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An efficient photocatalytic reactor

A photocatalytic reactor and photocatalyst technology, applied in the field of reactors, can solve the problems of low electron transport performance, high cost of recovery and separation, chaotic and disorderly contact, etc., to achieve improved catalytic efficiency, fast electron diffusion rate, and interaction mode many effects

Active Publication Date: 2020-04-07
CHONGQING UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

But due to TiO 2 Chaotic and disordered contact between nanocrystal grains, low electron transport performance, and powdery TiO 2 The cost of recovery and separation is high, so there are limitations in its use

Method used

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  • An efficient photocatalytic reactor
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  • An efficient photocatalytic reactor

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Embodiment Construction

[0022] see Figure 1 to Figure 4 , a high-efficiency photocatalytic reactor, including a top cover 1 and a base 7, the top cover 1 is placed on the base 7; the upper end of the base 7 is provided with a rectangular concave plane-10, and a conductive Glass 9, the size and thickness of the conductive glass 9 are compatible with the rectangular concave plane-10; the upper surface of the conductive glass 9 is provided with a photocatalyst 8, and the photocatalyst 8 is a nanorod array film photocatalyst; the upper cover plate The lower end surface of 1 is provided with a rectangular concave plane 2, which corresponds to the position of the rectangular concave plane 10; the rectangular concave plane 2 is provided with an inverted micro-protrusion platform array 3; the upper cover Fluid inlet 5 and fluid outlet 6 are respectively arranged on the plate 1, and fluid inlet 5 and fluid outlet 6 communicate with rectangular concave plane 2 through microfluidic input channel 11 and microfl...

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Abstract

The invention discloses an efficient photo-catalytic reactor which comprises an upper cover plate and a base. The upper cover plate is arranged on the base, the efficient photo-catalytic reactor is characterized in that a first rectangular concave plane is formed in the upper end surface of the base, conducting glass is placed in the first rectangular concave plane, and a photocatalyst is arranged on the upper surface of the conducting glass; the photocatalyst is a nanorod array thin film photocatalyst; a second rectangular concave plane is formed in the lower end surface of the upper cover plate and corresponds to the first rectangular concave plane in position; an inverted micro boss array is arranged in the second rectangular concave plane; the upper cover plate is provided with a fluid inlet and a fluid outlet, and the fluid inlet and the fluid outlet communicate with the second rectangular concave plane through micro fluid input channels and micro fluid output channels correspondingly; and the micro fluid input channels and the micro fluid output channels are formed in the upper cover plate. The efficient photo-catalytic reactor provided by the invention is simple in structure, easy to mount, low in cost, high in reaction efficiency and capable of being widely applied to the fields of energy, environment protection and the like.

Description

technical field [0001] The invention relates to a reactor, in particular to an efficient photocatalytic reactor. Background technique [0002] Environmental pollution and energy crisis have become two major problems in the development of human society. As a green technology with important prospects in the field of energy and environment, photocatalytic technology has attracted great attention of researchers. Photocatalysis is a new technology that uses semiconductor materials as catalysts to convert light energy into chemical energy. The basic principle of photocatalyst: Under the light radiation of a specific wavelength range, the semiconductor material used as a photocatalyst is excited to generate photo-generated electrons. , bacteria, viruses and other reactions. At present, photocatalytic technology has been used in wastewater treatment, water splitting hydrogen production, photocatalytic fuel cells and photocatalytic reduction of CO 2 etc. have been widely used. ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01J19/00B01J19/08
CPCB01J19/0093B01J19/08B01J2219/00013
Inventor 程旻白书霞黄毅杨森廖强朱恂陈蓉高瑞
Owner CHONGQING UNIV
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