Technique for extraction separation of quadravalence cerium, thorium, fluorine and cerium less tervalence rare earth from sulphuric acid rare earth solution
The invention relates to a rare earth sulfate technology and a process method, which are applied in the fields of fluorine and cerium-less trivalent rare earth, thorium, extraction and separation of cerium, and non-saponification synergistic extraction agent for extraction and separation, which can solve the problem of low purity, large loss of extractant, waste of fluorine resources, etc. problem, to achieve the effect of simple process flow, increased rare earth yield and low production cost
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Embodiment 1
[0034] Rare earth sulfate solution containing high valence cerium, fluorine, thorium and iron is made from the mixed ore of bastnaesite and monazite, which is roasted by sodium carbonate and leached by sulfuric acid. The raw material is Ce 4+ / ∑Ce is 93% (weight percent), the rare earth concentration REO is 0.3 mol / liter, H + Concentration is 0.5 mol / L, F - at a concentration of 0.1 mol / L, ThO 2 The concentration of Fe is 0.1 g / L, and the concentration of Fe is 0.1 g / L. Extractant is the mixed extractant of 90%P507 and 10%TBP, and concentration is 1.0 mol / liter, and diluent is sulfonated kerosene, and the flow ratio used is organic phase: material liquid=2: 1, through 3 stages of countercurrent extraction, Obtain the raffinate containing cerium (IV), fluorine, thorium and iron organic phase and trivalent rare earth;
[0035] The loaded organic phase after extraction is washed with 1 mol / L sulfuric acid through three stages of countercurrent washing, and the trivalent rare e...
Embodiment 2
[0041] Its process method and operation steps are the same as in Example 1, and the rare earth sulfate solution containing high-valent cerium, fluorine, thorium and iron after oxidation roasting-sulfuric acid leaching of bastnaesite is used as raw material, and the rare earth concentration REO in the raw material solution is 0.4 mol / liter , Ce 4+ / ∑Ce is 97%, H + At a concentration of 1.0 mol / L, ThO 2 The concentration is 0.50 g / L, F - The concentration of Fe is 0.8 mol / L, and the concentration of Fe is 3 g / L. The extractant is a mixed extractant of 95% P507 and 5% TRPO, the concentration is 1.5 mol / liter, the diluent is sulfonated kerosene, and the flow ratio is organic phase:material liquid=3:1. The loaded organic phase after extraction was washed with 5 stages of countercurrent with 3 mol / L sulfuric acid. Fluorine is washed with a nitric acid solution containing 2 mol / liter of aluminum salt and acidity of 1 mol / liter, so that 99% of the fluorine in the organic phase ent...
Embodiment 3
[0043] Its processing method and operating steps are the same as in Example 1, and the rare earth concentration REO is 0.6 mol / liter in the raw material liquid, and the H + At a concentration of 1.0 mol / L, ThO 2 The concentration is 0.30 g / L, F - The concentration of Fe is 0.4 mol / L, and the concentration of Fe is 0.5 g / L. The extractant is a synergistic extractant prepared by 85% P204 and 15% TRPO, the concentration is 1.25 mol / L, and the loaded organic phase after extraction is washed with 2.5 mol / L sulfuric acid through three stages of countercurrent washing. Fluorine is washed with 1.5 mol / liter of aluminum salt nitric acid solution, the acidity is 0.5 mol / liter, and 99% of the fluorine in the organic phase enters the water phase. The loaded organic phase after fluorine washing is back-extracted cerium from the cerium-containing organic phase with 2.5% hydrogen peroxide and 4 mol / liter hydrochloric acid, and 6-stage countercurrent back-extraction, the tetravalent cerium ...
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