Treatment process for acrylic fiber waste water

A waste water treatment, waste water technology, applied in the direction of water/sewage multi-stage treatment, water/sludge/sewage treatment, general water supply saving, etc., to achieve the effect of reducing costs and realizing recycling

Active Publication Date: 2014-11-19
BEIJING CYCLE COLUMBUS ENVIRONMENTAL SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] For example: Chinese invention patent CN201110307877.1 discloses a treatment method for acrylic fiber wastewater, which uses ultrasonic pretreatment of acrylic fiber wastewater to remove oligomers and long-term biodegradable Chain macromolecules are decomposed and degraded to improve biodegradability, and then enter the integrated biological reaction tank for denitrification and carbon removal, and further Fenton process oxidation to remove residual refractory organic matter; this method requires pH adjustment before ultrasonic pretreatment, and Fenton Oxidation has certain requirements on the dosage of oxidants, and the amount of chemical reagents is large and the cost is high
In particular, due to the low treatment effect of advanced oxidation technology in high-salt conditions, the oxidation efficiency of refractory organic matter is very low, resulting in high treatment costs
[0005] Chinese invention patent CN201210172104.1 discloses a biochemical treatment method of acrylic fiber wastewater, which first adjusts the pH of acrylic fiber wastewater to 7-9 and adds Na3PO4, followed by the first-stage A / O treatment and the second-stage A / O treatment. The removal rate of CODCr in wastewater can reach 100%, and the total removal rate of CODCr in wastewater can reach more than 70%, but the reaction process takes a long time, and the activated sludge has low impact load resistance, easy disintegration or swelling, etc. problem, in addition, sludge return requires a lot of power consumption
At the same time, because acrylic fiber wastewater usually contains a high concentration of salinity, in order to improve the efficiency of biochemical treatment in actual operation, a large amount of fresh water needs to be added, which increases the treatment cost
[0006] The particularity and complexity of the components of acrylic fiber wastewater will inevitably make its treatment more difficult. Over the years, researchers have never stopped studying how to improve the biodegradability of acrylic fiber wastewater. However, there has been no breakthrough

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  • Treatment process for acrylic fiber waste water

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] The acrylic fiber wastewater produced by an acrylic fiber production plant has a COD of 2000mg / L, a BOD / COD of 0.1, a TDS of 20000 mg / L, and a water volume of 100m 3 / h. First, after coagulation sedimentation, multi-media filtration pretreatment, and then ultrafiltration treatment, it enters the first electrodialysis device. pretreated acrylic waste water), the water volume is 100 m 3 / h, the water in the concentrated water chamber is the wastewater after the subsequent A / O biological treatment reaches the standard, and the water volume is 100 m 3 / h, replace it with production water at the first start-up, and use the subsequent A / O biological treatment to meet the standard wastewater after the entire process linkage is normal. The first set of electrodialysis fresh water effluent is organic wastewater with low salt content, with a water volume of 100 m 3 / h, the effluent of concentrated brine is high-salt wastewater with low concentration of organic matter, an...

Embodiment 2

[0030] The acrylic fiber wastewater produced by an acrylic fiber production plant has a COD of 3000mg / L, a BOD / COD of 0.1, a TDS of 10000 mg / L, and a water volume of 200m 3 / h. First, after coagulation sedimentation, multi-media filtration pretreatment, and then ultrafiltration treatment, it enters the first electrodialysis device. Acrylic waste water after filtration pretreatment), the water volume is 200 m 3 / h, the water in the concentrated water chamber is the wastewater after the subsequent A / O biological treatment reaches the standard, and the water volume is 200 m 3 / h, replace it with production water at the first start-up, and use the subsequent A / O biological treatment to meet the standard wastewater after the entire process linkage is normal. The first set of electrodialysis fresh water effluent is organic wastewater with low salt content, with a water volume of 200 m 3 / h, the effluent of concentrated brine is high-salt wastewater with low concentration of organi...

Embodiment 3

[0032] The acrylic fiber wastewater produced by an acrylic fiber production plant has a COD of 4000mg / L, a BOD / COD of 0.1, a TDS of 10000 mg / L, and a water volume of 100m 3 / h. First, after coagulation sedimentation, multi-media filtration pretreatment, and then ultrafiltration treatment, it enters the first electrodialysis device. Acrylic waste water after filtration pretreatment), the water volume is 100 m 3 / h, the water in the concentrated water chamber is the wastewater after the subsequent A / O biological treatment reaches the standard, and the water volume is 100 m 3 / h, replace it with production water at the first start-up, and use the subsequent A / O biological treatment to meet the standard wastewater after the entire process linkage is normal. The first set of electrodialysis fresh water effluent is organic wastewater with low salt content, with a water volume of 100 m 3 / h, the effluent of concentrated brine is high-salt wastewater with low concentration of organ...

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Abstract

The invention discloses a treatment process for acrylic fiber waste water. The acrylic fiber waste water is pretreated and then is subjected to first-set electrodialysis separation to obtain organic waste water with low salt content and high-salinity concentrated water containing organic matters with low concentration; the organic waste water with the low salt content is subjected to advanced oxidation treatment to improve the biodegradability, and then is subjected to A / O biological treatment to reach the standard; the high-salinity concentrated water containing the organic matters with the low concentration is subjected to reverse osmosis desalination to obtain purified water and reverse osmosis concentrated water; the purified water is used for production; the reverse osmosis concentrated water is subjected to second-set electrodialysis concentration to produce water. According to the process method provided by the invention, on the basis of an advanced oxidation technology and a biological treatment technology, the degradation of refractory organics and macromolecule organic matters which are difficult to naturally settle is realized relatively fully and effectively by comprehensively utilizing a membrane separation technology; the degraded waste water is recycled; the obtained purified water can be used for production, so the resourceful treatment is really realized.

Description

Technical field: [0001] The invention relates to the field of advanced treatment of wastewater in the chemical industry, in particular to a treatment process for acrylic wastewater. Background technique: [0002] Acrylic fiber is one of the earliest chemical fiber varieties developed in my country. Acrylic fiber products have good bulkiness, good warmth retention, soft hand feeling, good weather resistance, mildew and moth resistance, and have wide applicability. The acrylic fiber is prepared by a method or a wet process, and the waste water produced in the production process is a major problem faced by the world. Acrylic wastewater has a complex composition of pollutants, high toxicity, many oligomers that are difficult to biodegrade, and biological inhibitors such as sulfate and sulfite, which make acrylic wastewater have low biodegradability and high salt content. , it is very difficult to deal with. [0003] At present, the research on the treatment of acrylic fiber w...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F9/14
CPCY02A20/131
Inventor 李琴芝刘亚丽刘晨明李海波盛宇星
Owner BEIJING CYCLE COLUMBUS ENVIRONMENTAL SCI & TECH
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