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Recoveries of bacilllus atropheus spores pre- and post- vehicle interior decontamination with low concentration hydrogen peroxide vapor
This dataset contains information on the experimental test conditions during the low concentration hydrogen peroxide vapor decontamination tests. For each test (five tests total), it shows the number of recovered B. atropheus spores before and after the decontamination at ten interior vehicle locations. The log10 values of the recovered number of spores (before and after decontamination) are reported in the journal article. The table includes the calculated efficacy (in expressed as log reduction) as the difference in log10 values of recovered spores before and after decontamination. This dataset is associated with the following publication: Oudejans, L., W. Richter, M. Sunderman, W. Calfee, L. Mickelsen, K. Hofacre, P. Keyes, and S. Lee. Passenger vehicle interior decontamination by low concentration hydrogen peroxide vapor following a wide area biological contamination incident. JOURNAL OF APPLIED MICROBIOLOGY. Blackwell Publishing, Malden, MA, USA, 134(3): lxad039, (2023).
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Low level hydrogen peroxide vapor data for Cary test house decontamination study, using a Bacillus anthracis surrogate
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The data set is comprised of five Excel spreadsheets, one for each of the tests described in the research article. The data in the spreadsheets are the colony forming unit (CFU) data for each coupon material replicate and location. This dataset is associated with the following publication: Mickelsen, L., J. Wood, W. Calfee, S. Serre, S. Ryan, A. Touati, F. Delafield, and D. Aslett. Low‐concentration hydrogen peroxide decontamination for Bacillus spore contamination in buildings. Remediation Journal. John Wiley & Sons, Inc., Hoboken, NJ, USA, 30(1): 47-56, (2019).
Lab-scale hydrogen peroxide data from ECBC
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Data from small lab scale tests conducted at ECBC. It contains efficacy data as well as data on env conditions such as temperature, RH, and hydrogen peroxide vapor concentration. This dataset is associated with the following publication: Wood, J., W. Calfee, S. Ryan, L. Mickelsen, M. Clayton, and V. Rastogi. A Simple Decontamination Approach Using Hydrogen Peroxide Vapor for Bacillus anthracis Spore Inactivation. JOURNAL OF APPLIED MICROBIOLOGY. Blackwell Publishing, Malden, MA, USA, 121(6): 1603-1615, (2016).
Data for pilot-scale low level hydrogen peroxide tests using humidifiers
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Dataset includes data from each experiment conducted in the pilot-scale testing. Each sheet of the Excel file pertains to each test. A data dictionary is included in the first sheet. In each sheet there are microbiological data (colony forming units) for each test and positive control coupon used in the study. Also shown is the calculation of decontamination efficacy (log10 reduction). This dataset is associated with the following publication: Wood, J., W. Calfee, S. Ryan, L. Mickelsen, M. Clayton, and V. Rastogi. A Simple Decontamination Approach Using Hydrogen Peroxide Vapor for Bacillus anthracis Spore Inactivation. JOURNAL OF APPLIED MICROBIOLOGY. Blackwell Publishing, Malden, MA, USA, 121(6): 1603-1615, (2016).
Dataset - Evaluation of Standardized Sample Collection, Packaging, and Decontamination Procedures to Assess Cross-Contamination Potential during Bacillus anthracis Incident Response Operations
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Spore recovery data during sample packaging decontamination tests. This dataset is associated with the following publication: Calfee, W., J. Tufts, K. Meyer, K. McConkey, L. Mickelsen, L. Rose, C. Dowell, L. Delaney, A. Weber, S. Morse, J. Chaitram, and M. Gray. Evaluation of standardized sample collection, packaging, and decontamination procedures to assess cross-contamination potential during Bacillus anthracis incident response operations. JOURNAL OF OCCUPATIONAL AND ENVIRONMENTAL HYGIENE. Taylor & Francis, Inc., Philadelphia, PA, USA, 13(12): 12, (2016).
Compilation of colony forming unit data for Bacillus anthracis and B. atrophaeus before and after exposure to various fogging treatments using peracetic acid or hydrogen peroxide
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Data set contains CFU data for positive controls and test coupons for each test, for each material, and for each microorganism used. Also included are efficacy data in terms of log reductions. It also includes data on process and environmental conditions during fogging. This dataset is associated with the following publication: Richter, W., J. Wood, M. Wendling, and J. Rogers. Inactivation of Bacillus anthracis spores to decontaminate subway railcar and related materials via the fogging of peracetic acid and hydrogen peroxide sporicidal liquids. JOURNAL OF ENVIRONMENTAL MANAGEMENT. Elsevier Science Ltd, New York, NY, USA, 206: 800-806, (2018).
Wash Down Data Set
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These data are of spore removal from an asphalt parking lot using a power washer and garden hose and different wash aids.
Efficacy data for inactivation of Bacillus anthracis (anthrax) spores in soil using formaldehyde solutions
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These are the efficacy data for each test conducted in study. Data are presented for Bacillus atrophaeus and B. anthracis in colony forming units, for positive controls and for CFU recovered after decontamination. Log reduction calculations are also included, as well as data on temperature and relative humidity. This dataset is associated with the following publication: Richter, W., M. Sunderman, Z. Willenberg, M. Calfee, S. Serre, and J. Wood. Effectiveness of Formaldehyde in Various Soil Types as a Wide Area Decontamination Approach for Bacillus anthracis Spores. PLOS ONE. Public Library of Science, San Francisco, CA, USA, e0277941, (2022).
Outdoor Sampling Paper Data Set
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This data set presents surface sampling data and weather information for Bacillus atrophaeus spores, a surrogate for B. anthracis, from a 210-day outdoor study that evaluated the detection and recovery of spores using five different sampling methods: sponge sticks, 37 mm vacuum filter cassettes, residential wet vacuums, robotic floor cleaners, and grab samples of soil, leaves, and grass. This dataset is associated with the following publication: Mikelonis, A., A. Abdel-Hady, D. Aslett, K. Ratliff, A. Touati, J. Archer, S. Serre, L. Mickelsen, S. Taft, and W. Calfee. Comparison of surface sampling methods for an extended duration outdoor biological contamination study. ENVIRONMENTAL MONITORING AND ASSESSMENT. Springer, New York, NY, USA, 192(455): 13, (2020).
Decontamination efficacy and environmental data for tests using low concentration hydrogen peroxide vapor to inactivate Ebola virus surrogates MS2 and Phi6 phage
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The data include temperature and relative humidity for the positive controls; T, RH, and hydrogen peroxide concentrations that the test coupons were exposed to in each experiment; and then the plaque forming unit data. The PFU data for each experiment are in separate Excel files. Each file with the PFU data shows the PFU recovered for every material, timepoint, and replicate; for both positive controls and test coupons. The log reduction calculations are also included in each file. This dataset is associated with the following publication: Wood, J., W. Richter, M. Sunderman, M. Calfee, S. Serre, and R. Mickelsen. Evaluating the Environmental Persistence and Inactivation of MS2 Bacteriophage and the Presumed Ebola Virus Surrogate Phi6 Using Low Concentration Hydrogen Peroxide Vapor. ENVIRONMENTAL SCIENCE & TECHNOLOGY. American Chemical Society, Washington, DC, USA, 10, (2020).
Commercial Equipment Manuscript Dataset 2022
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Dataset of subject matter expert input and response to questions regarding commercial and municipal equipment survey and evaluation for use in large-scale biological incident response operations. This dataset is associated with the following publication: Hayes, C., M. Calfee, and T. Boe. Demonstration and Evaluation of Commercial and Municipal Equipment for Urban Biological Decontamination. Remediation Journal. John Wiley & Sons, Inc., Hoboken, NJ, USA, 33(3): 249-261, (2023).