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Expansion method of wastewater photodegradation reactor for resisting water burst of electrodeless lamp placement cavity

A reactor, electrodeless lamp technology, applied in chemical instruments and methods, water/sewage multi-stage treatment, water/sludge/sewage treatment, etc. The effect of pollution, the design capacity is greatly expanded, and the ultraviolet light transmission performance is maintained

Inactive Publication Date: 2013-10-02
李榕生
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0050] Based on the structure of the CN102260003A scheme, the electrodeless ultraviolet lamp is placed in the lumen of the quartz tube. In order to ensure the normal luminous work of the electrodeless ultraviolet lamp, the inner wall of the quartz tube must be kept clean to maintain the permeability to ultraviolet light. Moreover, based on similar light permeability requirements, the outer side of the lamp wall of the electrodeless ultraviolet lamp involved must also be kept clean; however, the structure of the CN102260003A scheme is difficult to avoid the problem of water inrush in the lumen area of ​​the quartz tube The so-called water inrush in this case refers to the unwelcome water in the reactor protruding into the lumen area of ​​the quartz tube; there are generally two reasons for the water inrush: one is the quartz tube The thermal expansion and contraction of the air in the cavity area leads to underpressure in the lumen area of ​​the quartz tube, and the second is that the air in the lumen area of ​​the quartz tube escapes and causes underpressure in the lumen area of ​​the quartz tube. In this way, driven by the relative positive pressure of the surrounding water body, The water in the reactor gradually breaks into the lumen area of ​​the quartz tube, forming a water inrush situation; when the air pump is powered off and the outer surface of the quartz tube is partially or mostly submerged in water, the outburst is especially prone to occur. Water conditions; specifically, the most likely period for this water inrush problem is the following two periods, the first period is when the wastewater to be treated is filled into the reactor and the air pump has not been started, and the second period is After the air pump is turned off and the water extraction procedure has not been completed; when the water inrush situation occurs, the water mixed with many inorganic impurities protruding into the lumen of the quartz tube can easily contaminate the inner wall of the lumen of the quartz tube and the electrodeless ultraviolet lamp The outer surface of its own lamp wall leads to a significant decrease in the ultraviolet light transmittance of the relevant light-transmitting structural parts, which in turn affects the overall wastewater photodegradation treatment efficiency of the relevant wastewater degradation reactor. Therefore, the problem of water inrush should not be avoided. This is Question sixteen

Method used

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Embodiment Construction

[0127] The implementation of the method in this case, its main steps are as follows:

[0128] a, a metal trumpet-shaped component is suspended vertically in the inner cavity of the reactor with the big head facing down;

[0129] b. Vertically suspending the quartz tube with the electrodeless ultraviolet lamp installed in the upper airspace inside the cavity of the trumpet-shaped member;

[0130] c. The structural position above the quartz tube and the structural position below the quartz tube in the cavity of the horn-shaped component are separated by metal mesh, and a total of two pieces of metal mesh are involved, which are the upper piece of metal net and the lower piece of metal mesh, wherein the upper piece of metal mesh is adjacent to the upper port of the trumpet-shaped member or is flat with the upper port, and the upper and lower pieces of metal mesh are cut in the cavity of the horn-shaped member, Outline a section of cylindrical airspace containing the quartz tube ...

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Abstract

The invention relates to an expansion method of a wastewater photodegradation reactor for resisting water burst of an electrodeless lamp placement cavity, and belongs to the technical field of wastewater treatment. The problem of water burst of the electrodeless lamp placement cavity, namely a quartz tube cavity, the problems of a weak catalytic intercept link and small single tank capacity of a reactor, and the problems that the end point of the degradation reaction is difficultly distinguished, catalyst agglomeration cannot be timely observed, secondary ozone reverse flow corrodes a magnetron and the like exist in existing related technologies. Aiming at a series of problems, according to the scheme, the expansion method includes the following main steps: accessing a miniature diaphragm pump for supplying air at normal low consumption and low flow on a gas circuit communicated to the quartz tube cavity in a by-pass manner; limiting a microwave irradiation area; gradually intercepting a contact agent by a multi-stage cascade filter; monitoring the reaction process by using an ozone sensor; automatically turning off a related power supply when a degradation terminal point is achieved; actively warning the agglomeration tendency of the contact agent; and partitioning a waveguide tube by a wave-transparent airtight partition plate, and blocking up a reverse flow channel containing the ozone gas.

Description

technical field [0001] The invention relates to a method for expanding the capacity of a waste water photodegradation reactor capable of resisting water inrush in an electrodeless lamp placement cavity, and belongs to the technical field of CO2F waste water treatment. Background technique [0002] Microwave photocatalytic degradation treatment technology, as an effective harmless treatment technology for industrial wastewater containing organic pollutants, has attracted much attention in recent years. [0003] Regarding the microwave photocatalytic degradation technology, as an example, refer to the Chinese patent application with publication number CN102260003A. [0004] The Chinese patent application with the publication number CN102260003A uses microwaves as the excitation source to excite the electrodeless ultraviolet lamp to emit ultraviolet rays, and irradiates the suspension mixed with photocatalyst titanium dioxide inside the liquid. The electrodeless ultraviolet lam...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F9/08
Inventor 李榕生
Owner 李榕生
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