CN211078627U - Super large flow water purifier - Google Patents

Super large flow water purifier Download PDF

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Publication number
CN211078627U
CN211078627U CN201920912291.XU CN201920912291U CN211078627U CN 211078627 U CN211078627 U CN 211078627U CN 201920912291 U CN201920912291 U CN 201920912291U CN 211078627 U CN211078627 U CN 211078627U
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China
Prior art keywords
stage filter
filter cavity
water
stage
cavity
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Expired - Fee Related
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CN201920912291.XU
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Chinese (zh)
Inventor
潘传华
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Sanguan Sanyin Dongguan Intelligent Technology Co ltd
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Sanguan Sanyin Dongguan Intelligent Technology Co ltd
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Abstract

The utility model discloses an ultra-large flow water purifier, which comprises a shell, wherein a first-stage filter cavity, a second-stage filter cavity, a third-stage filter cavity, a fourth-stage filter cavity, a fifth-stage filter cavity and a sixth-stage filter cavity are sequentially formed in the shell from a water inlet end to a water outlet end, and a plurality of silver-titanium alloy filter elements are respectively arranged in the first-stage filter cavity, the second-stage filter cavity, the third-stage filter cavity, the fourth-stage filter cavity, the fifth-stage filter cavity and the sixth-stage filter cavity; activated carbon particles are respectively filled in the second-stage filter cavity, the fifth-stage filter cavity and the sixth-stage filter cavity, KDF copper-zinc alloy particles are filled in the third-stage filter cavity, and diatomite particles are filled in the fourth-stage filter cavity. The utility model provides a super large flow water purifier not only can realize filtering when the same time is to super large flow water, filters soon, and is efficient, satisfies the demand of super large water consumption, guarantees the purity of filtration purification back water, and simple installation moreover, the expense reduces, and it is convenient to maintain.

Description

Super large flow water purifier
Technical Field
The utility model relates to a water purifier especially relates to a super large flow water purifier.
Background
Due to the pollution of water quality of water sources, the lag of water purification equipment and technology of urban water plants, poor material of partial pipe networks and internal pipelines of users, poor management of roof water tanks and the continuous improvement of requirements of people on water quality, so that a plurality of urban tap water users have dissatisfied feedback on the quality of tap water, and the water quality improvement plan is established by water departments in various regions, but the improvement needs time and day. Therefore, in order to meet the requirements of people on water quality, most families adopt the water purifier to purify the water quality.
However, the water purifier in the current market is small in size and limited in internal filtering structure, so that the water purifier in the current market is only suitable for filtering and purifying small flow water in small families and small places. In large places such as schools, factories and the like or large buildings, if water is required to be filtered and purified, a plurality of small water purifiers on the market at present need to be installed at a plurality of positions, and the small water purifiers are complex to install, high in cost, difficult to maintain and poor in purification effect.
SUMMERY OF THE UTILITY MODEL
To the above, not enough, the utility model aims to provide a super large flow water purifier not only can realize filtering when same time is to super large flow water, filters soon, and is efficient, satisfies the demand of super large water consumption, guarantees the purity of filtration purification back water, and the simple installation moreover, the expense reduces, and it is convenient to maintain.
The utility model discloses a reach the technical scheme that above-mentioned purpose adopted and be:
a super-large flow water purifier comprises a machine shell and is characterized in that a first-stage filter cavity, a second-stage filter cavity, a third-stage filter cavity, a fourth-stage filter cavity, a fifth-stage filter cavity and a sixth-stage filter cavity are sequentially formed in the machine shell from a water inlet end to a water outlet end, and a plurality of silver-titanium alloy filter elements are respectively arranged in the first-stage filter cavity, the second-stage filter cavity, the third-stage filter cavity, the fourth-stage filter cavity, the fifth-stage filter cavity and the sixth-stage filter cavity; activated carbon particles are respectively filled in the second-stage filter cavity, the fifth-stage filter cavity and the sixth-stage filter cavity, KDF copper-zinc alloy particles are filled in the third-stage filter cavity, and diatomite particles are filled in the fourth-stage filter cavity.
As a further improvement of the utility model, the silver-titanium alloy filter element is mainly formed by the mixed sintering of spherical titanium particles and spherical silver particles, and is formed with the fine filtration pore of several in this silver-titanium alloy filter element.
As a further improvement, the micro-fine filter hole is formed by surrounding spherical silver particles inside the silver-titanium alloy filter element.
As a further improvement of the utility model, the aperture of the micro-filtration pore is 0.5 nm-100 nm.
As a further improvement of the utility model, the aperture of the micro-filtration pore is 1 nm-10 nm.
As a further improvement of the utility model, the water inlet end of the casing is provided with a water inlet pipe communicated with the primary filter cavity, and the water outlet end is provided with a water outlet pipe communicated with the six-stage filter cavity.
As a further improvement of the utility model, a TDS sensor is respectively arranged in the water inlet pipeline and the water outlet pipeline.
The utility model has the advantages that: the water purifier with the six-stage filtering structure is formed by combining a first-stage filtering cavity, a second-stage filtering cavity, a third-stage filtering cavity, a fourth-stage filtering cavity, a fifth-stage filtering cavity and a sixth-stage filtering cavity, and silver-titanium alloy filter elements arranged inside the water purifier with the respective filled particulate matters, so that the water purifier with the six-stage filtering structure can realize six-stage filtering of super-large-flow domestic water, is particularly suitable for filtering and purifying super-large-flow water, is particularly suitable for large places or buildings such as schools, factories and the like, can uniformly filter and purify water in the whole large place or the whole building, can simultaneously filter the super-large-flow water at the same time, is quick in filtering and high in efficiency, meets the requirement of super-large water consumption, ensures the purity of the filtered and purified water, only needs to be installed for one water purifier, pays the cost of one water purifier to maintain the one water purifier, realizes simple and, The maintenance is facilitated.
The above is an overview of the technical solution of the present invention, and the present invention is further explained with reference to the accompanying drawings and the detailed description.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
To further illustrate the technical means and effects of the present invention adopted to achieve the intended purpose, the following detailed description of the embodiments of the present invention is provided in conjunction with the accompanying drawings and preferred embodiments.
Referring to fig. 1, an embodiment of the present invention provides an ultra-high flow water purifier, including a housing 1, a first-stage filter chamber 11, a second-stage filter chamber 12, a third-stage filter chamber 13, a fourth-stage filter chamber 14, a fifth-stage filter chamber 15, and a sixth-stage filter chamber 16 sequentially formed in the housing 1 from a water inlet end to a water outlet end, wherein a plurality of silver-titanium alloy filter elements 10 are respectively disposed in the first-stage filter chamber 11, the second-stage filter chamber 12, the third-stage filter chamber 13, the fourth-stage filter chamber 14, the fifth-stage filter chamber 15, and the sixth-stage filter chamber 16; activated carbon particles 17 are respectively filled in the second-stage filter cavity 12, the fifth-stage filter cavity 15 and the sixth-stage filter cavity 16, KDF copper-zinc alloy particles 18 are filled in the third-stage filter cavity 13, and diatomite particles 19 are filled in the fourth-stage filter cavity 14.
In this embodiment, the silver-titanium alloy filter element 10 is mainly formed by mixing and sintering spherical titanium particles and spherical silver particles, and a plurality of fine filter pores are formed in the silver-titanium alloy filter element. Specifically, the fine filtration pores are surrounded by spherical silver particles inside the silver-titanium alloy filter element 10. The pore diameter of the fine filtration pore is 0.5nm to 100nm, and preferably, the pore diameter of the fine filtration pore is 1nm to 10 nm.
The spherical titanium particles adopted by the silver-titanium alloy filter element 10 in the embodiment have the characteristics of high strength, good corrosion resistance, high heat resistance and the like; the adopted spherical silver particles contain silver ions, so that the silver ions can strongly adsorb bacterial protease to destroy the protease of a bacterial body, so that bacteria die, and the silver has an adsorption effect on microorganisms in the liquid, so that after the microorganisms are adsorbed by the silver, the respiratory enzyme loses efficacy, and the microorganisms die quickly, so that the bactericidal capacity of the silver ions is particularly strong.
Therefore, the silver-titanium alloy filter element 10 with the special filter structure formed by mixing and sintering the spherical titanium particles and the spherical silver particles integrates the strength and corrosion resistance of the spherical titanium particles and the sterilization and disinfection characteristics of the spherical silver particles, so that the silver-titanium alloy filter element 10 has higher strength and hardness and has stronger sterilization and disinfection functions, and meanwhile, the micro-filtration pores can filter out finer bacterial impurities in domestic water, and the domestic water can be filtered, sterilized and disinfected.
In this embodiment, a water inlet pipe 2 communicated with the first-stage filter cavity 11 is disposed at the water inlet end of the housing 1, and a water outlet pipe 3 communicated with the sixth-stage filter cavity 16 is disposed at the water outlet end.
In order to know the purity of the water at the water inlet end and the water flowing to the water outlet end after being filtered, a TDS sensor is respectively arranged in the water inlet pipeline 2 and the water outlet pipeline 3, the TDS sensor is a sensor for detecting the total amount of the soluble solids in the water, the measurement unit is mg/L (mg/L), the TDS sensor indicates how many milligrams of the soluble solids are dissolved in 1 liter of water, and the higher the TDS value is, the more the dissolved substances in the water is, the more the impurities in the water are.
In the embodiment, a six-stage filtering structure is formed by the first-stage filtering cavity 11, the second-stage filtering cavity 12, the third-stage filtering cavity 13, the fourth-stage filtering cavity 14, the fifth-stage filtering cavity 15 and the sixth-stage filtering cavity 16, the silver-titanium alloy filtering element 10 arranged inside and the granular substances filled in the silver-titanium alloy filtering element respectively, so that six-stage filtering of the super-large-flow domestic water is realized. The method comprises the following specific steps:
firstly, because the discharge of water that gets into the end of intaking is big, and contains very to bacterial impurity, consequently, only set up several silver-titanium alloy filter core 10 in primary filter chamber 11, carry out the prefilter to the bacterial impurity of aquatic, and do not fill other particulate matter, then carry out the smooth entering secondary filter chamber 12 of super large flow hydroenergy after the primary filtration by silver-titanium alloy filter core 10, and can not blockked up.
Then, the ultra-high flow water entering the secondary filter cavity 12 is combined by a plurality of silver-titanium alloy filter elements 10 and activated carbon particles 17 to carry out secondary filtration on the ultra-high flow water, the silver-titanium alloy filter elements 10 further filter partial bacteria and impurities in the ultra-high flow water, the activated carbon particles 17 remove most of pesticides, pesticide residues, organic solvents and other chemical pollution caused by industry in the water, and the water is subjected to primary decoloration and peculiar smell removal treatment.
Then, the super-large flow water after the secondary filtration enters a third-stage filter cavity 13, the super-large flow water entering the third-stage filter cavity 13 is combined with KDF copper-zinc alloy particles 18 through a plurality of silver-titanium alloy filter elements 10 to carry out third-stage filtration on the super-large flow water, partial bacteria and impurities in the water are further filtered through the silver-titanium alloy filter elements 10, heavy metals and acid radical ions in the water are removed through the KDF copper-zinc alloy particles 18, the activation degree of the water is improved, the absorption of the water by a human body is facilitated, the health of the human body is protected, and the metabolism of the human body is promoted.
Then, the super-large flow water after the third-stage filtration enters a fourth-stage filtration cavity 14, the super-large flow water entering the fourth-stage filtration cavity 14 is combined with diatomite particles 19 through a plurality of silver-titanium alloy filter elements 10 to carry out fourth-stage filtration on the water, the silver-titanium alloy filter elements 10 further filter partial bacteria and impurities in the water, and the diatomite particles 19 remove suspended particles, colloid and other impurities in the water.
Then, the super-large flow water after the four-stage filtration enters a five-stage filter cavity 15, the super-large flow water entering the five-stage filter cavity 15 is combined with activated carbon particles 17 through a plurality of silver-titanium alloy filter elements 10, the super-large flow water is subjected to five-stage filtration, the silver-titanium alloy filter elements 10 further filter partial bacteria and impurities in the water, the activated carbon particles 17 further remove pesticides, pesticide residues, organic solvents and other chemical pollution caused by industry, and the water is further decolored and subjected to peculiar smell removal treatment.
And finally, the ultra-high flow water after five-stage filtration enters a six-stage filtration cavity 16, the ultra-high flow water entering the six-stage filtration cavity 16 is combined with activated carbon particles 17 by a plurality of silver-titanium alloy filter elements 10 to carry out six-stage filtration on the ultra-high flow water, the silver-titanium alloy filter elements 10 finally filter a small amount of bacteria and impurities remained in the water, the activated carbon particles 17 finally remove a small amount of pesticide, pesticide residues, organic solvents and other chemical pollution caused by industry, and the water is finally decolored and deodorized.
The super-large flow water obtained after six-stage treatment is pure domestic water which hardly contains any impurities.
The water purifier structure that this embodiment provided, the specially adapted is to the filtration purification to super large-flow water, and the large-scale place or building such as specially adapted school, mill not only can guarantee the purity of filtration purification back water to whole large-scale place, or whole building water and filter in unison, realizes filtering simultaneously to super large-flow in addition, and it is fast to filter, efficient, satisfies the demand of super large water consumption.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the technical scope of the present invention, so that other structures obtained by adopting the same or similar technical features as the above embodiments of the present invention are all within the protection scope of the present invention.

Claims (7)

1. A super-large flow water purifier comprises a machine shell and is characterized in that a first-stage filter cavity, a second-stage filter cavity, a third-stage filter cavity, a fourth-stage filter cavity, a fifth-stage filter cavity and a sixth-stage filter cavity are sequentially formed in the machine shell from a water inlet end to a water outlet end, and a plurality of silver-titanium alloy filter elements are respectively arranged in the first-stage filter cavity, the second-stage filter cavity, the third-stage filter cavity, the fourth-stage filter cavity, the fifth-stage filter cavity and the sixth-stage filter cavity; activated carbon particles are respectively filled in the second-stage filter cavity, the fifth-stage filter cavity and the sixth-stage filter cavity, KDF copper-zinc alloy particles are filled in the third-stage filter cavity, and diatomite particles are filled in the fourth-stage filter cavity.
2. The ultra-large flow water purifier as recited in claim 1, wherein the silver-titanium alloy filter element is formed by mixing and sintering spherical titanium particles and spherical silver particles, and a plurality of fine filter pores are formed in the silver-titanium alloy filter element.
3. The ultra-large flow water purifier of claim 2, wherein the micro-filtration pores are surrounded by spherical silver particles inside the silver-titanium alloy filter element.
4. The ultra-large flow water purifier of claim 2, wherein the micro filtration pores have a pore size of 0.5nm to 100 nm.
5. The ultra-large flow water purifier of claim 4, wherein the micro filtration pores have a pore size of 1nm to 10 nm.
6. The ultra-large flow water purifier as recited in claim 1, wherein the water inlet end of said housing has a water inlet conduit in communication with the first stage filter chamber, and the water outlet end has a water outlet conduit in communication with the sixth stage filter chamber.
7. The super large flow water purifier as recited in claim 6, wherein a TDS sensor is disposed within each of said inlet conduit and said outlet conduit.
CN201920912291.XU 2019-06-18 2019-06-18 Super large flow water purifier Expired - Fee Related CN211078627U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920912291.XU CN211078627U (en) 2019-06-18 2019-06-18 Super large flow water purifier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920912291.XU CN211078627U (en) 2019-06-18 2019-06-18 Super large flow water purifier

Publications (1)

Publication Number Publication Date
CN211078627U true CN211078627U (en) 2020-07-24

Family

ID=71640441

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920912291.XU Expired - Fee Related CN211078627U (en) 2019-06-18 2019-06-18 Super large flow water purifier

Country Status (1)

Country Link
CN (1) CN211078627U (en)

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Granted publication date: 20200724

Termination date: 20210618