Water treatment method and water treatment apparatus
US-2024383788-A1 · Nov 21, 2024 · US
US2019194039A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2019194039-A1 |
| Application number | US-201616306321-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 2, 2016 |
| Priority date | Jun 2, 2016 |
| Publication date | Jun 27, 2019 |
| Grant date | — |
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A water purification system (100) including an inlet (110) configured to accept a flow of water (105) is provided. The system (100) includes a KDF filtration stage (120) fluidly connected to the inlet (110) and including a metal alloy including elemental copper and elemental zinc. The system (100) includes a reverse osmosis stage (140) fluidly connected to the KDF stage (120). The system (100) also includes an outlet (150) fluidly connected to the reverse osmosis stage (140) and configured to output a flow of purified water (155). The reverse osmosis stage (140) is downstream of the KDF stage (120). A method of purifying water is also provided.
Opening claim text (preview).
What is claimed is: 1 . A water purification system comprising: an inlet configured to accept a flow of water; a KDF filtration stage fluidly connected to the inlet and comprising a metal alloy comprising elemental copper and elemental zinc; a reverse osmosis stage fluidly connected to the KDF stage; and an outlet fluidly connected to the reverse osmosis stage and configured to output a flow of purified water; wherein the reverse osmosis stage is downstream of the KDF stage. 2 . A method of purifying water, the method comprising: flowing water into the inlet of the water purification system of claim 1 ; flowing the water through each of the stages of the water purification system of claim 1 ; and flowing purified water from the outlet of the water purification system of claim 1 . 3 . The water purification system of claim 1 , wherein about 1 wt % to about 99 wt % of the metal alloy is the elemental copper. 4 . The water purification system of claim 1 , wherein about 1 wt % to about 99 wt % of the metal alloy is the elemental zinc. 5 . The water purification system of claim 1 , wherein the elemental copper and the elemental zinc together are about 50 wt % to about 100 wt % of the metal alloy. 6 . The water purification system of claim 1 , wherein the KDF filtration stage further comprises activated carbon. 7 . The water purification system of claim 1 , further comprising a diatomite stage fluidly connected to the reverse osmosis stage, wherein the outlet is fluidly connected to the diatomite stage, wherein the diatomite stage is downstream of the reverse osmosis stage. 8 . The water purification system of claim 1 , wherein the diatomite stage comprises a diatomite-based porous ceramic filtration media. 9 . A water purification system comprising: an inlet configured to accept a flow of water; a KDF filtration stage fluidly connected to the inlet and comprising a metal alloy that is a homogeneous mixture that is about 40 wt % to about 90 wt % elemental copper and about 10 wt % to about 60 wt % elemental zinc, wherein the elemental copper and the elemental zinc together are about 99.5 wt % to about 100 wt % of the metal alloy; a reverse osmosis stage fluidly connected to the KDF stage; a diatomite stage fluidly connected to the reverse osmosis stage, the diatomite stage comprising diatomite-based porous ceramic filtration media; and an outlet fluidly connected to the diatomite stage and configured to output a flow of purified water; wherein the reverse osmosis stage is downstream of the KDF stage, and the diatomite stage is downstream of the reverse osmosis stage. 10 . A method of purifying water, the method comprising: flowing the water into an inlet configured to accept the flow of water; flowing the water from the inlet to a KDF filtration stage fluidly connected to the inlet and comprising a metal alloy comprising elemental copper and elemental zinc; flowing the water from the KDF filtration stage to a reverse osmosis stage fluidly connected to the KDF stage; flowing the water from the KDF filtration stage to an outlet fluidly connected to the reverse osmosis stage and configured to output a flow of purified water; and flowing the purified water from the outlet; wherein the reverse osmosis stage is downstream of the KDF stage.
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