Water treatment apparatus
10946339 ยท 2021-03-16
Assignee
Inventors
- Tae-Seong KWON (Seoul, KR)
- Soo-Young LEE (Seoul, KR)
- Hyoung-Min MOON (Seoul, KR)
- Sang-Hyeon KANG (Seoul, KR)
- Byung-Kil Park (Seoul, KR)
Cpc classification
C02F1/008
CHEMISTRY; METALLURGY
B01D61/10
PERFORMING OPERATIONS; TRANSPORTING
B01D61/025
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D61/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A water treatment apparatus is disclosed. The water treatment apparatus, according to one embodiment of the present invention, may comprise: a filter unit comprising a reverse osmosis filter for supplying purified water filtered from raw water, and residential water which could not be filtered from raw water; a storage unit connected to the filter unit and comprising a storage member in which purified water is stored, then discharged, and a housing within which the storage member is provided, and through which residential water inflows and outflows; and a flow path changing valve connected to the filter unit and the storage unit, and which allows residential water to outflow from the housing as purified water is stored in the storage member, or allows purified water to be discharged from the storage member as residential water inflows into the housing.
Claims
1. A water treatment apparatus comprising: a filter unit including a reverse osmosis filter to supply purified water filtered from raw water in the reverse osmosis filter and residential water unable to be filtered from the raw water in the reverse osmosis filter; a storage unit connected to the filter unit and including a storage member in which purified water is stored and from which purified water is discharged and a housing, which includes the storage member disposed therein, through which residential water flows in and out; a flow path changing valve connected to the filter unit and the storage unit, and allowing residential water to flow from the housing while purified water is stored in the storage member, or allowing purified water to be discharged from the storage member while residential water flows into the housing; a residential water line connected between the reverse osmosis filter and a residential water port of the flow path changing valve; a drain line branching off from the residential water line; a drain branch line connected between the drain line and a drain port of the flow path changing valve; an inlet-outlet line connected between the housing and an inlet-outlet port of the flow path changing valve; a purified line connected between the reverse osmosis filter and the storage member; a discharge line branching off from the purified line; and a water discharge member directly or indirectly connected to the discharge line, wherein the flow path changing valve comprises a first body portion including the residential water port, the drain port, and the inlet-outlet port and a second body portion connected to the discharge line, the first body portion is respectively connected to the residential water line, the drain branch line, and the inlet-outlet line, and the second body portion is connected to the discharge line, the flow path changing valve allows the inlet-outlet line and the drain branch line to be connected to each other when purified water is stored in the storage member, and allows the inlet-outlet line and the residential water line to be connected to each other when the purified water stored in the storage member is discharged to a water discharge member directly or indirectly connected to the discharge line, the first body portion comprises a movement portion, which is connected to the residential water line, the drain branch line, and the inlet-outlet line, respectively, and in which a plunger is provided to be movable; and a pressure transfer portion, which is connected to the movement portion and the second body portion, and in which a pressing portion is provided to be movable and to contact to the plunger, the second body portion comprises a connection flow path formed therein and connected to the discharge line, and the connection flow path comprises a connection hole formed therein and connected to the pressure transfer portion, and the plunger allows the inlet-outlet line to be connected to the drain branch line or the residential water line according to a location of the plunger, and the pressing portion moves the plunger through a difference in pressure between the first body portion and the second body portion.
2. The water treatment apparatus of claim 1, wherein the second body portion is connected to a connection discharge line connected to a water discharge member.
3. The water treatment apparatus of claim 1, wherein the pressing portion comprises: a pressing member in contact with the plunger and provided in the pressure transfer portion to be movable; and a first diaphragm provided on the pressing member to receive pressure of the second body portion.
4. The water treatment apparatus of claim 3, wherein the pressing portion further comprises a second diaphragm provided on the pressing member to be in contact with the plunger.
5. The water treatment apparatus of claim 1, wherein the connection flow path is connected to a connection discharge line connected to a water discharge member.
6. The water treatment apparatus of claim 1, wherein the plunger is elastically supported by an elastic member.
7. The water treatment apparatus of claim 1, wherein the filter unit further comprises an automatic shut-off valve allowing raw water to flow into the filter unit or blocking raw water from flowing into the filter unit, according to a pressure of the purified water line.
8. The water treatment apparatus of claim 7, wherein the automatic shut-off valve is connected to a raw water line connected to the reverse osmosis filter to supply raw water and the purified water line.
9. The water treatment apparatus of claim 7, wherein the filter unit further comprises a first water filter connected to the reverse osmosis filter by a connection line, and the automatic shut-off valve is connected to the connection line and the purified water line.
10. The water treatment apparatus of claim 8, wherein on a portion of the purified water line between the automatic shut-off valve and the reverse osmosis filter, a first check valve is provided.
11. The water treatment apparatus of claim 1, wherein on the discharge line, a second water filter is provided.
12. The water treatment apparatus of claim 1, wherein on the discharge line between a portion branching off from the purified water line and the flow path changing valve, a second check valve is provided.
13. The water treatment apparatus of claim 9, wherein on a portion of the purified water line between the automatic shut-off valve and the reverse osmosis filter, a first check valve is provided.
Description
DESCRIPTION OF DRAWINGS
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MODE FOR INVENTION
(15) Hereinafter, a water treatment apparatus according to an exemplary embodiment in the present disclosure will be described in detail, to provide an understanding of characteristics according to exemplary embodiments in the present disclosure.
(16) Exemplary embodiments in the present disclosure will be described in detail with reference to the accompanying drawings. The invention may, however, be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein. Thus, exemplary embodiments of the present disclosure may be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art. In the drawings, the shapes and dimensions of elements may be exaggerated for clarity, and the same reference numerals will be used throughout to designate the same or like elements.
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(21) A water treatment apparatus 100 according to an exemplary embodiment may include a filter unit 200, a storage unit 300, and a flow path changing valve 400, as illustrated in
(22) Filter Unit
(23) The filter unit 200 may include a reverse osmosis filter 210. Thus, the filter unit 200 may supply purified water filtered from raw water and residential water, unable to be filtered from raw water, as illustrated in
(24) As illustrated in
(25) A reducing valve VRD may be provided on the raw water line LRW as illustrated in
(26) The filter unit 200 may further include a first water filter 220 connected to the reverse osmosis filter 210 by a connection line LC. The first water filter 220 may be connected to the raw water line LRW. Thus, raw water may first be filtered by the first water filter 220 and may then be filtered by the reverse osmosis filter 210.
(27) As the first water filter 220, any water filter capable of filtering water, used in the art, may be used without particular limitation thereon.
(28) In addition, the filter unit 200 may include other water filters as well as the first water filter 220. The number of other water filters included in the filter unit 200 is not particularly limited, and thus, any number thereof may be available for the use thereof.
(29) The reverse osmosis filter 210 may be connected to a storage member 310 included in a storage unit 300 to be described later by a purified water line LPW. Thus, purified water filtered by the reverse osmosis filter 210 may flow in the purified water line LPW and may be stored in the storage member 310, as illustrated in
(30) In addition, the reverse osmosis filter 210 may be connected to a flow path changing valve 400 to be described later by a residential water line LLW. Thus, as illustrated in
(31) A drain line LD may branch off from the foregoing residential water line LLW. A residential water valve VLW may be provided on the drain line LD. Further, the drain line LD may be connected to a drain branch line LDS connected to the flow path changing valve 400 described below.
(32) Thus, as illustrated in
(33) In a different manner, a discharge line LE branching off from the purified water line LPW may be connected to the flow path changing valve 400 to be described below, so as to be connected to a water discharge member 500 of a cock, a faucet or the like. Thus, as illustrated in
(34) In addition, a second water filter 230 may be provided on the discharge line LE as illustrated in
(35) As the second water filter 230 provided on the discharge line LE, any water filter capable of filtering water, used in the art, may be used without particular limitation. In addition, the number of water filters provided on the discharge line LE is not particularly limited, and thus, any number thereof may be employed.
(36) As illustrated in
(37) Thus, pressure in a portion of the discharge line LE between the second check valve CV2 and the water discharge member 500, and in a connection discharge line LCE connecting the flow path changing valve 400 to the water discharge member 500, may be maintained at a predetermined pressure. As illustrated in
(38) The filter unit 200 may further include an automatic shut-off valve 240. The automatic shut-off valve 240 may allow raw water to flow into the filter unit 200 or to block inflow of raw water thereinto according to pressure in the purified water line LPW. To this end, the automatic shut-off valve 240 may be connected to the raw water line LRW or the connection line LC. In addition, the automatic shut-off valve 240 may be connected to the purified water line LPW.
(39) As illustrated in
(40) As illustrated in
(41) The configuration of the automatic shut-off valve 240 is not particularly limited. Any configuration thereof, used in the art, in which raw water may flow into the filter unit 200 or the inflow of raw water may be blocked according to pressure in the purified water line LPW, may be employed.
(42) A first check valve CV1 may be provided on a portion of the purified water line LPW between the automatic shut-off valve 240 and the reverse osmosis filter 210 as illustrated in
(43) Storage Unit
(44) The storage unit 300 may be connected to the filter unit 200. The storage unit 300 may include the storage member 310 and the housing 320.
(45) Purified water may be stored in the storage member 310 as illustrated in
(46) The housing 320 may include the storage member 310 disposed therein. In addition, residential water may flow into the housing 320 as illustrated in
(47) Flow Path Changing Valve
(48) The flow path changing valve 400 may be connected to the filter unit 200 and the storage unit 300. In addition, as illustrated in
(49) Thus, purified water may be easily externally discharged, while using the reverse osmosis filter 210. In addition, a location of the water discharge member 500 discharging purified water may not be limited.
(50) As illustrated in
(51) Thus, residential water stored in the housing 320 may flow through the inlet-outlet line LEI and the drain branch line LDS. The residential water flowing in the drain branch line LDS may flow into the drain line LD to be drained externally through the drain line LD.
(52) In this case, since the water discharge member 500 is closed, purified water filtered by the reverse osmosis filter 210 flows in the purified water line LPW and is stored in the storage member 310 of the storage unit 300.
(53) In addition, when purified water stored in the storage member 310 is externally discharged through the water discharge member 500 as illustrated in
(54) Thus, residential water unable to be filtered by the reverse osmosis filter 210 may flow in the residential water line LLW and the inlet-outlet line LEI, to thus flow into the housing 320 of the storage unit 300. In addition, purified water stored in the storage member 310 may flow into the water discharge member 500 through the purified water line LPW and the discharge line LE, since the water discharge member 500 is opened. Further, the purified water may be externally discharged through the water discharge member 500, to be supplied to a user.
(55) The flow path changing valve 400 may include a first body portion 410 and a second body portion 420 as illustrated in
(56) The first body portion 410 may be connected to the reverse osmosis filter 210 and the housing 320 by a connection line. To this end, the residential water line LLW, the drain branch line LDS, and the inlet-outlet line LEI may be respectively connected to the first body portion 410.
(57) The first body portion 410 may include a residential water port 411 connected to the residential water line LLW, a drain port 412 connected to the drain branch line LDS, and an inlet-outlet port 413 connected to the inlet-outlet line LEI.
(58) In addition, a plunger 430 may be provided in the first body portion 410, to be movable. According to a location of the plunger 430, the inlet-outlet line LEI may be connected to the drain branch line LDS as illustrated in
(59) The first body portion 410 may include a movement portion 414, in which the plunger 430 is provided to be movable. The movement portion 414 may be connected to the residential water port 411, the drain port 412, and the inlet-outlet port 413. Thus, the movement portion 414 may be respectively connected to the residential water line LLW, the drain branch line LDS, and the inlet-outlet line LEI.
(60) In addition, in the first body portion 410, a pressing portion 440 may be provided to be movable. The pressing portion 440 may allow the plunger 430 to be moved according to a pressure difference between the first body portion 410 and the second body portion 420.
(61) A pressure transfer portion 415 may be formed in the first body portion 410 to be connected to the movement portion 414 described above and the second body portion 920 to be described later. The pressing portion 440 may be provided in the pressure transfer portion 415 to be movable.
(62) The pressing portion 440 may include a pressing member 441, a first diaphragm 442, and a second diaphragm 443, as illustrated in
(63) The pressing member 441 may be in contact with the plunger 430. As illustrated in
(64) The first diaphragm 442 may be provided on the pressing member 441 to receive pressure of the second body portion 420. In addition, the second diaphragm 443 may be provided on the pressing member 441 to be in contact with the plunger 430.
(65) In a different manner, as illustrated in
(66) However, the configuration of the pressing portion 440 is not particularly limited. Any configuration of the pressing portion 440, used in the art, in which the pressing portion 440 may be provided to be movable in the first body portion 410 and which may allow the plunger 430 to be moved according to a pressure difference between the first body portion 410 and the second body portion 420, may be employed.
(67) In a different manner, the plunger 430 may be elastically supported by an elastic member 431 as illustrated in
(68) As illustrated in
(69) In addition, as illustrated in
(70) As described above with reference to
(71) Thus, if the plunger does not necessarily need to ascend, the plunger 430 may not ascend only with force applied to the first diaphragm 442 of the pressing portion 440 through pressure acting on the connection flow path 421 of the second body portion 420.
(72) Therefore, the plunger 430 may exhibit reliability in operations thereof.
(73) Although the elastic member 431 may elastically support the upper portion of the plunger 430 as described above with reference to
(74) The elastic member 431 elastically supporting the plunger 430 is not limited to a coil spring illustrated in
(75) The second body portion 420 may be connected to the first body portion 410. The second body portion 420 may be connected to the storage member 310 and the reverse osmosis filter 210 by a connection line. To this end, the discharge line LE described above may be connected to the second body portion 420. Further, the second body portion 420 may be connected to a connection discharge line LCE connected to the water discharge member 500.
(76) The connection flow path 421 may be formed in the second body portion 420 to be connected to the discharge line LE and the connection discharge line LCE. In detail, the discharge line LE may be connected to one end of the connection flow path 421, and the connection discharge line LCE may be connected to another end of the connection flow path 421.
(77) In addition, a connection hole 421a connected to the pressure transfer portion 415 of the first body portion 410 may be formed in the connection flow path 421. Thus, pressure of the connection flow path 421 of the second body portion 420 may be transferred to the first diaphragm 442 of the pressing member 440 through the connection hole 421a.
(78) In a different manner, as illustrated in
(79) In addition, the second body portion 420 and the first body portion 410 may also be configured, in such a manner that the connection flow path 421 of the second body portion 420, and a virtual line connecting the drain port 412 of the first body portion 410 to the inlet-outlet port 413 thereof to each other, form any angle or a specific angle.
(80) For example, the first body portion 410 and the second body portion 420 may be formed to have cylindrical shapes, square parallelepiped shapes, or rectangular parallelepiped shapes.
(81) By the configuration described above, in a state in which purified water is not stored in the storage member 310 and the water discharge member 500 is closed, pressure in the purified water line LPW may be lower than a predetermined pressure. Thus, the automatic shut-off valve 240 is opened, to allow raw water to flow in through the raw water line LRW as illustrated in
(82) The raw water having flowed into the raw water line LRW may pass through the reducing valve VRD and flow into the first water filter 220 to be filtered. Raw water filtered by the first water filter 220 may flow into the reverse osmosis filter 210. In the raw water having flowed into the reverse osmosis filter 210, purified water filtered by the reverse osmosis filter 210 may flow in the purified water line LPW and be stored in the storage member 310 of the storage unit 300.
(83) When purified water filtered by the reverse osmosis filter 210 is continuously stored in the storage member 310 of the storage unit 300, pressure of the storage member 310 may be increased. Thus, pressure in the discharge line LE branching off from the purified water line LPW connected to the storage member 310, and pressure in the connection flow path 421 of the flow path changing valve 400 connected to the discharge line LE may also be increased.
(84) Further, when force applied to the first diaphragm 442 of the pressing portion 440, by pressure of the connection flow path 421, is increased to be greater than force applied to an upper portion of the plunger 430 by residential water, as illustrated in
(85) Thus, as illustrated in
(86) As such, when purified water filtered by the reverse osmosis filter 210 is stored in the storage member 310 of the storage unit 300, since pressure other than pressure of purified water does not act on the storage member 310, counterpressure may not act on the reverse osmosis filter 210.
(87) Thus, a flow rate of purified water filtered by and discharged from the reverse osmosis filter 210 may not be reduced, and filtering efficiency may not be deteriorated.
(88) In a different manner, residential water unable to be filtered by the reverse osmosis filter 210 may flow in the residential water line LLW as illustrated in
(89) In a different manner, when the storage member 310 of the storage unit 300 is full of purified water as illustrated in
(90) In this case, as described above, even in a case in which water present in the reverse osmosis filter 210 is discharged through the drain line LD, pressure in the purified water line LPW may be maintained at a predetermined level by the first check valve CV1. Since pressure in the purified water line LPW may be maintained at a predetermined pressure as described above, the automatic shut-off valve 240 may not be opened while a closed state thereof is continuously maintained.
(91) In a state in which the storage member 310 of the storage unit 300 is full of purified water, when the water discharge member 500 is opened as illustrated in
(92) Purified water filtered by the second water filter 230 may flow to the water discharge member 500 through the discharge line LE, the connection flow path 421 of the flow path changing valve 400, and the connection discharge line LCE. In addition, purified water may be externally discharged through the water discharge member 500 to be supplied to a user.
(93) As the purified water is discharged through the water discharge member 500, when pressure of the purified water line LPW is lowered to be less than a predetermined pressure, the automatic shut-off valve 240 may be opened. In addition, raw water may flow in through the raw water line LRW to be filtered by the first water filter 220 as illustrated in
(94) The raw water filtered by the first water filter 220 may flow into the reverse osmosis filter 210 as illustrated in
(95) In this case, residential water unable to be filtered by the reverse osmosis filter 210 may flush the reverse osmosis filter 210. Thus, a lifespan of the reverse osmosis filter 210 may be extended.
(96) Residential water may flow to the residential water port 411 of the flow path changing valve 400 through the residential water line LLW, as illustrated in
(97) In addition, when force applied to an upper portion of the plunger 430 from the residential water is increased to be greater than force applied to the first diaphragm 442 of the pressing portion 440 by purified water flowing in the connection flow path 421 of the flow path changing valve 400, the plunger 430 may be moved to a position in which the inlet-outlet line LEI and the residential water line LLW are connected to each other, for example, may descend as illustrated in
(98) Thus, residential water flowing in the residential water line LLW may flow into the inlet-outlet line LEI and flow in the inlet-outlet line LEI to then flow into the housing 320 of the storage portion 300. Thus, purified water stored in the storage member 310 of the storage unit 300 may be continuously discharged.
Other Exemplary Embodiments
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(101) The water treatment apparatuses 100 according to other exemplary embodiments in the present disclosure has a difference from the water treatment apparatus 100 according to the exemplary embodiment in the present disclosure described above with reference to
(102) Thus, only differences therebetween will be described below, and a description of configurations overlapping with those of the foregoing exemplary embodiment will be substituted with the description above with reference to
(103) With reference to
(104) In such a configuration, pressure of the discharge line LE may also be transferred to the connection flow path 421 of the flow path changing valve 400, to allow the flow path changing valve 400 to operate.
(105) In a different manner, in a water treatment apparatus 100 according to another exemplary embodiment in the present disclosure, a discharge line LE may be directly connected to a water discharge member 500 as illustrated in
(106) In such a configuration, pressure of the discharge line LE may also be transferred to the connection flow path 421 of the flow path changing valve 400, to allow the flow path changing valve 400 to operate.
(107) As set forth above, with water treatment apparatuses according to exemplary embodiments in the present disclosure, by using a single flow path changing valve, purified water filtered by a reverse osmosis filter may be stored in a storage member provided within a housing, or residential water unable to be filtered by the reverse osmosis filter may flow into the housing, thereby discharging purified water stored in a storage member.
(108) Thus, while a reverse osmosis filter is used, purified water may be easily externally discharged, and a location of a water discharge member from which purified water is discharged may not be limited.
(109) Further, counterpressure may not act on a reverse osmosis filter, a flow rate of purified water filtered and discharged by a reverse osmosis filter may not be reduced. In addition, filtering efficiency may not be deteriorated.
(110) The configuration of a water treatment apparatus according to exemplary embodiments is not limited to the description above. The entirety or a portion of the respective exemplary embodiments in the present disclosure described above may be selectively combined and configured to be modified.