IP Library Granted Patent US 12,103,874
Granted Patent B2
US 12,103,874 · App. 17/461,262 · Granted Oct 1, 2024

Ultraviolet light activated oxidation process for the reduction of organic carbon in semiconductor process water

Inventors: Steve D. Sitkiewitz (Sebastopol, CA); Gary M. Carmignani (Occidental, CA); Lee W. Frederick (Bodega Bay, CA)
Assignee: Evoqua Water Technologies LLC
C02F1/722C02F1/325C02F1/20C02F1/42C02F1/441C02F1/444C02F1/4695C02F1/66C02F2103/04C02F2103/346C02F2209/001C02F2209/003C02F2209/20
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Quick Facts
Patent No.
US 12,103,874
App. No.
17/461,262
Granted
Oct 1, 2024
Kind
B2
Abstract

In a system for decomposing organic compounds in water for use in semiconductor manufacturing, a chemical reactor vessel having a fluid inlet and a fluid outlet, a persulfate anion addition system upstream of the reactor vessel, and a light emitting device contained within the reactor vessel. The light emitting device provides light capable of decomposing persulfate anions.

Claims (20)

1. A water treatment system, comprising:

a source of water for semiconductor manufacturing;

a point of use fluidly connected downstream of the source of water; and

an advanced oxidation process system fluidly connected downstream from the source of water for semiconductor manufacturing, the advanced oxidation process system comprising:

a chemical reactor vessel;

a persulfate addition system fluidly connected to the chemical reactor vessel;

a light emitting device positioned within the chemical reactor vessel; and

a total organic carbon analyzer configured to receive an input signal of a total organic carbon measurement, the total organic carbon analyzer further configured to provide an output signal to control the persulfate addition system in response to the input signal.

2. The water treatment system of claim 1 , wherein the persulfate addition system comprises a persulfate feed tank and a persulfate feed pump fluidly connected to the persulfate feed tank, wherein the persulfate feed pump is configured to deliver persulfate to the chemical reactor vessel.

3. The water treatment system of claim 2 , further comprising a polish system with at least one of a heat exchanger, an electro-deionization unit, an ion exchange unit, an ultraviolet sterilization system, a membrane filtration unit, and an ultra-filtration membrane.

4. The water treatment system of claim 3 , wherein the source of water for semiconductor manufacturing comprises at least one of a source of raw feed water, a source of spent ultrapure water, and a blended feed comprising a mixture of the raw feed water and the spent ultrapure water.

5. The water treatment system of claim 4 , further comprising a pretreatment system fluidly connected to the source of water, the pretreatment system including at least one of a suspended solids removal system, an organic compound reduction system, a chlorine removal system, a pH adjustment system, and a carbon dioxide reduction system.

6. The water treatment system of claim 5 , further comprising a deionized water storage system fluidly connected upstream of the polish system.

7. The water treatment system of claim 6 , wherein the advanced oxidation process system is fluidly connected upstream of the polish system.

8. The water treatment system of claim 6 , wherein the advanced oxidation process system is positioned within the polish system.

9. The water treatment system of claim 6 , wherein the advanced oxidation process system is fluidly connected downstream of the polish system.

10. The water treatment system of claim 6 , wherein the total organic carbon analyzer is disposed upstream of the chemical reactor vessel.

11. The water treatment system of claim 10 , wherein the total organic carbon analyzer is further configured to provide the output signal to increase the persulfate delivered to the chemical reactor vessel in response to the input signal indicating that the total organic carbon measurement exceeds 5 ppb.

12. The water treatment system of claim 10 , wherein the total organic carbon analyzer is further configured to provide the output signal to increase the persulfate delivered to the chemical reactor vessel in response to the input signal indicating that the total organic carbon measurement exceeds 1 ppb.

13. The water treatment system of claim 6 , further comprising a make-up system with a first-pass reverse osmosis unit and a second-pass reverse osmosis unit, and wherein the advanced oxidation process system is fluidly connected downstream of the first-pass reverse osmosis unit and upstream of the second-pass reverse osmosis unit.

Continuity (6)
Continuation 16739071 · Jan 9, 2020
Continuation 16504942 · Jul 8, 2019
Continuation 14169928 · Jan 31, 2014
Continuation In Part 12303596
Provisional Application 60811220 · Jun 6, 2006
Related Publication 20210387878A1 · Dec 16, 2021