Indoor and Outdoor Air Fungus Bioaerosols in Khorramabad Day Care Child Centers Western of Iran, ۲۰۱۸

سال انتشار: 1399
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 254

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شناسه ملی سند علمی:

JR_JEHSD-5-3_007

تاریخ نمایه سازی: 21 آذر 1400

چکیده مقاله:

Introduction: the aim of this study was to determine the quantity and quality of indoor and outdoor air fungus bioaerosols in Khorramabad day care child centers. Materials and Methods: A total of ۱۸۰ air samples were collected from ۱۰ centers in ۲۰۱۸. The samples included ۷ indoor and ۲ outdoor sampling points. The total number of children was ۵۸۰. Sampling of fungal bioaerosols was performed by the ZEFON pump (ZEFON factory, USA) with a flow rate of ۲۸.۳ L/min. The Sabouraud Dextrose Agar containing chloramphenicol was used as the culture medium. Relative humidity and temperature were measured by a Hygro-Thermometer (TES-۱۳۶۰A- Taiwan-made Humidity and temperature meter). Results: The results showed that ۹۶.۱ % of the samples were positive and had grown colonies. The highest amount of fungal agents in the indoor air and outdoor air were ۱۷۵.۵۸ CFU/m۳ and ۲۷۴.۵۶ CFU/m۳ in May, while the lowest rates were ۳.۴ CFU/m۳ and ۷.۸ CFU/m۳ in July, respectively. Aspergillus niger and Mucor were the most highly abundant fungus genera, while Fusarium was the lowest one. In all samples, the I/O (indoor/outdoor) ratio was more than ۱; so, fungal bioaerosols in indoor environments were dominant than the outdoor fungal bioaerosols. The relationship of fungal bioaerosols with RH and T)°C( was significant (P-value = ۰.۰۰۱). Conclusion: Generally, the amount of contamination is considerable in the studied day care child centers. Therefore, ventilation modification is recommended by a purifier filter. Moreover, the ventilation conditions and favorable air standards should be monitored continuously by supervisory authorities.

کلیدواژه ها:

Fungi ، Air Pollution ، Indoor ، Child Day Care Centers ، Iran.

نویسندگان

Asghar Sepahvand

Razi Herbal Medicines Research Center, Lorestan University of Medical Sciences, Khorramabad, Iran.

Katayan Salim

Department of Environmental Engineering, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.

Edris Hoseinzadeh

Student Research Committee, Saveh University of Medical Sciences, Saveh, Iran.

Khadijeh Jafari

Environmental Science and Technologhy Research Center, Department of Environmental Health Engineering, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

Rezvan Mohammadrezaei Khorramabadi

Depatment of Nursing, School of Nursing and Midwifery, Lorestan University of Medical Sciences, Khorramabad, Iran.

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  • Mandal J, Brandl H. Bioaerosols in indoor environment-a review with ...
  • Georgakopoulos D, Després V, Fröhlich-Nowoisky J, et al. Microbiology and ...
  • Humbal C, Gautam S, Trivedi U. A review on recent ...
  • Dedesko S, Stephens B, Gilbert JA, et al. Methods to ...
  • Cui W, Cao G, Park JH, et al. Influence of ...
  • Hoseinzadeh E, Taha P, Sepahvand A, et al. Indoor air ...
  • Lee AK, Lau AP, Cheng JY, et al. Source identification ...
  • Lang-Yona N, Dannemiller K, Yamamoto N, et al. Annual distribution ...
  • Aydogdu H, Asan A. Airborne fungi in child day care ...
  • Stępalska D, Wołek J. Variation in fungal spore concentrations of ...
  • Hoseinzadeh E, Samarghandie MR, Ghiasian SA, et al. Evaluation of ...
  • Branco P, Alvim-Ferraz M, Martins F, et al. The microenvironmental ...
  • Branco P, Alvim-Ferraz M, Martins F, et al. Children's exposure ...
  • Kabir E, Kim K-H, Sohn JR, et al. Indoor air ...
  • Qu F, Weschler LB, Sundell J, et al. Increasing prevalence ...
  • Vijayalakshmi I, Rao PS, Chugh R. A comprehensive approach to ...
  • Madureira J, Paciência I, Rufo JC, et al. Assessment and ...
  • Ciucci E, Calussi P, Menesini E, et al. Seasonal variation, ...
  • Roda C, Barral S, Ravelomanantsoa H, et al. Assessment of ...
  • Fernández LC, Alvarez RF, González-Barcala FJ, et al. Indoor air ...
  • Rao D, Phipatanakul W. Impact of environmental controls on childhood ...
  • Fard R, Hosseini M, Faraji M, et al. Building characteristics ...
  • Heseltine E, Rosen J. WHO guidelines for indoor air quality: ...
  • Ghaderpoori M. Heavy metals analysis and quality assessment in drinking ...
  • Nourmoradi H, Goudarzi G, Daryanoosh SM, et al. Health impacts ...
  • Goh I, Obbard J, Viswanathan S, et al. Airborne bacteria ...
  • Gołofit-Szymczak M, Górny RL. Bacterial and fungal aerosols in air-conditioned ...
  • Naddafi K, Hassanvand MS, Yunesian M, et al. Health impact ...
  • Hameed AA, Khoder M, Yuosra S, et al. Diurnal distribution ...
  • Hsu Y-C, Kung P-Y, Wu T-N, et al. Characterization of ...
  • Hoseini M, Jabbari H, Naddafi K, et al. Concentration and ...
  • Wang Y-F, Wang C-H, Hsu K-L. Size and seasonal distributions ...
  • Scaltriti S, Cencetti S, Rovesti S, et al. Risk factors ...
  • Aneja K. Experiments in microbiology, plant pathology and biotechnology. New ...
  • Fang Z, Ouyang Z, Hu L, et al. Culturable airborne ...
  • Wang W, Ma Y, Ma X, et al. Seasonal variations ...
  • De Hoog G, Guarro J, Gené J, et al. Atlas ...
  • Ellis DH, Davis S, Alexiou H, et al. Descriptions of ...
  • Fisher F, Cook N. Fundamentals of diagnostic mycology. ۱۹۹۸. WB ...
  • Handbook A. HVAC applications. ASHRAE Handbook, Fundamentals. ۲۰۰۷ ...
  • Frankel M, Bekö G, Timm M, Gustavsen S, Hansen EW, ...
  • Moungthong G, Klamkam P, Mahakit P, et al. Efficacy of ...
  • Tang JW. The effect of environmental parameters on the survival ...
  • Aquino S, de Lima JEA, do Nascimento APB, et al. ...
  • Park D, Jo K, Yoon C, et al. Factors influencing ...
  • Sepahvand A, Shams-Ghahfarokhi M, Allameh A, et al. A survey ...
  • Castleman BI, Ziem GE. American conference of governmental industrial hygienists: ...
  • Rao CY, Burge HA, Chang JC. Review of quantitative standards ...
  • Rostami N, Alidadi H, Zarrinfar H, et al. Assessment of ...
  • Mentese S, Arisoy M, Rad AY, et al. Bacteria and ...
  • Immonen J, Meklin T, Taskinen T, et al. Skin‐prick test ...
  • Hoseinzadeh E, Samarghandi MR, Ghorbani Shahna F, et al. Isoconcentration ...
  • Cerqueira P, Guimarães A. Indoor air quality in a petrochemical ...
  • Gupta VK. New and future developments in microbial biotechnology and ...
  • Moazam S, Denning DW. Aspergillus nodules in chronic granulomatous disease ...
  • Vacher G, Niculita-Hirzel H, Roger T. Immune responses to airborne ...
  • Yang CS, Johanning E. Airborne fungi and mycotoxins. Manual of ...
  • Sinclair R, Gerba CP. Microbial contamination in kitchens and bathrooms ...
  • Hwang K, Lee A-M, Shin H, et al. Seasonal monitoring ...
  • Karwowska E. Microbiological air contamination in some educational settings. Pol ...
  • Dumała SM, Dudzińska MR. Microbiological indoor air quality in Polish ...
  • Meyer HW, Würtz H, Suadicani P, et al. Molds in ...
  • Faridi S, Hassanvand MS, Naddafi K, et al. Indoor/outdoor relationships ...
  • Pegas P, Alves C, Evtyugina M, et al. Indoor air ...
  • Adams RI, Bhangar S, Pasut W, et al. Chamber bioaerosol ...
  • Shin S-K, Kim J, Ha S-m, et al. Metagenomic insights ...
  • نمایش کامل مراجع