A flexible anti-pollution ceramic membrane and its preparation method
An anti-pollution, ceramic membrane technology, applied in the field of membrane separation, can solve the problems of high production cost, concentration difference polarization, easy pollution, etc., and achieve the effects of reducing preparation cost, improving service life, and strong anti-pollution ability.
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Embodiment 1
[0026] Example 1: This flexible anti-pollution ceramic membrane is prepared by blending-compression molding with the following composition by mass percentage: nano-Al modified by coupling agent 2 o 3 45%, ethylene-vinyl acetate copolymer 46%, sodium bicarbonate 6%, triallyl isocyanurate 3%;
[0027] The nano Al modified by the coupling agent 2 o 3 It is to ultrasonically hydrolyze the aluminate coupling agent in an ethanol solution with a volume concentration of 95% at a pH of 3 for 25 minutes to obtain a hydrolyzate of the aluminate; then add nano-Al 2 o 3 Powder, mix evenly, react at 120°C for 30 minutes, filter, dry the solid, and disperse to obtain modified nano-Al 2 o 3 powder; wherein the amount of aluminate is aluminate and nano-Al 2 o 3 8% of the total mass, nano-Al 2 o 3 The amount of aluminate and nano-Al 2 o 3 92% of the total mass.
[0028] The preparation method of the above-mentioned flexible anti-pollution ceramic membrane:
[0029] (1) At 120°C, th...
Embodiment 2
[0036] Embodiment 2: The flexible anti-pollution ceramic membrane is prepared by blending-compression molding method with the following mass percentage composition: nano-SiO modified by coupling agent 2 40%, ethylene-vinyl acetate copolymer (vinyl acetate content is 40wt.%) 50%, PVA 4%, triallyl cyanurate 6%;
[0037]The nano-SiO2 modified by the coupling agent is to ultrasonically hydrolyze the titanate coupling agent at a pH value of 3.5 in an ethanol solution with a volume concentration of 95% for 30min to obtain a titanate hydrolyzate; then add nano-SiO 2 , mixed evenly, reacted at 100°C for 30 minutes, dried, and dispersed to obtain modified nano-SiO 2 powder; wherein the amount of titanate coupling agent is the coupling agent and nano-SiO 2 10% of the total mass, nano-SiO 2 The amount of coupling agent and nano-SiO 2 90% of the total mass.
[0038] The preparation method of the above-mentioned flexible anti-pollution ceramic membrane:
[0039] (1) At 130°C, nano-SiO...
Embodiment 3
[0046] Example 3: The flexible anti-pollution ceramic membrane is prepared by blending-compression molding method with the following mass percentage composition: nano-TiO modified by coupling agent 2 55%, ethylene propylene rubber 40%, PEG 3%, tricarboxymethylpropane trimethacrylate 2%;
[0047] The nano-TiO modified by the coupling agent 2 The silane coupling agent is ultrasonically hydrolyzed in an ethanol solution with a volume concentration of 95% at a pH of 4.2 for 30 minutes to obtain a hydrolyzate of the silane coupling agent; then add nano-TiO 2 Powder, mixed evenly, reacted at 100°C for 30 minutes, dried, and dispersed to obtain modified nano-TiO 2 powder; wherein the amount of silane coupling agent is coupling agent and nano-TiO 2 15% of the total mass, nano-TiO 2 The amount of coupling agent and nano-TiO 2 85% of the total mass;
[0048] The preparation method of the above-mentioned flexible anti-pollution ceramic membrane:
[0049] (1) At 140 °C, the coupling...
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