1、 American National Standard Instrumentation and Systems for Monitoring Airborne Radioactivity Sponsored by the National Committee on Radiation Instrumentation, N42 IEEE 3 Park Avenue New York, NY 10016-5997 USA Accredited by the American National Standards Institute ANSI N42.54-2018 ANSI N42.54-2018
2、 American National Standard Instrumentation and Systems for Monitoring Airborne Radioactivity Sponsor National Committee on Radiation Instrumentation, N42 Accredited by the American National Standards Institute Secretariat Institute of Electrical and Electronics Engineers, Inc. Approved 11 January 2
3、018 American National Standards Institute Abstract: The complexity associated with quantitative assay and monitoring of aerosols and gasses can be substantial. This standard covers system design, manufacture, performance, testing, calibration, and maintenance requirements for noble gases, aerosols (
4、including transuranics), tritium, and radioiodides. Keywords: aerosol, air monitoring, ANSI 42.54, noble gas, radioiodine, transuranic, tritium The Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyright 2018 by The Institute of Electrical and El
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42、esponsibility. Further information may be obtained from the IEEE Standards Association. 6 Copyright 2018 IEEE. All rights reserved. 7 Copyright 2018 IEEE. All rights reserved. Participants At the time this standard was approved, the National Committee on Radiation Instrumentation, N42, had the follo
43、wing membership: Michael P. Unterweger, Chair Morgan Cox, Vice Chair Jennifer Santulli, Administrative Secretary Organization Represented Name of Representative CanberraRobert Huckins Commerce Dept., U.S. NIST . Leticia Pibida Commerce Dept., U.S. NIST Michael P. Unterweger Consultant . Frank X. Mas
44、se Department of Homeland Security Peter Shebell Harvard University . Joseph Ring Health Physics Society . Wayne M. Glines Lawrence Berkeley National Laboratory Edward J. Lampo Lawrence Livermore National Laboratory . David Trombino NASA, GSFC Sachidananda R. Babu National Institute for Occupational
45、 Safety and Health Mark D. Hoover Oak Ridge National Laboratory Peter J. Chiaro, Jr. Charles Britton (Alt.) ORTEC, Ametek Inc. Frank Sergent Pacific Northwest National Laboratory . Richard Kouzes U.S. Army Chad B. McKee Members-At-Large . Morgan Cox Edward Groeber Ronald M. Keyser Greg Komp Mark L.
46、Maiello Joseph C. McDonald Joseph Stencel Edward Walker At the time this standard was approved, the ANSI N42.54 Working Group had the following membership: Robert B. Hayes, Chair Dennis Hadlock, Vice Chair Murray E. Moore, Vice Chair Brian Asamoto David Baltz Wesley Boyd Martin Brennan Morgan Cox Fr
47、ank Gavilla Mark D. Hoover Alan Justus Phil Jenkins Cynthia Jones Andy Lasko Tim Martinson Roger Moroney Tom OMalley Hillary Phillips Jim Rolph Jeff Sawyer Roger Schanzenback Lisa Spinelli Edward Walker Introduction This introduction is not part of ANSI N42.54-2018, American National StandardInstrum
48、entation and Systems for Monitoring Airborne Radioactivity. This standard encompasses monitoring all types of airborne radioactivity including aerosols, noble gases, iodines, and tritium in the workplace, in effluent, and in the environment. This standard includes initial design, manufacture, minimu
49、m performance, performance testing, calibration, and maintenance requirements. This standard covers both real-time monitors and air samplers. The standard is intended to provide guidance on industry best practices to obtain continual quality in the life cycle of relevant systems. 8 Copyright 2018 IEEE. All rights reserved. Contents 1. Overview .11 1.1 Scope 11 1.2 Purpose .11 2. Normative references .11 3. Definitions .13 4. General requirements .17 4.1 Software operability .17 4.2 Test criteria .18 4.3 System reliability 18 4.4 Human factors.18 4.5 Air circuit 18 4.6
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