• Title/Summary/Keyword: green gas

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Fine Structure of Blue-green Algae, Microcystis aeruginosa Kutzing (남조(藍藻) Microcystis aeruginosa Kutzing의 미세구조(微細構造)에 관(關)한 연구(硏究))

  • Choi, Min-Kyu;Kim, Baik-Ho;Mun, Yeun-Ja;Chung, Yeun-Tai;Lee, Jong-Bin;Wui, In-Sun
    • Applied Microscopy
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    • v.26 no.4
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    • pp.389-399
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    • 1996
  • In order to understand the morphological differences between two different organic loadings by its upstream, and to compare with other algal groups with references, the fine structure of blue-green algae, Microcystis aeruginosa Kitzing, taken from two branches, Tongbok and Bosung stream of Lake Chuam, Korea pennisula was examined. It showed extinct differences in most physicochemical factors between both branches, except water temperature and pH values. The concentrations of total phosphorus in Tongbok branch were twice as those of Bosung. M. aeruginosa cells were enumerated totally $1.2X10^4cells/ml$ and these individuals in branch of Tongbok were close to two times as much as Bosung. In light and electron microscopy, natural M. aeruginosa colonies formed irregular shape and non-directional array in amorphous matrix. They were consisted of many kinds of cells, youngs or olds in cell division, solitary, and various size of cells. Each cell ranged from 2.61 to $5.40{\mu}m$ in diameter, and averaged as $3.54{\pm}0.19{\mu}m$. In cytoplasm, they contained a number of inclusions in various size, shape and appearances. Among them, polyhedral bodies or carboxysomes, a structured granules, photosynthetic lamellae or thylakoids, and gas vacuoles were prominent and easy to recognize. Although it was failed to find the definable morphological variations in the ultrastructure of M. aeruginosa in terms of algal habitual environments, some useful characters were founded, outer layer of cell wall, polyhedral bodies and gas vacuoles, in blue-green algal classification and taxonomy.

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An Estimation of Carbon Stocks in Harvested Wood Products in Korean Houses (우리나라 주택분야 내 목제품의 탄소저장량 추정)

  • Choi, Soo Im;Joo, Rin Won
    • Journal of Korean Society of Forest Science
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    • v.100 no.4
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    • pp.708-714
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    • 2011
  • Wood store carbon that the forest absorbed until burned or decomposed over a long period. Such materials are most used in houses except in paper and pulp, and the use of wood in houses play an important role in reducing green-house gases. Therefore, we estimated the amount of carbon stocks in Korean houses, and analyzed how much contribution such stocks offers to green-house gas reduction. As the result, the carbon stocks amount of the wood products in Korean houses was 28.4 million $tCO_2$, which is 4.6% of the total annual green-house gas emission in Korea (620 million $tCO_2$ e), and 77.4% of forest sinks (LULUCF). Even though few wooden houses which use most wood in housing exist in Korea, the carbon stocks of wood products in houses in 2010 increased to 4.1 times that in 1975 (21.4 million $tCO_2$) because the carbon stocks increased due to apartment construction, which hit its stride from the last 1980's.

Searching for the environmental management plans of Korea paper industry coping with the new climate regime (신 기후체제 협약에 따른 국내 제지산업의 환경경영 방안 모색)

  • Kim, Dong Seop;Sung, Yong Joo
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.48 no.2
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    • pp.75-82
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    • 2016
  • The new climate regime for practical reduction in green house gas(GHG) emissions was launched in Paris at Dec. 2015. The Korea government would make various policies and plans in order to achieve the BAU 37 % emission reduction goals by 2030. In this study, the current situation and the possible corresponding methodology to the GHG emission reduction of Korea paper industry were investigated. Although the GHG emission reduction in KOREA paper industry has been successfully conducted compared with other industries until now, the more efforts for controlling GHG emission would be required to meet the new climate regime. The efficiency of various GHG reduction projects conducted by Korea paper companies was evaluated to find efficient way for GHG reduction. The certified methodologies of the external project based offset systems in Korea GHG emission trading scheme were also reviewed for providing the possible way to develope tailored methodology to the Korea paper industry.

Potential Applicabilities of Ammonia in Future Hydrogen Energy Supply Industries (미래 수소 에너지 공급 산업에서 암모니아의 활용성)

  • Lee, Sooyoung;Lee, Hye Jin
    • Applied Chemistry for Engineering
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    • v.30 no.6
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    • pp.667-672
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    • 2019
  • As a non-renewable energy source, fossil fuel causes environment problems, numerous efforts have been made for a global decarbonization, for example, the realization of Power 2 Gas (P2G) system as a definitive research goal. In particular, ammonia is regarded as an emerging source since it can be used as a hydrogen carrier and production alongside for fuel cell applications. In this mini-review, we summarized the properties of ammonia and further highlighted the worldwide research trend for its superb potential in hydrogen energy supply industries.

Optical Characteristics of Oxygen-doped ZnTe Thin Films Deposited by Magnetron Sputtering Method

  • Kim, Seon-Pil;Pak, Sang-Woo;Kim, Eun-Kyu
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.08a
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    • pp.253-253
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    • 2011
  • ZnTe semiconductor is very attractive a material for optoelectronic devices in the visible green spectral region because of it has direct bandgap of 2.26 eV. The prototypes of ZnTe light emitting diodes (LEDs) have been reported [1], showing that their green emission peak closely matches the most sensitive region of the human eye. The optoelectronic properties of ZnTe:O film allow to expect a large optical gain in the intermediate emission band, which emission band lies about 0.4-0.6 eV below the conduction band of ZnTe [2]. So, the ZnTe system is useful for the production of high-efficiency multi-junction solar cells [2,3]. In this work, the ZnTe:O thin films were deposited on Al2O3 substrates by using the radio frequency magnetron sputtering system. Three sets of samples were prepared using argon and oxygen as the sputtering gas. The deposition chamber was pre-pumped down to a base pressure of 10-7 Torr before introducing gas. The deposition pressure was fixed at 10-3 Torr throughout this work. During the ZnTe deposition, the substrate temperature was 300 oC. The optical properties were also investigated by using the ultraviolte-visible (UV-Vis) spectrophotometer.

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Determination of Formaldehyde in Cigarette Smoke and Inhibitory Effect of Plant Volatile Extracts on the Formation of Formaldehyde

  • Her, Jae-Young;Jang, Hae-Won;Lee, Kwang-Geun
    • Food Science and Biotechnology
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    • v.18 no.2
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    • pp.471-474
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    • 2009
  • Formaldehyde (FA) is a carcinogenic compound present in cigarette smoke. In this study, the amount of formaldehyde was analyzed in 5 kinds of cigarettes and the inhibitory effect of plant volatile extracts on the formation of FA was investigated. After extraction of the cigarette sample, FA was converted into its thiazolidine derivatives by reaction with cysteamine, and then measured using a gas chromatography-nitrogen phosphorus detector (GC-NPD). The concentrations of FA in cigarette smoke were found between 138.24 and $217.82{\mu}mol/g$ cigarette smoke. Extracts isolated from Welsh onion (Allium cepa L.), garlic (Allium sativum L.), crown daisy (Chrylsanthemum coronarium L.), green pepper (Capsicum annuum L.), and sesame dropwort (Oenanthe javanica DC) were used for analyzing their inhibitory effects on the formation of FA. The inhibitory effects of extracts of Welsh onion, garlic, crown daisy, green pepper, and sesame dropwort on the formation of FA were 64, 47, 38, 47, and 19%, respectively.

Preparation of Green-Light Emitting BAM:Mn Phosphor Particles by High Temperature Spray Pyrolysis (고온 분무열분해 공정에 의한 녹색 발광의 BAM:Mn 형광체 합성)

  • Ju Seo Hee;Koo Hye Young;Kim Do Youp;Kang Yun Chan
    • Korean Journal of Materials Research
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    • v.15 no.8
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    • pp.496-502
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    • 2005
  • Green-light emitting $BaMgAl_{10}O_{19}:Mn^{2+}$ (BAM:Mn) phosphor particles were prepared by spray Pyrolysis. The effect of reactor temperature and flow rate of carrier gas in the spray Pyrolysis on the morphology, crystallinity and photoluminescence characteristics under vacuum ultraviolet were investigated. The morphology of the as-Prepared Particles obtained by spray Pyrolysis had spherical shape and non-aggregation characteristics regardless of the reactor temperature. The spherical shape of the as-prepared Particles obtained by spray pyrolysis at low temperature disappeared after Post-treatment. On the other hand the as-Prepared Particles obtained by spray Pyrolysis at $1600^{\circ}C$ maintained spherical shape and non-aggregation characteristics after post-treatment at $1400^{\circ}C$ for 3 h under reducing atmosphere. The BAM:Mn Phosphor Particles Prepared by spray Pyrolysis at different reactor temperatures had pure crystal structure and high photoluminescence intensities under vacuum ultraviolet after post-treatment. BAM:Mn phosphor particles prepared by spray Pyrolysis at low How rate of carrier gas had complete spherical shape and filed morphology and high photoluminescence intensity after post-treatment under reducing atmosphere.

Effects of Organic and Inorganic Binder Core on Microstructure and Mechanical Properties of Al Casting Products (알루미늄 주조품의 미세조직 및 기계적 특성에 미치는 유·무기 화합물 중자의 영향)

  • Shin, Sang-Soo;Kim, Woo-Chun;Kim, Eok-Soo;Lim, Kyoung-Mook;Park, Jeong-Wook
    • Journal of Korea Foundry Society
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    • v.33 no.4
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    • pp.147-156
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    • 2013
  • The effects of core materials on the microstructure and mechanical properties of Al casting products have been investigated. The Al casting samples and cylinder head were fabricated by using organic and inorganic binder core respectively, and their microstructure and mechanical properties were evaluated. The Al casting samples fabricated by using inorganic core showed the better mechanical properties such as tensile strength and elongation than those of the Al casting samples fabricated by using organic core. That's because the Al casting samples contained small amount of pore defects and had fine microstructure compared with the Al casting samples fabricated by using organic core. Also, the use of inorganic core effectively reduced harmful gas emission and pollution.

CO2 EMISSION MEASURING METHODOLOGY DEVELOPMENT FOR ACCURACY IMPROVEMENT OF CO2 EMISSION OF CONSTRUCTION EQUIPMENT

  • Won-Suk Jang;Sun-Chan Bae;Sang-Dae Park;Suk-Hyun Kwon;Byung-Soo Kim
    • International conference on construction engineering and project management
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    • 2013.01a
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    • pp.204-208
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    • 2013
  • CO2 emission makes up more than 80% of whole green gas. Therefore CO2 is recognized as the main culprit of global warming. IPCC (Intergovernmental Panel on Climate Change) is advising the 3 methods measuring CO2 emission. TIER1 is measured CO2 emission by criteria the energy consumption, TIER2 measure by criteria the emission factor according to the emission control technique each kind of vehicle, TIER3 is measured by criteria the distance each kind of vehicle. Currently, the most of CO2 emission measurement is used by TIER1. But it is not standardized that CO2 emission measurement method have the factor as work condition each distance. Specially, it is not suggest that methodology has the condition changing load of equipment according to site condition and the same position work as construction equipment. So, this study is suggested the CO2 emission measurement methodology of construction equipment.

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An Evaluation of Net-zero Contribution by Introducing Clean Hydrogen Production Using Life Cycle Assessment (청정수소 생산 방식 도입에 따른 LCA 기반 탄소중립 기여도 평가)

  • SO JEONG JANG;DAE WOONG JUNG;JEONG YEOL KIM;YONG WOO HWANG;HEE KYUNG AN
    • Transactions of the Korean hydrogen and new energy society
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    • v.35 no.2
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    • pp.175-184
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    • 2024
  • This study focuses on investigating the importance of managing greenhouse gas emissions from global energy consumption, specifically examining domestic targets for clean hydrogen production. Using life cycle assessment, we evaluated reductions in global warming potential and assessed the carbon neutrality contribution of the domestic hydrogen sector. Transitioning from brown or grey hydrogen to blue or green hydrogen can significantly reduce emissions, potentially lowering CO2 equivalent levels by 2030 and 2050. These research findings underscore the effectiveness of clean hydrogen as an energy management strategy and offer valuable insights for technology development.