Coal gangue phase analysis method based on energy dispersion X-ray spectrum
A technology of X-ray spectroscopy and energy dispersion, which is applied in the field of environmental protection (utilization of solid waste) and the field of material analysis and testing, can solve the problem that the type and content of amorphous phase cannot be obtained
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Embodiment 1
[0033] Embodiment 1. Analysis of the phase type and spatial distribution of a kind of activated coal gangue. Follow the steps below to analyze:
[0034] (1) Using X-ray fluorescence spectroscopy to analyze the chemical composition of activated coal gangue. The test results show that the chemical composition of this activated coal gangue is: SiO 2 55.80%, Al 2 o 3 17.70%, CaO13.80%, Fe 2 o 3 3.33%, K 2 O1.99%, MgO1.17%, Na 2 O0.46%, SO 3 0.41%, TiO 2 0.60%. According to the above test results, it is preliminarily determined that the following elements need to collect energy spectrum distribution images: Si, Al, Ca, Fe, K, Mg, Na, S, Ti, O.
[0035] (2) X-ray diffraction was used to analyze the mineral composition of activated coal gangue, the results were as follows figure 2 shown. The test results show that the crystalline substances in the activated coal gangue are mainly quartz (SiO 2 ), limestone (CaCO 3 ), calcium aluminate feldspar (Ca 2 Al 2 SiO 7 ), ma...
Embodiment 2
[0041] Embodiment 2. Analysis of the phase type and content of a kind of activated coal gangue. Follow the steps below to analyze:
[0042] (1) Steps (1)-(3) are the same as in Example 1.
[0043] (2) Select a typical area in the activated coal gangue sample, and collect backscattered electron images and energy spectrum distribution images of Si, Al, Ca, Fe, K, Mg, Na, S, F, Ti and O elements. The results are as follows: Figure 7 shown. It can be seen that signals are detected on the energy spectrum distribution images of each element. Among them, the number of white spots appearing in the energy spectrum images of O, Si and Al elements is large, and the enrichment degree is large; Ca and K elements are next; S, Fe, Na, Ti, F and Mg elements appear in the energy spectrum images of less white spots. In view of the observation results of the elemental energy spectrum surface distribution image are very similar to the law reflected in Example 1, therefore, in Figure 7 In t...
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