Method for preparing silicon-aluminium-barium alloy sample wafer and application thereof
A silicon-aluminum-barium and alloy technology, applied in the field of preparation of silicon-aluminum-barium alloy samples, can solve the problems of inability to carry out chemical analysis and damage platinum alloy crucibles, reduce matrix effect and mineral effect, improve analysis speed, and avoid damage Effect
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Embodiment 1
[0017] A preparation method of a silicon-aluminum-barium alloy sample, comprising the steps of:
[0018] 1) Accurately weigh 0.2000g of the sample and place it in a 150ml polytetrafluoroethylene beaker, add 10ml of distilled water and 1.000g of sodium hydroxide (premium pure), heat on a low-temperature electric heating plate, and cover the beaker with a watch glass during the reaction;
[0019] 2) After all the liquid in the beaker is evaporated to dryness, take it out and cool it slightly, rinse the watch glass with 5ml of distilled water, then rinse the watch glass with 5ml of nitric acid (analytical pure), 2ml of hydrochloric acid (analytical pure), put the beaker on a low-temperature stove and heat until Remove all the liquid in the beaker after evaporation;
[0020] 3) Crush the solid in the beaker with a glass rod, transfer it into a platinum alloy crucible filled with 5.0000g lithium tetraborate (a special flux for X-ray fluorescence analysis), and mix well;
[0021] 4...
Embodiment 2
[0026] A preparation method of a silicon-aluminum-barium alloy sample, comprising the steps of:
[0027] 1) Accurately weigh 0.3000g of the sample and place it in a 150ml polytetrafluoroethylene beaker, add 20ml of distilled water and 3.000g of sodium hydroxide (premium pure), heat on a low-temperature electric heating plate, and cover the beaker with a watch glass during the reaction;
[0028] 2) After all the liquid in the beaker is evaporated to dryness, take it out and cool it slightly, rinse the watch glass with 10ml of distilled water, then rinse the watch glass with 10ml of nitric acid (analytical pure), 5ml of hydrochloric acid (analytical pure), put the beaker on a low-temperature stove and heat it to Remove all the liquid in the beaker after evaporation;
[0029] 3) Crush the solid in the beaker with a glass rod, transfer it into a platinum alloy crucible filled with 10.0000g lithium tetraborate (a special flux for X-ray fluorescence analysis), and mix well;
[0030...
Embodiment 3
[0035] A preparation method of a silicon-aluminum-barium alloy sample, comprising the steps of:
[0036] 1) Accurately weigh 0.2000g of the sample and place it in a 150ml polytetrafluoroethylene beaker, add 10ml of distilled water and 3.000g of sodium hydroxide (premium pure), heat on a low-temperature electric heating plate, and cover the beaker with a watch glass during the reaction;
[0037] 2) After all the liquid in the beaker is evaporated to dryness, take it out and cool it slightly, rinse the watch glass with 5ml distilled water, then rinse the watch glass with 10ml nitric acid (analytical pure), 3ml hydrochloric acid (analytical pure), put the beaker on a low-temperature stove and heat until Remove all the liquid in the beaker after evaporation;
[0038] 3) Crush the solid in the beaker with a glass rod, transfer it into a platinum alloy crucible filled with 10.0000g lithium tetraborate (a special flux for X-ray fluorescence analysis), and mix well;
[0039] 4) Clean...
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Abstract
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