• 제목/요약/키워드: Fe-Pc

검색결과 107건 처리시간 0.021초

STUDY OF M82 USING SPECTRA FROM THE INFRARED SPACE OBSERVATORY

  • SOHN JUNGJOO;ANN H. B.;PAK SOOJONG;LEE H. M.
    • 천문학회지
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    • 제34권1호
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    • pp.17-24
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    • 2001
  • We have studied the central parts of M82, which is a well-known infrared luminous, starburst galaxy, by analyzing archival data from the Infrared Space Observatory (ISO). M82 was observed at 11 positions covering $\pm$45" from the center along the major axis. We analyzed 4 emission lines, [ArIII] 8.99 ${\mu}m$, $H_2$ 17.034 ${\mu}m$, [FeII] 25,98 ${\mu}m$, and [SiII] 34,815 ${\mu}m$ from $SWSO_2$ data. The integrated flux distributions of these lines are quite different. The $H_2$ line shows symmetric twin peaks at $\~$18" from the center, which is a general characteristic of molecular lines in starburst or barred galaxies. This line appears to be associated with the rotating molecular ring at around $\~$200 pc just outside the inner spiral arm. The relative depletion of the $H_2$ line at the center may be due to the active star formation activity which dissociates the $H_2$ molecules. The other lines have peaks at the center and the distributions are nearly symmetric. The line profiles are deconvolved assuming that both intrinsic and instrumental profiles are Gaussian. The velocity dispersion outside the core is found to be $\~50 km s^{-1}$. The central velocity dispersion is much higher than $50 km s^{-1}$, and different lines give different values. The large central velocity dispersion ($\sigma$) is mostly due to the rotation, but there is also evidence for a high $\sigma$ for [ArIII] line. We also generated position-velocity maps for these four lines. We found very diverse features from these maps.

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Molecular Hydrogen Outflow in Infrared Dark Cloud Core MSXDC G53.11+00.05

  • Kim, Hyun-Jeong;Koo, Bon-Chul;Pyo, Tae-Soo;Davis, Christopher J.
    • 천문학회보
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    • 제40권2호
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    • pp.41.4-42
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    • 2015
  • Outflows and jets from young stellar objects (YSOs) are prominent observational phenomena in star formation process. Indicating currently ongoing star formation and directly tracing mass accretion, they provide clues about the accretion processes and accretion history of YSOs. While outflows of low-mass YSOs are commonly observed and well studied, such studies for high-mass YSOs have been so far rather limited owing to their large distances and high visual extinction. Recently, we have found a number of molecular hydrogen (H2 1-0 S(1) at 2.12 micron) outflows in the long, filamentary infrared dark cloud (IRDC) G53.2 located at 1.7 kpc from UWISH2, the unbiased, narrow-band imaging survey centered at 2.12 micron using WFCAM/UKIRT. In IRDC G53.2 which is an active star-forming region with ~300 YSOs, H2 outflows are ubiquitously distributed around YSOs along dark filaments. In this study, we present the most prominent H2 outflow among them identified in one of the IRDC cores MSXDC G53.11+00.05. The outflow shows a remarkable bipolar morphology and has complex structures with several flows and knots. The outflow size of ~1 pc and H2 luminosity about ~1.2 Lsol as well as spectral energy distributions of the Class I YSOs at the center suggest that the outflow is likely associated with a high-mass YSO. We report the physical properties of H2 outflow and characteristics of central YSOs that show variability between several years using the H2 and [Fe II] images obtained from UWISH2, UWIFE and Subaru/IRCS+AO188 observations. Based on the results, we discuss the possible origin of the outflow and accretion processes in terms of massive star formation occurring in IRDC core.

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일본(日本)의 도시광산(都市鑛山)(사용후제품) 자원(資源)과 금속(金屬) 재자원화산업(再資源化産業) (Urban Mine Resources and Metals Recycling Industries in Japan)

  • 오재현;김준수;문석민;민지원
    • 자원리싸이클링
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    • 제19권6호
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    • pp.11-26
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    • 2010
  • 일본의 도시광산자원과 금속재자원화산업을 파악하기 위하여, 일본(日本)의 금속소비량, 금속리싸이클리률을 논하고, 철스크랩, 사용이 끝난 자동차, 폐가전제품 및 폐전자정보기지 등의 대표적인 재자원화산업의 개요를 조사하였다. 일본은 금속자원 소비대국이고 각종 금속 축적량 대국이기도 하다. 도시광산자원의 리싸이클링률은 자급률로 계산할 때 Pb 50%, Fe 33%, Al 25%이고, Hg, Au, Cd, Mn, Mo, Ag 등이 이어지고 있다. 그러나 기능재료에 첨가되는 레어메탈 및 REE 등은 리싸이클링 기술개발 단계라고 할 수 있다. 자동차, 가전제품 PC 등 사용이 끝난 제품의 리싸이클링산업은 활발하고, 리사이클링률은 법정기준치를 상회하고 있다.

현미와 백미의 식이섬유에 관한 연구 (Studies on the Dietary Fiber of Brown Rice and Milled Rice)

  • 이희자;변시명;김형수
    • 한국식품과학회지
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    • 제20권4호
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    • pp.576-584
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    • 1988
  • 다수계 품종인 남풍, 밀양 23호와 일반계 품종인 화성, 진홍을 현미, 백미 그리고 겨로 구분한 12가지 시료에 대하며 불용성 식이섬유와 용해성 식이섬유로 구분하여 측정하였고 이를 합하여 총 식이섬유로 하였다. 한편 남풍, 밀양 23호, 화성 그러고 진흥 현미를 정백률 92%로 도정하는 과정에서 얻어진 겨로부터 neutral detergent fiber(NDF)를 분리하였다. 이 식이섬유의 특성을 측정하고자 수분 결합력(water-binding capacity, WBC), pH 변화에 따른 철분과의 결함정도. 담즙염과의 결합 정도를 측정 하였다. 이상의 결과를 요약하면 다음과 같다. 1. 현미, 백미 그리고 겨의 총 식이섬유 함량은 각각 6.44%, 3.22%그리고 22.24%였으며, 현미는 백미에 비해 2배 정도의 식이섬유를 공급할 수 있다. 2. Neutral detergent fiber(NDF)의 특성 실험에서 수분 결합력 (WBC)은 평균 $5.60{\pm}0.87g\;H_2O/g$ NDF로 수분 결합력이 커서 장관에서 물이나 작은 분자들을 흡수하여 팽창하며 궁극적으로 bulk flow에 영향을 미치게 된다. 3. 철분과의 결합력은 pH 5.0에서는 평균 24.63%, pH 6.0에서 19.64%, pH 7.0에서 48.98%로 pH에 따른 결합정도의 차이가 켰으며, 이러한 성질로 인해서 무기질의 흡수를 저해하므로 음식물 증에 식이섬유 함량이 높을 때 무기질의 흡수문제를 고려하여야 한다. 4. 식이섬유와 담즙염과의 결합정도는 $100{\mu}M$ sodium taurocholate의 농도에서 평균 $31.02{\pm}2.15%$가 결합 되었다. 식이성유의 이러한 기능으로 콜레스테롤의 재 흡수와 배설에 영향을 미쳐 혈장 콜레스테롤 농도를 낮추는 효과가 있는 것으로 추정된다. 의한 보호효과를 보면 전분과 자당을 동시첨가한 자당첨가동시보호구가 무보호 갈변경우에 비하여 20.5%정도 증가하였다. Fructosyl-lysine의 함량은 전분 첨가에 관계없이 갈변에 의하여 10배 이상 증가하였고 전분 첨가에 의한 보호효과를 보면 보호 방법에 관계없이 보호구가 무보호 갈변구에 비하여 $12.6{\sim}15.8%$ 정도 감소하였다. 진공포장함으로서 저장중 지질산패, 갈변 등 품질저하를 억제시킬 수 있었다.>가 20mM, $Na_2SO_3{\cdot}7H_2O$가 15mM 그리고 $NaHSO_3$가 25mM로 나타났다., 수원(水原)19호(號)와 제천옥(堤川玉)에서는 linoleic acid가 가장 높게 나타났다. 8) 당지질(糖脂質)의 구성지질성분(構成脂質成分)은 MGS, MGC 그리고 MGDG를 함유(含有)하며, MGS와 MGC는 진주옥(晋州玉)에서 가장 높은 반면에, 횡성옥(橫城玉)과 제천옥(堤川玉)에서는 가장 낮게 나타났다. 9) 총지질(脂質)의 지방산조성(脂肪酸組成)은 oleic, palmitic, linoleic그리고 heptadecanoic acid가 주성분(主成分)을이루고, 진주옥(晋州玉)에서 oleic acid가 가장 높은 반면에 heptadecanoic acid는 가장 낮게 나타났고, 제천옥(堤川玉)에서는 이와 반대(反對) 경향(傾向)을 보였다. 10) 순지질(燐脂質)의 구성지질성분(構成脂質成分)은 PI 및 PC를 함유(舍有)하며, 횡성옥(橫城玉)과 황옥(黃玉) 3호(號)에서 PI가 가장 낮게 나타났다. 11) 순지질(燐脂質)의 지방산조성(脂肪酸組成)은 palmitic, heptadecanoic 그리고 oleic acid가 주성분(主成分)을 이루고, 횡성옥(橫城玉)에서 oleic acid가 가장 높은 반면에, heptadecanoic acid는 가장 낮게

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서울시 지하역사에서 PM10의 화학적 특성과 오염원의 확인 및 기여도 추정 (Identification of PM10 Chemical Characteristics and Sources and Estimation of their Contributions in a Seoul Metropolitan Subway Station)

  • 박슬바센나;이태정;고현기;배성준;김신도;박덕신;손종렬;김동술
    • 한국대기환경학회지
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    • 제29권1호
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    • pp.74-85
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    • 2013
  • Since the underground transportation system is a closed environment, indoor air quality problems may seriously affect many passengers' health. The purpose of this study was to understand $PM_{10}$ characteristics in the underground air environment and further to quantitatively estimate $PM_{10}$ source contributions in a Seoul Metropolitan subway station. The $PM_{10}$ was intensively collected on various filters with $PM_{10}$ aerosol samplers to obtain sufficient samples for its chemical analysis. Sampling was carried out in the M station on the Line-4 from April 21 to 28, July 13 to 21, and October 11 to 19 in the year of 2010 and January 11 to 17 in the year of 2011. The aerosol filter samples were then analyzed for metals, water soluble ions, and carbon components. The 29 chemical species (OC1, OC2, OC3, OC4, CC, PC, EC, Ag, Al, Ba, Cd, Cr, Cu, Fe, Mn, Ni, Pb, Si, Ti, V, Zn, $Cl^-$, $NO_3{^-}$, $SO_4{^{2-}}$, $Na^+$, $NH_4{^+}$, $K^+$, $Mg^{2+}$, $Ca^{2+}$) were analyzed by using ICP-AES, IC, and TOR after proper pretreatments of each sample filter. Based on the chemical information, positive matrix factorization (PMF) model was applied to identify the $PM_{10}$ sources and then six sources such as biomass burning, outdoor, vehicle, soil and road dust, secondary aerosol, ferrous, and brakewear related source were classified. The contributions rate of their sources in tunnel are 4.0%, 5.8%, 1.6%, 17.9%, 13.8% and 56.9% in order.

승용차의 이산화탄소(CO2) 배출특성에 관한 연구 (A Study on Characteristics of Carbon Dioxide Emissions from Passenger Cars)

  • 유영숙;류정호;전민선;김대욱;정성운;김선문;엄명도;김종춘
    • 한국대기환경학회지
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    • 제22권4호
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    • pp.451-458
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    • 2006
  • Automotive exhaust is suspected to be one of the major reasons of the rapid increase in greenhouse effect gases in ambient air. As the concerns regarding global worming were increased, the pressure on mobile source greenhouse gas (GHG) emission were also increased. Carbon Dioxides contribute over 90% of total GHG emission and the mobile source occupies about 20% of this $CO_2$ emission. In this study, in order to investigate $CO_2$ emission characteristics from gasoline and LPG passenger cars (PC), which is the most dominant vehicle type in Korea, 53 vehicles were tested on the chassis dynamometer. $CO_2$ emissions and fuel consumption efficiency were measured. The emission characteristics by fuel type, model year, mileage, vehicle speed and transmission type were also discussed. Test modes used in this study were NIER 10 modes and CVS-75 mode, which have been used for developing emission factors and testing new vehicles respectively. The results of this study showed that the main factors which have significant influences on the $CO_2$ emissions are fuel type, transmission type, displacement of vehicle and mileage. The correlation between $CO_2$ emission and FE was also determined by comparing $CO_2$ emission and fuel consumption efficiency. The overall results of this study will greatly contribute to domestic greenhouse gas emissions calculation and designing national strategies for climate change.

Application of Gamma Ray Densitometry in Powder Metallurgy

  • Schileper, Georg
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2002년도 제3회 최신 분말제품 응용기술 Workshop
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    • pp.25-37
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    • 2002
  • The most important industrial application of gamma radiation in characterizing green compacts is the determination of the density. Examples are given where this method is applied in manufacturing technical components in powder metallurgy. The requirements imposed by modern quality management systems and operation by the workforce in industrial production are described. The accuracy of measurement achieved with this method is demonstrated and a comparison is given with other test methods to measure the density. The advantages and limitations of gamma ray densitometry are outlined. The gamma ray densitometer measures the attenuation of gamma radiation penetrating the test parts (Fig. 1). As the capability of compacts to absorb this type of radiation depends on their density, the attenuation of gamma radiation can serve as a measure of the density. The volume of the part being tested is defined by the size of the aperture screeniing out the radiation. It is a channel with the cross section of the aperture whose length is the height of the test part. The intensity of the radiation identified by the detector is the quantity used to determine the material density. Gamma ray densitometry can equally be performed on green compacts as well as on sintered components. Neither special preparation of test parts nor skilled personnel is required to perform the measurement; neither liquids nor other harmful substances are involved. When parts are exhibiting local density variations, which is normally the case in powder compaction, sectional densities can be determined in different parts of the sample without cutting it into pieces. The test is non-destructive, i.e. the parts can still be used after the measurement and do not have to be scrapped. The measurement is controlled by a special PC based software. All results are available for further processing by in-house quality documentation and supervision of measurements. Tool setting for multi-level components can be much improved by using this test method. When a densitometer is installed on the press shop floor, it can be operated by the tool setter himself. Then he can return to the press and immediately implement the corrections. Transfer of sample parts to the lab for density testing can be eliminated and results for the correction of tool settings are more readily available. This helps to reduce the time required for tool setting and clearly improves the productivity of powder presses. The range of materials where this method can be successfully applied covers almost the entire periodic system of the elements. It reaches from the light elements such as graphite via light metals (AI, Mg, Li, Ti) and their alloys, ceramics ($AI_20_3$, SiC, Si_3N_4, $Zr0_2$, ...), magnetic materials (hard and soft ferrites, AlNiCo, Nd-Fe-B, ...), metals including iron and alloy steels, Cu, Ni and Co based alloys to refractory and heavy metals (W, Mo, ...) as well as hardmetals. The gamma radiation required for the measurement is generated by radioactive sources which are produced by nuclear technology. These nuclear materials are safely encapsulated in stainless steel capsules so that no radioactive material can escape from the protective shielding container. The gamma ray densitometer is subject to the strict regulations for the use of radioactive materials. The radiation shield is so effective that there is no elevation of the natural radiation level outside the instrument. Personal dosimetry by the operating personnel is not required. Even in case of malfunction, loss of power and incorrect operation, the escape of gamma radiation from the instrument is positively prevented.

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