Fresh-keeping packaging material with composite coating of PVA-liquid paraffin and with combined modification of nanosized TiO2-SiO2 and preparation method thereof
A liquid paraffin and coating film preservation technology, which is applied in the fields of PVA-liquid paraffin composite coating film preservation packaging materials and their preparation, composite coating film preservation packaging materials for food packaging and their preparation fields, and can solve the problems of poor water resistance and moisture resistance, surface Yellowing and other problems, to achieve the effect of reducing the moisture permeability, changing the penetration path, and improving the antibacterial and fresh-keeping function
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Embodiment 1
[0037] Nano TiO 2 , SiO 2 Added to a concentration of 50 g / L H2O PVA (w / v 水 ) in an aqueous solution, placed in an ultrasonic water bath, and ultrasonicated for 15 minutes under the condition of a power density of 65W / L, nano-TiO 2 and SiO 2 After being evenly dispersed in the PVA solution, the mixed solution was stirred and heated to 88°C for a constant temperature reaction until the PVA was completely dissolved, and then the compound surfactant (Span80: Tween80=1:1 (w / w), the amount added accounted for 40% of the liquid paraffin (w / w)) Add a certain amount of liquid paraffin, heat and stir in a water bath to 88°C and mix evenly, mix the liquid paraffin and PVA solution, and add glutaraldehyde 5g / L at the same time H2O , cross-linking reaction at a constant temperature of 88°C for 50min; stirring and cooling to room temperature, and then preparing a nano-modified composite coating film packaging material.
[0038] Nano-TiO 2 , SiO 2 The dosage is designed according to...
Embodiment 2
[0045] 0.2g / L H2O nano-SiO 2 , 0.15g / L H2O TiO 2 Added to a concentration of 40g / L H2O PVA aqueous solution, placed in an ultrasonic water bath, ultrasonic 15min under the condition of power density 58W / L, nano-TiO 2 and SiO 2 After being evenly dispersed in the PVA solution, the mixed solution was stirred and heated to 85°C for a constant temperature reaction until the PVA was completely dissolved, and then the compound surfactant (Span80: Tween80=1:0.7 (w / w), the amount added accounted for 20% of the liquid paraffin (w / w)) add 4g / L H2O In liquid paraffin, heat and stir in a water bath to 85°C and mix evenly, mix liquid paraffin and PVA solution, and add glutaraldehyde 4 g / L at the same time H2O , cross-linking reaction at a constant temperature of 85°C for 40 minutes; then stirred and cooled to room temperature to prepare a nano-modified composite coating film packaging material. The film-forming efficiency of the composite coating film fresh-keeping packaging materia...
Embodiment 3
[0047] 0.5g / L H2O nano-SiO 2 , 0.4g / L H2O TiO 2 Added to a concentration of 70g / L H2O PVA aqueous solution, placed in an ultrasonic water bath, ultrasonic 25min under the condition of power density 70W / L, nano-TiO 2 and SiO 2 After being evenly dispersed in the PVA solution, the mixed solution was stirred and heated to 95°C for a constant temperature reaction until the PVA was completely dissolved, and then the compound surfactant (Span80: Tween80=1:1.7 (w / w), the amount added accounted for 50% of the liquid paraffin Add (w / w)) to 1% liquid paraffin, heat and stir in a water bath to 95°C and mix evenly, mix the liquid paraffin and PVA solution, and add glutaraldehyde 6 g / L at the same time H2O , cross-linking reaction at a constant temperature of 95°C for 60 minutes; then stirred and cooled to room temperature to prepare a nano-modified composite coating film packaging material. The film-forming efficiency of the composite coating film fresh-keeping packaging material wa...
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