Grogan Sydonia N C M, Han Taewon T, Mainelis Gediminas
Department of Environmental Sciences, Rutgers, The State University of New Jersey, New Brunswick, New Jersey, USA.
Current affiliation: Population Health Sciences, School of Public Health, Georgia State University, Atlanta, Georgia, USA.
Aerosol Sci Technol. 2022;56(12):1132-1145. doi: 10.1080/02786826.2022.2128985. Epub 2022 Oct 10.
This article introduces REAS (Rutgers Electrostatic Active Sampler), a new active bioaerosol sampler using permanently polarized ferroelectric film (e.g., PVDF) to capture charge-carrying bioaerosol particles. While REAS operates on an electrostatic collection principle, due to its unique materials and design, it does not require external power to charge incoming particles or to create an electrostatic collection field. The sampler consists of a polarized film wound in a spiral configuration with oppositely polarized film sides positioned 2.25 mm apart. The film and its holder are inserted into a 3D-printed housing cylinder to connect to a pump. The device has an open channel design, creating virtually no pressure drop, which allows for longer sampling times on the same battery charge compared to filter samplers. When REAS was tested in different field environments, the physical collection efficiency ranged from 19 ± 2% in a laboratory environment at 1 L/min to 41 ± 0.1% in residence at 0.1 L/min. When REAS was used to capture culturable bacteria and fungi over a 24-hr period, the concentrations determined by REAS were not different from those determined by an Institute of Medicine sampler (IOM, SKC, Inc.). The concentrations determined by both samplers were lower than those measured by a SAS Super 180 Sampler (SAS, Bioscience International), except for outdoor fungi. However, the SAS was used as a grab sampler to avoid overloading or desiccating the plates, while both REAS and IOM continuously sampled for 24 hrs. Further studies will explore improvements to the REAS sample elution protocols.
本文介绍了罗格斯静电主动采样器(REAS),这是一种新型的主动生物气溶胶采样器,它使用永久极化的铁电薄膜(如聚偏二氟乙烯)来捕获携带电荷的生物气溶胶颗粒。虽然REAS基于静电收集原理运行,但由于其独特的材料和设计,它不需要外部电源来使进入的颗粒带电或创建静电收集场。该采样器由缠绕成螺旋状的极化薄膜组成,薄膜相对的极化面间距为2.25毫米。薄膜及其支架被插入一个3D打印的外壳圆柱体中,以连接到泵。该设备采用开放式通道设计,几乎不会产生压降,与过滤采样器相比,在相同电池电量下可实现更长的采样时间。当在不同的现场环境中对REAS进行测试时,物理收集效率在实验室环境中1升/分钟时为19±2%,在住宅环境中0.1升/分钟时为41±0.1%。当使用REAS在24小时内捕获可培养的细菌和真菌时,REAS测定的浓度与医学研究所采样器(IOM,SKC公司)测定的浓度没有差异。除了室外真菌外,两种采样器测定的浓度均低于SAS超级180采样器(SAS,生物科学国际公司)测量的浓度。然而,SAS用作抓取采样器以避免平板过载或干燥,而REAS和IOM均连续采样24小时。进一步的研究将探索改进REAS样品洗脱方案。