Method for analyzing and detecting lead impurity element in beryllium-aluminum alloy
A technology of beryllium aluminum alloy and impurity elements, which is applied in the field of analysis and detection of impurity element lead in beryllium aluminum alloy, can solve the problems of low detection sensitivity and interference of lead element, and achieve stable measurement results, high accuracy and good reproducibility Effect
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Embodiment 1
[0051] Step 1: Prepare lead-containing beryllium aluminum alloy sample solution to be tested
[0052] Weigh 0.5 g of the lead-containing beryllium aluminum alloy sample to be tested and 5 ml of 20% sodium hydroxide solution, place it in a polytetrafluoroethylene plastic beaker, and dissolve it at low temperature. After the lead-containing beryllium aluminum alloy sample to be tested is completely decomposed , add a small amount of 30% hydrogen peroxide dropwise for oxidation, heat and decompose excess hydrogen peroxide after oxidation, cool to obtain a mixed solution, add 30 ml of 50% hydrochloric acid and 10 ml of 50% nitric acid, after acidification Transfer to a glass beaker, heat until the solution is completely clear, transfer it into a volumetric flask after cooling, dilute to 100 ml with water, and shake well to obtain the lead-containing beryllium aluminum alloy sample solution to be tested;
[0053] Step 2: Draw the standard working curve of lead element
[0054] The...
Embodiment 2
[0072] Step 1: Prepare lead-containing beryllium aluminum alloy sample solution to be tested
[0073] Weigh 0.5 g of the lead-containing beryllium aluminum alloy sample to be tested and 10 ml of 20% sodium hydroxide solution, place them in a polytetrafluoroethylene plastic beaker, and dissolve them at low temperature. After the lead-containing beryllium aluminum alloy sample to be tested is completely decomposed , add a small amount of 30% hydrogen peroxide dropwise for oxidation, heat and decompose excess hydrogen peroxide after oxidation, cool to obtain a mixed solution, add 40 ml of 50% hydrochloric acid and 10 ml of 50% nitric acid, after acidification Transfer to a glass beaker, heat until the solution is completely clear, transfer it into a volumetric flask after cooling, dilute to 100 ml with water, and shake well to obtain the lead-containing beryllium aluminum alloy sample solution to be tested;
[0074] Step 2: Draw the standard working curve of lead element
[0075...
Embodiment 3
[0093] Step 1: Prepare lead-containing beryllium aluminum alloy sample solution to be tested
[0094] Weigh 0.5 g of the lead-containing beryllium aluminum alloy sample to be tested and 5 ml of 20% sodium hydroxide solution, place it in a polytetrafluoroethylene plastic beaker, and dissolve it at low temperature. After the lead-containing beryllium aluminum alloy sample to be tested is completely decomposed , add a small amount of 30% hydrogen peroxide dropwise for oxidation, heat and decompose excess hydrogen peroxide after oxidation, cool to obtain a mixed solution, add 30 ml of 50% hydrochloric acid and 10 ml of 50% nitric acid, after acidification Transfer to a glass beaker, heat until the solution is completely clear, transfer it to a volumetric flask after cooling, dilute to 100 ml with water, and shake well to obtain the lead-containing beryllium aluminum alloy sample solution to be tested;
[0095] Step 2: Draw the standard working curve of lead element
[0096] The w...
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