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Investigation of Erosion/Corrosion Behavior of GRP under Harsh Operating Conditions

Glass-fiber-reinforced pipe (GRP) is a strong alternative to many other materials, such as cast iron and concrete. It is characterized by high corrosion resistance, resulting in good erosion/corrosion. For the erosion/corrosion test, commercially available GRPs were used, which are frequently utiliz...

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Autores principales: Hassan, Mohamed K., Redhwi, Ahmad Muhammad N., Mohamed, Ahmed F., Backar, Ahmed H., Abdellah, Mohammed Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9781360/
https://www.ncbi.nlm.nih.gov/pubmed/36559755
http://dx.doi.org/10.3390/polym14245388
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author Hassan, Mohamed K.
Redhwi, Ahmad Muhammad N.
Mohamed, Ahmed F.
Backar, Ahmed H.
Abdellah, Mohammed Y.
author_facet Hassan, Mohamed K.
Redhwi, Ahmad Muhammad N.
Mohamed, Ahmed F.
Backar, Ahmed H.
Abdellah, Mohammed Y.
author_sort Hassan, Mohamed K.
collection PubMed
description Glass-fiber-reinforced pipe (GRP) is a strong alternative to many other materials, such as cast iron and concrete. It is characterized by high corrosion resistance, resulting in good erosion/corrosion. For the erosion/corrosion test, commercially available GRPs were used, which are frequently utilized for oil field wastewater in harsh environments. This type of GRP material was subjected to simulated conditions replicating in situ or harsh environments. An extensive experiment was conducted. Three quantities of abrasive sand (250 g, 400 g and 500 g with a size of 65 µm) were mixed with 0.015 m(3) of water. The abrasive sand samples were taken at a 90 degree angle from the wall of the cylinder tubes. Three flow rate conditions were selected, 0.01 m(3)/min, 0.0067 m(3)/min and 0.01 m(3)/min, with 10 wt.% chlorine. Furthermore, these tests were conducted at five different times: 1 h, 2 h, 3 h, 4 h and 5 h. The results show that the erosion rate increased both with an increasing amount of abrasive sand and with increasing flow rate. The maximum value for the erosion rate was more than three for a flow rate of 0.015 m(3) with chlorine for 500 g of sand. The corrosion rate also showed the same trend, with the maximum corrosion rate being reached under the same conditions. It was found that the corrosion rate largely depends on the amount of weight loss, which is an indicator of the erosion effect. Therefore, GFRP provides better erosion/corrosion resistance in a harsh environment or in situ conditions.
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spelling pubmed-97813602022-12-24 Investigation of Erosion/Corrosion Behavior of GRP under Harsh Operating Conditions Hassan, Mohamed K. Redhwi, Ahmad Muhammad N. Mohamed, Ahmed F. Backar, Ahmed H. Abdellah, Mohammed Y. Polymers (Basel) Article Glass-fiber-reinforced pipe (GRP) is a strong alternative to many other materials, such as cast iron and concrete. It is characterized by high corrosion resistance, resulting in good erosion/corrosion. For the erosion/corrosion test, commercially available GRPs were used, which are frequently utilized for oil field wastewater in harsh environments. This type of GRP material was subjected to simulated conditions replicating in situ or harsh environments. An extensive experiment was conducted. Three quantities of abrasive sand (250 g, 400 g and 500 g with a size of 65 µm) were mixed with 0.015 m(3) of water. The abrasive sand samples were taken at a 90 degree angle from the wall of the cylinder tubes. Three flow rate conditions were selected, 0.01 m(3)/min, 0.0067 m(3)/min and 0.01 m(3)/min, with 10 wt.% chlorine. Furthermore, these tests were conducted at five different times: 1 h, 2 h, 3 h, 4 h and 5 h. The results show that the erosion rate increased both with an increasing amount of abrasive sand and with increasing flow rate. The maximum value for the erosion rate was more than three for a flow rate of 0.015 m(3) with chlorine for 500 g of sand. The corrosion rate also showed the same trend, with the maximum corrosion rate being reached under the same conditions. It was found that the corrosion rate largely depends on the amount of weight loss, which is an indicator of the erosion effect. Therefore, GFRP provides better erosion/corrosion resistance in a harsh environment or in situ conditions. MDPI 2022-12-09 /pmc/articles/PMC9781360/ /pubmed/36559755 http://dx.doi.org/10.3390/polym14245388 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hassan, Mohamed K.
Redhwi, Ahmad Muhammad N.
Mohamed, Ahmed F.
Backar, Ahmed H.
Abdellah, Mohammed Y.
Investigation of Erosion/Corrosion Behavior of GRP under Harsh Operating Conditions
title Investigation of Erosion/Corrosion Behavior of GRP under Harsh Operating Conditions
title_full Investigation of Erosion/Corrosion Behavior of GRP under Harsh Operating Conditions
title_fullStr Investigation of Erosion/Corrosion Behavior of GRP under Harsh Operating Conditions
title_full_unstemmed Investigation of Erosion/Corrosion Behavior of GRP under Harsh Operating Conditions
title_short Investigation of Erosion/Corrosion Behavior of GRP under Harsh Operating Conditions
title_sort investigation of erosion/corrosion behavior of grp under harsh operating conditions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9781360/
https://www.ncbi.nlm.nih.gov/pubmed/36559755
http://dx.doi.org/10.3390/polym14245388
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