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Catalytic type packing for Fenton fluidized bed and preparation method of catalytic type packing

A fluidized bed and catalytic technology, which is applied in the field of catalytic filler for Fenton fluidized bed and its preparation, can solve the problem that the size of filler particles is difficult to achieve uniformity, affects the treatment effect of Fenton fluidized bed, and the particle size cannot be adjusted and other problems, to achieve a uniform and good fluidization state, to ensure the effect of sewage treatment, and to reduce the effect of chemical dosage

Active Publication Date: 2017-12-15
DALIAN MARITIME UNIVERSITY +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the fillers used in Fenton fluidized beds generally have problems such as small catalytic area, high density, difficulty in fluidization, uneven size, and difficulty in adjusting the size.
For example, quartz sand, zeolite, iron-carrying ceramsite, etc. are used as Fenton fluidized bed fillers, and the specific surface area is small, so the catalytic area is small, and the catalytic effect is not ideal; the particle density is high, and a high ascending flow rate is required to make it It is in a fluidized state, so the power consumption is relatively high
In addition, when natural quartz sand, zeolite, etc. are used as fillers, the particle size of the fillers is difficult to achieve uniformity, resulting in uneven fluidization state in the bed, and the particle size cannot be adjusted according to the actual wastewater treatment needs, which also affects the Fenton fluidized bed. The processing effect

Method used

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  • Catalytic type packing for Fenton fluidized bed and preparation method of catalytic type packing
  • Catalytic type packing for Fenton fluidized bed and preparation method of catalytic type packing

Examples

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Effect test

Embodiment 1

[0032] A kind of preparation method of catalytic type filler for Fenton fluidized bed, described preparation method comprises the steps:

[0033] ① Dissolve equimolar amounts of ferric nitrate and manganese nitrate in water to obtain a metal salt solution with a metal ion concentration of 10mol / L, and add a solution with a specific surface area of ​​1000m 2 / g of activated carbon mixed, static impregnation 6h, Fe / Mn ion loading on the activated carbon is 5%, and then slowly dropwise added a polytetrafluoroethylene emulsion with a mass concentration of 60wt%, mixed, ultrasonic 60min, to obtain a viscous catalyst Slurry, wherein the weight ratio of metal salt, activated carbon and polytetrafluoroethylene is 0.3:6:1;

[0034] ②Immerse the polypropylene porous suspension filler with a particle size of 10mm in the viscous catalyst slurry, so that the surface of the polypropylene porous suspension filler is evenly wrapped with the viscous catalyst slurry, take it out, activate it in...

Embodiment 2

[0036] A kind of preparation method of catalytic type filler for Fenton fluidized bed, described preparation method comprises the steps:

[0037] ① Dissolve equimolar amounts of copper chloride and cobalt chloride in water to obtain a metal salt solution with a metal ion concentration of 20mol / L, and add a solution with a specific surface area of ​​2000m 2 / g of activated carbon, mix, stand and impregnate for 12h, the loading capacity of Cu / Co ions on the activated carbon is 20%, then slowly add polyvinylidene fluoride emulsion with a mass concentration of 30wt%, mix well, and ultrasonic 90min to obtain a viscous catalyst Slurry, wherein the weight ratio of metal salt, activated carbon and polyvinylidene fluoride is 1.2:6:1.5;

[0038] ② Immerse the polyamide porous suspension filler with a particle size of 50 mm in the viscous catalyst slurry, so that the surface of the polyamide porous suspension filler is evenly wrapped with the viscous catalyst slurry, take it out, activat...

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Abstract

The invention relates to catalytic type packing for a Fenton fluidized bed and a preparation method of the catalytic type packing and belongs to the field of wastewater treatment. The catalytic type packing for the Fenton fluidized bed comprises porous suspended packing and a catalyst layer, wherein the porous suspended packing is covered with the catalyst layer; the catalyst layer comprises components as follows: metal salt with Fenton reaction catalytic activity, activated carbon and a binder, a weight ratio of the metal salt, activated carbon and the binder is (0.3-1.2):6:(1.0-1.5), and the metal salt loaded on activated carbon is 5%-20%. The catalytic type packing for the Fenton fluidized bed has a huge catalytic area, can effectively increase oxidation efficiency and utilization rate of hydrogen peroxide, can reduce invalid decomposition of hydrogen peroxide and reduce output of iron-containing sludge, so that sewage treatment effect is improved, and the added amount of chemical and operating cost are reduced.

Description

technical field [0001] The invention relates to a catalytic filler for a Fenton fluidized bed and a preparation method thereof, belonging to the field of wastewater treatment. Background technique [0002] Fenton oxidation is a widely used high-efficiency wastewater treatment technology, which is characterized by hydrogen peroxide (H 2 o 2 ) in Fe 2 + A large number of highly oxidizing hydroxyl radicals (·OH) can be generated under the catalytic action of the catalyst. In practical engineering applications, the Fenton fluidized bed technology applies the Fenton reaction to the fluidized bed reactor system, which greatly improves the Fenton efficiency, and has the advantages of simple operation, convenient use, and rapid response. The Fenton fluidized bed is especially suitable for the treatment of organic wastewater containing refractory biodegradation, and has been gradually applied to the treatment projects of landfill leachate, dyes, pulp and paper, daily chemicals, p...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F1/72C02F103/30
CPCC02F1/722C02F1/725C02F2103/30C02F2103/343C02F2305/026
Inventor 朱益民刘伟凤唐晓佳尹琳聂毅兴吕琦玮陈涛
Owner DALIAN MARITIME UNIVERSITY
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