• 제목/요약/키워드: Indoor Air Quality Monitoring

검색결과 91건 처리시간 0.03초

Monte-Carlo 모의실험을 이용한 초·중·고등학교의 환기부족 평가 (Evaluation of Ventilation Deficiecy in Elementary, Middle, and High Schools using Monte Carlo Simulation)

  • 최영태;박진현;김은채;류현수;김동준;민기홍;정다영;우병렬;조만수;양원호
    • 한국환경보건학회지
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    • 제46권6호
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    • pp.627-635
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    • 2020
  • Objectives: Indoor air quality has become more important aspeople spend most of their times indoors. Since students spend most of their times at home or at school, they are more likely to be exposed to indoor air pollutants. Ventilation in school classrooms can affect health and learning performance. In this study, ventilation deficiency was evaluated in school classrooms using Monte Carlo simulation. Methods: This study used sensor-based monitoring for six months to measure carbon dioxide (CO2) concentrations in classrooms in elementary, middle, and high schools. The volume of the classroom and the number of students were investigated, and the students' body surface area was used to calculate the CO2 emission rate. The distribution of ventilation rates was estimated by measured CO2 concentration and a mass-balance model using Monte Carlo simulation. Results: In the elementary, middle, and high schools, the average CO2 concentrations exceeded 1000 ppm, indicating that the ventilation rates were insufficient. The ventilation rates were deficient from July to August and in December, but showed relatively high ventilation rates in October. Forty-three percent of elementary schools, 56% of middle schools, and 62% of high schools showed insufficient ventilation rates. Conclusions: The ventilation rates calculated in elementary, middle and high schools were found to be quite insufficient. Therefore, proper management is needed to overcome the lack of ventilation and improve air quality.

서울지역 생활환경주변의 공기 중 석면분포 특성에 관한 연구 (A Study on Characteristics of Airborne Asbestos Concentrations Using PCM and TEM in Life Environment Surroundings of Seoul)

  • 이진효;이수현;김지희;오석률;신진호;엄석원;채영주;이진숙;구자용
    • 대한환경공학회지
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    • 제35권9호
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    • pp.613-623
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    • 2013
  • 본 연구에서는 서울지역 생활환경주변의 공기 중 석면농도 실태를 조사하기 위해서 PCM과 TEM을 이용하여 분기별로 지하철역사 13개소, 서울지역 대기측정소 4개소 및 각각의 인근 도로변 지역 1개소, 하천 6개소의 석재 주변, 주요 서울시내 터널 4개소 등에서 공기 중 석면농도를 측정하였다. 또한 일반대기 중 석면농도와 대표적 기후인자인 온도와의 상관성을 살펴보았으며, 기존 측정지점 중 비교적 많은 시민들이 이용하거나 환승이 되는 지하철역사 2개소와 대표적 대기측정소 2개소를 측정대상으로 시간대별 석면농도 변화추이를 파악하였다. PCM 분석결과, 전체 223개 시료 중 111개 시료에서(50%) 검출한계(7 fiber/$mm^2$) 이하로 나타났으며, 이 중 최대값은 0.0130 f/cc로 나타나는 등 일부시료에서 관리기준을 초과하였지만 TEM법을 이용한 추가분석 결과, 모두 불검출로 나타났다. 또한 TEM 분석결과, 124개 모든 시료에서 석면이 검출되지 않았다. 지하철역사, 서울지역 대기측정소 및 각각의 인근 도로변 지역, 하천 석재 주변, 터널에서의 평균농도는 각각 $0.0041{\pm}0.0027$ f/cc, $0.0015{\pm}0.0011$ f/cc, $0.0024{\pm}0.0012$ f/cc, $0.0016{\pm}0.0020$ f/cc로 모두 실내공기질 관리기준 0.01 f/cc을 만족하는 것으로 나타났다. 일반대기 중 석면농도와 온도와의 관계를 조사한 결과, 석면농도는 상대적으로 온도가 높은 시기에 높게 나타나는 등 온도와의 상관성(r = 0.660)이 어느 정도 유의함을 확인할 수 있었다. 지하철역사와 대기측정소를 대상으로 한 시간대별 공기 중 석면농도를 조사한 결과, 지하철역사의 경우, 상대적으로 온도가 높고, 유동인구가 많은 시간대에 석면농도가 높게 나타났으며, 반면에 대기측정소의 경우, 실외지역에서의 시료채취라는 특성 때문에 일일 중 시간대별 농도변화에서 일정한 패턴을 거의 찾아볼 수 없었다.

Looking through the Mass-to-Charge Ratio: Past, Present and Future Perspectives

  • Shin, Seung Koo
    • Mass Spectrometry Letters
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    • 제12권4호
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    • pp.126-130
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    • 2021
  • The mass spectrometry (MS) provides the mass-to-charge ratios of atoms, molecules, stable/metastable complexes, and their fragments. I have taken a long journey with MS to address outstanding issues and problems by experiments and theory and gain insights into underlying principles in chemistry. By looking through the mass-to-charge ratio, I have studied thermochemical problems in silicon chemistry, the infrared multiphoton dissociation spectroscopy of organometallic intermediates, unimolecular dissociations of halotoluene radical cations, and the kinetics of association/dissociation of alkali halide triple ions with Lewis bases. Various MS platforms have been used to characterize non-covalent interactions between porphyrins and fullerenes and those between the group IIB ions and trioctylchalcogenides, and to examine the binding of the group IA, IIA and porphyrin ions to G-quadruplex DNA. Recently, I have focused on mass-balanced H/D isotope dipeptide tags for MS-based quantitative proteomics, a simple chemical modification method for MS-based lipase assay, and the kinetics and dynamics of energy-variable collision-induced dissociation of chemically modified peptides. Now, I see an important role of MS in global issues in the post-COVID era, as the society demands high standards for indoor air quality to contain the airborne-pathogen transmission as well as in-situ monitoring and tracking of carbon emissions to reduce global warming.

스핀 코팅법으로 제작한 다공성 CuBr 필름의 암모니아 감응특성 (NH3 sensing properties of porous CuBr films prepared by spin-coating)

  • 김상권;유병훈;윤지욱
    • 센서학회지
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    • 제30권6호
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    • pp.451-455
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    • 2021
  • Porous copper bromide (CuBr) films are highly advantageous for detecting ammonia (NH3). The fabrication of porous CuBr films requires complex high-temperature processes or multistep processes. Herein, we report the uncomplicated preparation of porous CuBr films by a spin-coating method and the films' excellent NH3 sensing properties. The porous films were prepared by spin-coating 100, 150, and 200 mM CuBr solutions, and then dried in a vacuum oven for 2 h. All the films showed a high NH3 response; in particular, the film prepared using a 100 mM CuBr solution showed an extremely high response (resistance ratio = 852) to 5 ppm NH3. The film also showed fast response and recovery times, 272 s and 10 s respectively, even at room temperature. The outstanding NH3 sensing characteristics were explained in relation to the porosity and thickness of the prepared films. The high-performance NH3 sensors used in this study can be used for both indoor air quality and environmental monitoring applications.

다중이용시설 내 식생바이오필터 시스템의 PM10, PM2.5 저감효과 및 측정방법에 대한 연구 (Study on PM10, PM2.5 Reduction Effects and Measurement Method of Vegetation Bio-Filters System in Multi-Use Facility)

  • 김태한;최부헌
    • 한국조경학회지
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    • 제48권5호
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    • pp.80-88
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    • 2020
  • 2019년 3월 미세먼지 비상저감조치가 일주일 동안 발령되면서, 미세먼지로 인한 국민의 불안감은 점차 가중되고 있다. 본 연구는 공기정화식물이 적용된 바이오필터의 다중이용시설 내 적용성 평가를 위해 입자상 오염원의 실내 연속방출환경을 조성하여 오염원 저감효과에 대한 측정방법을 제안하고, 시스템의 실내공기질 개선 여부를 확인할 수 있는 기초연구를 진행하였다. 강의실을 대상으로 춘절기에 모니터링 1시간 전 모기향을 오염원으로 배경농도를 조성한 후, 스케줄에 따라 2시간 관수, 1시간 송풍하여 미세먼지의 저감능을 확인하였으며, 바이오필터 2m 전방에 PM10, PM2.5 및 온습도 센서를 설치하고, 3개 송풍구 중 중앙에 풍속 프로브를 설치하여 시계열 모니터링을 수행하였다. 바이오필터에 구비된 총 3개소의 송풍구 평균 면풍속은 0.38±0.16 m/s로 댐퍼 면적이 제외된 송풍구별 면적 0.29m×0.65m을 적용한 총 공조풍량이 776.89±320.16㎥/h로 산출되었다. 시스템 가동으로 평균온도 21.5~22.3℃, 평균상대습도 63.79~73.6%를 유지하여, 선행연구의 다양한 조건별 온습도 범위에 부합하는 것으로 판단된다. 시스템 공조부 구동을 통해 급격하게 상대습도를 상승시키는 효과를 효율적으로 운용할 경우, 계절에 따른 실내 미세먼지 저감과 적정한 상대습도 확보도 가능할 것으로 판단된다. 미세먼지 농도는 바이오필터 시스템 가동 전의 모든 주기에서 상승 현상이 동일하게 집계되었으며, 시스템 가동 후 1주기 송풍구간(B-1, β=-3.83, β=-2.45)에서 미세먼지(PM10)는 최대 28.8% 수준인 560.3㎍/㎥, 초미세 먼지(PM2.5)는 최대 28.0% 수준인 350.0㎍/㎥까지 저감되었다. 이후 미세먼지(PM10, PM2.5)의 농도는 2주기 송풍구간 감소(B-2, β=-5.50, β=-3.30)로 각각 최대 32.6% 수준인 647.0㎍/㎥, 32.4% 수준인 401.3㎍/㎥까지 저감되었고, 3주기 송풍구간감소(B-3, β=5.48, β=-3.51)로 최대 30.8% 수준인 732.7㎍/㎥, 31.0% 수준인 459.3㎍/㎥까지 저감된 것으로 확인되었다. 본 연구는 식생 바이오필터의 다중이용시설 내 설치와 유관한 관련 표준 및 규정을 참조하여, 객관적인 성능평가환경의 구축 방안을 제시할 수 있었다. 이를 통해 일반 강의실 환경 내에 보다 객관화된 모니터링 인프라를 조성하여, 상대적으로 신뢰성 있는 데이터 확보가 가능했던 것으로 판단된다.

근미래 친환경 건축분야 엔지니어에게 필요한 역량에 대한 델파이 연구 (A Delphi Study on Competencies of Future Green Architectural Engineer)

  • 강소연;김태연;이정우
    • 공학교육연구
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    • 제21권3호
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    • pp.56-65
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    • 2018
  • With rapid advance of technologies including information and communication technologies, jobs are evolving faster than ever. Architectural engineering is no exception in this regard, and the green architectural engineering is emerging fast as a promising new field. In this study, a Delphi study of expert architectural engineers are conducted to find out (1) near future prospects of the field, (2) near future emerging jobs, (3) competencies needed for these jobs, and (4) educational content necessary to build these competencies with regards to the green architectural engineering. Initial Delphi survey consisting of open-ended questions in the above four areas were conducted and came out with 65 items after duplicate removal and semantic refinements. Further refinements via second and third wave of Delphi results into 40 items that the 13 architectural engineering experts may largely agree upon as future prospects with regards to the green architectural engineering. Findings indicate that it is expected that the demand for green architectural engineering and needs for automatic energy control system increase. Also, collaborations with other fields is becoming more and more important in green architectural engineering. The professional work management skills such as knowledge convergence, problem solving, collaboration skills, and creativity linking components from various related areas seem to also be on the increasing need. Near future ready critical skills are found to be the building environment control techniques (thermal, light, sound, and air), the data processing techniques like data mining, energy monitoring, and the control and utilization of environmental analysis software. Experts also agree on new curriculum for green building architecture to be developed with more of converging subjects across disciplines for future ready professional skills and experiences. Major topics to be covered in the near future includes building environment studies, building energy management, energy reduction systems, indoor air quality, global environment and natural phenomena, and machinery and electrical facility. Architectural engineering community should be concerned with building up the competencies identified in this Delphi preparing for fast advancing future.

지하철 역사 승강장의 PSD 설치에 의한 미세먼지 감소 효과 (The Removal Effect of Fine Particles Applied Platform Screen Door in Seoul Subway Station)

  • 손종렬;정영림;박현희;오윤희;최원;김순근
    • 환경위생공학
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    • 제24권4호
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    • pp.60-68
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    • 2009
  • The most principal approach to improve indoor air quality(IAQ) of subway was to examine the fine particulate(PM-10) from the emission sources. Therefore, this study was carried on the investigation the fine particulate for comparison with the removal efficiency of PM-10 in divided the PSD(Platform Screen Door) and Non-PSD subway station from July, 2007 to May 2008. In the monitoring results, the range of PM-10 concentration of Non-PSD station was $44.6{\sim}116.5{\mu}g/m^3$ and the range of PM-10 concentration of PSD station was $23.9{\sim}81.1{\mu}g/m^3$. And then the range of PM-2.5 concentration of Non-PSD station was $17.4-56.6{\mu}g/m^3$, and then the range of PM-2.5 concentration of PSD station was $17.9{\sim}34.4{\mu}g/m^3$. In comparison with the results of the PSD and Non-PSD subway station, we found that the PM-10 removal efficiency of PSD was 30-40%. In conclusion, the PSD will be applied the effective facilities of decreasing PM-10 in subway station in Korea.

서울시 환경보건정책 로드맵 수립 (Process and Results of Seoul Metropolitan Government's Environmental Health Policy Road Map)

  • 임지애;권호장;김신범;최영은;구슬기;정회성;김명한;최경호
    • 한국환경보건학회지
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    • 제40권5호
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    • pp.425-434
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    • 2014
  • Objectives: The purpose of this study is to introduce the establishment process and results of the Seoul Metropolitan Government's road map on environmental health policy. Methods: The process consisted of expert group meetings, civic participation, research, and questionnaire survey for priority environmental health policy agenda items in Seoul. Results: The announced vision for the environmental health policy was "a healthy environment, safety in Seoul". This policy was established in order to define environment health policy initiatives for a period of five years with an aim to protect Seoul citizens' health from hazardous environmental factors. The resulting Seoul environmental health policy consisted of four areas and 16 key agenda items. The four areas were "Protection for children against hazardous materials", "Enhancement of health and safety of all", "Carcinogen-free and endocrine-disrupting chemical-free Seoul (reducing environmental exposure to hazardous materials), and "Establish the foundation of environmental health policy". Sixteen key agenda items include the enhancement of management of spaces for children, certification of environmental health status at schools, establishment of a unit responsible for the environmental health of children, strengthening environmental health management for susceptible populations (children, the aged, and the socioeconomically vulnerable), management of hazardous materials, physical hazardous factors (noise, radiation, etc.), indoor air quality, and the enhancement of monitoring, research, and regulation of environment health. Conclusion: The Seoul Metropolitan Government established an environmental health policy road map for a five-year period (2013-2017). To implement this environmental health policy, budget allocation, and detailed execution plans are required.

인구 유동에 따른 서울시 대기 중 초미세먼지 농도 변화 요인 분석 및 노출평가 (Analysis and Exposure Assessment of Factors That Affect the Concentration of Ambient PM2.5 in Seoul Based on Population Movement)

  • 우재민;신지훈;민기홍;김동준;성경화;조만수;우병열;양원호
    • 한국환경보건학회지
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    • 제50권1호
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    • pp.6-15
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    • 2024
  • Background: People's activities have been restricted due to the COVID-19 pandemic. These changes in activity patterns may lead to a decrease in fine particulate matter (PM2.5) concentrations. Additionally, the level of population exposure to PM2.5 may be changed. Objectives: This study aimed to analyze the impact of population movement and meteorological factors on the distribution of PM2.5 concentrations before and after the outbreak of COVID-19. Methods: The study area was Guro-gu in Seoul. The research period was selected as January to March 2020, a period of significant population movement changes caused by COVID-19. The evaluation of the dynamic population was conducted by calculating the absolute difference in population numbers between consecutive hours and comparing them to determine the daily average. Ambient PM2.5 concentrations were estimated for each grid using ordinary kriging in Python. For the population exposure assessment, the population-weighted average concentration was calculated by determining the indoor to outdoor population for each grid and applying the indoor to outdoor ratio to the ambient PM2.5 concentration. To assess the factors influencing changes in the ambient PM2.5 concentration, a statistical analysis was conducted, incorporating population mobility and meteorological factors. Results: Through statistical analysis, the correlation between ambient PM2.5 concentration and population movement was positive on both weekends and weekdays (r=0.71, r=0.266). The results confirmed that most of the relationships were positive, suggesting that a decrease in human activity can lead to a decrease in PM2.5 concentrations. In addition, when population-weighted concentration averages were calculated and the exposure level of the population group was compared before and after the COVID-19 outbreak, the proportion of people exceeding the air quality standard decreased by approximately 15.5%. Conclusions: Human activities can impact ambient concentrations of PM2.5, potentially altering the levels of PM2.5 exposure in the population.

석면 분석방법에 대한 고찰 (Review on asbestos analysis)

  • 함승헌;황성호;윤충식;박동욱
    • 한국산업보건학회지
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    • 제19권3호
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    • pp.213-232
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    • 2009
  • This document was prepared to review and summarize the analytical methods for airborne and bulk asbestos. Basic principles, shortcomings and advantages for asbestos analytical instruments using phase contrast microscopy(PCM), polarized light microscopy(PLM), X-ray diffractometer (XRD), transmission electron microscopy(TEM), scanning electron microscopy(SEM) were reviewed. Both PCM and PLM are principal instrument for airborne and bulk asbestos analysis, respectively. If needed, analytical electron microscopy is employed to confirm asbestos identification. PCM is used originally for workplace airborne asbestos fiber and its application has been expanded to measure airborne fiber. Shortcoming of PCM is that it cannot differentiate true asbestos from non asbestos fiber form and its low resolution limit ($0.2{\sim}0.25{\mu}m$). The measurement of airborne asbestos fiber can be performed by EPA's Asbestos Hazard Emergency Response Act (AHERA) method, World Health Organization (WHO) method, International Standard Organization (ISO) 10312 method, Japan's Environmental Asbestos Monitoring method, and Standard method of Indoor Air Quality of Korea. The measurement of airborne asbestos fiber in workplace can be performed by National Institute for Occupational Safety and Health (NIOSH) 7400 method, NIOSH 7402 method, Occupational Safety and Health Administration (OSHA) ID-160 method, UK's Health and Safety Executive(HSE) Methods for the determination of hazardous substances (MDHS) 39/4 method and Korea Occupational Safety and Health Agency (KOSHA) CODE-A-1-2004 method of Korea. To analyze the bulk asbestos, stereo microscope (SM) and PLM is required by EPA -600/R-93/116 method. Most bulk asbestos can be identified by SM and PLM but one limitation of PLM is that it can not see very thin fiber (i.e., < $0.25{\mu}m$). Bulk asbestos analytical methods, including EPA-600/M4-82-020, EPA-600/R-93/116, OSHA ID-191, Laboratory approval program of New York were reviewed. Also, analytical methods for asbestos in soil, dust, water were briefly discussed. Analytical electron microscope, a transmission electron microscope equipped with selected area electron diffraction (SAED) and energy dispersive X-ray analyser(EDXA), has been known to be better to identify asbestiform than scanning electron microscope(SEM). Though there is no standard SEM procedures, SEM is known to be more suitable to analyze long, thin fiber and more cost-effective. Field emission scanning electron microscope (FE-SEM) imaging protocol was developed to identify asbestos fiber. Although many asbestos analytical methods are available, there is no method that can be applied to all type of samples. In order to detect asbestos with confidence, all advantages and disadvantages of each instrument and method for given sample should be considered.