一种平板膜测评反应器

By designing a multifunctional flat-sheet membrane evaluation reactor, the limitations of existing technologies in testing membrane module performance under single environments have been overcome. This enables comprehensive evaluation under complex operating conditions, improving the accuracy of testing and the applicability of the equipment.

CN224506772UActive Publication Date: 2026-07-17

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Filing Date
2025-07-25
Publication Date
2026-07-17

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Abstract

本实用新型涉及检测技术领域,本实用新型提供了一种平板膜测评反应器,其包括测试筒,测试筒具有测试腔,测试腔底部具有进气口,上部具有出气口,测试腔内下部具有环形安装部,加热支撑架设置在环形安装部底部,加热支撑架上设置有加热组件,下支撑架螺纹设置在环形安装部上,且与加热支撑架上端抵接,下支撑架具有第一测试通孔,上支撑架螺纹设置在环形安装部上,且位于下支撑架上方,上支撑架具有第二测试通孔,第一测试通孔与第二测试通孔同轴设置。通过上述技术方案,解决了现有技术中膜组件测评反应器功能单一的技术问题,提升了膜组件的测评效率。
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Claims

1. A flat sheet membrane evaluation reactor characterized by, include: Test cylinder (1), the test cylinder (1) has a test cavity (101), the bottom of the test cavity (101) has an air inlet (102), the upper part has an air outlet (103), and the lower part of the test cavity (101) has an annular mounting part (104). Heating support frame (2), the heating support frame (2) is disposed at the bottom of the annular mounting part (104), and a heating component (201) is disposed on the heating support frame (2). The lower support frame (3) is disposed on the annular mounting part (104) and abuts against the upper end of the heating support frame (2). The lower support frame (3) has a first test through hole (301). The upper support frame (4) is disposed on the annular mounting part (104) and located above the lower support frame (3). The upper support frame (4) has a second test through hole (401). The first test through hole (301) and the second test through hole (401) are coaxially disposed. The lower support frame (3) and the upper support frame (4) are close to each other for fixing the flat sheet membrane assembly (5) and fixing the flat sheet membrane assembly (5) between the first test through hole (301) and the second test through hole (401).

2. The flat sheet membrane evaluation reactor of claim 1, wherein, The test cylinder (1) also has a diffusion cavity (105) connected to the air inlet (102). The side wall of the diffusion cavity (105) is connected to an air inlet channel (106) and a temperature measuring channel (107). The air inlet channel (106) and the temperature measuring channel (107) are located on both sides of the diffusion cavity (105).

3. The flat sheet membrane evaluation reactor of claim 1, wherein, The first test via (301) has a first stepped portion (302), and the flat sheet membrane evaluation reactor further includes: The light-emitting element (6) is disposed on the first step portion (302). The light-emitting element (6) has a plurality of evenly distributed ventilation gaps. The ventilation gaps are used to connect the air inlet (102) and the air outlet (103). The light-emitting element (6) is also used to support the flat membrane assembly (5).

4. The flat sheet membrane evaluation reactor of claim 1, wherein, The test cylinder (1) has a second step (108) at its upper end, and the flat sheet membrane evaluation reactor further includes: A high-voltage viewing window (7) is provided on the second step (108), and a first sealing element (701) is provided between the high-voltage viewing window (7) and the second step (108). An annular window fastener (8) is pressed onto the edge of the high-pressure window viewing element (7).

5. The flat sheet membrane evaluation reactor of claim 1, wherein, A second sealing element (402) is provided between the lower support frame (3) and the upper support frame (4), and the lower support frame (3) and the upper support frame (4) are connected by fastening bolts (303).

6. The flat sheet membrane evaluation reactor of claim 1, wherein, The heating support frame (2) is sealed to the bottom of the test cylinder (1) by a third sealing element (109), and the heating support frame (2) is sealed to the lower support frame (3) by a fourth sealing element (304).

7. The flat sheet membrane evaluation reactor of claim 2, wherein, The test cylinder (1) also has a heating wire port (110), which is used for connecting external lines to the heating component (201). The heating wire port (110), the inlet of the air inlet channel (106), the outlet of the temperature measuring channel (107) and the air outlet (103) are arranged equidistantly on the circumferential wall of the test cylinder (1).

8. A flat-sheet membrane testing reactor according to claim 1, characterized in that, Also includes: A sleeve (9) is fitted on the outside of the test cylinder (1). A temperature control cavity (901) is formed between the sleeve (9) and the test cylinder (1). The side wall of the temperature control cavity (901) has a medium inlet (902) and a medium outlet (903). The medium inlet (902) and the medium outlet (903) are used for the entry and exit of the temperature control medium.

9. A flat sheet membrane evaluation reactor according to claim 8, wherein, Both the medium inlet (902) and the medium outlet (903) are provided with connectors (904) on their outer sides, and the connectors (904) are pagoda-shaped.

10. The flat sheet membrane evaluation reactor of claim 1, wherein, After the test tube (1) is rotated 90 degrees on the support, the input end of the heating component (201) is connected to the DC low voltage power supply. The lower support frame (3) and the upper support frame (4) are respectively provided with positive electrode contacts and negative electrode contacts. The positive and negative electrodes of the DC low voltage power supply are respectively connected to the positive electrode contacts and the negative electrode contacts for electrolytic hydrogen production.