Application of bipolar electrochemistry to accelerate dew point corrosion for screening of steel materials for power boilers

Maximized energy recovery in power boilers lowers the flue gas temperature. However, lowering the temperature too much may lead to problems with corrosion. The lowest operational temperature is often limited by the presence of sulphuric acid in the flue gas. Condensation of sulphuric acid may lead t...

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Main Authors: Bankiewicz, Dorota, Vainio, Emil, Yrjas, Patrik, Hupa, Leena, Lisak, Grzegorz
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2021
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Online Access:https://hdl.handle.net/10356/154290
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1542902021-12-16T08:40:22Z Application of bipolar electrochemistry to accelerate dew point corrosion for screening of steel materials for power boilers Bankiewicz, Dorota Vainio, Emil Yrjas, Patrik Hupa, Leena Lisak, Grzegorz School of Civil and Environmental Engineering Engineering::Civil engineering Dew Point Corrosion Low-temperature corrosion Maximized energy recovery in power boilers lowers the flue gas temperature. However, lowering the temperature too much may lead to problems with corrosion. The lowest operational temperature is often limited by the presence of sulphuric acid in the flue gas. Condensation of sulphuric acid may lead to severe corrosion of pre-heaters and flue gas duct parts. In this study, an experimental setup for accelerated dew point corrosion testing of steels using a concept of bipolar electrochemistry was developed. The bipolar electrochemistry was for the first time applied to study corrosion at conditions of condensing vapours of acid on the steel surface. The method allows simultaneous testing of several samples at both oxidizing and reducing conditions. In the present work, several commercial boiler steels were tested for their resistance to the dew point corrosion. It was found that bipolar electrochemistry can easily be used to accelerate corrosion for fast screening of different steel materials in simulated, dew point corrosion conditions as present in the boiler's cold-end. The electron microscopy (SEM/EDX) analyses showed that corrosion was accelerated on carbon and high alloy steels with the use of bipolar electrochemistry. Generally, stainless steels showed very good corrosion resistance and no adverse effects caused by hot H2SO4 vapours were observed. The Åbo Akademi University Foundation is acknowledged for a travel grant to visit and perform experimental work at the Nanyang Technological University, Singapore. 2021-12-16T08:40:22Z 2021-12-16T08:40:22Z 2020 Journal Article Bankiewicz, D., Vainio, E., Yrjas, P., Hupa, L. & Lisak, G. (2020). Application of bipolar electrochemistry to accelerate dew point corrosion for screening of steel materials for power boilers. Fuel, 265, 116886-. https://dx.doi.org/10.1016/j.fuel.2019.116886 0016-2361 https://hdl.handle.net/10356/154290 10.1016/j.fuel.2019.116886 2-s2.0-85076995760 265 116886 en Fuel © 2019 Elsevier Ltd. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Civil engineering
Dew Point Corrosion
Low-temperature corrosion
spellingShingle Engineering::Civil engineering
Dew Point Corrosion
Low-temperature corrosion
Bankiewicz, Dorota
Vainio, Emil
Yrjas, Patrik
Hupa, Leena
Lisak, Grzegorz
Application of bipolar electrochemistry to accelerate dew point corrosion for screening of steel materials for power boilers
description Maximized energy recovery in power boilers lowers the flue gas temperature. However, lowering the temperature too much may lead to problems with corrosion. The lowest operational temperature is often limited by the presence of sulphuric acid in the flue gas. Condensation of sulphuric acid may lead to severe corrosion of pre-heaters and flue gas duct parts. In this study, an experimental setup for accelerated dew point corrosion testing of steels using a concept of bipolar electrochemistry was developed. The bipolar electrochemistry was for the first time applied to study corrosion at conditions of condensing vapours of acid on the steel surface. The method allows simultaneous testing of several samples at both oxidizing and reducing conditions. In the present work, several commercial boiler steels were tested for their resistance to the dew point corrosion. It was found that bipolar electrochemistry can easily be used to accelerate corrosion for fast screening of different steel materials in simulated, dew point corrosion conditions as present in the boiler's cold-end. The electron microscopy (SEM/EDX) analyses showed that corrosion was accelerated on carbon and high alloy steels with the use of bipolar electrochemistry. Generally, stainless steels showed very good corrosion resistance and no adverse effects caused by hot H2SO4 vapours were observed.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Bankiewicz, Dorota
Vainio, Emil
Yrjas, Patrik
Hupa, Leena
Lisak, Grzegorz
format Article
author Bankiewicz, Dorota
Vainio, Emil
Yrjas, Patrik
Hupa, Leena
Lisak, Grzegorz
author_sort Bankiewicz, Dorota
title Application of bipolar electrochemistry to accelerate dew point corrosion for screening of steel materials for power boilers
title_short Application of bipolar electrochemistry to accelerate dew point corrosion for screening of steel materials for power boilers
title_full Application of bipolar electrochemistry to accelerate dew point corrosion for screening of steel materials for power boilers
title_fullStr Application of bipolar electrochemistry to accelerate dew point corrosion for screening of steel materials for power boilers
title_full_unstemmed Application of bipolar electrochemistry to accelerate dew point corrosion for screening of steel materials for power boilers
title_sort application of bipolar electrochemistry to accelerate dew point corrosion for screening of steel materials for power boilers
publishDate 2021
url https://hdl.handle.net/10356/154290
_version_ 1720447140549885952