Preparation method of chalk-powder composite material for enriching rhodium ion in mine-tailing wastewater

A composite material and chalk powder technology, applied in chemical instruments and methods, water/sewage treatment, adsorption water/sewage treatment, etc., can solve problems such as unfavorable rare earth recovery, increased oxalic acid consumption, and affecting the purity of rare earth products

Active Publication Date: 2016-04-13
TAICANG BIQI NEW MATERIAL RES & DEV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The chemical composition of the leaching solution of ionic rare earth mines is complex, and has the following characteristics: ①The concentration is very low, and the rare earth concentration of the leachate is generally 0.5~2g / L. For the leaching tailing liquid of rare earth mines, the concentration is lower, and the precipitation cost is high, so it is not recovered However, the concentration of extraction and separation operations needs to reach 250g / L, which brings many problems to the recovery of subsequent rare earths, and is not conducive to improving the recovery rate of rare earths; A soluble complex Re[Al(C 2 o 4 ) 3 ], etc., increasing the consumption of oxalic acid, the yield of rare earth is greatly reduced, if NH 4 HCO 3 Precipitation, impurities will form co-precipitates, affecting the purity of rare earth products; ③The daily processing capacity is large, and the volume of the leached solution is large. Usually, multiple sedimentation tanks are required to remove impurities and precipitate rare earths, and the load of post-processing operations is large. ; ④ The composition fluctuates greatly, and the grades of rare earth ores in different mining areas are also different, and the process conditions and operating environment during leaching are changed, so the concentration of the rare earth material liquid leached is different, and the chemical composition is also different. bad recycling

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] Rapeseed stalks are harvested, washed with tap water, and dried.

[0017] Dissolve hydrazine hydrate, ammonia water, 1,3-propylenediamine, and ethylenediamine in deionized water, the concentration of hydrazine hydrate is 3g / L, the concentration of ammonia water is 3g / L, and the concentration of 1,3-propylenediamine is 6g / L , the concentration of ethylenediamine is 1g / L to obtain an ammoniated solution.

[0018] 50 g of washed rape stalks were placed in 500 mL of ammoniated solution, placed at 60° C. for 100 minutes, rinsed and dried to obtain ammoniated rape stalks.

[0019] Dissolve acrylic acid and polyethylene glycol 4000 in deionized water, the mass concentration of acrylic acid is 20%, and the mass concentration of polyethylene glycol 4000 is 0.3%, to obtain acrylic acid / polyethylene glycol 4000 mixed aqueous solution.

[0020] Put 100g of chalk powder in 500mL of acrylic acid / polyethylene glycol 4000 mixed aqueous solution, stir for 1 hour, filter, dry at 100°C f...

Embodiment 2

[0025] Rapeseed stalks are harvested, washed with tap water, and dried.

[0026] Dissolve hydrazine hydrate, ammonia water, 1,3-propylenediamine, and ethylenediamine in deionized water, the concentration of hydrazine hydrate is 6g / L, the concentration of ammonia water is 6g / L, and the concentration of 1,3-propylenediamine is 3g / L , the concentration of ethylenediamine is 3g / L, and the ammoniated solution is obtained.

[0027] 50 g of washed rape stalks were placed in 500 mL of ammoniated solution, placed at 60° C. for 100 minutes, rinsed and dried to obtain ammoniated rape stalks.

[0028] Dissolve acrylic acid and polyethylene glycol 4000 in deionized water, the mass concentration of acrylic acid is 30%, and the mass concentration of polyethylene glycol 4000 is 0.1%, to obtain acrylic acid / polyethylene glycol 4000 mixed aqueous solution.

[0029] Put 100g of chalk powder in 2000mL of acrylic acid / polyethylene glycol 4000 mixed aqueous solution, stir for 1 hour, filter, dry a...

Embodiment 3

[0034] Rapeseed stalks are harvested, washed with tap water, and dried.

[0035] Dissolve hydrazine hydrate, ammonia water, 1,3-propylenediamine, and ethylenediamine in deionized water, the concentration of hydrazine hydrate is 4g / L, the concentration of ammonia water is 5g / L, and the concentration of 1,3-propylenediamine is 5g / L , the concentration of ethylenediamine is 2g / L, and the ammoniated solution is obtained.

[0036] Put 100 g of washed rape stalks in 500 mL of ammoniated solution, place at 60° C. for 100 minutes, rinse and dry to obtain ammoniated rape stalks.

[0037] Dissolve acrylic acid and polyethylene glycol 4000 in deionized water, the mass concentration of acrylic acid is 25%, and the mass concentration of polyethylene glycol 4000 is 0.2%, to obtain acrylic acid / polyethylene glycol 4000 mixed aqueous solution.

[0038] Put 100g of chalk powder in 1000mL of acrylic acid / polyethylene glycol 4000 mixed aqueous solution, stir for 1 hour, filter, dry at 100°C for 4...

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PUM

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Abstract

The invention belongs to the field of composite materials, and relates to a preparation method of a chalk-powder composite material for enriching rhodium ion in mine-tailing wastewater. The provided preparation method comprises filling holes of ammoniated brassica-campestris straws with modified chalk powder. The concrete technology comprises cleaning brassica-campestris straws, ammoniating, modifying chalk powder, and preparing the composite material. Compared with brassica-campestris straws, the composite material substantially improves in rhodium ion saturation enrichment amount, and overflow pollution of brassica-campestris straw organic carbon during water processing is avoided. The prepared composite material improves the rhodium ion enrichment amount to 111.7 mg / g, is applicable to process mine-tailing rhodium-containing wastewater, and is extensive in market prospect.

Description

technical field [0001] The invention belongs to the technical field of composite materials, and in particular relates to a method for preparing a chalk powder composite material enriched with rhodium ions in tailings wastewater. Background technique [0002] The chemical composition of the leaching solution of ionic rare earth mines is complex, and has the following characteristics: ①The concentration is very low, and the rare earth concentration of the leachate is generally 0.5~2g / L. For the leaching tailing liquid of rare earth mines, the concentration is lower, and the precipitation cost is high, so it is not recovered However, the concentration of extraction and separation operations needs to reach 250g / L, which brings many problems to the recovery of subsequent rare earths, and is not conducive to improving the recovery rate of rare earths; A soluble complex Re[Al(C 2 o 4 ) 3 ], etc., increasing the consumption of oxalic acid, the yield of rare earth is greatly red...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J20/12B01J20/30C02F1/28C02F1/58
Inventor 蓝碧健
Owner TAICANG BIQI NEW MATERIAL RES & DEV
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