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High-temperature-resistant corrosion-resistant graphitic acid distributor and manufacturing method thereof

A manufacturing method and technology of graphitic acid, applied in separation methods, chemical instruments and methods, and separation of dispersed particles, can solve the problems of acid distribution in tower equipment, easy deformation of acid distributors, etc., and achieve uniform acid distribution, gas-liquid Good separation or absorption effect, reducing the effect of drift

Active Publication Date: 2014-04-30
龚孝祥
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] The object of the present invention is to provide a high-temperature and corrosion-resistant graphitic acid distributor and its manufacturing method. The acid distributor made by this method can effectively solve the problem of the acid distributor made of existing materials under high temperature. Easy to deform, so that the distribution of acid in the tower equipment has the problem of bias flow

Method used

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  • High-temperature-resistant corrosion-resistant graphitic acid distributor and manufacturing method thereof

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Embodiment 1

[0022] Embodiment 1 of the present invention: a high-temperature and corrosion-resistant graphitic acid distributor and its manufacturing method, the graphitic acid distributor is as attached Figure 1-2 As shown, it includes an acid pan 1, and a plurality of overflow pipes 2 are evenly distributed inside the acid pan 1, and the acid pan 1 and the overflow pipe 2 are all made of graphite materials.

[0023] The manufacturing method of acid pan 1, overflow pipe 2 comprises:

[0024] A. Selection of graphite raw materials: Choose graphite raw materials with 0.8mm or 2.0mm particles according to different media. If the medium is sulfuric acid with more than 70% sulfuric acid, and the temperature is above 100°C, choose graphite materials with 0.8mm particles, and the medium is fluorosilicon. For non-oxidizing acids such as acids, graphite materials with 2.0mm particles should be used for media whose temperature is below 100°C.

[0025] B. Design acid tray 1 and overflow pipe 2 of...

Embodiment 2

[0032] Embodiment 2 of the present invention: after the selected graphite material is processed into acid pan 1 and overflow pipe 2 through lathe and drilling machine, acid pan 1 and overflow pipe 2 are put into phenolic resin for impregnation treatment, and the treatment time is 10 Hours, after the dipping treatment is completed, put the acid tray 1 and the overflow pipe 2 into a heat treatment kettle at 160°C for heat treatment, the heat treatment time is 10 hours, and after the heat treatment is completed, the components by weight are: 1800 parts of graphite powder, 1200 parts of phenolic resin and 3.5-4 parts of graphite resin cement of benzenesulfonyl chloride bond the acid tray 1 and the overflow pipe 2, and then spontaneously ignite the bonded acid tray 1 and overflow pipe 2 at a temperature of 35°C After curing for 20 hours, remove the excess graphite resin cement, and finally put the prepared high-temperature and corrosion-resistant graphite acid distributor on the wat...

Embodiment 3

[0034] Embodiment 3 of the present invention: after the selected graphite material is processed into acid pan 1 and overflow pipe 2 through lathe and drilling machine, acid pan 1 and overflow pipe 2 are put into phenolic resin for impregnation treatment, and the treatment time is 12 Hours, after the dipping treatment is completed, put the acid pan 1 and the overflow pipe 2 into a heat treatment kettle at 180°C for heat treatment, the heat treatment time is 10 hours, and after the heat treatment is completed, the components by weight are: 1800 parts of graphite powder, 1200 phenolic resin and 3.5-4 parts of graphite resin cement of benzenesulfonyl chloride to bond the acid pan 1 and the overflow pipe 2, and then spontaneously ignite and solidify the bonded acid pan 1 and overflow pipe 2 at a temperature of 40°C After 20 hours, remove the excess graphite resin cement, and finally put the prepared high-temperature and corrosion-resistant graphite acid distributor on the water plat...

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Abstract

The invention discloses a high-temperature-resistant corrosion-resistant graphitic acid distributor and a manufacturing method thereof. The graphitic acid distributor comprises an acid disc, wherein overflow pipes are uniformly distributed inside the acid disc; both the acid disc and the overflow pipes are made of graphite material. The acid distributor is made of the graphite material, the graphite has high-temperature resistance and corrosion resistance, the influence of temperature on the graphite material is slight, the deformation amount is small, the distribution uniformity of materials in tower equipment in chemical production is guaranteed, and bias of the materials in the tower equipment is reduced. Compared with the conventional acid distributor made of a polytetrafluoroethene material, the graphitic acid distributor manufactured by adopting the manufacturing method has the advantages that the temperature resistance and corrosion resistance are improved by 30 percent, the strength is improved by 5-10 times, the bias is reduced, the production consumption is lowered, the service life is prolonged by two times, the problem that the high-temperature highly corrosive materials are easily biased in the tower equipment is solved, and great contribution is made to the development of fluorine chemical industry and other petrochemical industries.

Description

[0001] technical field [0002] The invention relates to a high-temperature and corrosion-resistant graphitic acid distributor and a manufacturing method thereof, belonging to the technical field of acid distributor manufacturing technology. Background technique [0003] In chemical production, the existing high-temperature-resistant and corrosion-resistant acid distributors are made of PTFE materials. Since PTFE materials are easily deformed at high temperatures, the uniform distribution of acid in the tower equipment cannot be guaranteed, so that the acid The distribution in the tower equipment produces bias flow, which leads to uneven absorption or separation of gas and liquid, which seriously affects the output and quality of chemical production. The uneven distribution of acid in the tower equipment will also cause damage to downstream equipment, which seriously restricts the equipment. production, resulting in serious economic losses. Contents of the invention [00...

Claims

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Application Information

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IPC IPC(8): B01D53/18
Inventor 龚孝祥龚传海
Owner 龚孝祥
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