{"@type": "dcat:Dataset", "accessLevel": "public", "accrualPeriodicity": "irregular", "bureauCode": ["006:55"], "contactPoint": {"fn": "Thomas P. Forbes", "hasEmail": "mailto:thomas.forbes@nist.gov"}, "description": "This data publication contains the raw, extracted, and derived (e.g., peak areas) mass spectrometry data for explosives, propellants, and post-blast debris. These samples were analyzed by wipe-based collection, thermal desorption, and in-line dielectric barrier discharge ionization coupled to a transportable time-of-flight mass spectrometer. Samples include RDX, HMX, TNT, Tetryl, PETN, and NG explosives, black powder and black powder substitutes, and post-blast debris from devices based on dynamite, black powder, and blasting emulsion explosive.\u00a0", "distribution": [{"description": "readme file describing the files within this NIST Data Publication", "downloadURL": "https://data.nist.gov/od/ds/mds2-3299/readme.txt", "mediaType": "text/plain", "title": "readme"}, {"downloadURL": "https://data.nist.gov/od/ds/ark:/88434/mds2-3299/TD-DBDI-MS%20Explosives%20NIST%20Data%20Publication.zip", "mediaType": "application/zip"}, {"downloadURL": "https://data.nist.gov/od/ds/ark:/88434/mds2-3299/TD-DBDI-MS%20Explosives%20NIST%20Data%20Publication.zip.sha256", "mediaType": "text/plain"}], "identifier": "ark:/88434/mds2-3299", "issued": "2024-06-07", "keyword": ["Mass spectrometry; time-of-flight; fieldable; transportable; explosives; narcotics; forensics; public health; propellants; post-blast debris"], "landingPage": "https://data.nist.gov/od/id/mds2-3299", "language": ["en"], "license": "https://www.nist.gov/open/license", "modified": "2024-05-15 00:00:00", "programCode": ["006:045"], "publisher": {"@type": "org:Organization", "name": "National Institute of Standards and Technology"}, "theme": ["Chemistry:Analytical chemistry", "Forensics:Trace evidence", "Public Safety:Chemical/Biological/Radiological/Nuclear/Explosives (CBRNE)"], "title": "Transportable time-of-flight mass spectrometry of wipe-based explosives, propellants, and post-blast debris using in-line thermal desorption and dielectric barrier discharge ionization"}