Preparation method of supported layered magnesium oxyhydroxide composite material
A technology of magnesium oxyhydroxide and composite materials, which is applied in the field of preparation of phosphate materials in the purification of biochemical tail water, can solve the problems of low utilization efficiency of loaded nanoparticles, small size characteristics of nanoparticles, slow adsorption and mass transfer rate, etc., and achieve easy Large-scale commercial production, good stability and low price
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Embodiment 1
[0023] Measure 25 g of D201 anion exchange resin (produced by Hangzhou Zhengguang Industrial Co., Ltd., the same below) as a carrier material, place it in 2.5 L of 5% magnesium nitrate aqueous solution, control the reaction temperature at 40 °C, and fully stir the reaction for 10 h. The Mg is gradually diffused to the inner surface of the anion exchange resin pores. Then the resin was filtered and placed in 1500mL of 3% sodium hydroxide solution for in-situ precipitation reaction at room temperature, the precipitation reaction time was controlled to be 10h, and after the reaction was completed, it was filtered and heat-treated at 40°C for 5h to obtain the Supported magnesium oxyhydroxide composite materials, such as figure 1 As shown, its loading is 5.9%.
[0024] Put 5mL of the above composite material in a glass adsorption column (ф12×220mm) 4 2- =200mg / L, Cl - =100mg / L,NO 3 - =160mg / L, pH=5) Flow through the adsorption column equipped with composite materials from top...
Embodiment 2
[0026] Measure 50g of 201x7 type anion exchange resin (manufactured by Tianjin Bohong Resin Technology Co., Ltd.) as a carrier material, place it in 1600mL of 40% magnesium chloride aqueous solution, control the reaction temperature at 60°C, fully stir the reaction for 12 hours, so that Mg can gradually diffuse to the inner surface of the anion exchange resin pores. Then the resin is filtered and placed in 2000mL of 8% sodium hydroxide solution for in-situ precipitation reaction at room temperature, the precipitation reaction time is controlled to be 12h, and after the reaction is completed, it is filtered and heat-treated at 60°C for 8h to obtain the The loaded magnesium oxyhydroxide composite material has a loading capacity of 21.8%.
[0027] Put 30mL of the above composite material in a glass adsorption column (ф20×420mm) and phosphate-containing surface water (P=2mg / L and SO 4 2-=180mg / L, Cl-=200mg / L, NO 3 - =220mg / L, pH=10) Flow through the adsorption column equipped ...
Embodiment 3
[0029] Measure 20 g of 717-type anion exchange resin (produced by Nanda Resin Factory in Langfang, Hebei Province) as a carrier material, place it in 400 mL of 30% magnesium nitrate solution, control the reaction temperature at 50 ° C, and fully stir the reaction for 11 hours to make Mg gradually diffuse to The inner surface of the pores of anion exchange resin. Then the resin was filtered and placed in 1500mL of 6% sodium hydroxide solution for in-situ precipitation reaction at room temperature, the precipitation reaction time was controlled to be 11h, after the reaction was completed, it was filtered and heat treated at 50°C for 6h to obtain the The loaded magnesium oxyhydroxide composite material has a loading capacity of 18.9%.
[0030] Put 20mL of the above composite material in a glass adsorption column (ф20×420mm) and phosphate-containing wastewater (P=3mg / L and SO 4 2- =150mg / L, Cl - =220mg / L,NO 3 - =240mg / L, pH=6) Flow through the adsorption column equipped with ...
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