• Title/Summary/Keyword: Aerosol size distribution

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Number Consentration And Size Distribution of Aerosol in DunHuang, China (중국ㆍ둔황에서 OPC에 의해 관측된 에어로졸 수농도의 계절별 연직분포와 특성)

  • 김윤석;이와사까야스노부;쉬광유;마쯔키아쯔시;트로슈킨드미트리
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2002.04a
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    • pp.317-318
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    • 2002
  • 중국 대륙의 사막지역을 기원으로 하고있는 황사는 주로 봄철에 우리나라를 비롯해 일본 은 물론 멀리 동태평양지역(Merrill 1989)에까지 이동한다고 알려져 있다. 최근, 황사연구는 라이다(Kwon et al 1997, Sakai et at 2000), 샘플링(Zhang and Iwasaka 2001), 모델링(Denterner 1996) 위성데이터 등을 이용한 연구가 활발히 진행되고 있다. 이러한 것은 황사입자의 Radiation Effect, 대류권에서의 화학적 역할등이 재평가되고 있다는 사실에 기인한다. (중략)

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Log-normal Size Distribution Theory for Deposition of Polydisperse Aerosol Particles (대수정규분포를 이용한 다분산 에어로졸의 침착에 관한 연구)

  • 박성훈;이규원
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 1999.10a
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    • pp.191-193
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    • 1999
  • 닫힌 반응기 내부에 부유하는 에어로졸 입자들의 크기분포는 응집, 응축, 확산에 의한 침착, 중력침강 및 누출과 같은 여러 기작들에 의해 변화한다. 특히 확산 및 중력침강에 의해 일어나는 입자의 침착(deposition)은 에어로졸 측정기기의 오차분석, 호흡기내부의 미세입자 침착, 건물내부의 입자상 물질의 농도 및 크기분포 변화 등 여러 응용분야에 관련되는 중요한 기작이다.(중략)

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Particle Refractive Index Effects on Aerosol Size Distribution Measured by An Optical Particle Counter (입자의 굴절률변화에 따른 광학적 입자 계수기로 측정된 대기 에어러솔 크기분포의 측정오차)

  • 이권호;김영준;정희숙;정창훈
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2002.11a
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    • pp.314-315
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    • 2002
  • 대기중에는 다양한 크기와 모양, 그리고 화학성분을 가진 입자들이 존재한다. 이러한 입자들은 발생원이 다양하고 대기중에 존재하면서 광화학적인 변화를 거쳐 형성되기도 한다. 입자의 화학조성과 크기는 발생원을 구분하기 위한 일반적인 척도로 쓰이고 있다. 대기 에어러솔의 크기분포특성은 에어러솔의 변화 요소인 발생원과 제거 그리고 동역학적인 과정을 이해하는데 중요한 역할을 한다. (중략)

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Efficiency test Evaluation Method for Nebulizer & Medicinal Nonventilatory Nebulizer (의료용 흡입기 및 분무기의 성능 평가 연구)

  • Kim, S.M.;Jeong, J.H.;Lee, J.H.;Rho, S.G.
    • Journal of Biomedical Engineering Research
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    • v.30 no.5
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    • pp.438-443
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    • 2009
  • Nebulizer is designed to atomize medicinal fluid for patient with small particles(0.5-$5{\mu}m$) and also able to deliver particles from devices to the lungs when patient inhales air. Several particle size measurements are currently used to size aerosol particles. The most commonly used test is the cascade impactor method in as a standard. But, other methods for comparative particle size distribution data such as the particle size range and reproducibility are acceptable. Therefore, in this study a new test methode is suggested for nonventilatory nebulizer evaluation equipment.

Experiment on Collection Characteristics of Sub micron Particles in Two-Stage Parallel-Plate Electrostatic Precipitators (2단 평행판 전기집진기의 서브마이크론 입자 포집특성 실험)

  • Oh, M.D.;Yoo, K.H.
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.6 no.3
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    • pp.237-246
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    • 1994
  • Experimental data are reported for charging and collection of NaCl aerosols in the 0.03- to $0.2{\mu}m$-geometric-mean-diameter range in 2-stage parallel-plate electrostatic precipitators. The NaCl aerosols are generated with geometric standard deviation of about 1.74 and particle generation rate of about 10^9 particles/see by the constant output atomizer and injected into the air flow in the clean wind-tunnel. The 2-stage parallel-plate electrostatic precipitator installed in the test section of the wind-tunnel is operated with a positive corona discharge. The NaCl aerosols in the channel flow are sampled and transported to the aerosol particle number concentration measurement system by using the isoaxial sampling and transport system constructed based on the Okazaki and Willeke design. The aerosol particle number concentration measurement system measures the size distribution of submicrometer aerosols by an electrical mobility detection technique. It is confirmed from comparing the measured collection efficiencies in this study and the predicted ones by our previous theoretical analysis that the predicted collection efficiencies agree well with the experimental ones. It is also found from the comparison that below about $0.02{\mu}m$ all particles are not charged and the uncharged particles are not collected, and consequently 2-stage parallel-plate electrostatic precipitators are not suitable for that particle size range.

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Aerosol Sampling with Two Stage Filter Sampler and Seasonal Variation of Metal Components in the Atmosphere (이단 필터 샘플러에 의한 대기 부유분진의 포집 및 금속 성분의 계절별 거동에 관한 연구)

  • Lee, Yong-Keun;Kim, Nam-Hoon;Myung, No-Seung;Whang, Kyu-Ja
    • Journal of Korean Society for Atmospheric Environment
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    • v.4 no.2
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    • pp.20-27
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    • 1988
  • A simple two stage aerosol filter sampler which allows simultaneous and fractional collection of two different-size particles, coarse and fine, was constructed and applied to the collection of Seoul atmospheric particulate for inorganic analysis. The sampler consist of two 47-mm diameter filter holder, a pneumatic pump, and a flowmeter. Filtering rate normally runs around 20$\ell$/min for 8 hrs. Using the sampler, a series of seasonal aerosol samples were collected from June 1986 to March 1988 at Yonsei University campus, Seoul and subsequently analysed for ten environmentally important metals using an atomic absorption spectrometer and an inductively coupled plasma emission spectrometer. The analysed metals are Al, Cd, Cr, Cu, Fe, Mn, Ni, Pb, V, and Zn. The analytical results showed the following order of metal abundance; Al > Fe > Zn > Pb > Mn > Cu > V > Ni > Cr > Cd. Based upon their size distribution pattern, the analyzed matals could be clasified into two groups, those present primarily in coarse particle and those in fine particle. Fe, Al, Mn, V, and Cr belong to the former group while the rest to the latter. Most metal concentration were highest in spring or winter, and lowest in autumn. Statistical analysis showed strong correlations between Al and Fe, Pb and Zn, and Cu and Mn.

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Composition of Size-Segregated Atmospheric Aerosol Collected at an Urban Roadside Environment in Jeju Area (제주지역 도로변 대기 중 에어로졸의 입경별 조성특성)

  • Hu, Chul-Goo;Kim, Su-Mi;Lee, Ki-Ho
    • Journal of Environmental Science International
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    • v.29 no.1
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    • pp.79-93
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    • 2020
  • To determine the size distributions of water-soluble inorganic ionic species (WSIS) in roadside aerosols, sampling experiments were carried out in the urban roadside area of Jeju City on August 2018 and January 2019 by using the eight-stage cascade impactor sampler. The mass of roadside aerosols were partitioned at 57% in fine fraction, 36-37% in coarse fraction, and 6-7% in giant fraction, regardless of summer and winter. The mass concentrations of WSIS except for Na+ and SO42- in roadside aerosols were higher in winter than in summer. The size distributions of Na+, Mg2+, Ca2+ and Cl- were characterized by bimodal types with coarse particle mode peaking around 3.3-4.7 ㎛ and 5.8-9.0 ㎛. The size distributions of NO3- and K+ shifted from a single fine mode peaking around 0.7-1.1 ㎛ in winter to bimodal and/or trimodal types with peaks around coarse mode in summer. SO42- and NH4+ showed a single fine mode peaking around 0.7-1.1 ㎛. The MMAD of roadside aerosols was lower than that of Na+, Mg2+, Ca2+ and Cl-. Based on the marine enrichment factors and the ratio values of WSIS and the corresponding value for sea water, the composition of roadside aerosols in Jeju City may be practically affected by terrestrial sources rather than marine source.

Formation of Silicon Particles Using $SiH_4$ pyrolysis at atmospheric pressure (상압에서 열분해법을 이용한 실리콘 입자 제조)

  • Woo, Dae-Kwang;Nam, Kyung-Tag;Kim, Young-Gil;Kim, Kwang-Su;Kang, Yun-Ho;Kim, Tae-Sung
    • Proceedings of the KSME Conference
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    • 2007.05a
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    • pp.126-129
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    • 2007
  • The particle formation using pyrolysis has many advantages over other particle manufacturing techniques. The particles by pyrolysis have relatively uniform size and chemical composition. Also, we can easily produce high purity particles. Thus, we studied the formation of silicon particles by pyrolysis of 50% $SiH_4$ gas diluted in Ar gas. A pyrolysis furnace was used for the thermal decomposition of $SiH_4$ gas at $800^{\circ}C$ and atmospheric pressure. The aerosol flow from furnace is separated into two ways. The one is to the Scanning Mobility Particle Sizer (SMPS) for particle size distribution measurement and the other is to the particle deposition system. The produced silicon particles are deposited on the wafer in the deposition chamber. SEM measurement was used to compare the particle size distribution results from the SMPS. Depending on the experimental conditions, particles of high concentration in the $30\sim80$ nm size range were generated.

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The Fluctuation of Marine Aerosol Number Concentrations Related with Vertical Winds (연직풍에 따른 해양성 에어러솔 수 농도 변동에 관한 연구)

  • Park, Sung-Hwa;Jang, Sang-Min;Jung, Woon-Seon;Jeong, Jong-Hoon;Lee, Dong-In
    • Journal of the Korean earth science society
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    • v.33 no.3
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    • pp.259-268
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    • 2012
  • To investigate the fluctuation of marine aerosol number concentration at each different size with vertical winds in ocean area, aerosol particles and vertical wind components were measured in the Ieodo Ocean Research Station, which is located to 419 km southwest of Marado, the southernmost island of Korea, from 8 to 22 June 2009. The Laser Particle Counter (LPC) and ultrasonic anemometer were used to measure the number of aerosol particles and vertical wind speed. Surface weather chart, NCEP/NCAR reanalysis data and sounding data were used to analyze the synoptic condition. The distribution of aerosol number concentration had a large fluctuation of bigger particles more than 1.0 ${\mu}m$ in diameter by vertical wind speed during precipitation. The aerosol particles larger than 1.0 ${\mu}m$ in diameter increased as the wind changed from downward to upward during precipitation. The aerosol number concentration of bigger size than 1.0 ${\mu}m$ in diameter increased about 5 times when vertical velocity was about 0.4 $ms^{-1}$. In addition, the accumulation and coarse mode aerosol number concentration decreased about 45% and 92%, respectively compared to concentrations during precipitation period. It is considered that vertical wind plays an important role for the increasing of coarse mode aerosol number concentration compared to the large aerosol particles sufficiently removed by the scavenging effect of horizontal winds. Therefore, the upward vertical winds highly contribute to the formation and increase in aerosol number concentration below oceanic boundary layer.

Evaluation of a New Workplace Protection Factor―Measuring Method for Filtering Facepiece Respirator

  • Sun, Chenchen;Thelen, Christoph;Sanz, Iris Sancho;Wittmann, Andreas
    • Safety and Health at Work
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    • v.11 no.1
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    • pp.61-70
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    • 2020
  • Background: This study aims to assess whether the TSI PortaCount (Model 8020) is a measuring instrument comparable with the flame photometer. This would provide an indication for the suitability of the PortaCount for determining the workplace protection factor for particulate filtering facepiece respirators. Methods: The PortaCount (with and without the N95-CompanionTM) was compared with a stationary flame photometer from Moores (Wallisdown) Ltd (Type 1100), which is a measuring instrument used in the procedure for determining the total inward leakage of the particulate filtering facepiece respirator in the European Standard. Penetration levels of sodium chloride aerosol through sample respirators of two brands (A and B) were determined by the two measuring systems under laboratory conditions. For each brand, thirty-six measurements were conducted. The samples were split into groups according to their protection level, conditioning before testing, and aerosol concentration. The relationship between the gauged data from two measuring systems was determined. In addition, the particle size distribution inside the respirator and outside the respirator was documented. Linear regression analysis was used to calculate the association between the PortaCount (with and without the N95-CompanionTM) and the flame photometer. Results: A linear relationship was found between the raw data scaled with the PortaCount (without N95-CompanionTM) and the data detected by the flame photometer (R2 = 0.9704) under all test conditions. The distribution of particle size was found to be the same inside and outside the respirator in almost all cases. Conclusion: Based on the obtained data, the PortaCount may be applicable for the determination of workplace protection factor.