• 제목/요약/키워드: Indoor pollution

검색결과 479건 처리시간 0.034초

의료기관 맞춤형 실내 공기 모니터링 IoT 시스템 연구 (A Study of Indoor Air Monitoring IoT System Customized for Medical Institutions)

  • 이효승;오재철
    • 한국전자통신학회논문지
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    • 제15권6호
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    • pp.1217-1222
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    • 2020
  • 현재 우리나라를 포함하여 전 세계적으로 환경오염에 관한 연구가 지속으로 진행되고 있으며 그중에서도 다수의 사용자가 이용하는 다양한 시설의 실내 공기를 청정하게 유지, 관리하여 국가적으로 국민의 건강과 환경오염을 예방하기 위해 관련 법령을 시행 등 다양한 노력 들이 이루어지고 있다. 특히 의료기관의 경우 방문하는 다수의 사람이 질환이나 질병을 갖고 있으며 실내 공기 오염과 관련하여 두통, 우울증, 신경과민, 심장병, 암 등의 만성질환에 유의한 영향을 미칠 수 있음이 시사되고 있다. 이러한 상황을 고려하여 본 논문에서는 의료기관에 적용하기 위한 실내 공기 모니터링 IoT 시스템을 통해 공기 오염도에 대한 중앙 모니터링 및 담당자 자동 호출 기능 등을 제공하여 재실자에게 쾌적하고 청정한 실내 환경을 제공할 수 있기를 기대한다.

실내공기중의 휘발성유기화합물 농도변화에 관한 연구 (A Study on Concentration of Volatile Organic Compounds in the Apartment House)

  • 이윤규
    • KIEAE Journal
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    • 제4권3호
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    • pp.129-136
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    • 2004
  • Recently, indoor air pollution has been seriously apprehended, and became a striking issue, due to the airtightness of buildings or the misuse of building materials. Especially, SHS(Sick House Syndrome) and MCS(Multi Chemical Sensitivity) which can have bad influences on the resident in an existing apartment house as well as newly constructed apartment house start to attract public attention. The emission rates of VOCs is sensitively affected by the indoor/outdoor condition, construction materials, construction method, and character of ventilation facilities. Therefore, in this study, by measuring the indoor air pollution substance of the existing apartment house, the problem over this tends to be grasped and it is going to secure an improvement methods.

가구 및 목창호재에서 방출되는 유해화학물질의 특성 (The Characteristics of VOCs and Formaldehyde emitted from the furnitures and frame material of windows and doors)

  • 박용승;유복희;조현;홍천화
    • 한국주거학회:학술대회논문집
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    • 한국주거학회 2004년도 추계학술대회 논문집
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    • pp.315-318
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    • 2004
  • In recent days, IAQ(Indoor Air Quality) is regarded as one of the most important environmental factors as well as thermal and acoustic comfort. The purpose of this study was to estimate on effect of indoor air pollution from VOCs and formaldehyde emitted by building materials. As the results, we knew that concentration of Toluene, Xylene, Styrene and HCHO emitted from the furnitures and frame material of windows and doors are high emission factors on indoor air pollution.

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피톤치드를 함유한 기능성 시멘트 경화체의 특성에 관한 연구 (Study on the Properties of Functional Cement Matrix using Phytoncide)

  • 김현성;김선아;박선규
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2018년도 추계 학술논문 발표대회
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    • pp.29-30
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    • 2018
  • The development of the industry has increased the indoor living time of modern people. Therefore, indoor pollution is attracting attention as a social issue. One of the indoor air pollution is formaldehyde. Formaldehyde has been classified as a first-level carcinogen by international cancer research organizations. Formaldehyde has been used to protect products such as construction materials and finish materials, and being diffused in the interior construction process. In this study, we used phytoncide with cement matrix to reduce formaldehyde, an indoor environmental contaminant. The strengths was increased slightly and formaldehyde showed a reduction effect over time.

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실내 외 미세먼지 측정 및 관리 기술 동향 (Indoor and Outdoor Particulate Matter: The Current and Future in Monitoring, Assessment, and Management)

  • 김재진;최원식;김진수;노영민;손윤석;양민준
    • 대한원격탐사학회지
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    • 제36권6_3호
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    • pp.1635-1641
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    • 2020
  • 대기오염은 최근 급속한 인구증가와 산업화 등으로 인해 인류가 해결해야 할 중요한 문제로 인식되고 있다. 특히 미세먼지 노출에 따른 질병 사례들의 증가와 대기 질 정보에 대한 국민의 관심 증대로 인해 미세먼지는 환경문제를 넘어 사회적 재난 수준의 심각한 이슈로 대두되고 있다. 아울러 대기 중 미세먼지 농도는 실내 미세먼지 농도에 밀접하게 관여하여 실내 공기질의 악화를 야기시킬 수 있다. 따라서 실내외 미세먼지 측정, 모델링, 기여도 평가를 통한 오염 특성을 이해하고, 이를 과학적으로 규명하는 것은 매우 중요하다. 본 특별호는 부경대학교 i-SEED 지구환경교육연구단과 학교미세먼지관리 기술개발사업단에서 진행하고 있는 다양하고 흥미로운 실내외 미세먼지 측정과 관리 기술에 대한 여러 연구들을 소개한다. 이를 통하여 실내외 미세먼지 측정과 관리 기술에 대한 현 주소를 파악하고 참여 연구그룹의 연구 결과에 대한 정보 공유에 본 특별호가 기여하길 기대한다. 더불어 미세먼지에 관련한 지속적인 연구주제 발굴과 국가적인 지원을 이끌어 내기 위한 관련 전문가들의 노력을 기대한다.

환경 문제의 우선 순위 도출을 위한 비교 위해도 분석에 관한 연구 (Comparative Risk Analysis for Priority Ranking of Environmental Problems)

  • 김예신;임영욱;남정모;장재연;이동수;신동천
    • Environmental Analysis Health and Toxicology
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    • 제17권4호
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    • pp.285-298
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    • 2002
  • In Korea, no CRA (comparative risk analysis) studies have been undertaken, nor have their methodologies of such studies been established. Therefore, the objectives of this study were to establish the framework of CRA consisting of health risk, economic risk and perceived risk, and to estimate and compare these risks among the three environmental problems of air pollution, indoor air pollution and drinking water contamination, which are themselves subject to the eight sub -problems of hazardous air pollutants (HAPs), regulated pollutants (representative as PM 10) and dioxins (PCDDs/PCDFs) in air pollution, indoor air pollutants (IAPs) and radon in indoor air pollution, and drinking water pollutants (DWPs), disinfection by -products (DBPs) and radionuclides in drinking water contamination in Seoul, Korea. After which, the priorities of these problems were set by individual and integrated risk. From the results, the rankings of both health risk and economical risk were in the following order: radon, PM10, IAPs, HAPs, DWPs, dioxins, DBPs, and radionuclides among the eight sub problems. On the contrary, the ranking of perceived risk was in the following order: HAPs, dioxins, radionuclides, PM10, DWPs, IAPs, Radon and then DBPs among the eight sub-problems.

실내용 공기청정기의 성능평가 및 인식도 조사 (The Evaluation and Investigation of Conscious Cognition Degree on a room-size air cleaner)

  • 손종렬;김영환;우완기
    • 환경위생공학
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    • 제17권3호
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    • pp.115-120
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    • 2002
  • This study was performed on a questionnaire survey of 500 people about their awareness for indoor air pollution, and measured efficiency of air cleaner which can remove the CO and air-borne particulate of ETS(Environmental Tobacco Smoke) in air clean chamber. The room-size cleaner for measuring indoor air contaminants has been applied to evaluation of two different air cleaner such as the mechanic air cleaner with hepafilter(HPA) and the electrostatic air cleaner with metal plate. The measuring experiment was carried out in a chamber by sampling the air. The results obtained were as follows; As respondents are having their 90% of daytime indoors a day, and 38% of them can feel indoor air pollutions degrees directly by their sense of smell, For the installation of indoor pollution control equipment, 34% of all respondents installed air cleaner because of the problem of economical charge and almost respondents was not satisfied the trust of ability purified indoor air pollutants. In the experimental results, it was found that more than 95% of CD and air-borne particulate of ETS were removed within 20 minutes. The reaction kinetics of removal pollutants was verified as the pseudo-first order, Finally, it appeared that the room-sire air cleaner can be applied to new technology for removing indoor air contaminants.

실내오염물질 정화를 위한 수생식물의 이용가능성에 관한 연구 (A Study on Potential of Aquatic Plants to Remove Indoor Air Pollutants)

  • 박소영;김정;장영기;성기준
    • 한국환경복원기술학회지
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    • 제8권5호
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    • pp.1-9
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    • 2005
  • This study was conducted to investigate the effect of aquatic plant as a botanical air purification on the indoor air pollution by formaldehyde. Three aquatic plants such as Eichhornia crassipes, Cyperus alternifolius, Echinodorus cordifolius, were selected for this study and they were placed in the artificially contaminated chamber under laboratory condition. The results showed that all three plants could remove the formaldehyde from the contaminated air system effectively. Reduction in the formaldehyde levels by Eichhornia crassipes, which is the floating plant, might be associated with the factors of plant and water. Reduction in the formaldehyde levels by Cyperus helferi and Echinodorus cordifolius, which were emergent plant, was due to the complex effect of plant, soil medium and water. In aquatic plant system, dissolution, microbial degradation in rhizosphere, uptake through root and shoot, sorption to soil and shoot, hydrolysis are known as the main mechanisms of water soluble pollutants in the given system. The advantages of indoor air quality control system using aquatic plants can be; 1) various purifying mechanisms than foliage plants, 2) effective for decontamination of water soluble pollutants; 3) easy for maintenance; 4) diverse application potential. Therefore it was suggested from the results that indoor air control system of aquatic plants should be more effective for reduction of indoor air pollutants.

노래방과 컴퓨터 게임방 내의 실내공기오염에 관한 연구 (A Study on the Indoor Air Pollution of Singing Room and PC Room)

  • 이주상;원정일;이철민;김윤신
    • 환경위생공학
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    • 제17권3호
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    • pp.67-74
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    • 2002
  • Nowadays, a new word called SBS(sick building syndrome) has been come into existence. Since most people spend a large majority of their time indoors, indoor air may affect human health more than outdoor air. This outline survey was carried out to investigate the extent of indoor air pollution in singing room and PC room. The concentrations of major indoor air pollutants(carbon dioxide, total suspended particulate, airborne microbes) and Thermocircumstance(temperature, relative humidity, intensity of illumination) were observed from October 1 to 31, 2001. As results of the survey, the mom values of thermocircumstance in singing room and PC room were $22.1^{\circ}C$ of temperature, 37.1% of humidity, 75 Lux of intensity of illumination and $22.0^{\circ}C$ of temperature, 52.6% of humidity, 135 Lux of intensity of illumination, respectively. The mean concentrations of carbon dioxide were 1589 ppm in singing room and 615 ppm in PC room, respectively The concentrations of carbon dioxide in singing room were higher than the indoor environmental standard of the first clause of Article 45 of public utilization service which is showed at public hygiene of the Ministry of Health and Social Affairs. The mean concentrations of total suspended particulate were $0.33{\;}mg/\textrm{m}^3$ in singing room and $0.57{\;}mg/\textrm{m}^3$ in PC room respectively. The mean concentrations of airborne microbe were $16{\;}CFU/\textrm{m}^3$ in singing room and $12{\;}CFU/\textrm{m}^3$ in PC room, respectively.