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Method for manufacturing carbon nanotube electrocatalytic electrode for organic waste water treatment

A carbon nanotube and a manufacturing method technology, which are applied in the field of carbon nanotube electrocatalytic electrode manufacturing, can solve the problems of poor graphite electrode strength, low electrocatalytic performance, low current efficiency, etc., and achieve improved electrocatalytic performance and high electrocatalytic performance. Active, chemically stable effect

Inactive Publication Date: 2006-04-26
SHANGHAI UNIV
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Problems solved by technology

Graphite electrodes have poor strength and low current efficiency
The aluminum plate or iron plate is a soluble electrode, the material consumption of the electrode itself is large, the cost is high, and the amount of sludge generated is also large
Insoluble electrode PbO 2 Although the oxidation ability of graphite electrode is higher than that of graphite electrode, its electrocatalytic performance is low, and the degradation effect on organic matter is not ideal.

Method used

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Examples

Experimental program
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Effect test

Embodiment 1

[0019] In this embodiment, the manufacturing method of the carbon nanotube electrocatalytic electrode for treating organic wastewater has the following process steps:

[0020] (1) Purification of carbon nanotube powder: Soak the carbon nanotube powder in 20% nitric acid solution for 24 hours, then ultrasonically disperse it for 2 hours to remove the residual metal catalyst when preparing carbon nanotubes; then carry out suction filtration and wash with distilled water Repeatedly, wash until the pH value of the eluent is 7, and then dry to constant weight.

[0021] (2) The purified carbon nanotube powder is subjected to modification treatment, and the carbon nanotube powder is calcined at a high temperature in an air atmosphere at a temperature of 600°C for 0.5 hours; then placed in a ball mill for high-speed ball milling, the ball mill speed 1500rpm.

[0022] (3) Disperse polytetrafluoroethylene (PTFE) binder in carbon nanotubes: use an appropriate amount of polytetrafluoroet...

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Abstract

The present invention relates to the making process of carbon nanotube electrically catalytic electrode for treating organic waste water, and belongs to the field of electrode material production in electrically catalytic oxidation technology. After carbon nanotube with high catalytic activity and great specific surface area and binder PTFE in certain ratio are mixed, the mixture is cold pressed to form and wire is led out from one end of the epoxy resin cured electrode. The carbon nanotube electrically catalytic electrode has high conducting performance and low power consumption, and may be modified to obtain high electrically catalytic activity. The carbon nanotube electrically catalytic electrode is suitable for use in treating organic waste water and has high degradation rate on organic matter in waste water.

Description

technical field [0001] The last invention relates to a method for manufacturing a carbon nanotube electrocatalytic electrode for treating organic wastewater, which belongs to the technical field of electrode material manufacturing in electrocatalytic oxidation technology. Background technique [0002] The high concentration of organic pollutants, high COD value of chemical oxygen demand and deep water quality in organic wastewater have always been one of the difficult problems in the domestic and foreign scientific and technological circles. After the current treatment technology degrades organic wastewater, the results show that the degradation of organic pollutants is incomplete, the decolorization effect is poor, and the COD removal rate is low, and some treatment technologies are also accompanied by secondary pollution hazards. The electrocatalytic oxidation technology is to make the pollutants undergo direct electrochemical reaction on the electrode or use the strong ox...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C25B11/12C02F1/461
Inventor 施利毅温轶方建慧张登松张剑平
Owner SHANGHAI UNIV
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