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公开(公告)号:US20220332610A1
公开(公告)日:2022-10-20
申请号:US17849932
申请日:2022-06-27
Applicant: UGSI Solutions, Inc.
Inventor: Brent A. Simmons , Gunnar T. Thordarson , James C. Robertson
Abstract: A water treatment system is disclosed having an electrolytic cell for liberating hydrogen from a base solution. The base solution may be a solution of brine for generating sodium hypochlorite or potable water to be oxidized. The cell has first and second opposing electrode end plates held apart from each other by a pair of supports such that the supports enclose opposing sides of the end plates to form a cell chamber. One or more inner electrode plates are spaced apart from each other in the cell chamber in between the first and second electrode plates. The supports are configured to electrically isolate the first and second electrode plates and the inner electrode plates from each other. The first and second electrode plates are configured to receive opposite polarity charges that passively charge the inner electrode plates via conduction from the base solution to form a chemical reaction in the base solution as the base solution passes through the cell chamber.
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公开(公告)号:US11851353B2
公开(公告)日:2023-12-26
申请号:US17849932
申请日:2022-06-27
Applicant: UGSI Solutions, Inc.
Inventor: Brent A. Simmons , Gunnar T. Thordarson , James C. Robertson
IPC: C02F1/46 , C02F1/68 , C25B1/26 , C25B9/75 , C25B11/03 , B01F25/21 , B01F25/10 , C02F1/52 , C02F1/00 , G01N1/20 , C02F1/467 , C25B11/036 , C02F1/469 , C02F1/461 , B01F25/00
CPC classification number: C02F1/68 , B01F25/104 , B01F25/21 , C02F1/4672 , C02F1/4674 , C02F1/685 , C02F1/686 , C25B1/26 , C25B9/75 , C25B11/036 , G01N1/2035 , B01F2025/91 , B01F2025/9191 , C02F1/001 , C02F1/4696 , C02F1/5227 , C02F1/5236 , C02F2001/46128 , C02F2001/46142 , C02F2201/461 , C02F2201/4611 , C02F2201/4618 , C02F2201/46125 , C02F2201/46145 , C02F2201/46185 , C02F2209/005 , C02F2209/29 , Y02E60/36 , Y02W10/37
Abstract: A water treatment system is disclosed having an electrolytic cell for liberating hydrogen from a base solution. The base solution may be a solution of brine for generating sodium hypochlorite or potable water to be oxidized. The cell has first and second opposing electrode end plates held apart from each other by a pair of supports such that the supports enclose opposing sides of the end plates to form a cell chamber. One or more inner electrode plates are spaced apart from each other in the cell chamber in between the first and second electrode plates. The supports are configured to electrically isolate the first and second electrode plates and the inner electrode plates from each other. The first and second electrode plates are configured to receive opposite polarity charges that passively charge the inner electrode plates via conduction from the base solution to form a chemical reaction in the base solution as the base solution passes through the cell chamber.
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公开(公告)号:US11377378B2
公开(公告)日:2022-07-05
申请号:US16993404
申请日:2020-08-14
Applicant: UGSI Solutions, Inc.
Inventor: Brent A. Simmons , Gunnar T. Thordarson , James C. Robertson
IPC: C02F1/68 , G01N1/20 , C02F1/46 , C25B1/26 , C25B9/75 , C25B11/03 , B01F25/21 , B01F25/10 , C02F1/52 , C02F1/467 , C25B11/036 , C02F1/00 , C02F1/469 , C02F1/461 , B01F25/00
Abstract: A water treatment system is disclosed having electrolytic cell for liberating hydrogen from a base solution. The base solution may be a solution of brine for generating sodium hypochlorite, or potable water to be oxidized. The cell has first and second opposing electrode end plates held apart from each other by a pair of supports such that the supports enclose opposing sides of the end plates to form a cell chamber. One or more inner electrode plates are spaced apart from each other in the cell chamber in between the first and second electrode plates. The supports are configured to electrically isolate the first and second electrode plates and the inner electrode plates from each other. The first and second electrode plates are configured to receive opposite polarity charges that passively charge the inner electrode plates via conduction from the base solution to form a chemical reaction in the base solution as the base solution passes through the cell chamber.
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公开(公告)号:US20200369541A1
公开(公告)日:2020-11-26
申请号:US16993404
申请日:2020-08-14
Applicant: UGSI Solutions, Inc.
Inventor: Brent A. Simmons , Gunnar T. Thordarson , James C. Robertson
Abstract: A water treatment system is disclosed having electrolytic cell for liberating hydrogen from a base solution. The base solution may be a solution of brine for generating sodium hypochlorite, or potable water to be oxidized. The cell has first and second opposing electrode end plates held apart from each other by a pair of supports such that the supports enclose opposing sides of the end plates to form a cell chamber. One or more inner electrode plates are spaced apart from each other in the cell chamber in between the first and second electrode plates. The supports are configured to electrically isolate the first and second electrode plates and the inner electrode plates from each other. The first and second electrode plates are configured to receive opposite polarity charges that passively charge the inner electrode plates via conduction from the base solution to form a chemical reaction in the base solution as the base solution passes through the cell chamber.
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公开(公告)号:US10800682B2
公开(公告)日:2020-10-13
申请号:US16252960
申请日:2019-01-21
Applicant: UGSI Solutions, Inc.
Inventor: Brent A. Simmons , Gunnar T. Thordarson , James C. Robertson
IPC: C02F1/68 , C02F1/46 , B01F5/00 , C25B1/26 , C25B9/20 , B01F5/02 , G01N1/20 , C02F1/467 , C25B9/06 , C02F1/00 , C02F1/469 , C02F1/52 , C02F1/461
Abstract: A water treatment system is disclosed having electrolytic cell for liberating hydrogen from a base solution. The base solution may be a solution of brine for generating sodium hypochlorite, or potable water to be oxidized. The cell has first and second opposing electrode end plates held apart from each other by a pair of supports such that the supports enclose opposing sides of the end plates to form a cell chamber. One or more inner electrode plates are spaced apart from each other in the cell chamber in between the first and second electrode plates. The supports are configured to electrically isolate the first and second electrode plates and the inner electrode plates from each other. The first and second electrode plates are configured to receive opposite polarity charges that passively charge the inner electrode plates via conduction from the base solution to form a chemical reaction in the base solution as the base solution passes through the cell chamber.
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