ZeBox: A novel non-intrusive continuous-use technology to trap and kill airborne microbes

Author:

Phadke Kruttika S.,Madival Deepak G.,Venkataraman Janani,Kundu Debosmita,Ramanujan K. S.,Holla Nisha,Arakeri Jaywant,Tomar Gaurav,Datta Santanu,Ghatak ArindamORCID

Abstract

AbstractPreventing nosocomial infection is a major unmet need of our times. Existing air decontamination technologies suffer from demerits such as toxicity of exposure, species specificity, noxious gas emission, environment-dependent performance and high power consumption. Here, we present a novel technology called “ZeBox” that transcends the conventional limitations and achieves high microbicidal efficiency. In ZeBox, a non-ionizing electric field extracts naturally charged microbes from flowing air and deposits them on engineered microbicidal surfaces. The surface’s three dimensional topography traps the microbes long enough for them to be inactivated. The electric field and chemical surfaces synergistically achieve rapid inactivation of a broad spectrum of microbes. ZeBox achieved near complete kill of airborne microbes in challenge tests (5-9 log reduction) and >90% efficiency in a fully functional stem cell research facility in the presence of humans. Thus, ZeBox fulfills the dire need for a real-time, continuous, safe, trap-and-kill air decontamination technology.

Publisher

Cold Spring Harbor Laboratory

Reference58 articles.

1. Can commonly-used fan-driven air cleaning technologies improve indoor air quality? A literature review

2. A review of air filtration technologies for sustainable and healthy building ventilation;Sustainable cities and society,2017

3. Electrostatic Precipitators as an Indoor Air Cleaner—A Literature Review;Sustainability,2020

4. Fungal colonization of air filters for use in heating, ventilating, and air conditioning (HVAC) systems

5. Kemp SJ , Kuehn TH , Pui DY , Vesley D , Streifel AJ . Filter collection efficiency and growth of microorganisms on filters loaded with outdoor air. ASHRAE Transactions. 1995 Jan:228–38.

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