Plasma sterilizer apparatus for pipe
10820613 ยท 2020-11-03
Assignee
Inventors
- Yunji Kim (Seongnam-si, KR)
- Eunjung Lee (Seongnam-si, KR)
- Okkyung Koo (Seongnam-si, KR)
- Hyunjoo Chang (Yongin-si, KR)
- Joosung Kim (Yongin-si, KR)
Cpc classification
A23B7/015
HUMAN NECESSITIES
C02F2305/023
CHEMISTRY; METALLURGY
C02F1/467
CHEMISTRY; METALLURGY
C02F2201/46105
CHEMISTRY; METALLURGY
A23L3/32
HUMAN NECESSITIES
International classification
C02F1/467
CHEMISTRY; METALLURGY
A23L3/32
HUMAN NECESSITIES
Abstract
Disclosed is a plasma sterilizer apparatus for a pipe and, more particularly, to a plasma sterilizer apparatus for a pipe, which can be easily mounted on a pipe and effectively sterilize harmful microorganisms contained in water or raw materials flowing through a pipe. A plasma sterilizer apparatus for a pipe comprises: a first connection member connected to one side of a pipe; a second connection member connected to the other side of the pipe; a first electrode mounting member disposed in contact with the first connection member; a second electrode mounting member disposed in contact with the second connecting member; a first electrode member provided on the first electrode mounting member; and a second electrode member provided on the second electrode mounting member.
Claims
1. A plasma sterilizer apparatus, comprising; a first connection member connected to a first pipe; a second connection member connected to a second pipe; a first electrode mounting member disposed in contact with the first connection member; a second electrode mounting member disposed in contact with the second connection member; a first electrode member seated on the first electrode mounting member; and a second electrode member seated on the second electrode mounting member, wherein the first electrode member comprises a first plane electrode of mesh structure which is woven with first conductive linear members, and a first electrode wire which extends from the first plane electrode to an external power line, wherein the second electrode member comprises a second plane electrode of mesh structure which is woven with second conductive linear members, and a second electrode wire which extends from the second plane electrode to the external power line, wherein the first electrode mounting member comprises a first install body which is detachable from the first connection member and has a center-hollowed circular and planar shape; a first seating groove to seat the first electrode member on one surface of the first install body; a first electrode lead-in part which protrudes from an outer surface of the first install body in a radial direction and has a first lead-out hole formed in the radial direction where the first electrode wire leads out through; and a first sealing cover which covers a distal end of the first electrode lead-in-part, wherein the second electrode mounting member comprises a second install body which is detachable from the second connection member and has a center-hollowed circular and planar shape; a second seating groove to seat the second electrode member on the second install body; a second electrode lead-in part which protrudes from an outer surface of the second install body in a radial direction and has a second lead-out hole formed in the radial direction where the second electrode wire leads out through; and a second sealing cover which covers a distal end of the second electrode lead-in part, wherein the plasma sterilizer apparatus further comprises one or more interval adjusting members disposed between the first and second electrode members to adjust a distance between the first and second electrode members, wherein the first connection member has a first sealing member inserting hole grooved and formed thereon, and a first sealing member is disposed in the first sealing member inserting hole to be adjacent to the first electrode mounting member, wherein the second connection member has a second sealing member inserting hole grooved and formed thereon, and a second sealing member is disposed in the second sealing member inserting hole to be adjacent to the second electrode mounting member, and wherein the plasma sterilizer apparatus further comprises a locking member to connect the first connection member and the second connection member.
2. The plasma sterilizer apparatus according to claim 1, wherein the first and second electrode mounting members, on which the first and second electrode members are respectively seated, make a plurality of pairs.
3. The plasma sterilizer apparatus according to claim 2, wherein the one or more interval adjusting members are interposed between the plurality of pairs of the first and second electrode mounting members.
4. The plasma sterilizer apparatus according to claim 1, wherein each of the first and second connection members comprises a flange on which multiple locking holes are formed in a circumferential direction thereof, and wherein the locking member comprises a plurality of bolts inserted in the locking holes and a plurality of nuts fastened with the plurality of bolts.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
BEST MODE FOR CARRYING OUT THE INVENTION
(9) Hereinafter, the exemplary embodiments of the present invention will be described in detail referring to the appended drawings.
(10)
(11) Referring to
(12) The first connection member 1 is a component connected to one side of the pipe by the connecting ways such as welding, and comprised of a first connection body 11 of a circular planar shape with center-hollowed part, and a first electrode member mounting part 12 which is formed at the first connection body 11 and where the first electrode member 3 is installed.
(13) In addition, the first connection body 11 has multiple locking holes 111 formed in circumferential direction, similar to the mechanical component normally called a flange.
(14) The first electrode member mounting part 12 is comprised of a first install body 121, a first seating groove 122, a first electrode lead-in part 123, and a first sealing cover 124. The first install body 121 is circular and planar in shape with center-hollowed part and extends from the first connection body 11 with forming one body with the first connection body 11. The first seating groove 122 is grooved to install the first electrode member 3 on the first install body 121. The first electrode lead-in part 123 protrudes out of the first install body 121 and has a first lead-out hole 123a which an electrode wire 32 of the first electrode member 3 leads out through. The first sealing cover 124 is installed on the first electrode lead-in part 123.
(15) The second connection member 2 is a component connected to the other side of the pipe P by the connecting ways such as welding and comprises a second connection body 21 and a second electrode member mounting part 22 to be structurally symmetric to the first connection member 1. The second electrode member mounting part 22 is comprised of a second install body 221, a second seating groove 222, a second electrode lead-in part 223, and a second sealing cover 224. The second install body 221 is circular and planar in shape with center-hollowed part and extends from the second connection body 21 with forming one body with the first connection body 21. The second seating groove 222 is grooved to install the second electrode member 4 on the second install body 221. The second electrode lead-in part 223 has a second lead-out hole 223a which an electrode wire 42 of the second electrode member 4 leads out through. The second sealing cover 224 is installed on the second electrode lead-in part 223.
(16) In addition, the aforementioned first and second electrode lead-in parts 123, 223 are protruded parts of the first and second install body 121,221 which have the male crew thread on the outer surface. The first and second sealing covers 124, 224 are parts of a cap in shape with a female screw thread on the inner surface, and have O-ring 125,225 inside to keep sealing.
(17) The first electrode member 3 is a component to be installed in the first seating groove 122 of the first connection member 1 and connected with the positive power line linked to the cold plasma driving part (not shown) installed outside. It is comprised of a plane electrode 31 of mesh structure woven with conductive linear members and an electrode wire 32 connecting the plane electrode 31 with the positive power line. Herein, the conductive linear members might be a wire made of titanium alloy.
(18) The second electrode member 4 is a component formed in same shape with the first electrode member 3 and installed in the second seating groove 222 of the second connection member 2. An electrode line 42 is connected with the negative power line (not shown) linked to the cold plasma driving part.
(19) Also, a first electrode supporting member 61 of circular and planar shape with center-hollowed part is installed in the first seating groove 122. The first electrode supporting member 61 supports the first electrode member 3 not to be shaken by the pressure of the fluid and food material flowing through the pipe.
(20) A second electrode supporting member 62 of circular and planar shape with center-hollowed part is installed in the second seating groove 222 and performs the same function with the first electrode supporting member 61.
(21) Meanwhile, the locking member 5 is a component to bind the first connection member 1 and the second connection member 2 together, and comprises bolts 51 which are inserted in the locking holes 111, 211 formed in the circumferential direction of the first connection body 11 and the second connection body 21, and nuts 52 which are fastened with the bolts 51.
(22) And, a sealing member inserting groove 14 is formed on the inner surface of the first connection member 1 and the inner surface of the second connection member 2 those are faced each other, to insert a sealing member 63 such like O-ring in.
(23) The aforementioned cold plasma driving part comprises a power supply (not shown) and a drive circuit part (not shown) to provide the power from the power supply to the first and second electrode members 3, 4. Also, it might be implemented by selecting one among a plenty of the kwon cold plasma generators.
(24) Hereinafter, the operation of the plasma sterilizer apparatus on pipe according to the first embodiment of the present invention will be described briefly.
(25) After assembling the components as shown in
(26) If the cold plasma driving part operates at this state, a low voltage discharge phenomenon occurs between the first and second electrode members 3, 4, and the low voltage discharge phenomenon resolves the water molecule to generate cold plasma, hydroxyl ion OH and active species in oxygen O, O.sub.2, O.sub.3, HO.sub.2, H.sub.2 O.sub.2. Also, a hydroxyl group is generated by the chemical reaction of them in the water, and the strong oxidation of the hydroxyl group sterilizes harmful microorganisms such as virus or bacteria. Besides, the oxidation of the hydroxyl group neutralizes heavy metals and toxic substances and eliminates nitrogenous compound or sulfur oxide.
(27)
(28) The plasma sterilizer apparatus on pipe according to the modified example of the first exemplary embodiment of the present invention, comprises the first connection member 1, the second connection member 2, the first electrode member 3, the second electrode member 4, and locking member 5 as shown in
(29) At least one of the interval adjusting member 7 can be arranged and have a circular and planar shape with center-hollowed part and a sealing member inserting groove on the inner surface to be inserted with sealing member 63 such like O-ring.
(30) The aforementioned interval adjusting member 7 adjusts the separation distance between the first electrode member 3 and the second electrode member 4 based on type, amount and speed of the fluid and food material flowing through the pipe P to sterilize effectively. For example, if the amount of fluid flowing through the pipe is little, the interval adjusting member 7 will be installed to increase the separation distance between the first and second electrode member 3, 4. On the other hand, if the amount of fluid is large, the interval adjusting member 7 will be removed to make the distance between the first and second electrode member 3, 4 narrower. Thus, optimal amount of the hydroxyl group is generated according to the amount of the fluids and the uniform and stable sterilization is possible.
Mode for Embodiment of the Invention
(31) Hereinafter, a second exemplary embodiment of the present invention will be described. Components similar with those of the aforementioned first exemplary embodiment will not be explained in detail but differential components will be explained more in detail for clarification. Also, any adoptable structure from the first exemplary embodiment can be optionally adopted to the second exemplary embodiment and detailed explanation and showing on the drawings about the adopted structure will be omitted.
(32)
(33) Referring to
(34) The first electrode mounting member 8, where the first electrode member 3 is installed, is comprised of a first install body 81, a first seating groove 82, a first electrode lead-in part 83, and a first sealing cover 84. The first install body 81 is circular and planar in shape with center-hollowed part and the first seating groove 82 is grooved to install the first electrode member 3 on the first install body 81. The first electrode lead-in part 83 protrudes out of the first install body 81 and has a first lead-out hole 831 which an electrode wire 32 of the first electrode member 3 leads out through, and the first sealing cover 84 is installed on the first electrode lead-in part 83.
(35) The second electrode mounting member 9, where is structurally symmetric to the first electrode mounting member 8, is comprised of a second install body 91, a second seating groove 92, a second electrode lead-in part 93, and a second sealing cover 94. The second install body 91 is circular and planar in shape with center-hollowed part and the second seating groove 92 is grooved to install the second electrode member 4 on the second install body 91. The second electrode lead-in part 93 protrudes out of the second install body 91 and has a second lead-out hole 931 which an electrode wire 42 of the second electrode member 4 leads out through, and the second sealing cover 94 is installed on the second electrode lead-in part 93.
(36) In addition, the interval adjusting member 7 to adjust the separation distance is installed between the first and second electrode members 3, 4.
(37) The first and second electrode member 1, 2 have multiple locking holes 111, 211 formed in circumferential direction, similar with a mechanical component normally called flange. The first electrode mounting member 8, the second electrode mounting member 9, and the interval adjusting member 7 are circular and planar in shape with a center-hollowed part.
(38) A sealing member inserting groove is formed on the inner surface of the first connection member 1, the inner surface of the second connection member 2, the inner surface of the first electrode mounting member 8, the inner surface of the second electrode mounting member 9, and the inner surface of the interval adjusting member 7, those are faced each other, to insert a sealing member 63 such like O-ring in and keep sealing between them.
(39) Each of the first electrode member 3 and the second electrode member 4 comprises a plane electrode 31, 41 of mesh structure which are woven with conductive linear members, and the electrode wire 32, 42 which extends from the plane electrode 31, 41 to an external power line, as mentioned above.
(40)
(41) As shown on
(42) Also, each of the pairs of the first and second electrode mounting members 8, 9 is intervened by the interval adjusting member 7 so as to have some separation distance.
(43) To explain the operation of the aforementioned plasma sterilizer apparatus on pipe according to the second exemplary embodiment of the present invention briefly, the first connection member 1, the second connection member 2, the first electrode mounting member 8, the second electrode mounting member 9, the first electrode member 3, the second electrode member 4, the locking member 5, and the interval adjusting member 7 are assembled as shown in
(44) And then, if the cold plasma driving part operates at this state, a low voltage discharge phenomenon occurs between the first and second electrode members 3, 4 to generate hydroxyl group, and thus the strong oxidation of the hydroxyl group sterilizes harmful microorganisms.
(45) In addition, to sterilize effectively is achieved by adjusting the separation distance between the first electrode member 3 and the second electrode member 4 as adjusting some parameter such like the number of the interval adjusting member 7 based on type, amount and speed of the fluid and food material flowing through the pipe P.
(46) Especially, the plasma sterilization apparatus on pipe according to the second embodiment of the present invention has multiple pairs of the first electrode mounting member 8 and the second electrode mounting member 9, and each of them has each of the first and second electrode members 3, 4. Therefore, the sterilization and the neutralization of the toxic substances can be performed in multiple stages by multiple pairs of the first and second electrode members 3, 4. Also, even though the flowing speed is very fast, the sterilization in multiple stage can improve the sterilization effect on harmful microorganisms and the neutralization and elimination of the toxic substances effectively. In addition, there is an advantage of easy replacement and maintenance work according to the installation of the first and second electrode member 3, 4 in the first and the second electrode mounting members 8, 9 which are independent members.
(47) The above description is just an example to perform the plasma sterilization apparatus on pipe, and it should be understood that the present invention is not limited to the exemplary embodiment and the technical idea of the present invention covers the modified scope of the present invention which those of ordinary skill in the art can modify the embodiments of the present invention.
(48) The terms used in the exemplary embodiments have been used only to explain the exemplary embodiment, but not to make limitation on the present invention. The singular terms include plural terms if it literally has clear statement for singular term. In this patent application, the terms, such as comprising or has, are to make clarification the existence of characteristics, numbers, stages, movement, components, members or the assembly of them, but not to exclude the existence or additional possibility of one or more other characteristics, numbers, stages, movements, components, members, assembly of them.
INDUSTRIAL APPLICABILITY
(49) The plasma sterilizer apparatus on pipe according to the present invention can be used as a sterilizer in various technical fields, such like food-making or water-purifying, needing the sterilization to eliminate the harmful microorganisms included in the water or raw material.