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      Evaluation of peracetic acid fog for the inactivation of Bacillus anthracis spore surrogates in a large decontamination chamber.

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          Abstract

          The purpose of this study was to evaluate the sporicidal (inactivation of bacterial spores) effectiveness and operation of a fogging device utilizing peracetic acid/hydrogen peroxide (PAA). Experiments were conducted in a pilot-scale 24 m(3) stainless steel chamber using either biological indicators (BIs) or bacterial spores deposited onto surfaces via aerosolization. Wipe sampling was used to recover aerosol-deposited spores from chamber surfaces and coupon materials before and after fogging to assess decontamination efficacy. Temperature, relative humidity, and hydrogen peroxide vapor levels were measured during testing to characterize the fog environment. The fog completely inactivated all BIs in a test using a 60 mL solution of PAA (22% hydrogen peroxide/4.5% peracetic acid). In tests using aerosol-deposited bacterial spores, the majority of the post-fogging spore levels per sample were less than 1 log colony forming units, with a number of samples having no detectable spores. In terms of decontamination efficacy, a 4.78 log reduction of viable spores was achieved on wood and stainless steel. Fogging of PAA solutions shows potential as a relatively easy to use decontamination technology in the event of contamination with Bacillus anthracis or other spore-forming infectious disease agents, although additional research is needed to enhance sporicidal efficacy.

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          Author and article information

          Journal
          J Hazard Mater
          Journal of hazardous materials
          Elsevier BV
          1873-3336
          0304-3894
          Apr 15 2013
          : 250-251
          Affiliations
          [1 ] United States Environmental Protection Agency, National Homeland Security Research Center, Research Triangle Park, NC 27711, USA. wood.joe@epa.gov
          Article
          S0304-3894(13)00094-0
          10.1016/j.jhazmat.2013.01.068
          23434480
          3ed7d596-336c-4078-a3b8-322e2b6e5666
          Published by Elsevier B.V.
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