Combined honeycomb ceramic membrane filtering element

A honeycomb ceramic and membrane filtration technology, which is applied in the field of membrane separation, can solve the problems of many honeycomb ceramic membrane preparation processes, low yield of honeycomb ceramic membrane, and increase the complexity of the preparation process, so as to avoid the reduction of the membrane area per unit volume and the structure The effect of simplifying the model and reducing the possibility of defects

Active Publication Date: 2011-09-07
重庆兀盾纳米科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0005] (2) The post-processing of the ceramic membrane is required, and the post-processing is difficult for the ceramic membrane, which further increases the complexity of the preparation process
[0006] (3) For methods such as slotting the port or adding a drainage tube, the port needs to be sealed, which is difficult to seal, and it is easy to cause the permeate to mix with the feed liquid
For example, the method of plugging slotted ports involves drying and sintering processes, and the difference between the properties of the plugging material and the honeycomb ceramics is prone to porosity, which can easily lead to contamination of the feed liquid during the filtration process.
[0007] (4) The preparation process of the honeycomb ceramic membrane is many, the process is complicated, and the possibility of introducing defects increases, so that the yield of the defect-free honeycomb ceramic membrane is low, especially for the larger volume of the honeycomb ceramic membrane, as the cross-sectional area of ​​the ceramic membrane The increase of the yield will be lower, thus further increasing the cost of the ceramic membrane which is already relatively high

Method used

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  • Combined honeycomb ceramic membrane filtering element
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Examples

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Embodiment 1

[0031] Figure 1 ~ Figure 4 Shown is one of the embodiments of the combined honeycomb ceramic membrane filter element of the present invention, as figure 1 and figure 2 As shown, it includes a honeycomb ceramic membrane unit 1, a support 2 and a fastener 3 composed of a honeycomb ceramic support 1a and a filter channel 1b.

[0032] Wherein, the honeycomb ceramic support body 1a is flat, and the axis of the filter channel 1b is parallel to the plate surface of the honeycomb ceramic support body 1a, and arranged side by side in the honeycomb ceramic support body 1a to form a honeycomb ceramic membrane monomer 1. Such as image 3 and Figure 4 As shown, the cross-sectional shape of the honeycomb ceramic membrane unit 1 perpendicular to the axis of the filter channel 1b is rectangular. The filter channel 1b adopts double rows of channels, the cross-sectional shape of the channel is square, and the wall thickness W1 between the filter channel 1b and the outer surface of the ho...

Embodiment 2

[0037] Figure 5 and Figure 6 Shown is the second embodiment of the combined honeycomb ceramic membrane filter element of the present invention, which differs from embodiment one in that: as Figure 5 As shown, the cross-sectional shape of the honeycomb ceramic membrane monomer 1 perpendicular to the axis of the filter channel 1b is an arc-containing trapezoid, which is stacked and combined at intervals to form a cylinder (see Figure 6 ).

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Abstract

The invention discloses a combined honeycomb ceramic membrane filtering element comprising a honeycomb ceramic support body, a filter duct arranged in the support body, a supporting member and a fastener, wherein the honeycomb ceramic support body is in a flat plate shape; the axis of the filter duct and the board of the honeycomb ceramic support body are parallel and are arranged in the honeycomb ceramic support body in parallel to form two or more than two honeycomb ceramic monomers which are overlaid and combined at intervals; the fastener is arranged on the periphery of the combined honeycomb ceramic monomers; and the supporting member is respectively positioned between adjacent honeycomb ceramic monomers and between the fastener and the honeycomb ceramic monomer and is positioned on the port of the filter duct. The combined honeycomb ceramic membrane filtering element has the advantages of higher penetration flux and unit volume membrane area and simple configuration and preparation technology, and ensures that the osmotic resistance is effectively reduced, simultaneously the yield rate of the honeycomb ceramic membrane is greatly improved and the ceramic membrane cost is lowered.

Description

technical field [0001] The invention relates to the technical field of membrane separation, in particular to a honeycomb ceramic filter membrane element. Background technique [0002] Compared with other separation processes, membrane separation is a relatively simple separation process with low energy consumption. In principle, the components in the mixture can be recovered and reused, so it is widely used in bioengineering, petroleum, chemical industry, metallurgy, medicine, etc. field. Membrane separation is achieved through membrane modules, the core of which is the filter membrane. Compared with organic membranes, ceramic filter membranes have the advantages of good chemical stability, high mechanical strength, strong antimicrobial ability, high temperature resistance, narrow pore size distribution, and high separation efficiency. Due to the good rigidity of the ceramic material and the limitation of the preparation process, the current ceramic membranes in the prior ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01D63/08
Inventor 周健儿常启兵汪永清梁健张小珍胡学兵包启富
Owner 重庆兀盾纳米科技有限公司
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