• 제목/요약/키워드: Particle Mass

검색결과 959건 처리시간 0.03초

고안정성 리튬이온전지 양극활물질용 Ti 치환형 LiNi0.6Co0.2Mn0.2O2 연구 (Study on Ti-doped LiNi0.6Co0.2Mn0.2O2 Cathode Materials for High Stability Lithium Ion Batteries)

  • 전용희;임수아
    • 전기화학회지
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    • 제24권4호
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    • pp.120-132
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    • 2021
  • 기존 LiCoO2의 고전압 사용의 제약에 따른 용량적 한계와 코발트 원료의 높은 가격을 해결하기 위하여 high-Nickel에 대한 개발이 활발히 진행되고 있지만 Ni 함량의 증가에 따른 구조적 안정성의 저하에 의한 전지 특성의 저하는 상용화를 지연시키는 중요한 원인이 되고 있다. 이에 Ni-rich 삼성분계 양극소재 LiNi0.6Co0.2Mn0.2O2의 고안정성을 높이고자 전구체에 균일한 이종원소 Ti를 치환을 위해서 나노크기의 TiO2 서스펜젼 형태 소스를 사용하여 전구체 Ni0.6Co0.2Mn0.2-x(OH)2/xTiO2를 제조하였다. Li2CO3와 혼합하고, 열처리 후 양극활물질 LiNi0.6Co0.2Mn0.2-xTixO2 합성하여 Ti 함량에 따른 물리적 특성을 비교하였다. Field Emission Scanning electron Microscope(FE-SEM) 및 Energy Dispersive Spectroscopy (EDS) mapping 분석을 통해 Ti 치환된 구형의 전구체와 입자 크기 측정을 통해 균일한 입자크기를 가지는 양극 활물질 제조를 확인하였고, 내부치밀도와 강도가 증가함을 확인 하고, X-ray Diffractometry (XRD) 구조 분석과 Inductively Coupled Plasma Mass Spectrometry (ICP-MS) 정량분석을 통해 Ti 치환된 양극활물질 제조 및 고온, 고전압에서 충·방전을 지속하더라도 효과적으로 용량이 유지됨을 확인하였다.

산성광산배수 (AMD) 처리 부산물 ochre의 특성과 활용 (Characteristics of By-product Ochre from Acid Mine Drainage (AMD) Treatment and Its Potential Use)

  • 정중환;김호진;김영남;남광수;김계훈
    • 한국토양비료학회지
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    • 제43권3호
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    • pp.304-314
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    • 2010
  • 본 연구는 산성광산배수 (AMD)의 처리 과정에서 생성되는 부산물 ochre의 이화학성, 광물학적 특성 및 환경 분야 활용 가능성을 확인하기 위해 수행하였다. 이를 위하여 적극적 처리법인 물리 화학적 정화 처리시설에서 생성된 ochre-H와 수동적 처리법인 자연 정화 처리시설에서 생성된 ochre-D, ochre-S의 특성을 비교 분석하였다. Ochre-H는 광물 내 침철석 (goethite) 함량 및 철 성분 함량이 다른 시료에 비해 상대적으로 낮게 나타났지만, 소석회 내 칼슘 이온의 인 흡착 능력과 상대적으로 높은 흡착 표면적 등이 장점으로 작용할 수 있다. 또한 환경 생태계의 중금속 오염 가능성이 희박하고 물리 화학적 정화 처리시설에서 균일한 특성의 ochre를 대량 생산할 수 있으므로 실용적이며, 경제성이 높을 것으로 판단된다. Ochre-H의 인 흡착 특성은 Freundlich 흡착등온식모델에 적합하였다. 또한 ochre의 흡착 특성이 단분자층 흡착이 아닌 여러 분자층으로 흡착되어 매우 높은 흡착량을 가지기 때문에 인 출현곡선 (BTC)은 1이 아닌 0.3~0.4 상대농도 범위에서 평형에 도달하였다. 실제로 물 중 인 제거 능력을 평가한 실험에서 인 농도 외에 다른 오염원이 존재할 것으로 예상되는 수질 시료의 경우를 제외한 나머지 시료에서는 수질 및 수생태계 생활환경기준상의 인 농도 I 등급 기준치 이하로 검출되어 정화능력이 우수함을 확인하였다. 또한 정화 처리 과정 중 ochre내의 철 성분이 수질 내로 용출되는 양은 많지 않은 것으로 나타났다. 실험을 통하여 확인한 ochre의 높은 인 제거능력을 이용하여 부영양화 현상에 대한 정화제로 환경 분야에 적용하기 위해서는 오염원이 유입되는 하천 등의 위치를 정확히 파악한 후, 현장에 필터 형태의 pilot을 제작하여 설치하는 것이 중요하며, 또한 슬러지의 일종인 ochre 내 철 등으로 인한 수질오염의 발생 여부를 확인하여 유해하지 않음이 검증되어야 한다.

COPD 동물 모델에서 소청룡탕 흡입제형의 효과 (Effects of Inhalable Microparticles of Socheongryong-tang on Chronic Obstructive Pulmonary Disease in a Mouse Model)

  • 이응석;한종민;김민희;남궁욱;여윤;박양춘
    • 대한한의학회지
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    • 제34권3호
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    • pp.54-68
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    • 2013
  • Objectives: This study aimed to evaluate the effects of microparticles of Socheongryong-tang (SCRT) on chronic obstructive pulmonary disease (COPD) in a mouse model. Methods: The inhalable microparticles containing SCRT were produced by spray-drying with leucine as an excipient, and evaluated with respect to the aerodynamic properties of the powder by Andersen cascade impactor (ACI). Its equivalence to SCRT extract was evaluated using lipopolysaccharide (LPS) and a cigarette-smoking (CS)-induced murine COPD model. Results: SCRT microparticles provided desirable aerodynamic properties (fine particle fraction of $49.6{\pm}5.5%$ and mass median aerodynamic diameter of $4.8{\pm}0.3{\mu}m$). SCRT microparticles did not show mortality or clinical signs over 14 days. Also there were no significant differences in body weight, organ weights or serum chemical parameters between SCRT microparticle-treated and non-treated groups. After 14 days the platelet count significantly increased compared with the non-treated group, but the values were within the normal range. Inhalation of SCRT microparticles decreased the rate of neutrophils in blood, granulocytes in peripheral blood mononuclear cells (PBMC) and bronchoalveolar lavage fluid (BALF) and level of TNF-${\alpha}$ and IL-6 in BALF on COPD mouse model induced by LPS plus CS. This effect was verified by histological findings including immunofluorescence staining of elastin, collagen, and caspase 3 protein in lung tissue. Conclusions: These data demonstrate that SCRT microparticles are equivalent to SCRT extract in pharmaceutical properties for COPD. This study suggests that SCRT microparticles would be a potential agent of inhalation therapy for the treatment of COPD.

자동차 연료유형에 따른 배출 입자상 물질의 화학적 특성 (Physicochemical Characteristics of Particulate Matter Emissions of Different Vehicles' Fuel Types)

  • 손지환;김정화;박규태;김선문;홍희경;문선희;박태현;강석원;성기재;정택호;김인구;김경훈;유동길;최광호;김정수;이태형
    • 한국대기환경학회지
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    • 제32권6호
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    • pp.593-602
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    • 2016
  • The physicochemical characteristics of particulate matter emissions from various vehicle's fuel types were studied at the facility of Transport Pollution Research Center(TPRC), National Institute of Environmental Research (NIER), Korea. Three different types of fuels such as gasoline, liquefied petroleum gas (LPG) and diesel were tested on the NIER driving mode and the constant speed modes(30, 70, and 110 km/h). Chemical composition of submicron particles from vehicle emissions was measured by the High Resolution Time of Flight Aerosol Mass Spectrometer (HR-ToF-AMS) during running cycles. Organics were dominant chemical species of particulate matter emissions for all three different vehicles' fuel types. Moreover, regardless of fuel types, emission rate of organics and inorganics decreased as the average speed of vehicle increased. The portion of fully oxidized fragment families of $C_xH_yO_z$ accounted for over 98% of organic aerosol(OA) in LPG and diesel vehicles, while the relatively high fraction of $C_xH_y$ in OA was observed in gasoline vehicle.

혐기성 미생물에 의한 토양내 다핵성방향족화합물의 생물학적 분해 (Biodegradation of Polynuclear Aromatic Hydrocarbons in soil using microorganisms under anaerobic conditions)

  • 안익성
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2000년도 춘계학술발표대회
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    • pp.89-91
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    • 2000
  • Polynuclear aromatic hydrocarbon (PAH) compounds are highly carcinogenic chemicals and common groundwater contaminants that are observed to persist in soils. The adherence and slow release of PAHs in soil is an obstacle to remediation and complicates the assessment of cleanup standards and risks. Biological degradation of PAHs in soil has been an area of active research because biological treatment may be less costly than conventional pumping technologies or excavation and thermal treatment. Biological degradation also offers the advantage to transform PAHs into non-toxic products such as biomass and carbon dioxide. Ample evidence exists for aerobic biodegradation of PAHs and many bacteria capable of degrading PAHs have been isolated and characterized. However, the microbial degradation of PAHs in sediments is impaired due to the anaerobic conditions that result from the typically high oxygen demand of the organic material present in the soil, the low solubility of oxygen in water, and the slow mass transfer of oxygen from overlying water to the soil environment. For these reasons, anaerobic microbial degradation technologies could help alleviate sediment PAH contamination and offer significant advantages for cost-efficient in-situ treatment. But very little is known about the potential for anaerobic degradation of PAHs in field soils. The objectives of this research were to assess: (1) the potential for biodegradation of PAH in field aged soils under denitrification conditions, (2) to assess the potential for biodegradation of naphthalene in soil microcosms under denitrifying conditions, and (3) to assess for the existence of microorganisms in field sediments capable of degrading naphthalene via denitrification. Two kinds of soils were used in this research: Harbor Point sediment (HPS-2) and Milwaukee Harbor sediment (MHS). Results presented in this seminar indicate possible degradation of PAHs in soil under denitrifying conditions. During the two months of anaerobic degradation, total PAH removal was modest probably due to both the low availability of the PAHs and competition with other more easily degradable sources of carbon in the sediments. For both Harbor Point sediment (HPS-2) and Milwaukee Harbor sediment (MHS), PAH reduction was confined to 3- and 4-ring PAHs. Comparing PAH reductions during two months of aerobic and anaerobic biotreatment of MHS, it was found that extent of PAHreduction for anaerobic treatment was compatible with that for aerobic treatment. Interestingly, removal of PAHs from sediment particle classes (by size and density) followed similar trends for aerobic and anaerobic treatment of MHS. The majority of the PAHs removed during biotreatment came from the clay/silt fraction. In an earlier study it was shown that PAHs associated with the clay/silt fraction in MHS were more available than PAHs associated with coal-derived fraction. Therefore, although total PAH reductions were small, the removal of PAHs from the more easily available sediment fraction (clay/silt) may result in a significant environmental benefit owing to a reduction in total PAH bioavailability. By using naphthalene as a model PAH compound, biodegradation of naphthalene under denitrifying condition was assessed in microcosms containing MHS. Naphthalene spiked into MHS was degraded below detection limit within 20 days with the accompanying reduction of nitrate. With repeated addition of naphthalene and nitrate, naphthalene degradation under nitrate reducing conditions was stable over one month. Nitrite, one of the intermediates of denitrification was detected during the incubation. Also the denitrification activity of the enrichment culture from MHS slurries was verified by monitoring the production of nitrogen gas in solid fluorescence denitrification medium. Microorganisms capable of degrading naphthalene via denitrification were isolated from this enrichment culture.

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Water Gas Shift 반응에서 Pt/CeO2 촉매의 지지체구조에 따른 촉매활성 연구 (Effect of Support Geometry on Catalytic Activity of Pt/CeO2 Nanorods in Water Gas Shift Reaction)

  • 임효빈;권순진;변창기;안희성;구기영;윤왕래;이광복
    • 한국수소및신에너지학회논문집
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    • 제25권6호
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    • pp.577-585
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    • 2014
  • Nanorod and particle shape $CeO_2$ were synthesized via hydrothermal process and precipitation method, respectively, and used as supports of Pt catalyst for water gas shift (WGS) reaction. Three different durations (12, 48, and 96h) for hydrothermal process were applied for the preparation of nanorod type $CeO_2$. 1.0 wt% of Pt was loaded on the prepared supports with incipient wetness method prior to the catalytic activity tests that were carried out at a GHSV of $95,541h^{-1}$, and a temperature range of 200 to $360^{\circ}C$. Varying duration of hydrothermal process led to the difference in physical characteristics of $CeO_2$ nanorods, such as aspect ratio, BET surface area, pore diameter, and pore volume. Consequently, the catalytic activities of Pt/$CeO_2$ nanorods were affected by the physical characteristics of the supports and appeared to be in the order of Pt/$CeO_2$(12) > Pt/$CeO_2$(48) > Pt/$CeO_2$(96). The comparison of the catalytic activities and results of the analysis (XPS, XRD, SEM, BET and TPR) for the supports revealed that the activity of the catalysts depends on chemical states of the Pt and the support materials in the temperature range that is lower than $280^{\circ}C$. However, the activity is rather dependent on the physical characteristic of the supports because the increased gas velocity limits the mass transfer of reactants in micropores of the supports.

수정된 증발법을 이용하여 제작된 주석 나노입자의 녹는점 강하에 관한 연구 (Study on the Melting Point Depression of Tin Nanoparticles Manufactured by Modified Evaporation Method)

  • 김현진;백일권;김규한;장석필
    • 대한기계학회논문집B
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    • 제38권8호
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    • pp.695-700
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    • 2014
  • 본 논문에서는 수정된 증발법을 이용하여 제작된 주석(Sn) 나노입자의 녹는점 강하 특성에 대한 연구를 진행하였다. 이를 위해 대량생산이 가능한 수정된 증발법을 이용하여 10nm 급 주석 나노입자를 제조하였다. 주석 나노입자 표면의 산화 방지를 위하여 Benzyl Alcohol 을 기본유체로 사용하였으며, 제작된 주석 나노입자의 형상과 입자크기를 알아보기 위하여 투과전자현미경(TEM)을 사용하였다. 제작된 나노입자의 녹는점은 시차주사열량계(DSC)를 통해 측정하였으며, 광전자분광분석기(XPS)를 사용하여 제작된 주석 나노입자의 성분 분석을 진행 하였다. 주석 나노입자의 녹는점은 주석의 녹는점인 $232^{\circ}C$보다 44% 감소한 $129^{\circ}C$로 측정되었다. 녹는점 측정 결과는 Gibbs-Thomson 식 및 Lai 의 식과 비교하였으며, 그 결과 Lai의 식이 실험결과를 잘 예측함을 확인할 수 있었다.

Comparison of Toxicity and Deposition of Nano-Sized Carbon Black Aerosol Prepared With or Without Dispersing Sonication

  • Kang, Mingu;Lim, Cheol-Hong;Han, Jeong-Hee
    • Toxicological Research
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    • 제29권2호
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    • pp.121-127
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    • 2013
  • Nanotoxicological research has shown toxicity of nanomaterials to be inversely related to particle size. However, the contribution of agglomeration to the toxicity of nanomaterials has not been sufficiently studied, although it is known that agglomeration is associated with increased nanomaterial size. In this study, we prepared aerosols of nano-sized carbon black by 2 different ways to verify the effects of agglomeration on the toxicity and deposition of nano-sized carbon black. The 2 methods of preparation included the carbon black dispersion method that facilitated clustering without sonication and the carbon black dispersion method involving sonication to achieve scattering and deagglomeration. Male Sprague-Dawley rats were exposed to carbon black aerosols 6 hr a day for 3 days or for 2 weeks. The median mass aerodynamic diameter of carbon black aerosols averaged $2.08{\mu}m$ (for aerosol prepared without sonication; group N) and $1.79{\mu}m$ (for aerosol prepared without sonication; group S). The average concentration of carbon black during the exposure period for group N and group S was $13.08{\pm}3.18mg/m^3$ and $13.67{\pm}3.54mg/m^3$, respectively, in the 3-day experiment. The average concentration during the 2-week experiment was $9.83{\pm}3.42mg/m^3$ and $9.08{\pm}4.49mg/m^3$ for group N and group S, respectively. The amount of carbon black deposition in the lungs was significantly higher in group S than in group N in both 3-day and 2-week experiments. The number of total cells, macrophages and polymorphonuclear leukocytes in the bronchoalveolar lavage (BAL) fluid, and the number of total white blood cells and neutrophils in the blood in the 2-week experiment were significantly higher in group S than in normal control. However, differences were not found in the inflammatory cytokine levels (IL-$1{\beta}$, TNF-${\alpha}$, IL-6, etc.) and protein indicators of cell damage (albumin and lactate dehydrogenase) in the BAL fluid of both group N and group S as compared to the normal control. In conclusion, carbon black aerosol generated by sonication possesses smaller nanoparticles that are deposited to a greater extent in the lungs than is aerosol formulated without sonication. Additionally, rats were narrowly more affected when exposed to carbon black aerosol generated by sonication as compared to that produced without sonication.

춘천시 PM2.5의 질량농도 및 이온성분 농도의 특성에 관한 연구 (Study on Characteristics of PM2.5 and Its Ionic Constituents in Chuncheon, Korea)

  • 정진희;한영지
    • 한국대기환경학회지
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    • 제24권6호
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    • pp.682-692
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    • 2008
  • Fine particles ($PM_{2.5}$) were collected and analyzed from November 2005 through August 2007 in Chuncheon, Korea to investigate the characteristics of $PM_{2.5}$ and its ionic constituents. The average $PM_{2.5}$ concentration during the study period was $39{\mu}g/m^3$, which is almost two times higher than the annual US NAAQS $PM_{2.5}$ standard of $15{\mu}g/m^3$. $PM_{2.5}$ concentrations were higher in spring and winter than in summer and fall. During spring, Asian Dust events dramatically enhanced $PM_{2.5}$ concentrations, and long-range transport of $PM_{2.5}$ emitted in industrial area of China often occurred during winter based on trajectory analysis. Contribution of $PM_{2.5}$ to $PM_{10}$ concentrations ranged from $72{\mu}g/m^3$ during Asian Dust events to $457{\mu}g/m^3$, indicating that a large portion of $PM_{2.5{\sim}10}$ was transported from China during Asian Dust events. Among the major ionic constituents ${SO_4}^{2-}$ showed the highest concentration, followed by ${NH_4}^+$, ${NO_3}^-$ and ${NO_2}^-$. Chuncheon appeared to be ${NH_4}^+$ rich environment, indicating that $(NH_4)_{2}SO_4$ and ${NH_4}{NO_3}$ were the predominant forms of ${NO_3}^-$ and ${SO_4}^2$ in $PM_{2.5}$. Haze has frequently occurred in Chuncheon since So-Yang dam was constructed in 1973. Haze events were observed on 23 days during sampling period, and the average $PM_{2.5}$ concentration was approximately 1.6 times higher during haze events than during non-haze events. This result suggests that haze enhances the secondary aerosol formation because the aerosol spontaneously absorbs water to form a saturated salt solution, deriving a significant increase in the mass of the particle.

한반도 서부유입권역에서 대기 중 에어로졸 성분의 화학적 특성 연구 I. PM 농도 및 화학 성분 특성 (A Study on Chemical Characteristics of Aerosol Composition at West Inflow Regions in the Korean Peninsula I. Characteristics of PM Concentration and Chemical Components)

  • 최진수;김정호;이태형;최용주;박태현;오준;박진수;안준영;전하은;구윤서;김신도;홍유덕;홍지형
    • 한국대기환경학회지
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    • 제32권5호
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    • pp.469-484
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    • 2016
  • HR-ToF-AMS was applied for a seasonal and size-distributional measurements for inorganic ($SO{_4}^{2-}$, $NO_3{^-}$, $NH_4{^+}$, $Cl^-$) and organic components in Baegryung Island Super Site. The average concentration of $PM_{1.0}$ remarks $12.9{\mu}g/m^3$ while $14.5{\mu}g/m^3$ in Spring time, $14.2{\mu}g/m^3$ in Winter, $13.1{\mu}g/m^3$ in Summer and $9.86{\mu}g/m^3$ in Autumn. The mass of measured $PM_{1.0}$ shows 54.6% of $PM_{2.5}$ which is similar to those of Beijing and Lanzhou, China. The highest portion of Chemical composition is $SO{_4}^{2-}$ marking 41.0%, 31.8% by organics, 13.5% by $NH_4{^+}$, 12.8% by $NO_3{^-}$ and 1% by $Cl^-$. In every seasons, except winter, $SO{_4}^{2-}$ remarks the highest level, organic components take place the highest in winter time. The size-distribution of $PM_{1.0}$ components scattered at accumulation mode of 200 nm~800 nm which means the influence of primary emission is low. In case of air stream from the industrialized area of Sandung, Shanghai, China, the concentrations of such components were distributed a bit higher.