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Exploring deposition pattern characteristics of aerosols and bioaerosols by inertial impaction for the development of real-time silicon MEMS mass detection systems
Aerosol Science and Technology ( IF 2.8 ) Pub Date : 2021-01-04 , DOI: 10.1080/02786826.2020.1861211 Ugur Soysal 1 , Evelyne Géhin 1 , Frédéric Marty 2 , Emmanuelle Algré 2 , Enric Robine 3 , Charles Motzkus 3
Aerosol Science and Technology ( IF 2.8 ) Pub Date : 2021-01-04 , DOI: 10.1080/02786826.2020.1861211 Ugur Soysal 1 , Evelyne Géhin 1 , Frédéric Marty 2 , Emmanuelle Algré 2 , Enric Robine 3 , Charles Motzkus 3
Affiliation
The objective of this study was to analyze the deposition patterns of aerosolized bacteria, fungi, and fluorescent particles with a lab-made, multiple round nozzle, single-stage inertial impactor. ...
中文翻译:
通过惯性撞击探索气溶胶和生物气溶胶的沉积模式特征,以开发实时硅 MEMS 质量检测系统
本研究的目的是使用实验室制造的多圆形喷嘴单级惯性撞击器分析雾化细菌、真菌和荧光颗粒的沉积模式。...
更新日期:2021-01-04
中文翻译:
通过惯性撞击探索气溶胶和生物气溶胶的沉积模式特征,以开发实时硅 MEMS 质量检测系统
本研究的目的是使用实验室制造的多圆形喷嘴单级惯性撞击器分析雾化细菌、真菌和荧光颗粒的沉积模式。...