IP Library › Granted Patent US 10,287,188
Granted Patent B2
US 10,287,188 · App. 15/516,161 · Granted May 14, 2019

Electrode for electrochlorination processes and method of manufacturing thereof

Inventors: Luciano Iacopetti (Milan, IT); Alice Calderara (Milan, IT)
Assignee: INDUSTRIE DE NORA S.P.A.
C02F1/46109C02F1/4674C25B1/26C25B11/0415C25B11/0484C02F2001/46142C02F2103/008C02F2201/4613
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,287,188
App. No.
15/516,161
Granted
May 14, 2019
Kind
B2
Abstract

The invention relates to an electrode suitable for electrolytic treatments of dilute solutions of sodium chloride even at low temperatures. The electrode can be used in the generation of active chlorine-based biocidal agents in ballast water for marine applications. The electrode has a titanium substrate, an inner catalytic coating containing oxides of tantalum, ruthenium and iridium, and an outer catalytic coating containing oxides of titanium, ruthenium and of at least one of nickel, iron and cobalt.

Claims (16)

1. An electrode in electrochlorination cells comprising:

a titanium substrate

an inner catalytic coating applied onto said substrate containing a mixture of oxides of tantalum, ruthenium and iridium and

an outer catalytic coating applied on top of said inner catalytic coating containing a mixture of oxides of titanium, ruthenium and of at least one element selected from the group consisting of nickel, iron and cobalt.

2. The electrode according to claim 1 wherein said titanium substrate is characterised by a value of average roughness R a of 4 to 10 μm.

3. The electrode according to claim 1 wherein said inner catalytic coating has a total loading of noble metal expressed as the sum of ruthenium and iridium of 1 to 5 g/m 2 .

4. The electrode according to claim 1 , wherein the weight composition of said outer catalytic coating comprises 30-60% Ru, 35-70% Ti and 1-8% as the sum of Fe, Co and Ni.

5. The electrode according to claim 1 , wherein the weight ratio of ruthenium content in said outer catalytic coating to noble metal content expressed as the sum of ruthenium and iridium in said inner catalytic coating is 3 to 10.

6. A method for the production of an electrode according to claim 1 comprising the following sequential steps:

etching the titanium substrate in an acid solution until imparting a controlled roughness profile;

applying a solution of tantalum, ruthenium and iridium compounds to the etched substrate, with subsequent thermal decomposition at a temperature above 400° C. and formation of an inner catalytic coating; and

applying a solution of compounds of titanium, ruthenium and at least one element selected from the group consisting of nickel, iron and cobalt to the inner catalytic coating, with subsequent thermal decomposition at a temperature above 400° C. and formation of an outer catalytic coating.

7. The method according to claim 6 wherein said acid solution comprises 20-30% by weight sulphuric acid and said etching step is carried out at 80-90° C. until a weight loss of said substrate between 150 and 250 g/m 2 is obtained.

8. A process of biocidal treatment on an aqueous sodium chloride solution comprising electrolyzing the solution in an electrolytic cell equipped with a pair of electrodes according to claim 1 and forming of active chlorine.

9. The process according to claim 8 , further comprising the periodic reversal of the polarity of the electrodes of said pair.

10. The process according to claim 8 in which said aqueous solution of sodium chloride is a ballast water for marine applications.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2017
From: IACOPETTI, LUCIANO; CALDERARA, ALICE
To: INDUSTRIE DE NORA S.P.A.
Reel/Frame 042634/0178 →
Priority Claims (1)
IT MI2014A1838 · Oct 27, 2014 · national
Continuity (1)
Related Publication 20170297928A1 · Oct 19, 2017