Eco-Friendly Peelable Active Nanocomposite Films Designed for Biological and Chemical Warfare Agents Decontamination.
Gabriela ToaderAurel DiaconTraian RotariuMioara AlexandruEdina RusenRaluca-Elena GinghinăFlorentina AlexeRamona OncioiuFlorina Lucica ZorilaAlice PodaruAndreea Elena MoldovanDaniela PulpeaAna Mihaela GavrilăTanța-Verona IordacheRaluca ȘomoghiPublished in: Polymers (2021)
In the context of imminent threats concerning biological and chemical warfare agents, the aim of this study was the development of a new method for biological and chemical decontamination, employing non-toxic, film-forming, water-based biodegradable solutions, using a nano sized reagent together with bentonite as trapping agents for the biological and chemical contaminants. Bentonite-supported nanoparticles of Cu, TiO2, and Ag were successfully synthesized and dispersed in a polyvinyl alcohol (PVA)/glycerol (GLY) aqueous solution. The decontamination effectiveness of the proposed solutions was evaluated by qualitative and quantitative analytical techniques on various micro-organisms, with sulfur mustard (HD) and dimethyl methylphosphonate (DMMP) as contaminants. The results indicate that the peelable active nanocomposite films can be successfully used on contaminated surfaces to neutralize and entrap the hazardous materials and their degradation products. Mechanical and thermal characterization of the polymeric films was also performed to validate the decontamination solution's potential as peelable-film generating materials. The removal efficacy from the contaminated surfaces for the tested micro-organisms varied between 93% and 97%, while for the chemical agent HD, the highest decontamination factor obtained was 90.89%. DMMP was almost completely removed from the contaminated surfaces, and a decontamination factor of 99.97% was obtained.
Keyphrases
- aqueous solution
- room temperature
- drinking water
- heavy metals
- reduced graphene oxide
- quantum dots
- drug delivery
- carbon nanotubes
- systematic review
- randomized controlled trial
- biofilm formation
- gold nanoparticles
- staphylococcus aureus
- risk assessment
- gram negative
- escherichia coli
- visible light
- liquid chromatography
- mass spectrometry
- simultaneous determination
- multidrug resistant
- candida albicans
- solid state