Device for continuous electrolytic reduction of trivalent europium

A technology of trivalent europium and electrolytic cell, which is applied in the direction of electrolysis process, electrolysis components, cells, etc. It can solve the problems of zinc-containing wastewater, poor reduction effect, and independent control of electrolysis conditions, etc.

Inactive Publication Date: 2016-08-17
GUANGDONG INST OF RARE METALS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

The disadvantage of europium oxide production technology is that the reduction process consumes a large amount of zinc powder, and the subsequent process needs to remove zinc, resulting in zinc-containing wastewater, which increases the difficulty of wastewater treatment
ZL02232964.1 discloses a device for electrolytic reduction of europium. In this device, the anolyte and catholyte flow countercurrently. Although ...

Method used

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  • Device for continuous electrolytic reduction of trivalent europium

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Embodiment Construction

[0017] figure 1 Shown is an apparatus for the continuous electrolytic reduction of trivalent europium according to the present invention.

[0018] The electrolytic cell 12 is connected with the anolyte header tank 11 through pipelines, the anolyte header tank 11 stores the rare earth chloride material liquid, and provides the anolyte to the anode chamber of the electrolytic cell 12, and the anolyte header tank 11 is provided with an anolyte inlet and an anolyte outlet , valves and flow meters.

[0019] The first electrolytic cell 12 is communicated with the catholyte high level tank 14 by pipeline, and the catholyte high level tank 14 stores the rare earth chloride solution containing trivalent europium ions, provides catholyte to the catholyte chamber of the first electrolyzer 12, and catholyte The head tank 14 is provided with a catholyte inlet, a catholyte outlet, a valve and a flow meter.

[0020] The anolyte collection tank 6 communicates with the anode chambers of each...

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Abstract

The invention discloses a device for continuous electrolytic reduction of trivalent europium. The device comprises electrolytic cells, a catholyte overhead tank, an anolyte overhead tank, a catholyte collection tank, an anolyte collection tank and a rare earth liquid tank. According to the device, cathode chambers among the electrolytic cells communicate with one another in a series connection mode, and catholyte flows from the cathode chamber of the previous electrolytic cell to the cathode chamber of the next electrolytic cell and is reduced step by step; anode chambers of the electrolytic cells do not communicate with one another, anolyte in the anode chambers flows independently, and the flow is independently controlled. The electric current density of the electrolytic cells and the acid concentration of the catholyte and the anolyte in the electrolytic cells can be independently controlled, and therefore electrolysis of the electrolytic cells is stable, and the reduction effect is good.

Description

technical field [0001] The invention relates to a device for electrolytic reduction of trivalent europium, in particular to a device for continuous electrolytic reduction of trivalent europium. Background technique [0002] Europium is a good luminescent material activator, such as: Eu 3+ Is the activator of red luminescent material, Eu 2+ It is an activator for blue luminescent materials. Europium oxide, as an activator for luminescent materials, is widely used in LEDs, tricolor energy-saving lamps, high-definition display screens, and new X-ray medical diagnostic systems. At the same time, europium oxide can also be used in lasers, superconducting materials, magnetic bubble storage devices, control materials, shielding materials and structural materials of atomic reactors. Therefore, europium oxide has shown an extremely important position and role in the rapidly developing photoelectric new material technology. [0003] At present, the preparation method of high-purit...

Claims

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Application Information

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IPC IPC(8): C25B1/00C25B9/18C25B15/00
CPCC25B1/00C25B15/00C25B9/70
Inventor 刘志强邱显扬高远曹洪杨李伟郭秋松张魁芳朱薇金明亚
Owner GUANGDONG INST OF RARE METALS
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