Adsorbent for efficiently removing arsenite ion in water and preparation method thereof
A technology of arsenite and adsorbent, which is applied in chemical instruments and methods, adsorption water/sewage treatment, water pollutants, etc., can solve the problem of low removal efficiency of arsenite ions, and achieve fast adsorption speed and excellent adsorption Ability, high efficiency effect
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Embodiment 1
[0034] Dissolve copper nitrate, manganese nitrate and ferric nitrate in deionized water in a molar ratio of 4.5:1.5:2, stir at room temperature until clear, record as solution A; dissolve sodium hydroxide in deionized water, stir at room temperature until clear , denoted as solution B; quickly drop solution B into solution A, when the pH value of the solution stops at 8.0, continue stirring for 2 hours, pour the solution into the crystallization kettle, and perform hydrothermal treatment at 105 ℃ for 5 hours, filter, wash, and heat at 100 The adsorbent product A was obtained by drying at ℃ for 10 h.
[0035] 12g of adsorbent A was added to 1L aqueous solution containing 500mg of arsenite ions at 20°C, and the content of arsenite ions in the water was detected after stirring for 20min. The results are listed in Table 1.
Embodiment 2
[0037] Dissolve copper nitrate, manganese nitrate and ferric nitrate in deionized water in a molar ratio of 3:3:2, stir at room temperature until clear, and record as solution A; dissolve sodium hydroxide in deionized water, stir at room temperature until clear , denoted as solution B; quickly drop solution B into solution A, when the pH value of the solution stops at 8.0, continue stirring for 2 hours, pour the solution into the crystallization kettle, and perform hydrothermal treatment at 105 ℃ for 5 hours, filter, wash, and heat at 100 The adsorbent product B was obtained by drying at ℃ for 10 h.
[0038] 12g of adsorbent B was added to 1L aqueous solution containing 500mg of arsenite ion at 20°C, and the content of arsenite ion in the water was detected after stirring for 20min. The results are listed in Table 1.
Embodiment 3
[0040] Dissolve copper nitrate, manganese nitrate and lanthanum nitrate in deionized water in a molar ratio of 4.5:1.5:2, stir at room temperature until clear, and record as solution A; dissolve sodium hydroxide in deionized water, stir at room temperature until clear , denoted as solution B; quickly drop solution B into solution A, when the pH value of the solution stops at 8.0, continue stirring for 2 hours, pour the solution into the crystallization kettle, and perform hydrothermal treatment at 105 ℃ for 5 hours, filter, wash, and heat at 100 The adsorbent product C was obtained by drying at ℃ for 10 h.
[0041]12g of adsorbent C was added to 1L aqueous solution containing 500mg of arsenite ion at 20°C, and the content of arsenite ion in the water was detected after stirring for 20min. The results are listed in Table 1.
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