IP Library Patent Application 18680614
Patent Application
App. No. 18/680,614

WATER TREATMENT SYSTEM

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Quick Facts
Patent No.
US None
App. No.
18/680,614
Abstract

Methods and systems for removing PFAS from a water flow include inputting an input flow of water with a concentration of PFAS in the water, filtering the input flow of water to increase the concentration of PFAS in the water, purging the input flow of water with a concentration of PFAS in the water, increasing the pH of the input flow of water with a concentration of PFAS in the water, heating the input flow of water with a concentration of PFAS in the water, exposing the input flow of water to an electron beam thereby generating aqueous electrons to destroy at least some of the of PFAS in the water, and outputting an output flow of water with a PFAS concentration lower than the input flow of water.

Claims (59)

1 . A fluid treatment method comprising:

inputting an input flow of water with a concentration of PFAS in the water;

exposing the flow of water to an electron beam thereby generating aqueous electrons;

destroying some of the concentration of PFAS in the water; and

outputting an output flow of water with a PFAS concentration lower than the input flow of water.

2 . The fluid treatment method of claim 1 further comprising:

filtering the input flow of water with a filter in order to generate a clean fluid stream, and an effluent stream of water with a higher concentration of PFAS than the input flow of water, wherein exposing the flow of water comprises exposing the effluent stream of water to the electron beam.

3 . The fluid treatment method of claim 2 wherein the filtering comprises at least one of:

reverse osmosis;

foam fractionation;

ion exchange;

granular activated carbon; and

crystallization.

4 . The fluid treatment method of claim 1 further comprising:

gas purging the input flow of water with a concentration of PFAS in the water.

5 . The fluid treatment method of claim 4 wherein the gas purging is done with nitrogen.

6 . The fluid treatment method of claim 4 wherein the gas purging is done with an inert gas.

7 . The fluid treatment method of claim 1 further comprising:

increasing the pH of the input flow of water with a concentration of PFAS in the water.

8 . The fluid treatment method of claim 7 wherein the PH of the input flow of water is increased to a pH of 11-14.

9 . The fluid treatment method of claim 7 wherein increasing the pH of the input flow of water with a plurality of PFAS in the water comprises:

adding NaOH to the input flow of water with a concentration of PFAS.

10 . The fluid treatment method of claim 1 further comprising:

decreasing the pH of the output the flow of water after exposing the water to the electron beam.

11 . The fluid treatment method of claim 1 further comprising:

transferring heat from the water output after exposing the water to the electron beam, to the input flow of water with a concentration of PFAS, with a heat exchanger.

12 . The fluid treatment method of claim 1 further comprising:

filtering the output flow of water with a PFAS concentration lower than the input flow of water, with an output filter.

13 . A fluid treatment method comprising:

inputting an input flow of water with a concentration of PFAS in the water;

filtering the input flow of water to increase the concentration of PFAS in the water;

purging the input flow of water with a concentration of PFAS in the water;

increasing the pH of the input flow of water with a concentration of PFAS in the water;

heating the input flow of water with a concentration of PFAS in the water;

exposing the input flow of water to an electron beam thereby generating aqueous electrons to destroy at least some of the of PFAS in the water; and

outputting an output flow of water with a PFAS concentration lower than the input flow of water.

14 . The fluid treatment method of claim 13 wherein the filtering comprises at least one of:

reverse osmosis;

foam fractionation;

ion exchange;

granular activated carbon; and

crystallization.

15 . The fluid treatment method of claim 13 wherein the gas purging is done with one of:

nitrogen; or

an inert gas.

16 . The fluid treatment method of claim 13 wherein heating the input flow of water with a concentration of PFAS in the water further comprises:

transferring heat from the output flow of water to the input flow of water with a concentration of PFAS, with a heat exchanger.

17 . The fluid treatment method of claim 13 further comprising:

decreasing the pH of the output the flow of water after exposing the water to the electron beam.

18 . A fluid treatment system comprising:

an input for inputting an input flow of water with a concentration of PFAS in the water;

a particle accelerator configured to generate an electron beam;

a fluid channel configured to expose the input flow of water to the electron beam, thereby generating aqueous electrons which destroy some of the concentration of PFAS in the water; and

an output for outputting an output flow of water with a PFAS concentration lower than the input flow of water.

19 . The fluid treatment system of claim 18 further comprising at least one of

a filter for filtering the input flow of water; and

a gas purging tank for gap purging the input flow of water with a concentration of PFAS in the water.

20 . The fluid treatment system of claim 18 further comprising:

a heat exchanger for transferring heat from the output flow of water to the input flow of water with a concentration of PFAS.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2024
From: FERMI RESEARCH ALLIANCE, LLC
To: FERMI FORWARD DISCOVERY GROUP, LLC
Reel/Frame 069795/0347 →
CONFIRMATORY LICENSE Recorded Jul 10, 2024
From: FERMI RESEARCH ALLIANCE, LLC
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 067950/0875 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2024
From: COOPER, CHARLIE; GRDANOVSKA, SLAVICA
To: FERMI RESEARCH ALLIANCE, LLC
Reel/Frame 067654/0336 →