Electrode for activated carbon electro-thermal regeneration equipment and using method thereof

A regenerative equipment and activated carbon technology, applied in the direction of separation methods, filter regeneration, chemical instruments and methods, etc., can solve the problems of single-phase electric output power limitation, high energy consumption, high temperature, etc., to make up for the limited output power, Uniform temperature distribution and high energy efficiency

Active Publication Date: 2016-10-26
SHANGHAI LYMAX ENVIRONMENTAL TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The activated carbon heating method currently used in the market generally uses one-way electric heating. The disadvantage is that the output power of single-phase electricity is limited, resulting in limited regeneration capacity of activated carbon.
The heating method often uses electric heating through resistance wires. The disadvantage is that the heating of the activated carbon bed by resistance heating is uneven, the temperature in the area close to the resistance wire is high, and the temperature in the area far away from the resistance wire is low, the energy utilization rate is low, and the energy consumption is large.

Method used

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  • Electrode for activated carbon electro-thermal regeneration equipment and using method thereof
  • Electrode for activated carbon electro-thermal regeneration equipment and using method thereof
  • Electrode for activated carbon electro-thermal regeneration equipment and using method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] Such as figure 1 As shown, an electrode used for activated carbon electrothermal regeneration equipment includes a power-in electrode and two power-out electrodes, respectively the first power-out electrode 11 and the second power-out electrode 13, and the second power-out electrode is sheathed concentrically from the inside to the outside. A power-out electrode 11 , a power-in electrode 12 and a second power-out electrode 13 . The electrodes are evenly filled with 500kg of activated carbon, and three insulating plates are arranged at intervals of 120° on the circumference of the cylindrical motor unit, which divides the activated carbon bed into the first area, the second area and the third area, and separates the charged electrodes 12 is divided into a first power-in section 121 , a second power-in section 122 and a third power-in section 123 which are not connected to each other.

[0026] The diameter of the first power-out electrode 11 is 160 mm, the diameter of th...

Embodiment 2

[0031] The diameters of the first outlet electrode 11, the inlet electrode 12, and the second outlet electrode 13 in Example 1 are replaced by 125mm, 250mm and 500mm respectively, and because the diameter of each electrode decreases, the weight of activated carbon filled correspondingly 100kg, other test conditions remain unchanged, the test results are shown in Table 2, the first carbon bed and the second carbon bed are heated evenly during the heating process, and because the three-phase input of the AC power is used at the same time, the output power used by the AC power Unrestricted, the output power can reach 75KW, while ensuring the three-phase balance of the three-phase AC power supply.

[0032] Table 2

[0033]

Embodiment 3

[0035] Such as figure 2As shown, an electrode for activated carbon electrothermal regeneration equipment includes a third power-out electrode 14, a first power-in electrode 15, a fourth power-out electrode 16, a second power-in electrode 17 and The corresponding diameters of the fifth electrical outlet electrode 18 are 370 mm, 560 mm, 850 mm, 1300 mm and 2000 mm in sequence. The electrodes are evenly filled with 700kg of activated carbon, and three insulating plates are arranged at intervals of 120° on the circumference of the cylindrical electrode group, and the first feed electrode 15 is divided into the first feed section 151 and the first feed section 151 which are not connected to each other. The second feed section 152 and the third feed section 153 divide the second feed electrode 17 into a first feed section 171 , a second feed section 172 and a third feed section 173 which are not connected to each other.

[0036] Wherein the carbon bed between the first power-in el...

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Abstract

The invention discloses an electrode for activated carbon electro-thermal regeneration equipment. The electrode comprises a cylindrical electrode assembly and insulating plates, wherein the cylindrical electrode assembly comprises electricity input electrodes and electricity output electrodes which are arranged at intervals in a sleeved mode, the insulating plates are arranged in the cylindrical electrode assembly alternately and divide each electricity input electrode into a first electricity input section, a second electricity input section and a third electricity input section which are not communicated, and correspondingly, the insulating plates divide a carbon bed between the electricity input electrodes and the electricity output electrodes into a first area, a second are and a third area; the first electricity input section, the second electricity input section and the third electricity input section of each electricity input electrode are used for being connected with a first phase line, a second phase line and a third phase line of a three-phase supply respectively, and the electrode output electrodes are used for being connected with a middle line of the three-phase supply. The electrode for the activated carbon electro-thermal regeneration equipment is a three-phase equilibrium electrode for activated carbon electro-thermal regeneration, and has the advantage that the defect that the output power of a single-phase supply is limited is overcome by being used in cooperation with the three-phase supply, so that the production capacity of the activated carbon regeneration equipment is improved.

Description

technical field [0001] The invention relates to the field of activated carbon regeneration, in particular to an electrode used for activated carbon electrothermal regeneration equipment and a use method. Background technique [0002] Activated carbon is a carbonaceous material with developed pore structure, large specific surface area and strong adsorption capacity. It is widely used in the water treatment industry. Activated carbon will inevitably reach adsorption saturation after a period of time, and the adsorption efficiency will decrease. If it is directly discarded and replaced with new carbon, it will not only pollute the environment but also generate a lot of waste of resources and increase operating costs. Therefore, after the activated carbon is saturated, it can be regenerated in order to save resources and reduce operating costs. Activated carbon regeneration is to treat the activated carbon saturated with various impurities through physical, chemical or biochem...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J20/34B01J20/20
CPCB01J20/20B01J20/3416B01J20/3441
Inventor 傅立德
Owner SHANGHAI LYMAX ENVIRONMENTAL TECH CO LTD
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