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Preparation process for controlling specific surface area of rare earth oxide

A rare earth oxide and specific surface area technology, which is applied in the fields of rare earth metal oxides/hydroxides, rare earth metal compounds, inorganic chemistry, etc., can solve problems such as poor stability, and achieve the effect of stable properties, simple process, and large specific surface area

Active Publication Date: 2017-05-31
广州建丰稀土有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The traditional method of oxalic acid precipitation of rare earth feed liquid is to require the rare earth feed liquid to be at 0.7M / L. Precipitate at a stirring speed of 180-220r / min, and calcinate the product in a calcination furnace at 850-900°C. The specific surface area of ​​the prepared rare earth oxide is 1-2m 2 / g, the stability is poor, therefore, the preparation specific surface area is 3-5 m 2 Rare earth oxide products with good stability between / g have become the focus of current research

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0013] This embodiment adopts the following technical solutions: Step 1:

[0014] Dissolve gadolinium oxide with hydrochloric acid to form a gadolinium chloride solution with a concentration of 1.0M / L. The acidity should be around PH=2, then place it at a temperature between 20-25°C, add glycerol 1000 with a solution quality of 3‰ and stir Uniform as liquid;

[0015] Step 2: Dissolve industrial oxalic acid to a concentration of 15% with deionized water at a temperature of 20-25°C, and filter it as a precipitant;

[0016] Step 3: Add a quarter volume of deionized water at 20-25°C to the reaction kettle, and evenly add the feed liquid prepared in step 1 and the precipitant prepared in step 2 while turning on the stirrer, and control the stirring speed at 80 -100r / min, the feed liquid and precipitant are added within 25-30 minutes, then stirred for 15 minutes, and aged for one hour;

[0017] Step 4: After the precipitation is completed, take away the supernatant, then unload th...

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Abstract

The invention discloses a preparation process for controlling the specific surface area of rare earth oxide and relates to the technical field of chemistry. The preparation process comprises the following steps: dissolving gadolinium oxide into a gadolinium chloride solution with the concentration of 1.0M / L by utilizing hydrochloric acid; dissolving industrial oxalic acid with de-ionized water until the concentration is 15 percent and filtering to obtain a precipitant; adding a quarter volume of de-ionized water at 20 DEG C to 25 DEG C into a reaction kettle; adding material liquid and the precipitant and ageing for one hour; after precipitating, pumping away supernatant; unloading sediment into a washing barrel; after continuously washing for a plurality of times, dispersing the sediment into absolute ethyl alcohol and carrying out ultrasonic oscillation for half an hour; carrying out solid-liquid separation by utilizing a centrifugal machine and calcining to obtain a gadolinium oxide product. The specific surface area range of the product is 3m<2> / g to 5m<2> / g and accords with original expectation. The method has a simple process and low cost and the prepared rare earth oxide has a large specific surface area and more stable properties and is suitable for popularization.

Description

technical field [0001] The invention relates to a preparation process for controlling the specific surface area of ​​rare earth oxides, which belongs to the technical field of chemical industry. Background technique [0002] With the development of rare earth materials in the direction of high precision, the quality requirements for rare earth materials are getting higher and higher, and the physical and chemical indicators are becoming more and more strict. The traditional method of oxalic acid precipitation of rare earth feed liquid is to require the rare earth feed liquid to be at 0.7M / L. Precipitate at a stirring speed of 180-220r / min, and calcinate the product in a calcination furnace at 850-900°C. The specific surface area of ​​the prepared rare earth oxide is 1-2m 2 / g, the stability is poor, therefore, the preparation specific surface area is 3-5 m 2 Rare earth oxide products with good stability between / g have become the focus of current research. Contents of ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01F17/00
CPCC01F17/206C01P2006/12
Inventor 胡彩云李汉文吴华标杨凤霞
Owner 广州建丰稀土有限公司
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