Preparation of low iron and high specific surface area cerium lanthanum oxide
A high specific surface area, lanthanum cerium oxide technology, applied in chemical instruments and methods, inorganic chemistry, rare earth metal compounds, etc., can solve problems such as easy precipitation, unfavorable recycling, and reduced polishing efficiency, and achieve stable quality and easy industrial production Effect
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Embodiment 1
[0015] Feed liquid: LaCeCL 6 ,concentration
[0016] REO=46g / L, La 2 o 3 / TREO=28.96%, CeO 2 / TREO=71.04%, [H + ] = 1 Mole, Fe 2 o 3 / TREO=0.018%, organic phase: i-(C of 25wt% 8 h 17 ) 3 N, with kerosene as diluent, 5wt% i-C 8 h 17 OH is a modifier. Put 1000ml of the above feed solution and 500ml of the above organic phase into a 3000ml beaker, stir and mix thoroughly for 3 minutes, and let stand for 5 minutes to separate layers. ICP Determination of Fe in Water Phase 2 o 3 =0.0045wt%, the organic phase was washed twice with water and then set aside. Add 0.1 g of ammonium pyrrolidine dithiocarbamate to the above raffinate, stir for 10 minutes, and filter. Determination of Fe in Water Phase by ICP-MS 2 o 3 = 0.0013 wt%.
[0017] After iron removal: LaCeCL 6 Heat to 55°C, slowly add NH with a concentration of 120g / L 4 HCO 3 solution, precipitated, filtered and washed 3 times with water. Put this lanthanum cerium carbonate into a crucible, keep the temperatu...
Embodiment 2
[0018] Embodiment 2. is the same as embodiment 1, but anionic extractant is i-(C 10 h 21 ) 3 N.
Embodiment 3
[0019] Example 3 is the same as Example 1, but the calcination temperature is 450°C for 1 hour, 500°C for 2 hours, and 750°C for 2 hours.
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