AASHTO TP 106-2013 Standard Method of Test for Determination of Heavy Metal Content of Glass Beads Using X-Ray Fluorescence (XRF).pdf
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1、Standard Method of Test for Determination of Heavy Metal Content of Glass Beads Using X-Ray Fluorescence (XRF) AASHTO Designation: TP 106-13 (2015)1American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-4c TP 106-1 AASHTO
2、 Standard Method of Test for Determination of Heavy Metal Content of Glass Beads Using X-Ray Fluorescence (XRF) AASHTO Designation: TP 106-13 (2015)11. SCOPE 1.1. This test method covers the determination of the total heavy metal content of glass beads using X-ray fluorescence (XRF). Heavy metals in
3、clude lead, antimony, and arsenic. 1.2. The values stated in SI units are to be regarded as the standard. 1.3. 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
4、and health practices and determine the applicability of regulatory limitations prior to use. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standard: M 247, Glass Beads Used in Pavement Markings 3. SUMMARY OF TEST METHOD 3.1. This test method is used to determine the total concentration of heavy metals using X
5、RF testing. Testing may be performed with a Field Portable XRF (FP-XRF) or a laboratory XRF. 3.2. For an FP-XRF, the glass beads to be tested are placed in a loose state in a sample cup. 3.3. For a laboratory model XRF, the glass beads can be tested either in a loose state in a sample cup using a he
6、lium flush or as a pressed pellet. Note 1If using a laboratory model XRF, testing the glass beads in a loose state using a helium flush is the preferred method. 4. SIGNIFICANCE AND USE 4.1. This method is designed to identify the presence and concentration of heavy metals in samples of glass beads.
7、The method determines the total concentration and may be used to determine compliance with total concentration limits in M 247. 5. APPARATUS 5.1. XRF SpectrometerEither a field portable or a laboratory model XRF spectrometer may be used. If a laboratory model XRF spectrometer is used, it must be cap
8、able of operating with the analysis chamber under vacuum or flushed by helium (see Note 1). 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-4c TP 106-2 AASHTO 5.2. Sample CupIf the test includes using
9、 an FP-XRF or with helium flush in a laboratory model XRF, use a thin-walled container to hold the loose glass beads. Sample cup includes a collar and cap. 5.3. Pressed Pellet PressIf the test includes using a vacuum in a laboratory model XRF, use a pressed pellet press to prepare the pressed pellet
10、 for testing. 5.4. Mixer MillIf the test includes using a vacuum in a laboratory model XRF, use a mixer mill to pulverize and blend the glass bead sample with the binding agent to prepare the pressed pellet for testing. 6. MATERIALS 6.1. For loose samples prepared in samples of beads tested in a sam
11、ple cup, polypropylene film, filter paper, and polyester fiber stuffing are needed. 6.1.1. FilmPolypropylene film. 6.1.2. Filter PaperFilter paper disk to fit over the sample. 6.1.3. Fiber StuffingPolyester fiber stuffing such as used for aquarium filter or pillow filling. 6.2. For pressed pellets,
12、a binder is required to form the glass beads into a pellet. 6.2.1. BinderLow absorption wax or cellulose binding agent. 6.2.2. Aluminum CupsUsed as backing for the pressed pellet sample. 7. SAMPLING AND SAMPLE PREPARATION 7.1. SamplingTake a representative sample of the glass beads. Store the sample
13、 in a container until ready for the test. 7.2. Sample Preparation of Loose Glass Beads in Sample CupIf the sample is to be tested using an FP-XRF or a laboratory model XRF with helium flush, the glass beads are tested in a sample cup. Use the following steps to prepare the sample: 7.2.1. Place polyp
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