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Biocide-mediated corrosion of coiled tubing

Coiled tubing corrosion was investigated for 16 field water samples (S5 to S20) from a Canadian shale gas field. Weight loss corrosion rates of carbon steel beads incubated with these field water samples averaged 0.2 mm/yr, but injection water sample S19 had 1.25±0.07 mm/yr. S19 had a most probable...

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Autores principales: Sharma, Mohita, An, Dongshan, Liu, Tao, Pinnock, Tijan, Cheng, Frank, Voordouw, Gerrit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5528904/
https://www.ncbi.nlm.nih.gov/pubmed/28746397
http://dx.doi.org/10.1371/journal.pone.0181934
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author Sharma, Mohita
An, Dongshan
Liu, Tao
Pinnock, Tijan
Cheng, Frank
Voordouw, Gerrit
author_facet Sharma, Mohita
An, Dongshan
Liu, Tao
Pinnock, Tijan
Cheng, Frank
Voordouw, Gerrit
author_sort Sharma, Mohita
collection PubMed
description Coiled tubing corrosion was investigated for 16 field water samples (S5 to S20) from a Canadian shale gas field. Weight loss corrosion rates of carbon steel beads incubated with these field water samples averaged 0.2 mm/yr, but injection water sample S19 had 1.25±0.07 mm/yr. S19 had a most probable number of zero acid-producing bacteria and incubation of S19 with carbon steel beads or coupons did not lead to big changes in microbial community composition. In contrast other field water samples had most probable numbers of APB of 10(2)/mL to 10(7)/mL and incubation of these field water samples with carbon steel beads or coupons often gave large changes in microbial community composition. HPLC analysis indicated that all field water samples had elevated concentrations of bromide (average 1.6 mM), which may be derived from bronopol, which was used as a biocide. S19 had the highest bromide concentration (4.2 mM) and was the only water sample with a high concentration of active bronopol (13.8 mM, 2760 ppm). Corrosion rates increased linearly with bronopol concentration, as determined by weight loss of carbon steel beads, for experiments with S19, with filtered S19 and with bronopol dissolved in defined medium. This indicated that the high corrosion rate found for S19 was due to its high bronopol concentration. The corrosion rate of coiled tubing coupons also increased linearly with bronopol concentration as determined by electrochemical methods. Profilometry measurements also showed formation of multiple pits on the surface of coiled tubing coupon with an average pit depth of 60 μm after 1 week of incubation with 1 mM bronopol. At the recommended dosage of 100 ppm the corrosiveness of bronopol towards carbon steel beads was modest (0.011 mm/yr). Higher concentrations, resulting if biocide is added repeatedly as commonly done in shale gas operations, are more corrosive and should be avoided. Overdosing may be avoided by assaying the presence of residual biocide by HPLC, rather than by assaying the presence of residual surviving bacteria.
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spelling pubmed-55289042017-08-07 Biocide-mediated corrosion of coiled tubing Sharma, Mohita An, Dongshan Liu, Tao Pinnock, Tijan Cheng, Frank Voordouw, Gerrit PLoS One Research Article Coiled tubing corrosion was investigated for 16 field water samples (S5 to S20) from a Canadian shale gas field. Weight loss corrosion rates of carbon steel beads incubated with these field water samples averaged 0.2 mm/yr, but injection water sample S19 had 1.25±0.07 mm/yr. S19 had a most probable number of zero acid-producing bacteria and incubation of S19 with carbon steel beads or coupons did not lead to big changes in microbial community composition. In contrast other field water samples had most probable numbers of APB of 10(2)/mL to 10(7)/mL and incubation of these field water samples with carbon steel beads or coupons often gave large changes in microbial community composition. HPLC analysis indicated that all field water samples had elevated concentrations of bromide (average 1.6 mM), which may be derived from bronopol, which was used as a biocide. S19 had the highest bromide concentration (4.2 mM) and was the only water sample with a high concentration of active bronopol (13.8 mM, 2760 ppm). Corrosion rates increased linearly with bronopol concentration, as determined by weight loss of carbon steel beads, for experiments with S19, with filtered S19 and with bronopol dissolved in defined medium. This indicated that the high corrosion rate found for S19 was due to its high bronopol concentration. The corrosion rate of coiled tubing coupons also increased linearly with bronopol concentration as determined by electrochemical methods. Profilometry measurements also showed formation of multiple pits on the surface of coiled tubing coupon with an average pit depth of 60 μm after 1 week of incubation with 1 mM bronopol. At the recommended dosage of 100 ppm the corrosiveness of bronopol towards carbon steel beads was modest (0.011 mm/yr). Higher concentrations, resulting if biocide is added repeatedly as commonly done in shale gas operations, are more corrosive and should be avoided. Overdosing may be avoided by assaying the presence of residual biocide by HPLC, rather than by assaying the presence of residual surviving bacteria. Public Library of Science 2017-07-26 /pmc/articles/PMC5528904/ /pubmed/28746397 http://dx.doi.org/10.1371/journal.pone.0181934 Text en © 2017 Sharma et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Sharma, Mohita
An, Dongshan
Liu, Tao
Pinnock, Tijan
Cheng, Frank
Voordouw, Gerrit
Biocide-mediated corrosion of coiled tubing
title Biocide-mediated corrosion of coiled tubing
title_full Biocide-mediated corrosion of coiled tubing
title_fullStr Biocide-mediated corrosion of coiled tubing
title_full_unstemmed Biocide-mediated corrosion of coiled tubing
title_short Biocide-mediated corrosion of coiled tubing
title_sort biocide-mediated corrosion of coiled tubing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5528904/
https://www.ncbi.nlm.nih.gov/pubmed/28746397
http://dx.doi.org/10.1371/journal.pone.0181934
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