Method for extracting palladium from low-grade spent alumina carrier catalyst

An alumina carrier, low-grade technology, which is used in the improvement of process efficiency, transportation and packaging, metal processing equipment, etc. Reducing smelting cost, low-cost clean extraction, and remarkable effect of emission reduction

Inactive Publication Date: 2021-01-26
HONGHE COLLEGE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0012] In summary, the existing low-grade invalid alumina-supported palladium catalysts are mainly based on the all-wet method, and the wet extraction method mainly uses strong oxidizing acid to dissolve palladium. The obtained solution not only has a very low palladium content, but also generates A large amount of waste residue, waste liquid, etc., high cost of environmental protection disposal
And the pyromelting that prior art adopts, because low-grade invalidation alumina carrier palladium catalyst content is generally not more than 0.05%, wherein most carrier is the aluminum oxide of high melting point, needs to mix in a large amount of fluxes just can be in conventional smelting furnace Melting at temperatures below 1450°C will inevitably lead to higher smelting costs and poor economic benefits

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  • Method for extracting palladium from low-grade spent alumina carrier catalyst

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Experimental program
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Effect test

Embodiment 1

[0034]See accompanying drawing, condition: take by weighing 100kg of low-grade invalid alumina carrier palladium catalyst, add reducing agent, trapping agent, lime, quartz and binding agent and mix, and the addition amount of trapping agent is low-grade invalid alumina carrier palladium catalyst 15% of the weight ratio, the reducing agent ratio is 10% of the weight ratio of the low-grade invalid alumina carrier palladium catalyst, the lime ratio is 1.0 times the weight ratio of the low-grade invalid alumina carrier palladium catalyst, and the quartz ratio is the low-grade invalid 2.0 times the weight ratio of the palladium catalyst supported on alumina, using a spherical egg forming machine to control the diameter of the pellets to 20mm, and the drying temperature is 250°C; the dried pellets are placed in a smelting furnace and smelted at 1350°C for 60min to obtain Smelting slag and metal melt; use atomized powder spraying to treat the metal melt to obtain palladium-containing ...

Embodiment 2

[0036] See accompanying drawing, condition: take by weighing 100kg of low-grade invalid alumina carrier palladium catalyst, add reducing agent, trapping agent, lime, quartz and binding agent and mix, and the addition amount of trapping agent is low-grade invalid alumina carrier palladium catalyst 15% of the weight ratio, the reducing agent ratio is 10% of the weight ratio of the low-grade invalid alumina carrier palladium catalyst, the lime ratio is 1.0 times the weight ratio of the low-grade invalid alumina carrier palladium catalyst, and the quartz ratio is the low-grade invalid 2.0 times the weight ratio of the palladium catalyst supported on alumina, using a spherical egg forming machine to control the diameter of the pellets to 20mm, and the drying temperature is 250°C; the dried pellets are placed in a smelting furnace and smelted at 1350°C for 60min to obtain Smelting slag and metal melt; use atomized powder spraying to treat the metal melt to obtain palladium-containing...

Embodiment 3

[0038] See accompanying drawing, condition: take by weighing 100kg of low-grade invalid alumina carrier palladium catalyst, add reducing agent, trapping agent, lime, quartz and binding agent and mix, and the addition amount of trapping agent is low-grade invalid alumina carrier palladium catalyst 20% of the weight ratio, the reducing agent proportion is 15% of the weight ratio of the low-grade invalid alumina-supported palladium catalyst, the lime proportion is 1.1 times the weight ratio of the low-grade failed alumina-supported palladium catalyst, and the proportion of the quartz is low-grade failure 2.5 times the weight ratio of alumina-supported palladium catalyst, ball egg forming machine is used to control the pellet diameter to 20mm, and the drying temperature is 200°C; the dried pellets are placed in a smelting furnace and smelted at 1400°C for 60min to obtain Smelting slag and metal melt; use atomized powder spraying to treat the metal melt to obtain palladium-containin...

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Abstract

The invention discloses a method for extracting palladium from a low-grade spent alumina carrier catalyst. The method comprises the following steps of mixing the low-grade spent alumina carrier catalyst with a reducing agent, red iron oxide, a flux, a binder and water for grinding to prepare pellets, drying the pellets, and carrying out reduction smelting to obtain a metal melt and smelting slag;carrying out atomization powder spraying on the metal melt to obtain palladium-containing iron alloy powder; carrying out rust treatment on the palladium-containing iron alloy powder, then conductinggravity separation to obtain palladium concentrate and suspension liquid; filtering the suspension liquid for separating ferric oxide hydrate and rust residual liquid; roasting and dehydrating the ferric oxide hydrate to obtain the red iron oxide, and returning the ferric oxide hydrate to the mixing procedure to be used as a trapping agent; dissolving the palladium concentrate by chlorination, andcarrying out filtering to obtain a palladium-containing pregnant solution and filter residues; and purifying, precipitating and reducing the palladium-containing pregnant solution to obtain palladiumpowder. By adopting the method to extract palladium, the palladium recovery rate is greater than 97.0%, the palladium content in the palladium powder is greater than 99.95%, the trapping agent and the rust liquid can be recycled, the emission reduction effect is remarkable, the extraction cost is low, the related equipment is mature, and the industrialization prospect is good.

Description

technical field [0001] The invention belongs to the field of metallurgy of rare and precious metals, and relates to a method for extracting palladium from low-grade spent alumina carrier catalysts. Background technique [0002] The low-grade invalid alumina carrier palladium catalyst content generally does not exceed 0.05%, but the price of palladium is high, and this invalid catalyst has high value and has important recycling significance. At present, the method for extracting palladium from low-grade spent alumina carrier catalysts is as follows: [0003] Zhang Luxiang and others disclosed a method for extracting high-purity metal palladium from waste palladium-alumina catalysts (application published invention patent number: 201810178788.3). Recovery by leaching, using dilute hydrochloric acid and pro-oxidant H 2 o 2 or NaClO 3 After the leaching solution is precipitated by adding ammonia to remove impurities, butyl sodium xanthate is used as a precipitating agent to ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22B7/00C22B5/10B22F9/08B22F1/00C22B11/02C22B3/26
CPCC22B7/001C22B7/006C22B5/10B22F9/082C22B11/026C22B3/26B22F1/14Y02P10/20
Inventor 范兴祥吴娜李自静毛莹博冯绍平刘卫
Owner HONGHE COLLEGE
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