Preparation method of polyurethane cellulose composite oil water separation thermal insulating aerogel
A technology of oil-water separation and polyurethane, applied in separation methods, liquid separation, chemical instruments and methods, etc., can solve the problems of poor oil-water separation effect and low mechanical properties, reduce pollution, improve grafting efficiency, and broaden the application range Effect
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Embodiment 1
[0035] (1) Homogeneous functionalization reaction of microcrystalline cellulose
[0036] Measure 16ml of absolute ethanol and 4ml of deionized water into the ball mill tank, and use ultrasonic dispersion for 10 minutes to obtain a clear and transparent composite solution A. Add 1 g of silane coupling agent to composite solution A, add dropwise acetic acid to adjust the pH to 5, then weigh 1 g of microcrystalline cellulose and add it to the ball mill jar. Finally, the ball mill tank was loaded into a ball mill and continued to react at 300 rpm for 6 hours to obtain a composite solution B. Use a Buchner funnel to filter and wash the composite solution B to obtain a filter residue, and wash it several times to remove the incompletely reacted silane coupling agent. Finally, the filter residue was freeze-dried for 48 hours using a freeze dryer to obtain functionalized microcrystalline cellulose.
[0037] (2) Preparation of Polyurethane Cellulose Composite Oil-Water Separation The...
Embodiment 2
[0040] (1) Homogeneous functionalization reaction of microcrystalline cellulose
[0041] Carry out the functionalization reaction of microcrystalline cellulose according to example 1
[0042] (2) Preparation of Polyurethane Cellulose Composite Oil-Water Separation Thermal Insulation Aerogel
[0043] Take 3g (35wt%) water-based polyurethane and add it to 60ml deionized water, stir magnetically at room temperature for 6h to obtain a uniform dispersion, add 0.06g functionalized microcrystalline cellulose and continue stirring for 12h to obtain composite solution C, and then add composite solution C Freeze drying with liquid nitrogen for 6 hours to obtain composite material A, and then put composite material A into a vacuum freeze dryer to volatilize ice crystals, and finally obtain polyurethane cellulose composite oil-water separation thermal insulation airgel.
Embodiment 3
[0045] (1) Homogeneous functionalization reaction of microcrystalline cellulose
[0046] Carry out the functionalization reaction of microcrystalline cellulose according to example 1
[0047] (2) Preparation of high-strength and high-toughness polyurethane cellulose composite oil-water separation thermal insulation airgel
[0048] Take 3g (35wt%) water-based polyurethane and add it to 60ml deionized water, stir magnetically at room temperature for 6h to obtain a uniform dispersion, add 0.06g functionalized microcrystalline cellulose and continue stirring for 12h to obtain composite solution C, and then add composite solution C Freeze drying with liquid nitrogen for 8 hours to obtain composite material A, and then put composite material A into a vacuum freeze dryer to volatilize ice crystals, and finally obtain polyurethane cellulose composite oil-water separation thermal insulation airgel.
[0049] The compression properties of the polyurethane cellulose composite oil-water s...
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