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Electroless palladium or nickel-phosphorus plating for fouling mitigation in high-temperature water systems
by
Choi, Wonjun
, Bahn, Chi Bum
, Kim, Young-Jin
, Lim, Dong-Seok
in
Adhesion tests
/ Corrosion tests
/ electroless Ni-P plating
/ Electroless nickel plating
/ electroless Pd plating
/ Fouling
/ High temperature
/ Iron oxides
/ Localized corrosion
/ Oxidation
/ Palladium
/ Performance tests
/ Phosphorus
/ Pressurized water reactors
/ venturi flowmeter
/ Water temperature
/ Zeta potential
2025
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Electroless palladium or nickel-phosphorus plating for fouling mitigation in high-temperature water systems
by
Choi, Wonjun
, Bahn, Chi Bum
, Kim, Young-Jin
, Lim, Dong-Seok
in
Adhesion tests
/ Corrosion tests
/ electroless Ni-P plating
/ Electroless nickel plating
/ electroless Pd plating
/ Fouling
/ High temperature
/ Iron oxides
/ Localized corrosion
/ Oxidation
/ Palladium
/ Performance tests
/ Phosphorus
/ Pressurized water reactors
/ venturi flowmeter
/ Water temperature
/ Zeta potential
2025
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Electroless palladium or nickel-phosphorus plating for fouling mitigation in high-temperature water systems
by
Choi, Wonjun
, Bahn, Chi Bum
, Kim, Young-Jin
, Lim, Dong-Seok
in
Adhesion tests
/ Corrosion tests
/ electroless Ni-P plating
/ Electroless nickel plating
/ electroless Pd plating
/ Fouling
/ High temperature
/ Iron oxides
/ Localized corrosion
/ Oxidation
/ Palladium
/ Performance tests
/ Phosphorus
/ Pressurized water reactors
/ venturi flowmeter
/ Water temperature
/ Zeta potential
2025
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Electroless palladium or nickel-phosphorus plating for fouling mitigation in high-temperature water systems
Journal Article
Electroless palladium or nickel-phosphorus plating for fouling mitigation in high-temperature water systems
2025
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Overview
As a method to mitigate fouling at the venturi flowmeter of pressurized water reactors, electroless nickel-phosphorus (Ni–P) plating and palladium (Pd) plating were conducted on AISI 304L stainless steel specimens and evaluated through a series of performance tests, including static corrosion testing, adhesion testing, and water loop testing using mock-up venturis. As expected from the zeta potentials, no iron oxide particles deposited on the surface of the plated specimens. The Ni-plated specimens exhibited localized corrosion, whereas the minimum oxidation was observed on the Pd-plated specimens. The water loop tests showed consistent results with the static corrosion testing. The adhesion forces after a four-month corrosion test were similar to those before. The overall performance tests indicated that electroless Pd plating on the inner surfaces of venturis could be a viable solution for mitigating fouling in pressurized water reactors.
Publisher
IOP Publishing
Subject
/ Fouling
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