Plasma electro-discharge reactor for non-carbon absorbent regeneration and plasma electro-discharge reacting method

An adsorbent regeneration and plasma technology, which is applied in separation methods, filter regeneration, filtration and separation, etc., can solve the problems of easy loss of adsorbents, high heat consumption and high temperature conditions, etc. Aiding in the effect of chemisorption

Inactive Publication Date: 2015-11-18
ZHEJIANG FUCHUNJIANG ENVIRONMENTAL THERMOELECTRIC CO LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

Among them, thermal regeneration is currently the most widely used and most mature regeneration method, but

Method used

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  • Plasma electro-discharge reactor for non-carbon absorbent regeneration and plasma electro-discharge reacting method
  • Plasma electro-discharge reactor for non-carbon absorbent regeneration and plasma electro-discharge reacting method
  • Plasma electro-discharge reactor for non-carbon absorbent regeneration and plasma electro-discharge reacting method

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Embodiment 1

[0027] Embodiment 1, Figure 1 ~ Figure 4 A plasma discharge reactor and method for regeneration of non-carbon-based adsorbents are presented.

[0028]The plasma discharge reactor used for the regeneration of non-carbon-based adsorbents includes a stainless steel support 4 made of stainless steel; a reaction sleeve is arranged in the stainless steel support 4; the reaction sleeve includes upper and lower plates made of quartz glass. A sealed quartz glass sleeve 8, the upper and lower ends of the quartz glass sleeve 8 are respectively sealed by a cover 9 made of polytetrafluoroethylene material and a base 10; The upper air inlet 7 and the lower air outlet 6 are respectively arranged on the cover 9 and the base 10, and the upper air inlet 7 and the lower air outlet 6 run through the cover 9 and the base 10 respectively. Afterwards, it communicates with the closed space formed by the quartz glass sleeve 8, the cover 9 and the base 10. The upper end of the stainless steel bracke...

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Abstract

The invention discloses a plasma electro-discharge reactor for non-carbon absorbent regeneration. The plasma electro-discharge reactor comprises a bracket, wherein a reaction sleeve in which a cavity is arranged is arranged in the bracket; an upper electrode and a lower electrode are respectively arranged on the upper side and the lower side of the cavity of the reaction sleeve; an upper air inlet and a lower air outlet are respectively formed in the upper end and the lower end of the reaction sleeve, and penetrate through the side walls of the reaction sleeve to be communicated with the cavity of the reaction sleeve; a high voltage terminal interface is formed in the upper end of the bracket, and is connected with the upper electrode; an earthing terminal interface is formed in the lower end of the bracket and is connected with the lower electrode. The bracket is the stainless-steel bracket made of stainless-steel material; the reaction sleeve is the quartz glass sleeve which is unsealed at the upper end and the lower end and is made of quartz glass material; a seal cover and a base which are made of polytetrafluoroethylene material are respectively arranged at the upper end and the lower end of the quartz glass sleeve for sealing; a fluoro rubber seal ring is arranged between the quartz glass sleeve and the seal cover as well as between the quartz glass sleeve and the base for sealing; the upper air inlet and the lower air outlet penetrate through the seal cover and the base respectively, and then are communicated with a sealed space formed by the quartz glass sleeve, the seal cover and the base.

Description

technical field [0001] The invention relates to the technical field of adsorbent regeneration, in particular to a plasma discharge reactor for regeneration of organic waste gas non-carbon-based adsorbents. Background technique [0002] Adsorption is the most widely used organic waste gas treatment method. The main principle of the adsorption process is to adsorb the adsorbate on the surface of the adsorbent through the van der Waals force and electrostatic force on the surface of the adsorbent, and at the same time, the adsorbate molecules on the surface of the adsorbent will return to the gas phase or liquid phase through the desorption process, and finally reached adsorption equilibrium. The adsorption method has the advantages of high removal rate, mature process, low cost, low energy consumption, and easy operation. Ideal adsorbents generally have the characteristics of high specific surface area, large adsorption capacity, reversible adsorption, strong surface hydroph...

Claims

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Application Information

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IPC IPC(8): B01J20/34
Inventor 吴祖良盛洪产何文君徐少娟蔡淼刚许雅丽张可欣吴丹妮
Owner ZHEJIANG FUCHUNJIANG ENVIRONMENTAL THERMOELECTRIC CO LTD
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