Development of a Radiochemical Test Procedure for the Separation of Aerosol-Borne Allergens

9 Pages Posted: 15 Aug 2023

See all articles by Niklas Heiss

Niklas Heiss

Mannheim University of Applied Sciences

Jacques J.W. van de Laar

Mannheim University of Applied Sciences

Lotte Lens

Mannheim University of Applied Sciences

Ulrich W. Scherer

Mannheim University of Applied Sciences

Abstract

An innovative radiochemical method has been developed to determine the filtration efficiency of HEPA filters for biological nanoparticles. The setup based on EN 1822, for flat sheet media, is up to 40 times more sensible for a single particle than methods based on particle counting, even for low particle concentrations. To achieve such a high sensitivity the radioactive tracer technique is utilized using a solution of bovine serum albumin (BSA) labelled with radioactive iodine (131I). With the aid of an aerosol generator, this solution is nebulised into nanoparticles of a defined size, which are then passed to the test filter via a compressed air flow. On the raw- and clean gas side of the test filter, the 131I is measured with two NaI(Tl) detectors. By balancing the measurement data with each other, the filter efficiency can be determined. Initially, the setup has been validated with current particle counting methods, according to EN 1822, to ensure its functionality. Subsequently, the first experiments with radiolabelled nanoparticles gave promising results, as will be shown below. Further experiments also yielded information about filter clogging and its influence on the filter efficiency.

Keywords: nanoparticle, aerosol, filtration, radiochemical, HEPA

Suggested Citation

Heiss, Niklas and van de Laar, Jacques J.W. and Lens, Lotte and Scherer, Ulrich W., Development of a Radiochemical Test Procedure for the Separation of Aerosol-Borne Allergens. Available at SSRN: https://ssrn.com/abstract=4537238 or http://dx.doi.org/10.2139/ssrn.4537238

Niklas Heiss (Contact Author)

Mannheim University of Applied Sciences ( email )

Mannheim
Germany

Jacques J.W. Van de Laar

Mannheim University of Applied Sciences ( email )

Mannheim
Germany

Lotte Lens

Mannheim University of Applied Sciences ( email )

Mannheim
Germany

Ulrich W. Scherer

Mannheim University of Applied Sciences ( email )

Mannheim
Germany

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