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Treatment agent for textile dyeing waste water

A wastewater treatment agent, textile printing and dyeing technology, applied in the direction of adsorption water/sewage treatment, ion exchange water/sewage treatment, flocculation/sedimentation water/sewage treatment, etc., can solve the problem of low grade, structural damage, small proportion, etc. problem, to achieve the effect of simple process, excellent effect and easy operation

Inactive Publication Date: 2006-09-13
顾金龙 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] 1. Selected raw materials: calcite, zeolite, attapulgite, bentonite and bauxite. Although they have been beneficiated and called "concentrate", they are actually roughed and their grades are not high;
[0007] 2. Zeolite, attapulgite and bentonite are not acidified and other treated, but their activity cannot be improved or the activity is not greatly improved by calcination; the same is true for calcite; only bauxite has an effect, but its proportion smaller
[0008] 3. Send the non-metallic minerals calcite, zeolite, attapulgite, bentonite and bauxite into the calciner for calcination according to a certain ratio. Most of the minerals have been melted, and the original structure is completely destroyed, so that another new phase mineral is formed. It is impossible to use the original mineral adsorption and other characteristics, which will reduce its effect on water purification.
It is impossible to use raw mineral adsorption and other properties, but it may reduce its effect on water purification treatment
[0014] 4. The grinding fineness of more than 600 meshes does not improve the purification effect of "ultrafine water quality improvement powder", but increases the production and processing costs

Method used

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Examples

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Effect test

example 1

[0039] The printing and dyeing wastewater of Huayuan Textile Printing and Dyeing Factory in Hefei City, Anhui Province is dark brown and purple red, with a pungent smell, pH=8.5, CODcr is 283mg / L, turbidity is 42, and chroma is 16. The water quality after being treated with the textile printing and dyeing wastewater treatment agent of the present invention has pH=7.2, CODcr is 74mg / L, turbidity is 6, chroma is 2, and removal rate is respectively: CODcr74%, turbidity 85.71% and color The water quality is clear and the treatment effect is very good; the national textile dyeing and finishing industry pollutant discharge standard (GB427-82): CODcr = 100mg / L, chroma = 40, pH = 6-9. It can be seen that the water quality of the textile printing and dyeing wastewater treated by this treatment agent is better than the national discharge standard of this type of wastewater.

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PUM

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Abstract

A treating agent for the sewage generated by fabric printing and dyeing is prepared from active bentone, active palygorskite clay, aluminum polychloride and polyacrylamide through pre-treating, proportional mixing, and stirring to obtain powder.

Description

Technical field: [0001] The invention relates to wastewater treatment, in particular to a textile printing and dyeing wastewater treatment agent. Background technique: [0002] At present, textile printing and dyeing wastewater treatment technologies include physical and chemical methods, biochemical methods, electrochemical methods, chemical methods and photochemical methods, among which biochemical methods are the main ones, and some chemical methods are also connected in series, which is basically the same in foreign countries. But so far, although various treatment technologies have their own characteristics and limitations for the treatment of textile printing and dyeing wastewater, their effects are different. Especially in recent years, with the development of chemical fiber fabrics, the rise of imitation silk and the finishing of printing and dyeing With the advancement of technology, PVA pulp, rayon alkali hydrolyzate (mainly phthalic acid substances) and new additi...

Claims

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Application Information

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IPC IPC(8): C02F1/42C02F1/28C02F1/52
Inventor 周济元顾金龙周茂崔炳芳肖惠良胡青黄俊杰
Owner 顾金龙
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