Development of effective and energy-efficient approaches for the destruction of biologically dangerous
contaminants (pathogens and toxic chemicals) at low (close to ambient) temperature in gases, liquids,
and on the surface of bodies is a challenge for modern science. In addition to sterilization, a complimentary
application is a protection of different industrial materials, equipment, and electronic devices
against biocorrosion and biodegradability. Indeed, corrosion of metals speeds up manifold when induced
by thin films of microorganisms deposited on their surface. Usually, microorganisms forming
such biofilms are very resistant to traditional sterilization methods.
Sterilization of objects consists of destruction or removal of the microorganisms, including vegetative
cells, spores, viruses, etc. Traditional sterilization and disinfection methods use heating in dry
and humid environments, filtration, radiation, and strong chemicals (biocides). These methods are
Development of effective and energy-efficient approaches for the destruction of biologically dangerouscontaminants (pathogens and toxic chemicals) at low (close to ambient) temperature in gases, liquids,and on the surface of bodies is a challenge for modern science. In addition to sterilization, a complimentaryapplication is a protection of different industrial materials, equipment, and electronic devicesagainst biocorrosion and biodegradability. Indeed, corrosion of metals speeds up manifold when inducedby thin films of microorganisms deposited on their surface. Usually, microorganisms formingsuch biofilms are very resistant to traditional sterilization methods.Sterilization of objects consists of destruction or removal of the microorganisms, including vegetativecells, spores, viruses, etc. Traditional sterilization and disinfection methods use heating in dryand humid environments, filtration, radiation, and strong chemicals (biocides). These methods are
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