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Method for separating enriched uranium, thorium mixture and rare earth from preferred slag

A technology for enriching uranium and mixtures, applied in the direction of improving process efficiency, etc., can solve the problems of slow extraction rate, leaching, low extraction rate and efficiency, increase the load of evaporation and concentration, etc., to achieve accelerated separation rate and efficiency, Improved leaching-extraction process, increased speed and efficiency

Inactive Publication Date: 2007-08-08
YANGZHOU UNIV +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The main disadvantages of this separation method are:
[0003] ①The separation process route is long, both leaching equipment and extraction equipment are required, and the production capacity of the equipment is low;
[0004] ②As the extraction proceeds, thorium and uranium are continuously transferred from the aqueous phase to the organic extraction phase, which greatly reduces the concentration of thorium and uranium in the aqueous phase, thereby slowing down the extraction rate and resulting in a mixture of thorium and uranium in the extracted phase. The content of rare earth in the raffinate phase is relatively low, and it is impossible to reach the saturation concentration. To reach the saturation concentration, the load of subsequent evaporation and concentration must be increased; the content of the rare earth in the obtained raffinate phase also does not reach the saturation concentration. In the separation process, the amount of material is large, and it is difficult to remove impurities and separate
Not only is the comprehensive yield of thorium, uranium and rare earths low, but also the amount of feed liquid to be treated in the subsequent refining process is large. If clean production with zero emissions is to be achieved, the treatment cost will be high, and environmental pollution will be aggravated if not treated ;
[0005] ③ The leaching and extraction rate and efficiency in the existing separation process are low, and the economic and social benefits are not high

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] Main equipment: probe type leaching-extraction kettle, analysis and testing instruments;

[0030] Chemical raw materials: water, nitric acid, TBP, kerosene, excellent slag (thorium-rich, uranium rare earth);

[0031] The separation process steps are as follows:

[0032] Put the excellent slag, leaching solution and extract into a 1000ml stirring leaching-extraction kettle according to the ratio of 1000g: 3L: 1L, wherein the added amount of the excellent slag is 100g, and then add 25% of the solution prepared by water and nitric acid respectively. Nitric acid aqueous solution 0.3L and 0.1L extract, described extract is prepared by TBP (extractant) and kerosene (solvent), the probe of probe-type ultrasonic generator is placed in this mixed material, control operating temperature 5 ℃, Adjust the ultrasonic generator, the frequency is adjusted to 19kHz, and the ultrasonic intensity is 0.2W / cm 2 , under the action of an ultrasonic generator, the leaching-extraction separat...

Embodiment 2

[0035] Equipment: Vibrator-type ultrasonic leaching-extraction tank, analysis and testing equipment.

[0036] Chemical raw materials: water, nitric acid, TBP, kerosene, excellent slag (rich thorium, uranium rare earth).

[0037] The separation process steps are as follows: put the excellent molten slag, leaching solution, and extracting solution into a 1000ml oscillator type ultrasonic leaching-extraction tank according to the ratio of 1000g: 5L: 3L, wherein the added amount of excellent molten slag (thorium-rich, uranium rare earth) is 100g, 0.5L of 25% nitric acid aqueous solution (formed by nitric acid and water) and extract 0.3L, the extractant in the described extract is TBP, and solvent is kerosene, controls operating temperature 40 ℃, regulates ultrasonic generator, The intensity of ultrasonic action is 2.0W / cm 2 , the ultrasonic frequency is adjusted to 25kHz, and the leaching-extraction separation operation is carried out under the action of the ultrasonic generator....

Embodiment 3

[0039] Embodiment 3: equipment: vibrating plate type ultrasonic leaching-extraction tank, analytical testing instrument;

[0040] Chemical raw materials: water, nitric acid, TBP, kerosene, excellent slag (thorium-rich, uranium rare earth);

[0041]The separation process steps are as follows: put the excellent molten slag, leaching solution, and extracting solution into a 1000ml vibrating plate cleaning tank according to the ratio of 1000g: 6L: 6L, wherein the added amount of excellent molten slag (thorium-rich, uranium rare earth) is 100g, 25% 0.6L of aqueous nitric acid solution and 0.6L of extract, the extractant in the extract is TBP, the solvent is kerosene, the operating temperature is controlled at 60°C, the ultrasonic generator is adjusted, and the ultrasonic action intensity is 20.0W / cm 2 , the ultrasonic frequency is adjusted to 80kHz, and the leaching-extraction separation operation is carried out under the action of the ultrasonic generator. After 30 minutes of ultr...

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Abstract

The invention discloses a separating method of enriched uranium and thorium composition and rare earth, which comprises the following steps: leaching slag; extracting; separating extracting phase, residual phase and insoluble solid; obtaining the product.

Description

Technical field: [0001] The invention relates to a method for separating and enriching uranium, thorium mixture and rare earth from high-quality molten slag, which belongs to the field of hydrometallurgy. Background technique: [0002] Excellent slag is a mixture of rare earths containing thorium and uranium. Its main chemical components are hydroxides of rare earth, thorium and uranium, a small amount of silicate and insoluble minerals. After leaching, extraction and separation, excellent slag can be obtained Thorium, uranium mixtures and rare earths. At present, the following methods are usually used to separate the mixture of thorium and uranium and rare earths. The main separation steps are: 1. Nitric acid leaching and dissolving: use nitric acid aqueous solution to soak and dissolve the excellent molten slag in the leaching equipment; 2. Solid-liquid separation: Solid-liquid separation and impurity removal to obtain a mixed material liquid containing thorium, uranium a...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22B3/00C22B3/06C22B3/26
CPCY02P10/20
Inventor 许文林王雅琼魏晓廷朱金玉魏巍丁培兴徐珊周玲
Owner YANGZHOU UNIV
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