POLYIONIC AND MOLECULAR FILTER-DIFFUSER
20180117539 · 2018-05-03
Inventors
Cpc classification
B01F23/231267
PERFORMING OPERATIONS; TRANSPORTING
B01F23/23123
PERFORMING OPERATIONS; TRANSPORTING
C02F2103/007
CHEMISTRY; METALLURGY
Y02W10/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B01F23/231231
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present disclosure relates to a poly-ionic and molecular filtering and diffuser device, which provides for the emission of gases when used from the inside out, and a separation of suspended matter (e.g., in macro, micro and nano ranges) in liquids for a variety of fluids when is used from the outside inwards. The device may include a central diffuser tube defining a plurality of perforations in its wall to allow passage of gas and liquids, and which is inserted through central holes of a plurality of plates diffusers arranged in a vertical arrangement. This combination may define a plurality of slots by the separations generated therebetween, whereby the gas or the liquid is spread. The diffuser-separating plates are contained between a top compression cap and a lower compression cap through which said central diffuser-collector tube is also inserted. The central diffuser-collector tube includes a threaded lower end, wherein a final lower lid is threaded. Seal elements may be disposed between the upper and lower compression cap and the arrangement of the plurality of diffuser-separating plates.
Claims
1. A device for filtration and diffusion of gases and liquids, the device comprising: a central diffuser-collector tube (1) having a vertical center axis and a tube wall, said central diffuser-collector tube including a plurality of perforations through the tube wall, said plurality of perforations configured to allow the passage of the gases and liquids; a plurality of diffuser-separating plates (4) arranged in a vertical array, relative to the vertical center axis, with spacings in between each of the plurality of diffuser-separating plates, said vertical array defining a plurality of paths where the gases and liquids can be diffused or filtered; an upper compression cap (6) affixed to the central diffuser tube, and compressibly coupled against an upper end of the plurality of diffuser-separating plates, relative to the vertical center axis; a lower compression cap (9) compressibly coupled against a lower end of the plurality of diffuser-separating plates, relative to the vertical center axis; and a lower end cap (7) affixed to the central diffuser tube and configured as a ground to the lower compression cap and against compressive forces from the plurality of diffuser-separating plates; and wherein the central diffuser tube passes through the upper compression cap, then the plurality of diffuser-separating plates, and then the lower compression cap, relative to the vertical center axis, and such that the plurality of diffuser-separating plates and at least one of the upper compression cap and the lower compression cap are adjustably coupled to the central diffuser tube relative to the vertical center axis.
2. A poly-ionic and molecular filtration diffuser device comprising a central diffuser-collector tube defining a plurality of perforations in its wall to allow the passage of gas-liquids and which is inserted through the central holes of a plurality of diffuser-separating plates arranged in a vertical array, which define a plurality of slots by the spacings generated in between, where the gas is spread or penetrates the liquid to be filtered; said diffuser-separator plates are contained between a top compression cap and a lower compression cap through which said central diffuser-collector tube is also inserted; the diffuser-collector tube comprises a threaded lower end wherein a final lower lid is threaded; seal elements are disposed between said upper and lower compression caps and the arrangement of the plurality of diffuser plates.
3. The poly-ionic and molecular filtration diffuser device according to claim 2, further comprising a seal element disposed between said final lower lid and said lower compression cap.
4. The poly-ionic and molecular filtration diffuser device according to claim 2, characterized in that a seal element is integrated in said final lower lid.
5. The poly-ionic and molecular filtration diffuser device according to claim 2, characterized in that said lower end cap is integrated with said lower compression cap forming a unitary body.
6. The poly-ionic and molecular filtration diffuser device according to claim 2, characterized in that said central diffuser-collector tube comprises a threaded upper end adapted to couple a filtered gas supply or collection pipeline.
7. The poly-ionic and molecular filtration diffuser device according to the preceding claims, characterized in that said central diffuser-collector tube comprises fixedly next to its upper end a base plate adapted to fix with a fastening means a housing that protects internally the assembly of said central diffuser-collector tube with said diffuser-separating plates and the upper and lower compression caps secured with said final lower lid, and wherein said housing has a plurality of apertures in its perimetral and bottom wall allowing the gas bubble outlet being injected through the upper end of said central diffuser-collector tube or the liquid inlet being injected through the outer perimeter of the housing.
8. The poly-ionic and molecular filtration diffuser device according to claim 2, characterized in that said plurality of diffuser-separating plates comprise at least one circumferential groove at the outer or inner edge, at one or both of the top and bottom faces.
9. The poly-ionic and molecular filtration diffuser device according to claim 2, characterized in that said plurality of diffuser-separating plates comprise a plurality of circumscribed circumferential grooves, made in one or both upper and lower faces to improve the distribution of the gas flow or collected liquid.
10. The poly-ionic and molecular filtration diffuser device according to claims 2, 8, and 9, characterized in that said plurality of diffuser-separating plates comprise a plurality of radial grooves on one or both upper and lower surfaces interconnected with the central orifice by where said central diffuser-collector tube passes, to improve the radial distribution of the filtered gas or liquid stream.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025] For a better understanding of the disclosure, the detailed description will be given of some of the embodiments thereof, shown in the drawings which for illustrative purposes but not limitative are attached to the present description. It should be understood that the spacing of the filter plates in the drawings may be exaggerated to improve illustration and understanding.
DETAILED DESCRIPTION
[0026] In view of the background, the inventor has discovered a need to have a poly-ionic molecular diffuser and filtering device which may solve of many drawbacks and deficiencies of the prior art. The present disclosure may offer important advantages in terms of structure, composition, assembly and functionality.
[0027] One object of the present disclosure to provide a poly-ionic molecular diffuser device which functions as a diffuser when used from the inside out, and as a filter when used from the outside inward, which may provide excellent filtration in macro, micro and nano ranges for a variety of fluids and gases.
[0028] Another object of the disclosure is to provide said poly-ionic and filter molecular diffuser device, which further uses filtration elements which are inexpensive, but with advantages that allow a periodic back-up to remove solids that release material from the accesses of the diffuser.
[0029] Another object of the disclosure is to provide said poly-ionic molecular diffuser and filtration device, which further employs a filter system where the filter axes are perpendicular to the collection stream.
[0030] Another object of the disclosure is to provide such a poly-ionic and filtering molecular diffuser device, which further provides a way of adjusting the filter to separate the different solids measurements, depending on the setting used.
[0031] Another object of the disclosure is to provide said poly-ionic and filtering molecular diffuser device, which can also be adapted to operate as a gas diffuser which will deposit gas in a liquid in a controllable manner. Additional qualities and objectives which will become apparent upon reviewing the present specification and drawings.
[0032] Details of the poly-ionic molecular diffuser are shown clearly in the following description and in the accompanying illustrative drawings, the same reference signs serving to indicate the same parts.
[0033] Referring to
[0034] Seal elements 10, 10a are arranged between said upper compression cap 7, the lower compression cap 6 and the arrangement of the plurality of diffuser plates 4. Another seal element 11 is disposed between said end lower cap 9 and said lower compression cap 7.
[0035] A variety of materials may be used for the plurality of diffuser plates 4. However, it has been shown that the precision (optical) of the elements (high precision) is favorable.
[0036] Said upper compression cap 6 and a lower compression cap 7 are similar to the configuration of the diffuser plates 4. However, they may vary in size either slightly larger or smaller in diameter.
[0037] It is shown in the figures that said upper compression cap 6 and a lower compression cap 7 have a concave bell which causes the upper edge thereof to be the point of contact with said diffuser plates 4. This design has proven to be particularly successful because it creates an outer dividing diffusion layer, with a central core causing a less restrictive flow.
[0038] The upper compression cap 6 and the lower compression cap 7 are pressed against the diffuser plates 4 and the lower end cap 9, which secures the far end of the central diffuser duct 1. It should be understood that in the arrangement of the elements of the assembly of said diffuser, the final lower lid (lower end cap 9) may be tightened or loosened, this will tighten or keep the diffuser plates 4 loose.
[0039] By adding compression to the diffuser plates 4, the height of the stack forming them will be reduced and the spaces between each diffuser plate 4 will be reduced. Likewise, if the compression is reduced by loosening said end lower cover 9, the spaces between said diffuser plates 4 will increase due to the space between each of them.
[0040]
[0041] Referring to
[0042] Here, the diffuser is shown immersed in liquid 21 inside a liquid reservoir 22 and generates the bubbles 20 while the gas supply is operating at the upper end of said central diffuser tube 1
[0043] Referring now to
[0044]
[0045]
[0046] One benefit of the disclosed devices is that they can be effectively used as a gas diffuser in liquids. The parallel plates serve very well to convert incoming gas into bubbles of manageable size, to aerate the liquid. The apparatus may be suitable for filtering air exiting the diffuser since the gas will deposit any matter or fumes (such as cigarettes) into the liquid. This poly-ionic aeration system can be used in fish ponds, water treatment plants, etc., depending on the air quality used.
[0047] The disclosure has been sufficiently described so that a person of ordinary skill in the art can reproduce and obtain the results mentioned in the present disclosure. However, any skilled person in the field of the art of the present disclosure may be able to make modifications not described in the present application, however, if for the application of these modifications in a particular structure or in the manufacturing process thereof, the subject claimed in the following claims is required, said structures should be understood within the scope of the disclosure.