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GBZ21277-2007 English PDF

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GBZ21277-2007: Rapid screening of lead, mercury, chromium, cadmium and bromine of regulated substances in electrical and electronic equipment -- X-ray fluorescence spectrometry
Status: Obsolete
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GB/Z 21277-2007English439 Add to Cart 3 days [Need to translate] Rapid screening of lead, mercury, chromium, cadmium and bromine of regulated substances in electrical and electronic equipment -- X-ray fluorescence spectrometry Obsolete GB/Z 21277-2007

PDF similar to GBZ21277-2007


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Basic data

Standard ID GB/Z 21277-2007 (GB/Z21277-2007)
Description (Translated English) Rapid screening of lead, mercury, chromium, cadmium and bromine of regulated substances in electrical and electronic equipment -- X-ray fluorescence spectrometry
Sector / Industry National Standard
Classification of Chinese Standard L10
Classification of International Standard 31.020
Word Count Estimation 11,157
Date of Issue 2007-12-20
Date of Implementation 2008-06-01
Quoted Standard GB/T 8170; GB/T 15000.5
Regulation (derived from) ?National Standard Announcement 2007 No.13 (Total No.113)
Issuing agency(ies) Ministry of Health of the People's Republic of China
Summary This standard specifies the use of X-ray fluorescence spectrometry for rapid screening of electrical and electronic products, restricting the use of lead substances, determination of cadmium and bromine, mercury, chromium. Wherein the determination of chromium and bromine, is a sample of the total chromium and total bromine. X -ray fluorescence spectroscopy of the document provides guidance technology, including energy dispersive X- ray fluorescence spectroscopy and wavelength dispersive X-ray fluorescence spectroscopy, also applies to portable or hand-held X -ray spectroscopy.

GBZ21277-2007: Rapid screening of lead, mercury, chromium, cadmium and bromine of regulated substances in electrical and electronic equipment -- X-ray fluorescence spectrometry


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Rapid screening of lead, mercury, chromium, cadmium and bromine of regulated substances in electrical and electronic equipment. X-ray fluorescence spectrometry ICS 31.020 L10 National Standardization Guidance Technical Document of the People's Republic of China Restricted substances in electrical and electronic products, lead, mercury, chromium, Rapid screening of cadmium and bromine by X-ray fluorescence spectrometry Released on.2007-12-20 General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China China National Standardization Administration issued

Foreword

Appendix A of this guidance technical document is a normative appendix, and Appendix B, Appendix C and Appendix D are informative appendices. This guidance document is presented by the Environmental Standardization Technical Committee (SAC/TC297) of the National Electrical and Electronic Products and Systems. Return to the mouth. This guiding technical document drafting unit. Guangdong Entry-Exit Inspection and Quarantine Bureau of the People's Republic of China, China Quality Certification Center. The main drafters of this guiding technical document. Song Wuyuan, Zheng Jianguo, Xiao Qian, Chen Wei, Zhou Minghui, Huang Wenzhao. This guidance document is the first release. Restricted substances in electrical and electronic products, lead, mercury, chromium, Rapid screening of cadmium and bromine by X-ray fluorescence spectrometry [Safety Tips]. X-ray fluorescence spectroscopy uses radioactive radiation that is dangerous to humans, so the instrument must be used when using the instrument. Manufacturers affirmed and national safety regulations, and personnel using the equipment need to conduct pre-machine safety training and regular safety inspections.

1 Scope

This guidance document specifies the use of X-ray fluorescence spectrometry for rapid screening of restricted substances such as lead, mercury, and chromium in electrical and electronic products. A method for determining cadmium and bromine, wherein the measured chromium and bromine refer to total chromium and total bromine in the sample. The X-ray fluorescence spectra specified in this guidance document include energy dispersive X-ray fluorescence spectroscopy (EDXRF) and wavelength dispersion. X-ray fluorescence spectroscopy (WDXRF) is also suitable for portable or portable X-ray spectroscopy.

2 Normative references

The terms in the following documents become the terms of this standard by reference to this guidance technical file. For dated references, All subsequent amendments (not including errata content) or revisions do not apply to this guidance document, however, The parties to the agreed technical documentation have investigated whether the latest versions of these documents can be used. Any undated reference document, the most The new version applies to this guidance document. GB/T 8170 numerical rounding rules GB/T 15000.5 standard sample working guide (5) chemical composition standard sample technical general rules GB/T 16597 Methods of analysis of metallurgical products - General rules for X-ray fluorescence spectrometry Accuracy (accuracy and precision) of ISO 5725 measurement methods and results

3 Terms and definitions

The following terms and definitions apply to this guidance document. 3.1 Using primary X-ray photons or other microscopic ions to excite atoms in the substance to be detected, causing them to produce fluorescence (secondary X-rays) Method of material composition analysis and chemical state study. Energy dispersive X-ray fluorescence spectroscopy (EDXRF) and wavelength dispersive X-rays are classified according to excitation, dispersion and detection methods. Fluorescence spectroscopy (WDXRF). 3.2 Refers to a sample that can be placed in the sample chamber of the instrument for X-ray intensity measurement. 3.3 The sample is made into a powder of a specific fineness, and then obtained by pressure molding under specific conditions, has a certain strength and the analysis surface is flat. A test piece with slip, no obvious cracks, etc. 3.4 A detection unit that is uniformly composed of one or more substances and can no longer be mechanically separated into different materials.

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