WO2022010283A1 - Appareil de purification d'eau - Google Patents

Appareil de purification d'eau Download PDF

Info

Publication number
WO2022010283A1
WO2022010283A1 PCT/KR2021/008723 KR2021008723W WO2022010283A1 WO 2022010283 A1 WO2022010283 A1 WO 2022010283A1 KR 2021008723 W KR2021008723 W KR 2021008723W WO 2022010283 A1 WO2022010283 A1 WO 2022010283A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
line
reverse osmosis
purified
purified water
Prior art date
Application number
PCT/KR2021/008723
Other languages
English (en)
Korean (ko)
Inventor
문형민
김철호
문현석
홍영훈
박시준
신현수
박찬정
Original Assignee
코웨이 주식회사
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 코웨이 주식회사 filed Critical 코웨이 주식회사
Priority to CN202180047512.1A priority Critical patent/CN115768547A/zh
Publication of WO2022010283A1 publication Critical patent/WO2022010283A1/fr

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D61/00Processes of separation using semi-permeable membranes, e.g. dialysis, osmosis or ultrafiltration; Apparatus, accessories or auxiliary operations specially adapted therefor
    • B01D61/02Reverse osmosis; Hyperfiltration ; Nanofiltration
    • B01D61/025Reverse osmosis; Hyperfiltration
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D35/00Filtering devices having features not specifically covered by groups B01D24/00 - B01D33/00, or for applications not specifically covered by groups B01D24/00 - B01D33/00; Auxiliary devices for filtration; Filter housing constructions
    • B01D35/02Filters adapted for location in special places, e.g. pipe-lines, pumps, stop-cocks
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D61/00Processes of separation using semi-permeable membranes, e.g. dialysis, osmosis or ultrafiltration; Apparatus, accessories or auxiliary operations specially adapted therefor
    • B01D61/02Reverse osmosis; Hyperfiltration ; Nanofiltration
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D61/00Processes of separation using semi-permeable membranes, e.g. dialysis, osmosis or ultrafiltration; Apparatus, accessories or auxiliary operations specially adapted therefor
    • B01D61/02Reverse osmosis; Hyperfiltration ; Nanofiltration
    • B01D61/08Apparatus therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D61/00Processes of separation using semi-permeable membranes, e.g. dialysis, osmosis or ultrafiltration; Apparatus, accessories or auxiliary operations specially adapted therefor
    • B01D61/02Reverse osmosis; Hyperfiltration ; Nanofiltration
    • B01D61/08Apparatus therefor
    • B01D61/081Apparatus therefor used at home, e.g. kitchen
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D61/00Processes of separation using semi-permeable membranes, e.g. dialysis, osmosis or ultrafiltration; Apparatus, accessories or auxiliary operations specially adapted therefor
    • B01D61/02Reverse osmosis; Hyperfiltration ; Nanofiltration
    • B01D61/10Accessories; Auxiliary operations
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D61/00Processes of separation using semi-permeable membranes, e.g. dialysis, osmosis or ultrafiltration; Apparatus, accessories or auxiliary operations specially adapted therefor
    • B01D61/02Reverse osmosis; Hyperfiltration ; Nanofiltration
    • B01D61/12Controlling or regulating
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/008Control or steering systems not provided for elsewhere in subclass C02F
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/44Treatment of water, waste water, or sewage by dialysis, osmosis or reverse osmosis
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/44Treatment of water, waste water, or sewage by dialysis, osmosis or reverse osmosis
    • C02F1/441Treatment of water, waste water, or sewage by dialysis, osmosis or reverse osmosis by reverse osmosis
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2311/00Details relating to membrane separation process operations and control
    • B01D2311/14Pressure control
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2209/00Controlling or monitoring parameters in water treatment
    • C02F2209/03Pressure

Definitions

  • the present invention is a water purifying device, more specifically, applied to a direct water type reverse osmosis system, configured to recirculate household water discharged from a reverse osmosis filter, and block water extraction using a TDS value of a flow path is a technique about
  • a water purifying device filters raw water supplied from a raw water supply source and uses it as drinking water for a user to drink, or is used for other purposes, and is also called a so-called 'purifying device'.
  • a reverse osmosis (RO) membrane module When a reverse osmosis (RO) membrane module is used as a filtering means of the water purification device, some of the raw water supplied to the reverse osmosis membrane module is filtered by the membrane to become purified water, and the remainder is concentrated containing dissolved impurities. becomes the number Concentrated water may be discharged to the outside through a household water discharge line provided in the water purification device.
  • a pump may be provided at the front end of the reverse osmosis membrane module.
  • the reverse osmosis membrane module has a high TDS (Total Dissolved Solids) concentration on the non-filtration side of the membrane (reverse osmosis membrane) and a low TDS value, i.e., filtered water (purified water), on the opposite side of the filtration side.
  • TDS Total Dissolved Solids
  • filtered water purified water
  • KR 10-2018-0058602A by the present applicant is disclosed.
  • the present prior art discloses not only the basic configuration of a reverse osmosis water purification device, but also a configuration for controlling the discharge of domestic water based on the ratio of the purified water TDS value to the raw water TDS value. Structurally, by being provided with a flushing tank connected to the purified water passage, the effect of reducing wasted water is achieved.
  • the prior art discloses only a configuration in which the flushing tank stores purified water and provides the stored purified water back to the filter unit to be used for flushing the filter unit, and does not disclose a configuration for increasing the purified water capacity in a low water pressure area. can not do it.
  • a low water pressure area where the purified water capacity is not sufficiently secured, it is unreasonable to configure the purified water to be stored back into the flushing tank for the purpose of flushing, despite the insufficient amount of purified water extraction itself.
  • the prior art is somewhat unsuitable for use in a low water pressure area.
  • a purified water supply device of JP 2013-049030A is disclosed.
  • the prior art discloses a configuration in which the concentrated water circulation path is recirculated as a reverse osmosis water purification device based on the TDS value.
  • the main purpose is to inform the user of the TDS value, and it does not disclose a configuration that specifically controls the discharge of purified water or domestic water through the TDS value, and there is no separate description for the function of the concentrated water circulation path and their control. .
  • it is not configured for use in low-pressure areas.
  • Patent Document 1 KR 10-2018-0058602A
  • Patent Document 2 KR 10-2017-0079110A
  • Patent Document 3 JP 2013-049030A
  • the present invention has been devised to solve the above problems.
  • the present invention relates to use in a low water pressure area, which is the biggest limitation of a direct water type reverse osmosis water purification apparatus, and is a water purifying apparatus capable of securing a stable water extraction flow rate even if the installation area of the water purification apparatus is a low water pressure area.
  • the present invention intends to propose a water purification device capable of stably maintaining the performance of the reverse osmosis filter by lowering the concentration at the membrane interface of the reverse osmosis filter.
  • the present invention intends to propose a water purifying device capable of securing more purified water capacity by expanding the volume of the concentrated water space occupied by domestic water when household water is shut off.
  • TDS values of raw water, domestic water, and purified water can be calculated by providing a TDS sensor only on the flow path side through which domestic water is discharged without having a plurality of TDS sensors, and based on this, purified water and household water can be calculated.
  • a water purification system that can control the emission.
  • An embodiment of the present invention for solving the above problems is a reverse osmosis filter 110 for filtering raw water in a reverse osmosis method, based on the built-in reverse osmosis membrane 111, the filtering side (112a) and the non-filtration Partitioned to the side (112b), reverse osmosis filter 110; a pump unit 120 provided in the raw water line 130 connected to the front end of the reverse osmosis filter 110, for flowing raw water to the non-filtration side 112b; a purified water discharge line 140 connected to the filtration side 112a of the reverse osmosis filter 110 to extract filtered purified water; a purified water discharge valve 142 provided in the purified water discharge line 140 to open and close the purified water discharge line 140; A TDS sensor 152 is provided, the front end is connected to the non-filtration side 112b of the reverse osmosis filter 110 , and the rear end is connected to the front end side of the pump unit 120 of the raw water line 130 .
  • a household water discharge line 160 branching from the circulation line 150 to discharge household water to the outside; a household water discharge valve 162 provided in the household water discharge line 160 to open and close the household water discharge line 160; and a control unit 170 for controlling the operation of the pump unit 120, the purified water discharge valve 142, and the household water discharge valve 162; Including, the control unit 170, when the TDS value of the domestic water flowing through the circulation line 150 reaches a threshold value, by closing the purified water discharge valve 142, purified water in a state in which purified water can be extracted
  • a water purifying device that converts the water into an extraction impossible state and flows the household water to the household water discharge line 160 by opening the household water discharge valve 162 in the purified water extraction impossible condition.
  • control unit 170 closes the household water discharge valve 162 in the purified water extraction state, so that the household water flowing out from the non-filtration side 112b of the reverse osmosis filter 110 is the circulation line. It can be controlled to recirculate to the reverse osmosis filter 110 through (150).
  • control unit 170 controls the household water discharge valve 162 in a state in which the Nth purified water cannot be extracted, thereby using the raw water supplied from the raw water line 130 to control the reverse osmosis filter 110 .
  • the TDS sensor 152 is provided on the front end of the household water discharge valve 162 to sense the TDS value of the raw water, and the TDS value of the raw water to the N+1th raw water TDS in a purified water extraction possible state value can be set.
  • the TDS sensor 152 may sense the TDS value of the domestic water flowing through the circulation line 150 in real time in the state in which the N+1th purified water can be extracted.
  • the threshold value may mean that a ratio of the TDS value of the raw water to the TDS value of the domestic water reaches a preset value.
  • control unit 170 calculates in real time the purified water TDS value extracted to the purified water discharge line 140 based on the TDS value of the domestic water, and the raw water A TDS removal rate is calculated using the TDS value and the integer TDS value, and the threshold value may mean that the TDS removal rate reaches a preset value.
  • the circulation line 150 is further provided with a household water tank 154 in which the household water flowing through the circulation line 150 is stored, and the household water tank 154 includes the reverse osmosis filter 110 . It may be located between the non-filtration side 112b and the front end side of the pump unit 120 of the.
  • the circulation line 150 may further include a resistance valve 156 provided at the front end of the domestic water tank 154 based on the circulation direction of the domestic water.
  • the pre-treatment filter 122 provided on the front end of the pump unit 120 of the raw water line 130; and a post-treatment filter 144 provided in the purified water discharge line 140 ; may further include.
  • control unit 170 may switch to the household water discharge mode in which the household water discharge valve 162 is opened.
  • control unit 170 may control the ratio of the purified water extracted in the purified water use mode and the domestic water discharged in the household water discharge mode to 1:1.
  • a pressure sensor 131 is provided at the front end of the pump unit 120 of the raw water line 130 , and the control unit 170 sets the pressure of the raw water sensed by the pressure sensor 131 to a preset value. In the following cases, the output of the pump unit 120 may be controlled.
  • the present invention exhibits the following effects.
  • the present invention in relation to use in a low water pressure area, which is the biggest limitation of the direct water type reverse osmosis water purification apparatus, the present invention can secure a stable water extraction flow rate even if the installation area of the water purification apparatus is a low water pressure area.
  • the present invention can stably maintain the performance of the reverse osmosis filter by lowering the concentration at the membrane interface of the reverse osmosis filter.
  • the present invention can secure more purified water capacity by expanding the volume of the concentrated water space occupied by the household water when the household water is shut off.
  • TDS values of raw water, domestic water, and purified water can be calculated by providing a TDS sensor only on the flow path side through which domestic water is discharged without having a plurality of TDS sensors, and based on this, purified water and household water can be calculated. Emissions can be controlled.
  • FIG. 1 is a diagram showing the configuration of a first embodiment of a water purifying device according to the present invention.
  • FIG. 2 is a diagram illustrating a process in which purified water is extracted in FIG. 1 and water for living is circulated.
  • FIG. 3 is a view showing a process of flushing the reverse osmosis filter in FIG. 1 .
  • FIG 4 is a view showing the configuration of a second embodiment of the water purifying device according to the present invention.
  • FIG. 5 is a view showing a process of filling the household water tank with household water in FIG. 4 .
  • FIG. 6 is a diagram illustrating a process in which purified water is extracted in FIG. 4 and at the same time, living water is circulated.
  • FIG. 7 is a conceptual diagram schematically illustrating a process of confirming the ratio of the TDS value of raw water to the TDS value of domestic water in the water purification apparatus according to the present invention.
  • FIG. 8 is a graph showing the cumulative extraction amount of purified water and the TDS removal rate in the water purification apparatus according to the present invention, based on a case in which the total capacity (volume) of the circulation line through which domestic water flows is 0.1L.
  • FIG. 9 is a graph showing the cumulative extraction amount of purified water and the TDS removal rate in the water purification apparatus according to the present invention, based on a case in which the total capacity (volume) of the circulation line through which domestic water flows is 0.5L.
  • FIG. 10 is a graph showing the concentration polarization phenomenon with respect to the membrane interface of the reverse osmosis filter reverse osmosis membrane.
  • FIG. 11 is a view showing a configuration in which a pressure sensor is provided in a raw water flow path as a modified example of the present invention.
  • the present invention can be applied to a direct water purification apparatus that does not have a separate raw water storage tank, but is not limited thereto. it's a bar
  • 'front end', 'rear end', 'first half', and 'second half' used below are all defined based on the flow direction of water, where water is a broad concept including all of raw water, purified water, and domestic water.
  • FIG. 1 is a view showing a first embodiment of a water purifying apparatus according to the present invention, and the configuration of the water purifying apparatus according to the present invention will be described with reference to FIG. 1 .
  • Individual components of the water purifying device to be described later may be connected to tubing that functions as a flow path, and may be connected through fitting of the tubing.
  • the water purification device 100 When listed based on the flow direction of raw water, the water purification device 100 according to the present invention includes a raw water line 130 , a pump unit 120 , and a reverse osmosis filter 110 , and a reverse osmosis filter 110 and It is composed of a connected purified water discharge line 140 and a circulation line 150 .
  • the water purification apparatus 100 includes a control unit 170 for controlling the operation of the configuration, and the control unit 170 controls the operation of the pump unit 120 , the purified water discharge valve 142 , and the household water discharge valve 162 . is composed
  • the control of the operation of the purified water discharge valve 142 by the controller 170 means that the purified water discharge valve 142 is forcibly closed.
  • the purified water discharge valve 142 may be directly operated by the user, and when the user inputs a signal for opening the purified water discharge valve 142 to the control unit 170 , the control unit 170 controls the purified water discharge valve 142 . ) can also be controlled in such a way as to open
  • the raw water line 130 refers to a flow path connected to the front end of the reverse osmosis filter 110 , and is a flow path through which raw water that has not yet been filtered by the reverse osmosis filter 110 flows.
  • the front end of the raw water line 130 may be supplied with raw water by being connected to a water faucet (not shown) or a storage tank (not shown) provided at the installation site.
  • the rear end of the raw water line 130 is connected to the non-filtration side 112b of the reverse osmosis filter 110 .
  • a pump unit 120 is provided in the raw water line 130 , and the pump unit 120 is configured to supply raw water above the filtration pressure of the reverse osmosis filter 110 .
  • the raw water supplied to the non-filtration side (112b) is made into purified water in the process of being filtered to the filtering side (112a) through the reverse osmosis membrane (111) by pressurization of the pump unit (120).
  • the raw water line 130 is divided into the first half 130a of the raw water line and the second half 130b of the raw water line based on the pump unit 120 .
  • the pre-treatment filter 122 is provided on the front side 130a of the raw water line.
  • the pre-treatment filter 122 performs a function of removing organic compounds and residual chlorine contained in raw water, and is also called a 'sun-carbon filter'.
  • a check valve 132 may be further provided in the raw water line 130 .
  • check valve 132 As the check valve 132 is provided, it is possible to prevent the reverse flow of raw water even when the operation of the pump unit 120 is stopped. 1 illustrates that the check valve 132 is positioned on the second half 130b of the raw water line, but is not limited thereto, and may be positioned on the first half 130a of the raw water line.
  • the pump unit 120 has a check valve built-in by itself, so that in a state where the pump unit 120 is stopped, the pressure at the rear end of the pump unit 120 (or the pressure at the rear side of the raw water line 130b) is relieved by a reverse flow. is configured not to.
  • the output of the pump unit 120 is preferably set to 80 to 100 psi.
  • the reverse osmosis filter 110 is connected to the rear end of the pump unit 120 and configured to receive raw water through the operation of the pump unit 120 , and filters the raw water in a reverse osmosis method by the power of the pump unit 120 .
  • the reverse osmosis filter 110 has a built-in reverse osmosis membrane 111 and is divided into a filtration side 112a and a non-filtration side 112b based on the reverse osmosis membrane 111 . It is preferable that the filtering side 112a and the non-filtration side 112b be partitioned in a ratio of 1:1, and purified water and domestic water can be generated in a 1:1 ratio.
  • the filtering side (112a) is connected to the purified water discharge line (140), the non-filtration side (112b) is connected to the circulation line (150).
  • Raw water is filtered by the reverse osmosis membrane 111 , and purified water from which the dissolved impurities of the raw water have been removed flows to the filtering side 112a, and the living water having a high concentration of dissolved impurities flows to the non-filtration side 112b.
  • water for living is also called 'concentrated water'.
  • the reverse osmosis filter 110 may be formed in a cylindrical shape.
  • the latter side 130b of the raw water line is connected to the non-filtration side 112b of the reverse osmosis filter 110, and is preferably connected to the lower part of the non-filtration side 112b of the reverse osmosis filter 110. do.
  • the circulation line 150 is preferably connected to the upper portion of the non-filtration side (112b).
  • the purified water discharge line 140 is connected to the filtration side 112a of the reverse osmosis filter 110 and is a path through which purified water flows.
  • a purified water discharge valve 142 is provided in the purified water discharge line 140 , and when a purified water extraction signal is input by a user, the purified water discharge valve 142 is opened. As described above, it may be configured in a structure in which a user manually opens the purified water discharge valve 142 .
  • a post-treatment filter 144 is provided in front of the purified water discharge valve 142 in the purified water discharge line 140 .
  • the post-treatment filter 144 is also referred to as a 'after-carbon filter', and may perform a function of removing gaseous substances contained in purified water.
  • the purified water discharge line 140 may further include a flow meter 141 .
  • the purified water extraction amount is sensed through the flow meter 141 and information on the purified water extraction amount may be provided to the user.
  • purified water is extracted as much as the input purified water extraction amount and then automatically purified water discharge valve It may be designed to close 142 .
  • the circulation line 150 is connected to the non-filtration side 112b of the reverse osmosis filter 110 and is a path through which domestic water (concentrated water) flows.
  • domestic water concentrated water
  • by connecting the rear end of the circulation line 150 to the front end of the pump unit 120 it has a configuration for circulating domestic water. That is, most of the prior art technologies do not circulate but have a flow path for directly discharging household water, and the present invention has a big difference in that it is a flow path for circulating household water.
  • the water purification apparatus 100 is configured to simultaneously extract purified water and circulate water for domestic use. In other words, even while purified water is discharged to the purified water discharge line 140 , the domestic water stored in the non-filtration side 112b of the reverse osmosis filter 110 is circulated back to the front end of the pump unit 120 .
  • the water purification device 100 is formed to circulate the circulation line 150 to the front end of the pump unit 120 so that it can be effectively used in a low water pressure area without a separate pressurized pump.
  • the supply amount of raw water is relatively insufficient or the water pressure of raw water is relatively low
  • by recirculating the water for domestic use to the front end of the pump unit 120 without discharging it it is possible to maintain the supply flow of raw water. That is, by supplementing the insufficient raw water with domestic water, there is an effect of increasing the flow rate of raw water, and thus, there is an effect of increasing the extracted purified water capacity.
  • the larger the volume of the concentrated space occupied by the domestic water the greater the purified water capacity can be secured.
  • the household water discharge line 160 is branched.
  • the household water discharge line 160 is a flow path for discharging household water to the outside, and is substantially used in the flushing process.
  • the household water discharge line 160 is provided with a household water discharge valve 162 .
  • the household water discharge valve 162 determines whether the household water flows along the circulation line 150 to the front end of the pump unit 120 or is discharged to the household water discharge line 160 . That is, the household water is selectively flowed to the circulation line 150 or the household water discharge line 160 by the household water discharge valve 162 .
  • the household water discharge valve 162 when the household water discharge valve 162 is opened, household water is discharged to the outside along the household water discharge line 160 , and when the household water discharge valve 162 is closed, the household water flows to the circulation line 150 . do. That is, the household water discharge valve 162 performs a function of switching the flow path.
  • a modified example according to the present invention is configured such that the pressure sensor 131 is provided at the front end of the pump unit 120 of the raw water line 130 (see FIG. 11 ).
  • control unit 170 is configured to control the output of the pump unit 120 when the pressure of the raw water sensed by the pressure sensor 131 is less than or equal to a preset value. That is, when the area where the water purifying device 100 according to the present invention is installed is not a low water pressure area, it means that the output of the pump unit 120 is adjusted to be relatively low.
  • the circulation line 150 is provided with a TDS sensor 152 . More specifically, the TDS sensor 152 is provided on the front end of the household water discharge valve 162 and is configured to sense the TDS value contained in the fluid flowing through the circulation line 150 .
  • the TDS sensor 152 is electrically connected to the control unit 170 (including wired/wireless), and is configured to transmit a sensed TDS value to the control unit 170 . Details related to the TDS sensor 152 will be described later.
  • the circulation line 150 may further include a resistance valve 156 provided at the front end of the domestic water tank 154 based on the circulation direction of the domestic water.
  • the resistance valve 156 is a valve configured to allow only a preset flow rate, although it maintains a normally open state.
  • FIG. 2 shows the flow path of 'purified water extraction and circulation of domestic water'
  • FIG. 3 shows the flow path of 'living water discharge'.
  • the purified water discharge valve 142 is opened and the pump unit 120 is operated.
  • the household water discharge valve 162 is closed and the household water discharged from the non-filtration side 112b of the reverse osmosis filter 110 is circulated to the front end side of the pump unit 120 .
  • extraction of purified water and circulation of domestic water are performed simultaneously. As mentioned above, it can be effectively used in a low-pressure area through the circulation of domestic water, and a description thereof will be omitted.
  • FIG 3 illustrates a flushing process of the reverse osmosis filter 110 .
  • 'Flushing' refers to a process of washing the reverse osmosis membrane 111 using raw water in order to prevent the reverse osmosis membrane 111 from being damaged by foreign substances.
  • Water flowing into the non-filtration side 112b of the reverse osmosis filter 110 flushes the reverse osmosis membrane 111 and may be drained through the household water discharge line 160 together with foreign substances attached to the reverse osmosis membrane 111. To this end, it is necessary to open the household water discharge valve (162).
  • FIGS. 4 to 6 A second embodiment of the water purifying device according to the present invention will be described with reference to FIGS. 4 to 6 .
  • a description that overlaps with the above-described first embodiment will be omitted, and differences will be mainly described.
  • the second embodiment is distinguished from the above-described first embodiment in that the water tank 154 for living is provided in the circulation line 150 .
  • the living water tank 154 is a configuration introduced to increase the space occupied by the concentrated space or the living water, and is particularly effective in a low water pressure area. This is because as the amount of domestic water circulated through the circulation line 150 increases, the flow of raw water can be further maintained.
  • FIG. 5 shows a process of filling the domestic water tank 154 when the domestic water tank 154 does not reach full water, and will be described based on a state in which purified water is not extracted.
  • the living water tank 154 needs to be periodically discharged, and a separate drain pipe may be provided.
  • the raw water supplied through the raw water line 130 is continuously filled into the domestic water tank 154 through the non-filtration side 112b of the reverse osmosis filter 110 .
  • the TDS removal rate can be calculated using the TDS value of raw water and the TDS value of an integer. Specifically, the TDS removal rate is defined as 100*(1-(TDS value of an integer / TDS value of raw water)).
  • the purified water discharge valve 142 when the TDS value of the domestic water flowing through the circulation line 150 reaches a threshold value, the purified water discharge valve 142 is closed, thereby It is configured to switch to a state in which extraction of purified water is impossible. In a state in which purified water extraction is impossible, by opening the household water discharge valve 162 , the household water flows into the household water discharge line 160 . That means flushing.
  • the control unit 170 switches to the household water discharge mode in which the household water discharge valve 162 is opened, and sequentially discharges purified water and domestic water. is the composition
  • the reverse osmosis filter 110 is flushed using the raw water supplied from the raw water line 130 by controlling the household water discharge valve 162 in the Nth purified water extraction impossible state.
  • the TDS sensor 152 is provided on the front end of the household water discharge valve 162 to sense the TDS value of the raw water, and the TDS value of the raw water is set as the TDS value of the raw water in the N+1th purified water extraction possible state. .
  • the control unit 170 may forcibly close the purified water discharge valve 142 .
  • TDS value of the raw water is set during the flushing process.
  • the TDS removal rate is calculated using the raw water TDS value and the purified water TDS value after calculating the purified water TDS value extracted to the purified water discharge line 140 in real time based on the TDS value of domestic water. By calculating, the forced closing of the purified water discharge valve 142 is determined.
  • the present invention it is possible to sense both the TDS value of domestic water and the TDS value of raw water using one TDS sensor 152 .
  • the purified water discharge valve 142 is closed and the purified water cannot be extracted, the raw water flowing toward the reverse osmosis filter 110 is not filtered by the reverse osmosis filter 110 , but flows to the circulation line 150 .
  • the TDS sensor 152 is provided on the front end of the household water discharge valve 162 of the circulation line 150 , and in this process, it is possible to measure the TDS value of the raw water.
  • the present invention can sense both the TDS values of raw water and domestic water without a separate TDS sensor on the side to which raw water is supplied. Accordingly, in the present invention, there is no need to provide a plurality of TDS sensors, and production costs can be reduced. can do. In addition, since the single TDS sensor 152 is provided, even when the operation is faulty, the TDS sensor 152 can be intuitively replaced, providing ease of maintenance and repair. This is because, when there are a plurality of TDS sensors 152 , it is very difficult to determine which TDS sensor 152 is defective.
  • FIG. 10 is a graph showing the concentration polarization phenomenon with respect to the membrane interface of the reverse osmosis filter reverse osmosis membrane 111.
  • the concentration increases rapidly as it approaches the built-in membrane interface. This is because some of the components contained in the raw water are excluded (meaning filtering) by the membrane interface, and the accumulation of these excluded components occupy the membrane interface surface. This phenomenon is called 'concentration polarization', and concentration polarization has a negative effect on the permeate flow rate.
  • the filtration driving force can be reduced by increasing the chemical potential at the membrane interface surface.
  • the solute when the concentration of the solute at the surface of the membrane interface reaches the saturation concentration, the hydrodynamic resistance increases, so that the solute may be precipitated or a gel layer may be formed on the surface of the membrane interface.
  • the solute forms a very high concentration on the surface of the membrane interface, the risk of changing the composition of the membrane interface by chemical attack increases.
  • the solute adhered to the surface of the membrane interface may cause a problem of changing the separation characteristics (or filtration characteristics) of the membrane interface. Accordingly, in order to remove the accumulation on the membrane interface surface, as described above, it is absolutely necessary to perform flushing, thereby increasing the lifespan of the reverse osmosis membrane 111 .

Landscapes

  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Water Supply & Treatment (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Nanotechnology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Environmental & Geological Engineering (AREA)
  • Organic Chemistry (AREA)
  • Separation Using Semi-Permeable Membranes (AREA)

Abstract

La présente invention concerne un appareil de purification d'eau comprenant : un filtre d'osmose inverse (110) pour filtrer de l'eau brute par l'intermédiaire d'un processus d'osmose inverse, le filtre d'osmose inverse (110) étant divisé en un côté de filtrage (112a) et un côté non filtrant (112b) par rapport à une membrane d'osmose inverse intégrée (111) ; une unité de pompe (120) qui est disposée sur une conduite d'eau brute (130) relié au côté d'extrémité avant du filtre d'osmose inverse (110) et déplace l'eau brute vers le côté non filtrant (112b) ; une conduite de décharge d'eau purifiée (140) qui est relié au côté de filtrage (112a) du filtre d'osmose inverse (110) et à travers lequel l'eau purifiée filtrée est extraite ; une vanne de décharge d'eau purifiée (142) qui est disposée sur la conduite de décharge d'eau purifiée (140) et ouvre et ferme la conduite de décharge d'eau purifiée (140) ; une conduite de circulation (150) qui est pourvu d'un capteur TDS (152), et dont l'extrémité avant est reliée au côté non filtrant (112b) du filtre d'osmose inverse (110) et l'extrémité arrière étant reliée au côté d'extrémité avant de l'unité de pompe (120) sur la ligne d'eau brute (130) ; une conduite de décharge d'eau domestique (160) qui est ramifié à partir de la ligne de circulation (150) et décharge l'eau domestique vers l'extérieur ; une vanne de décharge d'eau domestique (162) qui est disposée sur la conduite de décharge d'eau domestique (160) et ouvre et ferme la conduite de décharge d'eau domestique (160) ; et une unité de commande (170) pour commander les opérations de l'unité de pompe (120), de la vanne de décharge d'eau purifiée (142) et de la vanne de décharge d'eau domestique (162). Lorsque la valeur TDS de l'eau domestique se déplace à travers la ligne de circulation (150) atteint une valeur seuil, l'unité de commande (170) ferme la vanne de décharge d'eau purifiée (142) et commute d'un état activé d'extraction d'eau purifiée à un état désactivé d'extraction d'eau purifiée. La vanne de décharge d'eau domestique (162) est ouverte dans l'état non désactivé d'extraction d'eau purifiée pour déplacer l'eau domestique vers la ligne de décharge d'eau domestique (160).
PCT/KR2021/008723 2020-07-08 2021-07-08 Appareil de purification d'eau WO2022010283A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202180047512.1A CN115768547A (zh) 2020-07-08 2021-07-08 净水器

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR10-2020-0084192 2020-07-08
KR1020200084192A KR20220006344A (ko) 2020-07-08 2020-07-08 정수장치

Publications (1)

Publication Number Publication Date
WO2022010283A1 true WO2022010283A1 (fr) 2022-01-13

Family

ID=79553463

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2021/008723 WO2022010283A1 (fr) 2020-07-08 2021-07-08 Appareil de purification d'eau

Country Status (3)

Country Link
KR (1) KR20220006344A (fr)
CN (1) CN115768547A (fr)
WO (1) WO2022010283A1 (fr)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009172462A (ja) * 2008-01-22 2009-08-06 Miura Co Ltd 水質改質装置、及び水処理システム、並びに排水の再利用システム
KR20180052403A (ko) * 2016-11-10 2018-05-18 코웨이 주식회사 수처리장치
KR20180058602A (ko) * 2016-11-24 2018-06-01 코웨이 주식회사 정수기 및 정수기의 제어 방법
US20190127236A1 (en) * 2017-10-31 2019-05-02 Apex Applied Technology, Inc. Systems and methods for controlable water treatment
KR20190097801A (ko) * 2018-02-13 2019-08-21 한국산업기술시험원 농축수를 재활용하는 역삼투막 정수처리 시스템

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009172462A (ja) * 2008-01-22 2009-08-06 Miura Co Ltd 水質改質装置、及び水処理システム、並びに排水の再利用システム
KR20180052403A (ko) * 2016-11-10 2018-05-18 코웨이 주식회사 수처리장치
KR20180058602A (ko) * 2016-11-24 2018-06-01 코웨이 주식회사 정수기 및 정수기의 제어 방법
US20190127236A1 (en) * 2017-10-31 2019-05-02 Apex Applied Technology, Inc. Systems and methods for controlable water treatment
KR20190097801A (ko) * 2018-02-13 2019-08-21 한국산업기술시험원 농축수를 재활용하는 역삼투막 정수처리 시스템

Also Published As

Publication number Publication date
KR20220006344A (ko) 2022-01-17
CN115768547A (zh) 2023-03-07

Similar Documents

Publication Publication Date Title
WO2015163631A1 (fr) Filtre à membrane d'osmose inverse ayant un canal pour le passage du fluide formé sur sa surface latérale
WO2010137763A1 (fr) Dispositif de récupération de chaleur des eaux usées et procédé correspondant
WO2020226373A1 (fr) Dispositif de répartition d'écoulement pour installation de traitement de l'eau
WO2015088259A1 (fr) Dispositif de filtration de type à immersion
WO2022010283A1 (fr) Appareil de purification d'eau
WO2017209580A1 (fr) Appareil de filtration de fibres
WO2014021541A1 (fr) Appareil de filtration d'eau sur membrane à pression contrôlée et procédé de lavage des membranes
WO2021085924A1 (fr) Purificateur d'eau
KR101109014B1 (ko) 자동역세척이 가능한 배관연결체
KR100843803B1 (ko) 자동 여과 장치를 이용한 폐수열 회수 시스템 및 여기에 사용된 오방향 밸브
WO2010140736A1 (fr) Système de surveillance d'appareil de récupération de la chaleur des eaux usées
WO2021045437A1 (fr) Purificateur d'eau et filtre correspondant
WO2021060785A1 (fr) Purificateur d'eau
WO2022270819A1 (fr) Purificateur d'eau
WO2014200210A1 (fr) Système de filtration et procédé de filtration
WO2010074475A1 (fr) Système et procédé de filtration
WO2022154251A1 (fr) Purificateur d'eau et son procédé de commande
JP2737468B2 (ja) 逆洗機能を備えた脱気装置
WO2022097910A1 (fr) Appareil d'épuration d'eau pouvant changer de mode de fonctionnement en réponse aux caractéristiques de la qualité de l'eau, et procédé de purification d'eau basé sur celui-ci
WO2023153605A1 (fr) Ensemble filtre
WO2022265274A1 (fr) Purificateur d'eau
WO2023096192A1 (fr) Système de purification d'eau
KR20220014667A (ko) 역세척 타입의 여과장치, 이를 포함하는 여과시스템 및 이의 구동방법
WO2011037422A2 (fr) Dispositif de traitement de l'eau pour eau souterraine
WO2022030862A1 (fr) Appareil de purification d'eau

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 21836945

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 21836945

Country of ref document: EP

Kind code of ref document: A1