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Light catalyzed water treatment equipment of 3D fiber layer of titanium dioxide

A water purification treatment device, titanium dioxide technology, applied in the direction of oxidized water/sewage treatment, light water/sewage treatment, energy wastewater treatment, etc., can solve the constraints of technology scale, industrialization development, low light utilization rate, reaction Slow speed and other problems, to achieve the effect of low cost, improved utilization rate, and no secondary pollution

Inactive Publication Date: 2007-10-10
SHANDONG UNIV
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  • Abstract
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  • Application Information

AI Technical Summary

Problems solved by technology

However, there are still some problems in the photocatalytic process using titanium dioxide fibers as photocatalysts, such as the lack of formed titanium dioxide fiber photocatalytic reactor devices, low utilization rate of light, slow reaction speed, etc., which restrict the practicality of photocatalysis. The development of large-scale technology and industrialization

Method used

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  • Light catalyzed water treatment equipment of 3D fiber layer of titanium dioxide

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Embodiment Construction

[0019] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.

[0020] As shown in Figure 1: it includes a plexiglass cylinder 1, and two aluminum mesh cylinders 2 of the same height are installed in it, and the optical fiber bundle 3 and the three-dimensional titanium dioxide fiber are installed between the two aluminum mesh cylinders 2. The interlayer made of layer 4 composite.

[0021] Wherein 3 is divided into two parts, namely the helical part and the straight line part, at the tail end of the helix, the optical fiber is led along a straight line to the upper end surface of the plexiglass cylinder 1; the manufacturing method of the three-dimensional titanium dioxide fiber layer 4 is: Pour the spinning solution of titanium dioxide precursor into the centrifuge tube, and the centrifuge tube is fixed on the rotating mold, and the rotating mold is turned on at a speed of 6000r / min, so that it is translated and move...

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Abstract

This invention discloses a three-dimensional TiO2 fiber layer photocatalytic water purifier. The water purifier utilizes TiO2 fibers as the photocatalyst, and optical fibers as the light guiding medium. The optical fibers can guide sunlight into the water purifier, where sunlight acts as the activating source of TiO2 fibers so that wastewater and catalyst react under sunlight activation to remove impurities. The water purifier comprises an organic glass outer cylinder, with a water inlet at the bottom of one side, and a water outlet at the top of the other side. At least two sleeved aluminum mesh cylinders with the same height and different diameters are set in the organic glass outer cylinder, and the interlayer in between is composed of optical fiber beam and three-dimensional TiO2 fiber layer. A light focusing device is set at the top of the outer surface of the organic glass outer cylinder.

Description

technical field [0001] The invention relates to a photocatalytic water purification treatment device, in particular to a three-dimensional titanium dioxide fiber layer photocatalytic water purification treatment device. Background technique [0002] Photocatalytic oxidation technology occupies an important position in the fields of environmental protection and chemical engineering because of its simple process, easy control of operating conditions, rapid and effective degradation of pollutants and no secondary pollution. Photocatalysts used for photocatalytic degradation of environmental pollutants are mostly n-type semiconductor materials, among which titanium dioxide has become the most important photocatalyst because of its high activity, good stability and harmlessness to human body. At present, there are insurmountable defects in the application forms of titanium dioxide such as nanopowder, thin film and supported type. It is difficult to separate and recycle the nanop...

Claims

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Application Information

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IPC IPC(8): C02F1/32C02F1/72
CPCY02W10/37
Inventor 包南马志会孟凡琳刘鑫刘峰魏振涛
Owner SHANDONG UNIV
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