Method for preparing acid-base from rare-earth sodium saponification waste water

A technology of sodium saponification and waste water, applied in chemical instruments and methods, separation methods, metallurgical waste water treatment and other directions, can solve the problems of increasing environmental protection burden, waste of resources, etc. The effect of reducing material and energy consumption

Active Publication Date: 2013-05-08
HANGZHOU BLUETEC ENVIRONMENTAL TECH
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  • Claims
  • Application Information

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Problems solved by technology

Domestic rare earth smelters generally use acid-base neutralization as waste water and discharge it up

Method used

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  • Method for preparing acid-base from rare-earth sodium saponification waste water

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Embodiment Construction

[0028] With reference to the accompanying drawings, the rare earth sodium saponification wastewater entering the process of the present invention is first treated in step (1): the ammonium fluoride wastewater is treated with a precipitation and ultrafiltration system, large particles are removed by precipitation, and ultrafiltration (UF) Remove small suspended solids and colloids; in step (1), the recovery rate of ultrafiltration is controlled above 90%, and the removal rate of total suspended solids TSS reaches above 90%. The above parameters can also be adjusted according to the needs of subsequent processing. The water produced by the ultrafiltration system enters step (2) for treatment, and the concentrated water enters the sedimentation tank for precipitation. The membrane modules used in the ultrafiltration system can use hollow fiber membranes, and the membrane materials are selected from polypropylene, polyvinylidene fluoride, polyvinyl chloride, and polyethersulfone. ...

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Abstract

The invention provides a method for preparing acid-base from rare-earth sodium saponification waste water. The method comprises the steps that: firstly sodium saponification waste water is treated by a sedimentation basin and an ultrafiltration system; water produced by the ultrafiltration system enters an oil removal system to be treated, and concentrated water enters the sedimentation basin to be settled; water produced by the oil removal system enters a nanofiltration system to be treated; water produced by the nanofiltration system enters a bipolar membrane system to be treated, and concentrated water returns to the sedimentation basin; water treated by the bipolar membrane system is acid-base, and residual thin brine is conveyed to an electrodialysis system to be treated; concentrated water passing through the electrodialysis system returns to the bipolar membrane system for producing the acid-base, part of freshwater enters the bipolar membrane system to serve as make-up water, and part of freshwater serves as recycle water. According to the method, a pretreatment and membrane integration technology is adopted for treating rare earth metallurgy waste water, a final permeating liquid is used for production, concentration desalination treatment is carried out on smelting waste water by using the characteristics of ultrafiltration, electrodialysis, a nano-filtration membrane and a bipolar membrane, a concentrated liquid is used for preparing acid-base, and freshwater subjected to electrodialysis treatment is recycled; and the rare-earth sodium saponification waste water is comprehensively treated.

Description

technical field [0001] The invention relates to a process for preparing acid-base from rare earth sodium saponification wastewater. Background technique [0002] As a strategic resource, rare earth has been highly valued by many countries in the world. Although the proportion of my country's rare earth industry in the entire national economy is very small, with an annual output value of less than 1 billion US dollars, it has been highly valued by government departments at all levels because of its unique strategic position, especially in the past 10 years. With the development of rare earth products in many application fields, the state pays more and more attention to the rare earth industry. Industrial policies have been introduced many times, which on the one hand promotes the overall structure optimization of the rare earth industry, and on the other hand promotes the development of the rare earth industry. Rare earth smelting is the main method in the separation of rare ...

Claims

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Application Information

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IPC IPC(8): C02F9/06B01D61/44C02F1/52C02F1/44C02F1/40C02F1/469C02F103/16
CPCY02A20/124Y02A20/131
Inventor 楼永通李嘉楼亚男
Owner HANGZHOU BLUETEC ENVIRONMENTAL TECH
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