A large-aperture porous spacer structure used in biocathode microbial electrochemical systems
A technology of microbial electrochemistry and spacer structure, applied in electrochemical generators, biochemical fuel cells, circuits, etc., can solve the problem of high cost of spacer materials, and achieve the effects of improving anti-pollution and corrosion resistance, reducing costs and long service life.
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specific Embodiment approach 1
[0050]DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The structural body of the large aperture porous interval structure in the biological cathode microbial electrochemical system is a plate shape or a cylindrical shape. The structural body is composed of at least one layer of large aperture porous spacer material; and in the main body There is at least one layer in the large aperture porous spacer material is an insulating material;
[0051]The structural body has a thickness of 1 μm to 10 cm;
[0052]The holes of the large aperture porous spacer material are open and the aperture is 0.1 μm to 5 mm.
[0053]This embodiment has the following beneficial effects:
[0054]First, the present embodiment acts as a large aperture porous interval structure in a biopolytic microbial electrochemical system is to be placed in a biopathic microbial electrochemical system and is used to separate the cathode chamber and an anode chamber; the present embodiment can be adjusted by adjusting a large aperture...
specific Embodiment approach 2
[0061]DETAILED DESCRIPTION OF THE INVENTION Different: The present embodiment differs from the specific embodiment that the large aperture porous spacer material is a self-supporting large aperture porous spacing material or a flexible large aperture porous spacing material. Other steps and parameters are identical to those of the specific embodiments.
specific Embodiment approach 3
[0062]BEST MODE FOR CARRYING OUT THE INVENTION One or two of the present embodiment is different from that of the specific embodiment: the large aperture porous spacer material is a self-supporting large aperture porous spacing material or a flexible large aperture porous spacing material. Other steps and parameters are identical to those of the specific embodiments.
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