Method for preparing high-purity tellurium dioxide by using crude carp as raw material
A high-purity technology of tellurium dioxide, applied in chemical instruments and methods, selenium/tellurium oxides/hydroxides, selenium/tellurium compounds, etc., can solve the problems of few reports on the preparation of tellurium dioxide, and achieve simple methods , the effect of high product purity
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Embodiment 1
[0022] Step 1, the outside of the reaction vessel is cooled by cooling water to ensure that the reaction temperature is maintained below 35-40°C;
[0023] Step 2, concentrated nitric acid is mixed with deionized water and is 20% dilute nitric acid solution with mass fraction, adds prepared dilute nitric acid solution to reaction vessel;
[0024] Step 3: Crushing the coarse tellurium into a fine powder with a particle size of 80 meshes, slowly adding the fine powdered coarse tellurium into the dilute nitric acid solution prepared in the above step 2 and stirring evenly at a low speed so that it does not settle to the bottom of the reaction vessel Complete reaction before, the liquid-solid ratio of dilute nitric acid solution and crude tellurium is 5;
[0025] Step 4, the tellurium-containing solution generated by the reaction of step 3 is neutralized to pH=7-8 with ammonia water, and the reaction generates tellurium dioxide;
[0026] In step five, the tellurium dioxide product...
Embodiment 2
[0031] Step 1, the outside of the reaction vessel is cooled by cooling water to ensure that the reaction temperature is maintained below 18-22°C;
[0032] Step 2, concentrated nitric acid is mixed with deionized water and is 35% dilute nitric acid solution with mass fraction, adds prepared dilute nitric acid solution to reaction vessel;
[0033] Step 3: Grinding the coarse tellurium into a fine powder with a particle size of 110 mesh, slowly adding the fine powdered coarse tellurium into the dilute nitric acid solution prepared in the above step 2 and stirring evenly at a low speed so that it does not settle to the bottom of the reaction vessel Complete reaction before, the liquid-solid ratio of dilute nitric acid solution and crude tellurium is 7;
[0034] Step 4, the tellurium-containing solution generated by the reaction of step 3 is neutralized to pH=7-8 with ammonia water, and the reaction generates tellurium dioxide;
[0035] Step 5, the tellurium dioxide product that s...
Embodiment 3
[0040] Step 1, the outside of the reaction vessel is cooled by cooling water to ensure that the reaction temperature is maintained below 23-27°C;
[0041] Step 2, concentrated nitric acid is mixed with deionized water and is that 30% dilute nitric acid solution is mixed with deionized water, adds prepared dilute nitric acid solution to reaction vessel;
[0042] Step 3: Grinding the coarse tellurium into a fine powder with a particle size of 100 mesh, slowly adding the fine powdered coarse tellurium into the dilute nitric acid solution prepared in the above step 2 and stirring evenly at a low speed so that it does not settle to the bottom of the reaction vessel Complete reaction before, the liquid-solid ratio of dilute nitric acid solution and crude tellurium is 6;
[0043] Step 4, the tellurium-containing solution generated by the reaction of step 3 is neutralized to pH=7-8 with ammonia water, and the reaction generates tellurium dioxide;
[0044] Step 5, the tellurium dioxid...
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