Composite metamaterials for biological decontamination of fluids
Închide
Articolul precedent
Articolul urmator
515 4
Ultima descărcare din IBN:
2022-09-15 13:08
SM ISO690:2012
ENAKI, Nicolae, ŢURCAN, Marina, BAZGAN, Sergiu, STARODUB, Elena, PASLARI, Tatiana R., NISTREANU, Andrei, RISTOSCU, Carmen, MIHĂILESCU, Ion. Composite metamaterials for biological decontamination of fluids. In: IFMBE Proceedings: . 4th International Conference on Nanotechnologies and Biomedical Engineering, Ed. 4, 18-21 septembrie 2019, Chişinău. Switzerland: Springer Nature Switzerland AG, 2020, Ediția 4, Vol.77, pp. 373-377. ISBN 978-303031865-9. ISSN 16800737. DOI: https://doi.org/10.1007/978-3-030-31866-6_69
EXPORT metadate:
Google Scholar
Crossref
CERIF

DataCite
Dublin Core
IFMBE Proceedings
Ediția 4, Vol.77, 2020
Conferința "Conference on Nanotechnologies and Biomedical Engineering"
4, Chişinău, Moldova, 18-21 septembrie 2019

Composite metamaterials for biological decontamination of fluids

DOI:https://doi.org/10.1007/978-3-030-31866-6_69

Pag. 373-377

Enaki Nicolae1, Ţurcan Marina1, Bazgan Sergiu1, Starodub Elena1, Paslari Tatiana R.1, Nistreanu Andrei1, Ristoscu Carmen2, Mihăilescu Ion2
 
1 Institute of Applied Physics,
2 National Institute for Laser, Plasma and Radiation Physics (INFLPR)
 
Proiecte:
 
Disponibil în IBN: 2 noiembrie 2020


Rezumat

The dependence of the contact surface of contaminated fluids with metamaterial, formed from various dimension quartz bubbles is proposed. As a simple mathematical model is proposed to packing the space between the relative big spheres with the smaller one with dimensions d1/10, d1/102,…, d1/10n. Here d1 is the diameter of packing the biggest spheres in the system. It is established that this contact surface increase in such metamaterial and becomes proportional to the surface of the smallest spheres proposed in the model. In order to confirm these results experimentally, we propose a series of experiments with yeast fungus dissolved in the water. The systems of metamaterial like fiber optics, a system of quartz bubbles and composite granulated quartz material were proposed in order to demonstrate this effect. The qualitative correspondence between the experimental results and a theoretical model is obtained.

Cuvinte-cheie
Decontamination, Evanescent zone, Metamaterial