A method for the reuse and treatment of acidic wastewater produced by the preparation of titanium-silicon molecular sieves
A titanium-silicon molecular sieve, acid wastewater technology, applied in ion-exchange water/sewage treatment, natural water treatment, water/sewage treatment, etc., can solve the problem of excessive sulfuric acid-hydrogen peroxide mixture, environmental pollution of waste acid, and safety risks and other problems, to achieve the effect of avoiding emission and post-treatment process, good adsorption performance and long service life
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Embodiment 1
[0037] The preparation process of the regeneration medium: take 100g of hydrogen-type strong acid gel-type styrene-based cation exchange resin with a dry weight of 100g, take 100g of granular activated carbon, mix them evenly, and slowly heat to 200°C in a nitrogen atmosphere to make the hydrogen-type strong acid gel Colloidal styrene-based cation exchange resin is partially carbonized, and the obtained dark brown partial carbide is impregnated with saturated sodium silicate solution and dried at 60°C for 2 hours, then washed with 1600ml of 1.0mol / L dilute hydrochloric acid solution and loaded Packed column as regeneration medium.
[0038] The recovery and treatment process of acidic waste liquid: take 300g of the acidic waste water collected in the above comparative example 2, according to 2h -1 The space velocity is continuously injected from the upper end of the packed column for regeneration treatment, and the filtrate obtained after regeneration treatment, that is, the re...
Embodiment 2
[0042]The preparation process of the regeneration medium: take 50g of hydrogen-type strongly acidic gel-type styrene-based cation exchange resin with a dry weight of 50g, take 150g of granular activated carbon, mix evenly, and slowly heat to 200°C in a nitrogen atmosphere to make hydrogen-type strong acid gel Colloidal styrene-based cation exchange resin is partially carbonized, and the obtained dark brown partial carbide is impregnated with saturated sodium silicate solution and dried at 60°C for 2 hours, then washed with 1600ml of 0.5mol / L dilute hydrochloric acid solution and loaded Packed column as regeneration medium.
[0043] The recovery and treatment process of acidic waste liquid: take 300g of the acidic waste water collected in the above comparative example 2, according to 0.5h -1 The space velocity is continuously injected from the upper end of the packed column for regeneration treatment, and the filtrate obtained after regeneration treatment, that is, the recovere...
Embodiment 3
[0047] The preparation process of the regeneration medium: take a hydrogen-type strong acid gel-type styrene-based cation exchange resin with a dry weight of 150g, take 50g of granular activated carbon, mix them evenly, and slowly heat to 250°C in a nitrogen atmosphere to make the hydrogen-type strong acid gel. Colloidal styrene-based cation exchange resin is partially carbonized, and the obtained dark brown partial carbide is impregnated with saturated sodium silicate solution and dried at 100°C for 0.5h, then washed with 2400m1.5mol / L dilute hydrochloric acid solution and loaded into a packed column as a regeneration medium.
[0048] The recovery and treatment process of acidic waste liquid: take 300g of the acidic waste water collected in the above comparative example 2, according to 5h -1 The space velocity is continuously injected from the upper end of the packed column for regeneration treatment, and the filtrate obtained after regeneration treatment, that is, the recove...
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Abstract
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Application Information
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