Selenium and zinc doped silicon dioxide composite sol as well as preparation method and application thereof
A composite sol and silicon dioxide technology, applied in the directions of silicon dioxide, silicon oxide, nanotechnology, etc., can solve the problems of the decline in the ability of plant stems, leaves and roots to absorb heavy metals, the effect time is not long, and the effect is not obvious. Achieve the effect of promoting rice supply, reducing absorption and enrichment, and ensuring photosynthesis
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Embodiment 1
[0033] First prepare 2 parts of 450ml of 0.5M absolute ethanol solution and add 250g of Na 2 SiO 3 , stirred vigorously, fully dissolved and cooled to room temperature. Pass through the hydrogen-type strongly acidic cation multi-stage resin exchange column at a constant speed of 6 drops / min, and control the pH value of the collected liquid at the outlet of the column between 3 and 4 to obtain an acidic silica sol precursor. The silica sol precursor contains silica The mass percentage is 25%.
[0034] Weigh 5g of sodium selenite, dissolve it in 50ml of 0.1mol / L dilute hydrochloric acid, place it in a magnetic water bath stirrer at 1000r / min at 60°C, stir and slowly add 1.5g of polyvinylpyrrolidone, and control the stirring time at 20min , to prepare emulsified selenium doping solution.
[0035] Weigh 25g of zinc acetate, dissolve it in 50ml of prepared absolute ethanol, stir in a magnetic water bath stirrer at 60°C and slowly add 3g of polyvinylpyrrolidone for 20min to prepa...
Embodiment 2
[0040] First prepare 2 parts of 450ml of 0.5M absolute ethanol solution and add 250g of Na 2 SiO 3 , stirred vigorously, fully dissolved and cooled to room temperature. Pass through the hydrogen-type strongly acidic cation multi-stage resin exchange column at a constant speed of 6 drops / min, and control the pH value of the collected liquid at the outlet of the column between 3 and 4 to obtain an acidic silica sol precursor. The silica sol precursor has a silica mass of The percentage is 25%.
[0041] Weigh 5g of sodium selenate, dissolve it in 50ml of 0.1mol / L dilute hydrochloric acid, place it in a magnetic water bath stirrer at 1000r / min at 60°C, stir and slowly add 1.5g of polyvinylpyrrolidone, control the stirring time at 20min, An emulsified selenium doping solution is prepared.
[0042] Weigh 25g of zinc sulfate, dissolve it in 50ml of prepared absolute ethanol, stir in a magnetic water bath stirrer at 60°C and slowly add 3g of polyvinylpyrrolidone for 20min to prepar...
Embodiment 3
[0046] First prepare 2 parts of 450ml of 0.5M absolute ethanol solution and add 250g of Na 2 SiO 3 , stirred vigorously, fully dissolved and cooled to room temperature. Pass through the hydrogen-type strongly acidic cation multi-stage resin exchange column at a constant speed of 6 drops / min, and control the pH value of the collected liquid at the outlet of the column between 3 and 4 to obtain an acidic silica sol precursor. The silica sol precursor has a silica mass of The percentage is 25%.
[0047] Weigh 5g of potassium selenite, dissolve it in 50ml of 0.1mol / L dilute hydrochloric acid, place it in a magnetic water bath stirrer at 1000r / min at 60°C, stir and slowly add 1.5g of polyvinylpyrrolidone, and control the stirring time at 20min , to prepare emulsified selenium doping solution.
[0048] Weigh 25g of zinc acetate, dissolve it in 50ml of prepared absolute ethanol, stir in a magnetic water bath stirrer at 60°C and slowly add 3g of polyvinylpyrrolidone for 20min to pr...
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