Wir benötigen Ihre Einwilligung zur Verwendung der einzelnen Daten, damit Sie unter anderem Informationen zu Ihren Interessen einsehen können. Klicken Sie auf "OK", um Ihre Zustimmung zu erteilen.
Standard Practice for Use of the Ethanol-Chlorobenzene Dosimetry System
Name übersetzen
NORM herausgegeben am 1.10.2016
Bezeichnung normen: ASTM/ISO 51538-17
Ausgabedatum normen: 1.10.2016
SKU: NS-683194
Zahl der Seiten: 11
Gewicht ca.: 33 g (0.07 Pfund)
Land: Amerikanische technische Norm
Kategorie: Technische Normen ASTM
Keywords:
absorbed dose, dose, dose measurement, dosimeter, dosimetry system, ECB, electron beam, ethanol-chlorobenzene dosimeter, gamma radiation, ionizing radiation, irradiation, photons, radiation, radiation processing, reference-standard dosimeter, X-radiation, ICS 17.240,, ICS Number Code 17.240 (Radiation measurements)
Significance and Use |
4.1 The ECB dosimetry system provides a reliable means of measuring absorbed dose to water. It is based on a process of radiolytic formation of hydrochloric acid (HCl) in aqueous ethanolic solutions of chlorobenzene by ionizing radiation (4.2 The dosimeters are partly deoxygenated solutions of chlorobenzene (CB) in 96 volume % ethanol in an appropriate container, such as a flame-sealed glass ampoule. Radiation chemical yields (G) for the formation of HCl in typical ECB solution formulations are given in Table 1. 4.3 The irradiated solutions indicate
absorbed dose by the amount of HCl formed. A number of analytical
methods are available for measuring the amount of HCl in ethanol
4.4 The concentration of chlorobenzene in
the solution can be varied so as to simulate a number of materials
in terms of the photon mass energy-absorption coefficients
(μ4.5 The ECB dosimetry system may be used
with other radiation types, such as neutrons (15) , and protons (16). Meaningful dosimetry of any
radiation types and energies novel to the system's use requires
that the respective radiation chemical responses applicable under
the circumstances be established in advance.
|
1. Scope |
1.1 This practice covers the preparation, handling, testing, and procedure for using the ethanol-chlorobenzene (ECB) dosimetry system to measure absorbed dose to water when exposed to ionizing radiation. The system consists of a dosimeter and appropriate analytical instrumentation. For simplicity, the system will be referred to as the ECB system. The ECB dosimeter is classified as a type I dosimeter on the basis of the effect of influence quantities. The ECB dosimetry system may be used as a reference standard dosimetry system or as a routine dosimetry system. 1.2 This document is one of a set of standards that provides recommendations for properly implementing dosimetry in radiation processing, and describes a means of achieving compliance with the requirements of ISO/ASTM Practice 52628 for the ECB system. It is intended to be read in conjunction with ISO/ASTM Practice 52628. 1.3 This practice describes the mercurimetric titration analysis as a standard readout procedure for the ECB dosimeter when used as a reference standard dosimetry system. Other readout methods (spectrophotometric, oscillometric) that are applicable when the ECB system is used as a routine dosimetry system are described in Annex A1 and Annex A2. 1.4 This practice applies only to gamma radiation, X-radiation/bremsstrahlung, and high energy electrons. 1.5 This practice applies provided the following conditions are satisfied: 1.5.1 The absorbed dose range is between 10 Gy and 2 MGy for gamma radiation and between 10 Gy and 200 kGy for high current electron accelerators (1, 2).2 (Warning—the boiling point of ethanol chlorobenzene solutions is approximately 80 °C. Ampoules may explode if the temperature during irradiation exceeds the boiling point. This boiling point may be exceeded if an absorbed dose greater than 200 kGy is given in a short period of time.) 1.5.2 The absorbed-dose rate is less than 106 Gy s−11.5.3 For radionuclide gamma-ray sources, the initial photon energy is greater than 0.6 MeV. For bremsstrahlung photons, the energy of the electrons used to produce the bremsstrahlung photons is equal to or greater than 2 MeV. For electron beams, the initial electron energy is greater than 8 MeV Note 1: The same response relative to 60Co gamma radiation was obtained in high-power bremsstrahlung irradiation produced by a 5 MeV electron accelerator (4). Note 2: The lower energy limits are appropriate for a
cylindrical dosimeter ampoule of 12-mm diameter. Corrections for
dose gradients across the ampoule may be required for electron
beams. The ECB system may be used at lower energies by employing
thinner (in the beam direction) dosimeters (see ICRU Report 35).
The ECB system may also be used at X-ray energies as low as 120 kVp
Note 3: The effects of size and shape of the dosimeter on the
response of the dosimeter can adequately be taken into account by
performing the appropriate calculations using cavity theory
1.5.4 The irradiation temperature of the
dosimeter is within the range from −30 °C to 80 °C.
Note 4: The temperature dependence of dosimeter response is
known only in this range (see 5.2). For use outside this range, the
dosimetry system should be calibrated for the required range of
irradiation temperatures.
1.6 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. Specific warnings are given in 1.5.1, 9.2 and 10.2. 1.7 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee. |
Wollen Sie sich sicher sein, dass Sie nur die gültigen technischen Normen verwenden?
Wir bieten Ihnen eine Lösung, die Ihnen eine Monatsübersicht über die Aktualität der von Ihnen angewandten Normen sicher stellt.
Brauchen Sie mehr Informationen? Sehen Sie sich diese Seite an.
Letzte Aktualisierung: 2024-10-14 (Zahl der Positionen: 2 350 903)
© Copyright 2024 NORMSERVIS s.r.o.