• 제목/요약/키워드: teflon filter

검색결과 35건 처리시간 0.019초

중등학교에서 사용 가능한 미세먼지 포집 장치 제작을 통한 대기 중 중금속 및 미생물 분석 (Analysis of Heavy Metal Element and Microorganism by Manufacture of Particulate Matter Sampler for Science Project of Secondary School)

  • 권우진;김영재;변정호
    • 한국지구과학회지
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    • 제36권1호
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    • pp.125-135
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    • 2015
  • 이 연구에서는 중등학교에서 사용할 수 있는 미세먼지 포집 장치를 직접 설계 및 제작하고 이를 통해 미세먼지에 포함된 중금속 및 미생물을 분석하는 활동이 가능한지 여부를 탐색하고자 한다. 중등학교 현장의 과학 탐구활동을 위해 청주지역에서 미세먼지를 포집하는 방법과 그 속에 포함된 중금속 및 미생물을 분석하였다. 미세먼지의 포집장소는 청주지역 대학교의 4층 건물 옥상에서 포집하였다. 모터 펌프, 인넷, 지름 $1.0{\mu}m$ 테프론필터, 필터 홀더 등을 이용하여 포집장치를 제작하였다. 이 포집장치를 이용한 미세먼지 포집은 2013년 12월-2014년 6월까지 진행하였다. 포집한 미세먼지의 중금속 성분과 미생물 포함 여부를 분석하였다. 중국에서 날아온 미세먼지 속에는 Cu, Zn, Cd, Ni, Pb 등인위적인 오염물질로 판단되는 중금속 성분이 국내 기원 미세먼지 보다 많았다. 더 나아가, 미세먼지 속에는 중금속 뿐만 아니라, 곰팡이나 세균같은 미생물도 다량 포함하고 있었다. 이 연구는 미세먼지가 중금속 뿐만아니라 미생물도 포함하고 있으므로, 이에 대한 체계적인 연구와 모니터링이 필요함을 시사한다고 할 수 있다. 또한, 이 연구는 중등학교 과학실험의 사례로 제공될 수 있다.

PMF 모델을 이용한 수도권 내 3개 도시에서의 PM10 오염원의 기여도 추정 (Estimation of PM10 Source Contributions on Three Cities in the Metropolitan Area by Using PMF Model)

  • 이태정;허종배;이승묵;김신도;김동술
    • 한국대기환경학회지
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    • 제25권4호
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    • pp.275-288
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    • 2009
  • The Korean government strengthened the environmental polices to manage and enhance Metropolitan Area air quality, and also has enforced "Special Act on Seoul Metropolitan Air Quality Improvement (SASMAQI)" issued in Dec. 2004. Recently government expanded the Seoul Metropolitan Air Quality Management District (SMAQMD) to the outskirts satellite cities of Seoul area through the "Revised Law Draft of SASMAQI". The SMAQMD has been alloted the allowable emission loads to the local governments on the basis of the carrying $PM_{10}$ capacity. However, in order to establish the effective air quality control strategy for $PM_{10}$, it is necessary to understand the corresponding sources which have a potential to directly impact ambient $PM_{10}$ concentration. To deal with the situations, many receptor methodologies have been developed to identify the origins of pollutants and to determine the contributions of sources of interests. The objective of this study was to extensively identify $PM_{10}$ sources and to estimate their contributions at the metropolitan area. $PM_{10}$ samples were simultaneously collected at the 3 semi-industrialized local cities in the Seoul metropolitan area such as Hwasung-si, Paju-si, and Icheon-si sites from April 15 to May 31, 2007. The samples collected on the teflon membrane filter by one $PM_{10}$ cyclone sampler were analyzed for trace metals and soluble ions and samples on the quartz fiber filter by another sampler were analyzed for OC and EC. Source apportionment study was then performed by using a positive matrix factorization (PMF) receptor model. A total of 6 sources were identified and their contributions were estimated in each monitoring site. Contribution results on Hwasung, Paju, and Icheon sites were as follows: 33%, 27%, and 27% from soil source, 26%, 26%, and 21% from secondary aerosol source, 11%, 11%, and 12% from biomass burning, 12%, 6%, and 5% from sea salt, 7%, 15%, and 19% from industrial related source, and finally 11%, 15%, and 16% from mobile and oil complex source, respectively. This study provides information on the major sources affecting air quality in the receptor sites and thus it will help to manage the ambient air quality in the metropolitan area by establishing reasonable control strategies, especially for the anthropogenic emission sources.

방사성의약품 합성에서 발생하는 방사성기체의 효율적 차단 (An Effective Block of Radioactive Gases for the Storage During the Synthesis of Radiopharmaceutical)

  • 지용기;김동일;김시활;원문희;최성욱;최춘기;석재동
    • 핵의학기술
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    • 제16권2호
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    • pp.126-130
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    • 2012
  • 방사성의약품 제조 시 휘발성 기체의 경우에 완전 차폐가 되지 않고, Hot cell 외부로 그리고 배기덕트를 통해 작업자에게 외부피폭은 물론 호흡을 통해 내부피폭을 가져오게 한다. 처음에는 Hot cell 자체의 배출구를 막아서 방사성기체를 차단하려하였으나 장치에 맞는 기체 밀폐형 댐퍼의 제작이 어렵고, 크기가 맞지 않아서 설치 후에 여전히 문제점이 개선되지 않았다. 그러나 Tedlar gas sampling bag의 사용으로 합성 장치의 가스 배출구를 연결하여 방사성 기체를 저장하고 10반감기가 지난 후에 배출함으로써 작업자의 피폭을 확연히 줄이게 되었으며 $^{18}F$ 방사성 기체는 Hot cell 배출구에 활성탄 필터를 연결하고 최종 배출구에 2차 활성탄 필터를 사용함으로써 배출되는 방사능 농도를 90% 이상 줄여주었다. 단 반감기의 핵종인 경우는 위와 같은 경우를 이용하여 다음날 작업을 할 수 있지만 반감기가 긴 핵종들 같은 경우는 다음날 처리 할 수 없는 문제점들이 발생한다. Decay tank의 추가적인 문제점들을 보완하거나 기체상의 여러 방사성 입자들을 포집 할 수 있는 물질들이 만들어져야 할 것이다. 현재 우리나라는 최종 배출 공기 중 방사능 농도만을 규제하고 있으나 유럽 같은 경우 일일 배출 양과 연간 배출도 규제를 하고 있다. 방사성의약품 합성 시 발생하는 많은 방사성 물질들을 보다 효과적으로 친환경적으로 처리할 수 있는 여러 연구들이 이루어져야 할 것이다.

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서울시 PM2.5 공간 샘플링을 위한 Deployable Particulate Impact Sampler의 성능 검증 연구 (Reliability and Accuracy of the Deployable Particulate Impact Sampler for Application to Spatial PM2.5 Sampling in Seoul, Korea)

  • 오규림;허종배;이승묵;김선영
    • 한국대기환경학회지
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    • 제33권3호
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    • pp.277-288
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    • 2017
  • Previous studies of health effects of $PM_{2.5}$ performed spatial monitoring campaigns to assess spatial variability of $PM_{2.5}$ across people's residences. Highly reliable portable and cost-effective samplers will be useful for such campaigns. This study aimed to investigate applicability of the Deployable Particulate Impact Sampler(DPIS), one of the compact impact samplers, to spatial monitoring campaigns of $PM_{2.5}$ in Seoul, Korea. The investigation focused on the consistency of $PM_{2.5}$ concentrations measured by DPISs compared to those by the Low-volume Cyclone sampler (LCS). LCS has operated at a fixed site in the Seoul National University Yeongeon campus, Seoul, Korea since 2003 and provided qualified $PM_{2.5}$ data. $PM_{2.5}$ sampling of DPISs was carried out at the same site from November 17, 2015 through February 3, 2016. $PM_{2.5}$ concentrations were quantified by the gravimetric method. Using a duplicated DPIS, we confirmed the reliability of DPIS by computing relative precision and mean square error-based R squared value ($R^2$). Relative precision was one minus the difference of measurements between two samplers relative to the sum. For accuracy, we compared $PM_{2.5}$ concentrations from four DPISs (DPIS_Tg, DPIS_To, DPIS_Qg, and DPIS_Qo) to those of LCS. Four samplers included two types of collection filters(Teflon, T; quartz, Q) and impaction discs(glass fiber filter, g; pre-oiled porous plastic disc, o). We assessed accuracy using accuracy value which is one minus the difference between DPIS and LCS $PM_{2.5}$ relative to LCS $PM_{2.5}$ in addition to $R^2$. DPIS showed high reliability (average precision=97.28%, $R^2=0.98$). Accuracy was generally high for all DPISs (average accuracy=83.78~88.88%, $R^2=0.89{\sim}0.93$) except for DPIS_Qg (77.35~78.35%, 0.82~0.84). Our results of high accuracy of DPIS compared to LCS suggested that DPIS will help the assessment of people's individual exposure to $PM_{2.5}$ in extensive spatial monitoring campaigns.

네일샵미용실의 실내공기 중 미세먼지(PM10), 휘발성 유기화합물 (VOCs), 알데하이드류(Aldehydes)의 농도 및 업소 특성에 따른 상관성 분석 (Characteristics of PM10, VOCs and Aldehydes Levels in Nail and Hair Shops)

  • 이보람;곽수영;양원호;전상일;김정수;이기영
    • 한국환경보건학회지
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    • 제43권6호
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    • pp.509-515
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    • 2017
  • Objectives: The purpose of this study was to assess the indoor levels of $PM_{10}$, VOCs and aldehydes in nail shop and hair salon. Methods: The field survey was conducted for 52 hair salons 52 nail shops, and 26 shop-in-shops in Seoul and Daegu city. The field technicians investigated characteristics of each shop including operating time, indoor volume, ventilation and so on. Indoor concentrations of $PM_{10}$, VOCs and aldehydes, indoor temperature and humidity were measured in 12 hair salons, 12 nail shops and 6 shop-in shops. MP Surveryor II (Graywolf, USA) was used to measure $CO_2$ concentration, temperature and humidity for 8 hours. $PM_{10}$ concentrations were measured by minivolume air sampler with Teflon quartz filter ($0.2{\mu}m$ pore size, ${\varphi}$ 47 mm, Graseby-Anderson TEF-DISKTM) for 6 hours. VOCs passive sampler (OVM 3500) was used to collect VOCs for 8 hours and analyzed by GC/MSD. Results: The $CO_2$ concentrations were $759.4{\pm}58.2$ ppm in nail shops, $731.0{\pm}72.5$ ppm in hair salons, and $656.4{\pm}31.2$ ppm in shop-in-shops. The $PM_{10}$ concentrations were $27.5{\pm}14.2{\mu}g/m^3$ in nail shops, $33.1{\pm}6.3{\mu}g/m^3$ in hair salons, and $39.0{\pm}26.9{\mu}g/m^3$ in shop-in-shops. TVOCs concentrations were $3085.4{\pm}1667.8{\mu}g/m^3$ in nail shops, $2131.1{\pm}617.3{\mu}g/m^3$ in hair salons, and $1550.3{\pm}529.0{\mu}g/m^3$ in shop-in-shops. TVOCs concentrations in nail shops were significantly higher than those in hair salons and shop-in-shops (p=0.002). Formaldehyde concentrations were $60.8{\pm}36.6{\mu}g/m^3$ in nail shops, $89.1{\pm}55.4{\mu}g/m^3$ in hair salons, and $45.1{\pm}22.5{\mu}g/m^3$ in shop-in-shops. Conclusion: TVOCs concentrations in nail shop were the highest among others. TVOC concentrations in all stores exceeded indoor air quality stand of indoor air quality control in public-use facilities, etc act.