Determinação de fósforo orgânico em águas de produção petrolífera por ICP- AES e ICP- MS após pré-concentração em coluna de sílica-C18 Determination of organic phosphorus in oil production waters by ICP-AES and ICP-MS after preconcentration on silica immobilized C18

<abstract language="eng">Results on the optimization of analytical methods for the determination of phosphorus in phosphino-polycarboxylate (PPCA), used frequently as scale inhibitor during oil production, by ICP-AES and ICP-MS are presented. Due to the complex matrix of production w...

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Main Authors: Anderson Araújo Rocha, Norbert Miekeley, Carmem Lúcia Porto da Silveira, Maria Carmem Moreira Bezerra
Format: Article
Language:English
Published: Sociedade Brasileira de Química 1998-10-01
Series:Química Nova
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40421998000500010
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spelling doaj-1d7b874e09864d1b95df1ca42146ef712020-11-24T22:19:32ZengSociedade Brasileira de QuímicaQuímica Nova0100-40421678-70641998-10-0121558458910.1590/S0100-40421998000500010Determinação de fósforo orgânico em águas de produção petrolífera por ICP- AES e ICP- MS após pré-concentração em coluna de sílica-C18 Determination of organic phosphorus in oil production waters by ICP-AES and ICP-MS after preconcentration on silica immobilized C18Anderson Araújo RochaNorbert MiekeleyCarmem Lúcia Porto da SilveiraMaria Carmem Moreira Bezerra<abstract language="eng">Results on the optimization of analytical methods for the determination of phosphorus in phosphino-polycarboxylate (PPCA), used frequently as scale inhibitor during oil production, by ICP-AES and ICP-MS are presented. Due to the complex matrix of production waters (brines) and their high concentration in inorganic phosphorus, the separation of organic phosphorus prior to its determination is necessary. In this work, minicolumns of silica immobilized C18 were used. Optimization of the separation step resulted in the following working conditions: (1) prewashing of the column with methanol (80% v/v); (2) use of a flow rate of 5 mL/min and 10 mL/min, respectively, for the preconditioning step and for percolation of the water sample; (3) final elution of organic phosphorus with 7 mL of buffer of H3BO3/NaOH (0.05 M, pH 9) with a flow rate of 1 mL/min. Sample detection limits (3s) for different combinations of nebulizers and spectrometric methods, based on 10 mL water aliquots, are: ICP-AES -Cross flow (47 mg/L) and Ultrasonic (18 mug/L); ICP-MS -Cross flow (1.2 mug/L), Cyclonic (0.7 mug/L) and Ultrasonic (0.5 mug/L). Typical recoveries of organic phosphorus are between 90 and 95% and the repeatability of the whole procedure is better than 10%. The developed methodology was applied successfully to samples from the oil-well NA 46, platform PNA 2, Campos basin, Brazil. Assessment of the PPCA inhibitor was possible at lower concentrations than achieved by current analytical methods, resulting in benefits such as reduced cost of chemicals, postponed oil production and lower environmental impacts.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40421998000500010phosphorus in production waterscale inhibitorsICP-MSICP-AES
collection DOAJ
language English
format Article
sources DOAJ
author Anderson Araújo Rocha
Norbert Miekeley
Carmem Lúcia Porto da Silveira
Maria Carmem Moreira Bezerra
spellingShingle Anderson Araújo Rocha
Norbert Miekeley
Carmem Lúcia Porto da Silveira
Maria Carmem Moreira Bezerra
Determinação de fósforo orgânico em águas de produção petrolífera por ICP- AES e ICP- MS após pré-concentração em coluna de sílica-C18 Determination of organic phosphorus in oil production waters by ICP-AES and ICP-MS after preconcentration on silica immobilized C18
Química Nova
phosphorus in production water
scale inhibitors
ICP-MS
ICP-AES
author_facet Anderson Araújo Rocha
Norbert Miekeley
Carmem Lúcia Porto da Silveira
Maria Carmem Moreira Bezerra
author_sort Anderson Araújo Rocha
title Determinação de fósforo orgânico em águas de produção petrolífera por ICP- AES e ICP- MS após pré-concentração em coluna de sílica-C18 Determination of organic phosphorus in oil production waters by ICP-AES and ICP-MS after preconcentration on silica immobilized C18
title_short Determinação de fósforo orgânico em águas de produção petrolífera por ICP- AES e ICP- MS após pré-concentração em coluna de sílica-C18 Determination of organic phosphorus in oil production waters by ICP-AES and ICP-MS after preconcentration on silica immobilized C18
title_full Determinação de fósforo orgânico em águas de produção petrolífera por ICP- AES e ICP- MS após pré-concentração em coluna de sílica-C18 Determination of organic phosphorus in oil production waters by ICP-AES and ICP-MS after preconcentration on silica immobilized C18
title_fullStr Determinação de fósforo orgânico em águas de produção petrolífera por ICP- AES e ICP- MS após pré-concentração em coluna de sílica-C18 Determination of organic phosphorus in oil production waters by ICP-AES and ICP-MS after preconcentration on silica immobilized C18
title_full_unstemmed Determinação de fósforo orgânico em águas de produção petrolífera por ICP- AES e ICP- MS após pré-concentração em coluna de sílica-C18 Determination of organic phosphorus in oil production waters by ICP-AES and ICP-MS after preconcentration on silica immobilized C18
title_sort determinação de fósforo orgânico em águas de produção petrolífera por icp- aes e icp- ms após pré-concentração em coluna de sílica-c18 determination of organic phosphorus in oil production waters by icp-aes and icp-ms after preconcentration on silica immobilized c18
publisher Sociedade Brasileira de Química
series Química Nova
issn 0100-4042
1678-7064
publishDate 1998-10-01
description <abstract language="eng">Results on the optimization of analytical methods for the determination of phosphorus in phosphino-polycarboxylate (PPCA), used frequently as scale inhibitor during oil production, by ICP-AES and ICP-MS are presented. Due to the complex matrix of production waters (brines) and their high concentration in inorganic phosphorus, the separation of organic phosphorus prior to its determination is necessary. In this work, minicolumns of silica immobilized C18 were used. Optimization of the separation step resulted in the following working conditions: (1) prewashing of the column with methanol (80% v/v); (2) use of a flow rate of 5 mL/min and 10 mL/min, respectively, for the preconditioning step and for percolation of the water sample; (3) final elution of organic phosphorus with 7 mL of buffer of H3BO3/NaOH (0.05 M, pH 9) with a flow rate of 1 mL/min. Sample detection limits (3s) for different combinations of nebulizers and spectrometric methods, based on 10 mL water aliquots, are: ICP-AES -Cross flow (47 mg/L) and Ultrasonic (18 mug/L); ICP-MS -Cross flow (1.2 mug/L), Cyclonic (0.7 mug/L) and Ultrasonic (0.5 mug/L). Typical recoveries of organic phosphorus are between 90 and 95% and the repeatability of the whole procedure is better than 10%. The developed methodology was applied successfully to samples from the oil-well NA 46, platform PNA 2, Campos basin, Brazil. Assessment of the PPCA inhibitor was possible at lower concentrations than achieved by current analytical methods, resulting in benefits such as reduced cost of chemicals, postponed oil production and lower environmental impacts.
topic phosphorus in production water
scale inhibitors
ICP-MS
ICP-AES
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40421998000500010
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