ASTM E2885-2013 Standard Specification for Handheld Point Chemical Vapor Detectors (HPCVD) for Homeland Security Applications《国家安全应用的手持点式化学蒸汽探测器 (HPCVD) 的标准规范》.pdf
《ASTM E2885-2013 Standard Specification for Handheld Point Chemical Vapor Detectors (HPCVD) for Homeland Security Applications《国家安全应用的手持点式化学蒸汽探测器 (HPCVD) 的标准规范》.pdf》由会员分享,可在线阅读,更多相关《ASTM E2885-2013 Standard Specification for Handheld Point Chemical Vapor Detectors (HPCVD) for Homeland Security Applications《国家安全应用的手持点式化学蒸汽探测器 (HPCVD) 的标准规范》.pdf(15页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E2885 13Standard Specification forHandheld Point Chemical Vapor Detectors (HPCVD) forHomeland Security Applications1This standard is issued under the fixed designation E2885; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revis
2、ion, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 General:1.1.1 This document presents baseline performance require-ments and additional optional capab
3、ilities for handheld pointchemical vapor detectors (HPCVD) for homeland securityapplications. This document is one of several that describechemical vapor detectors (for example, handheld, and station-ary) and chemical detection capabilities including: chemicalvapor hazard detection, identification,
4、and quantification. AnHPCVD is capable of detecting and alarming when exposed tochemical vapors that pose a risk as defined by the AcuteExposure Guideline Levels for Selected Airborne Chemicals(AEGL).1.1.2 This document provides the HPCVD baselinerequirements, including performance, system, environm
5、ental,and documentation requirements. This document providesHPCVD designers, manufacturers, integrators, procurementpersonnel, end users/practitioners, and responsible authorities acommon set of parameters to match capabilities and userneeds.1.1.3 This document is not meant to provide for all uses.M
6、anufacturers, purchasers, and end users will need to deter-mine specific requirements including, but not limited to, use byHAZMAT teams, use in explosive atmospheres, use withpersonal protective equipment (PPE), use by firefighters andlaw enforcement officers, special electromagnetic compatibil-ity
7、needs, extended storage periods, and extended missiontime. These specific requirements may or may not be generallyapplicable to all HPCVDs.1.2 Operational ConceptsHPCVDs are used to detect,identify, and/or quantify chemical vapor hazards that pose30-min Acute Exposure Guideline Level-2 (AEGL-2) dang
8、ers.The HPCVD should not alarm to environmental backgroundchemical vapors and should provide low false positive alarmrates and no false negatives. Uses of an HPCVD include searchand rescue, survey, surveillance, sampling, and temporaryfixed-site monitoring. An HPCVD should withstand the rigorsassoci
9、ated with uses including, but not limited to, high- andlow-temperature use and storage conditions; shock and vibra-tion; radio frequency interference; and rapid changes in oper-ating temperature, pressure, and humidity.1.3 HPCVD Chemical Detection CapabilitiesManufacturers document and verify, throu
10、gh testing, thechemical detection capabilities of the HPCVD. Test methodsfor assessing chemical detection capabilities are available fromthe Department of Homeland Security and the Department ofDefense and are listed in Appendix X3.1.4 HPCVD System and Environmental PropertiesManufacturers document
11、and verify, through testing, the sys-tem and environmental properties of the HPCVD. Example testmethods for assessing the system and environmental propertiesare listed in Appendix X4.1.5 UnitsThe values stated in SI units are to be regardedas the standard. Vapor concentrations of the hazardous mate-
12、rials are presented in parts per million (ppm) as used in AcuteExposure Guideline Levels for Selected Airborne Chemicals,Vols 1-9 (see 2.1) and in mg/m3.1.6 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of th
13、is standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 Acute Exposure Guideline Levels:Acute Exposure Guideline Levels for Selected AirborneChemicals, Vols 1-922.2 Code of Federal Regulation
14、s:3CFR Title 40 Protection of the Environment, Part 72.2Permits Regulation, Definitions1This specification is under the jurisdiction of ASTM Committee E54 onHomeland Security Applications and is the direct responsibility of SubcommitteeE54.01 on CBRNE Sensors and Detectors.Current edition approved M
15、ay 1, 2013. Published June 2013. DOI: 10.1520/E2885-13.2Committee on Acute Exposure Guideline Levels, Committee on Toxicology,Board on Environmental Studies and Toxicology, Division on Earth and LifeStudies, National Research Council of the National Academies; 2000-2010, http:/www.epa.gov/oppt/aegl/
16、index.htm, updated August 2010.3Available from U.S. Government Printing Office Superintendent of Documents,732 N. Capitol St., NW, Mail Stop: SDE, Washington, DC 20401, http:/www.access.gpo.gov.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United
17、 States1CFR Title 10 Gas andAerosol Detectors Containing Byprod-uct Material, Part 30.20, Energy3. Terminology3.1 Definitions:3.1.1 30-minute Acute Exposure Guideline Levels for Se-lected Airborne Chemicals, (30-min AEGL value),nrepresent exposure limits for the general public and areapplicable to e
18、mergency exposure periods for 30 minutes.3.1.2 AEGL-1, nairborne concentration (expressed as ppmor mg/m3) of a substance above which it is predicted that thegeneral population, including susceptible individuals, couldexperience transient health effects.3.1.3 AEGL-2, nairborne concentration (expresse
19、d as ppmor mg/m3) of a substance above which it is predicted that thegeneral population, including susceptible individuals, couldexperience irreversible or other serious, long-lasting adversehealth effects or an impaired ability to escape.3.1.4 AEGL-3, nairborne concentration (expressed as ppmor mg/
20、m3) of a substance above which it is predicted that thegeneral population, including susceptible individuals, couldexperience life-threatening health effects or death.3.1.5 alarm, nsound, light, vibration, and/or data commu-nication signal to the operator(s) indicating that the handheldpoint chemica
21、l vapor detector (HPCVD) has detected thepresence of a chemical vapor of interest at or above the alarmthreshold value.3.1.6 alarm threshold value, nvapor concentration corre-sponding to an AEGL value (AEGL-1, AEGL-2, or AEGL-3)that activates an HPCVD alarm.3.1.7 background chemical vapors, ninciden
22、tal chemicalvapors present in the environment at vapor concentrationslower than the 30-minute AEGL-1 values.3.1.8 consumables, nHPCVD components that requireperiodic replacement.3.1.9 false negative, nthe HPCVD fails to alarm in thepresence of a chemical of interest when the vapor concentra-tion is
23、at or above the indicated alarm threshold value.3.1.10 false positive alarm, nthe HPCVD indicates thepresence of a chemical of interest when none is present or if thechemical is present at vapor concentrations less than 50 % ofthe indicated alarm threshold value.3.1.11 indicator, ninformation other
24、than an alarm pro-vided to the operator by the HPCVD.3.1.12 laboratory challenge stream, na synthesizedchemical vapor mixture used to verify in the laboratory thechemical detection capabilities of an HPCVD.3.1.13 mean time between failures, nestimate of theelapsed time between inherent failures of a
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