}$ $hr^{-1}$) with high N and high N/P ratio. This result indicates that AN may be concerned with phosphorus than nitrogen and low NIP ratio. Positive correlation (R=0.81) was observed between the initial slope and AN, implying that AN was high in case of phytoplankton having more active photosynthesis ability under low light. On the other hand, maximum photosynthesis (Pmax) was related positively with chlorophyll a concentration showing correlation coefficient of 0.47. In this study, considering the high primary production through phytoplankton photosynthesis in open waters of Sihwa Constructed Wetland, the produced organic matter by phytoplankton may affect the water quality within wetland and its efficiency of water treatment. Also, the photosynthetic characteristics may be affected by different nutrient enrichment (especially phosphorus) of wetlands. This study suggests that the production by phytoplankton and its characteristics in open water of constructed wetland for water treatment should be considered to improve the removal efficiency of organic matter.

Damage of Rice, Soybean, Potato, and Red Pepper as Affected by Simulated Acid Rain (인공산성비에 의한 벼, 콩, 감자, 고추의 피해양상)

  • 이석순;김민경;백준호
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.42 no.1
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    • pp.56-60
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    • 1997
  • In order to investigate the relationships between the responses of four crops (rice, soybeans, potatoes, and red pepper) to acid rain, the simulated acid rain(SAR) of pH 1.8, 2.3, and 2.8 and normal rain of pH 6.0 were applied from 30 days after emergence to harvest at the two-week interval for rice, soybeans and red pepper and at a week interval for potatoes. SAR of pH 1.8 and 2.3 caused brown spots in the leaves of rice, soybeans, and red pepper and the damages were severer as the pH of SAR lowered, while no visual damages were observed in potatoes. The SARs did not affect chlorophyll content of rice and potatoes, while chlorophyll content of soybeans and red pepper decreased as the pH of SAR lowered. Photosynthetic activity was not significantly different among the pHs of SAR in rice, while decreased as pHs of SAR lowered from pH 2.8 to 1.8 in soybeans, potatoes, and red pepper. Yield of rice, soybeans, and potatoes was not affected by the pHs of SAR, but in red pepper the length, diameter, and weight of a fruit, the number of fruits per plant, and total matured fruit yield decreased as the pHs of SAR lowered. In rice and potatoes visual damages caused by SAR did not correlated with other observed traits. However, visual damages were negatively correlated with chlorophyll content and photosynthetic activity of soybeans and photosynthetic activity and yield of red pepper.

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Growth and Development of Bottle Gourd(Lagenaria siceraria Standl.) for Rootstock Affected by Photosynthetic Photon Flux and Photoperiod (광합성유효광량자속과 광주기에 따른 대목용 박의 생육 특성)

  • 김용현;박현수
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 2000.10b
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    • pp.19-22
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    • 2000
  • 접목을 실시할 때 접수와 대목의 적정한 생육은 접목을 용이하게 할 뿐만 아니라 활착 후 접목묘의 묘소질 지속에도 커다란 영향을 미칠 수 있다. 자연광 조건에서 육묘를 실시하면 묘의 생육이 불균일하여 묘소질이 일정치 않게 된다. 그러므로 인공광을 이용한 폐쇄된 환경 조건에서 육묘가 바람직하나, 대목용 박에 대한 적정 광합성 유효광량자속 또는 광주기가 제시되지 않고 있다. 본 연구의 목적은 대목용 박의 초기 생육에 미치는 광합성 유효광량자속과 광주기의 영향을 구명하는 데 있다. (중략)

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광합성미생물이용에 의한 폐수처리

  • 소림달치
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 1979.10a
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    • pp.236-238
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    • 1979
  • 자연계에 배출되는 유기물함유폐수는 Figl 에 나타난 바와 같이 미생물의 생태적변동에 의해 정화된다. (표 1참조)이 자연현상을 인공장치에 의해 효율좋게 정화시키는 연구를 20수년전부터 개시하여 Test plant 및 Pilot plant을 작제하여, 검토하여 현재는 Fig. 2.에 나타난 바와 같은 실용화 plant가 다수, 가동하게 되었다. Fig. 2의 flow pheet를 개약설명한다. 먼저 폐수원액은 vibrating filter를 통과시키므로서 고형물은 제거된다. 이 용액을 구기조(Aeration tank)에 투입하여, 맹렬히 통기하면서, 호기분해를 행한다. 1 일간, 포기후, 호기성균체를 포함한 용액을 다음의 광합성세균배양조에 이행시켜, 4 일간 체류시키므로서 광합성세균등을 증식시킨다. 그후 응집침전제를 첨가하여, 광합성세균등의 Bacterial mass는 회수된다. 그 상맥부는 최종적으로 포기되고, (동기, 한랭에 있어서는 산포여상 Contact oxidation tower를 통과시킨다.) 소량의 침전제을 분리한 후 방류한다, 광합성세균이용에 의한 수처리기술의 특징은 1) 농후유기폐수를 희석하지 않고 정화처리할 수 있다. 2) 표3에 나타난 바와같이 적용할 수 있는 폐수의 종류는 많다. 3) 부산물로서 회수한 균체는 축산사료나 수산사료로서 이용할 수 있다. 표4 및 표5는 산난계 및 부화직후의 치어의 첨가사료 로서 이용한 일예이다.

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Effects of $\textrm{CO}_2$ concentration and air current speed on the growth and development of plug seedlings under artificial lighting (인공광하에서 $\textrm{CO}_2$ 농도와 기류속도 제어가 플러그묘의 생육에 미치는 효과)

  • 송대빈;김용현
    • Journal of Bio-Environment Control
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    • v.8 no.4
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    • pp.275-280
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    • 1999
  • This study was conducted to investigate the effects of $CO_2$ concentration(310 or 950$\mu$ mol.mol$^{-1}$ ) and air current speed(0.3, 0.5, 0.7 or 0.9m.s$^{-1}$ ) on the growth and development of eggp1ant Plug seedlings (Solanum melongena L.) under artificial 1ighting. For the treatment of $CO_2$ enrichment, stem length and diameter, the ratio of stem length to stem diameter, plant height, leaf area, net photosynthetic rate, top dried weight were significantly different at 1% level. Stem length of plug seedlings decreased at the condition under enriched $CO_2$ and high air current speed above plug stand. Stem diameter of plug seedlings increased and plant height decreased with the increasing $CO_2$ concentration. Plug seedlings had maximum net photosynthetic rate at the air current speed of 0.7m.s$^{-1}$ . Net photosynthetic rate at $CO_2$ concentration of 950$\mu$mol.mol$^{-1}$ increased by 46% than those at 310$\mu$mol.mol$^{-1}$ . Thus $CO_2$ enrichment would be effective for the production of plug seedlings with high quality.

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Control of Photosynthetic Photon Flux by the Artificial Lighting in Greenhouse (인공광을 이용한 온실의 광합성유효광양자속 조절)

  • 이현우;이석건;이종원;손갑수
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 2002.04a
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    • pp.20-24
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    • 2002
  • 농산물은 기후와 시장동향에 따라 물량, 품질, 가격이 변동하고 산지에 따라 상품규격이나 품종이 다양하기 때문에 적기에 수출물량을 공급하고 지속적으로 확보하는 것이 어려운 문제로 대두되고 있다. 따라서 앞으로 농산물의 국제 경쟁력은 상품의 고품질화와 시장의 변화에 따른 상품의 안정적 공급에 달려 있다고 할 것이다. 연구결과에 의하면 작물이 안정적으로 생장하고 고품질의 수확물을 지속적으로 생산하기 위해서는 적정 일일적산 광합성유효광양자속을 균일하게 공급할수 있어야한다. (중략)

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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.