Replaceable natural polysaccharide coating for construction field and preparation method thereof
A polysaccharide and coating technology, applied in the field of replaceable natural polysaccharide coating and its preparation, to achieve the effect of easy degradation and enhanced water resistance
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Embodiment 1
[0037] The polysaccharide coating can be replaced, and the amount of each raw material is calculated by mass percentage: 40 wt% of a 6% nano-silica modified PEG aqueous solution, 20 wt% of a locust bean gum and xanthan gum solution with a mass fraction of 2%, and a surfactant Sodium hexametaphosphate 0.2wt%, bactericide 0.01wt%, thickener hydroxypropyl methylcellulose 0.3%, antifreeze 0.01wt%, defoamer 0.15wt%, filler 15%, the balance of water, and The sum of the contents of each component is 100%.
[0038] The preparation method of the above-mentioned replaceable polysaccharide coating, the specific steps are as follows:
[0039] 1) Dissolve 6g of PEG (molecular weight: 600) in 100ml of water at 90°C to make a 6% PEG aqueous solution;
[0040] 2) Weigh 2g of CaO, first digest CaO with a small amount of water (the molar ratio of water to CaO is 1:1), then add 4g of nano-silica, 0.02g of silane coupling agent KH570, and 0.01g of dodecylsulfonic acid Sodium, 0.02g of antifoami...
Embodiment 2
[0044] The polysaccharide coating can be replaced, and the amount of each raw material is calculated by mass percentage: 40wt% of a PEG aqueous solution with a mass fraction of 6% nanometer calcium carbonate, 20wt% of a locust bean gum and xanthan gum solution with a mass fraction of 2%, and a surfactant of 0.2 % by weight, 0.01% by weight of bactericide, 0.3% by weight of thickener, 0.01% by weight of antifreeze, 0.15% by weight of defoamer, 15% by weight of filler, the balance of water, and the sum of the contents of each component is 100%.
[0045] The preparation method of the above-mentioned replaceable polysaccharide coating, the specific steps are as follows:
[0046] 1) Dissolve 6g of PEG (molecular weight: 600) in 100ml of water at 90°C to prepare a 6% PEG aqueous solution.
[0047] 2) Weigh 2g CaO, first digest CaO with a small amount of water, then add 3g nano-calcium carbonate, 0.02g silane coupling agent KH560, 0.01g sodium dodecylsulfonate, 0.02g defoamer C18 Al...
Embodiment 3
[0051] The polysaccharide coating can be replaced, and the amount of each raw material is calculated by mass percentage: 50 wt% of 6% boric acid cross-linked PVA solution by mass fraction, 10 wt% of xanthan gum solution with 2% mass fraction, 0.2 wt% of surfactant, and 0.01 wt% of bactericide wt%, 0.3% thickener, 0.01wt% antifreeze, 0.15wt% defoamer, 15% filler, the rest of water, and the sum of the contents of each component is 100%.
[0052] The preparation method of the above-mentioned replaceable polysaccharide coating, the specific steps are as follows:
[0053] 1) Dissolve 6g of PVA in 100ml of water at 90°C to make a 6% PVA aqueous solution;
[0054] 2) Add a boric acid solution with a concentration of 5% to the aqueous solution obtained in step 1), in an amount of 1% of the PVA content, heat to 65° C., react for 3 hours, and cool to obtain a boric acid crosslinked PVA solution;
[0055] 3) Dissolve 2g xanthan gum in 100ml water at 90°C to form a 2% polysaccharide aque...
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