화학공학소재연구정보센터
검색결과 : 14건
No. Article
1 Adhesion control of fungal spores on solid surfaces using hydrophilic nanoparticles
Nomura T, Minamiura M, Fukamachi K, Yumiyama S, Kondo A, Naito M
Advanced Powder Technology, 29(4), 909, 2018
2 Inactivation of four genera of dominant fungal spores in groundwater using UV and UV/PMS: Efficiency and mechanisms
Wen G, Xu XQ, Zhu H, Huang TL, Ma J
Chemical Engineering Journal, 328, 619, 2017
3 Inactivation of Aspergillus niger spores from indoor air by photocatalytic filters
Pigeot-Remy S, Real P, Simonet F, Hernandez C, Vallet C, Lazzaroni JC, Vacher S, Guillard C
Applied Catalysis B: Environmental, 134, 167, 2013
4 Effects of the physical parameters of a microwave plasma jet on the inactivation of fungal spores
Na YH, Park G, Choi EH, Uhm HS
Thin Solid Films, 547, 125, 2013
5 Enhancement of nano titanium dioxide photocatalysis in transparent coatings by polyhydroxy fullerene
Bai W, Krishna V, Wang J, Moudgil B, Koopman B
Applied Catalysis B: Environmental, 125, 128, 2012
6 Main airborne Ascomycota spores: characterization by culture, spore morphology, ribosomal DNA sequences and enzymatic analysis
Oliveira M, Amorim MI, Ferreira E, Delgado L, Abreu I
Applied Microbiology and Biotechnology, 86(4), 1171, 2010
7 Performance of UVAPS with respect to detection of airborne fungi
Kanaani H, Hargreaves M, Smith J, Ristovski Z, Agranovski V, Morawska L
Journal of Aerosol Science, 39(2), 175, 2008
8 Performance assessment of UVAPS: Influence of fungal spore age and air exposure
Kanaani H, Hargreaves M, Ristovski Z, Morawska L
Journal of Aerosol Science, 38(1), 83, 2007
9 Determination of aerial microbiological contamination in scholastic sports environments
Dacarro C, Picco AM, Grisoli P, Rodolfi M
Journal of Applied Microbiology, 95(5), 904, 2003
10 Airborne infection control in health care facilities
Kuehn TH
Journal of Solar Energy Engineering-Transactions of The ASME, 125(3), 366, 2003