On-Line preconcentration and simultaneous determination of Cu and Mn in water samples using a minicolumn packed with sisal fiber by MIP OES
Dublin Core
Título
On-Line preconcentration and simultaneous determination of Cu and Mn in water samples using a minicolumn packed with sisal fiber by MIP OES
Tema
AGUA
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DETERMINACION EN AGUA
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MANGANESO
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COBRE
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ANALISIS QUIMICO
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BIOSORBENTES
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BIBLIOGRAFIA NACIONAL QUIMICA
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2021
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Abstract
An on-line preconcentration system for the simultaneous determination of Copper (Cu)
and manganese (Mn) in water samples was developed and coupled to a microwave-induced plasma optical emission spectrometer (MIP OES). The flow injection system was designed with a minicolumn packed with sisal fiber (Agave sisalana). A multivariate experimental design was performed to evaluate the influence of pH, preconcentration time, and eluent concentration. Optimal conditions for sample preparation were pH 5.5, preconcentration time was 90 s, and HCl 0.5 mol L-1 was the eluent. The main figures of merit were detection limits 3.7 and 9.0 g L-1 for Cu and Mn, respectively.
Precision was expressed as a relative standard deviation better than 10%. Accuracy was evaluated
via spiked recovery assays with recoveries between 75–125%. The enrichment factor was 30 for
both analytes. These results were adequate for water samples analysis for monitoring purposes.
The preconcentration system was coupled and synchronized with the MIP OES nebulizer to allow
simultaneous determination of Cu and Mn as a novel sample introduction strategy. The sampling rate was 20 samples/h. Sisal fiber resulted an economical biosorbent for trace element preconcentration without extra derivatization steps and with an awfully time of use without replacement complying with the principles of green analytical methods.
and manganese (Mn) in water samples was developed and coupled to a microwave-induced plasma optical emission spectrometer (MIP OES). The flow injection system was designed with a minicolumn packed with sisal fiber (Agave sisalana). A multivariate experimental design was performed to evaluate the influence of pH, preconcentration time, and eluent concentration. Optimal conditions for sample preparation were pH 5.5, preconcentration time was 90 s, and HCl 0.5 mol L-1 was the eluent. The main figures of merit were detection limits 3.7 and 9.0 g L-1 for Cu and Mn, respectively.
Precision was expressed as a relative standard deviation better than 10%. Accuracy was evaluated
via spiked recovery assays with recoveries between 75–125%. The enrichment factor was 30 for
both analytes. These results were adequate for water samples analysis for monitoring purposes.
The preconcentration system was coupled and synchronized with the MIP OES nebulizer to allow
simultaneous determination of Cu and Mn as a novel sample introduction strategy. The sampling rate was 20 samples/h. Sisal fiber resulted an economical biosorbent for trace element preconcentration without extra derivatization steps and with an awfully time of use without replacement complying with the principles of green analytical methods.
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Autor
Silva, Javier
Pistón, Mariela
Fuente
Molecules v. 26, no 6, 2021.-- p. 1-10.--e1662
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Editor
MDPI
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Fecha
2021
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Derechos
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Formato
PDF
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Idioma
Inglés
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Tipo
Artículo
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Identificador
doi.org/10.3390/molecules26061662
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Document Item Type Metadata
Original Format
Pdf
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- Fecha de agregación
- June 28, 2021
- Colección
- Bibliografía Nacional Química
- Tipo de Elemento
- Document
- Etiquetas
- Agua, Análisis químico, Biosorbentes, Cobre, Determinación en agua, Manganeso
- Citación
- Silva, Javier, “On-Line preconcentration and simultaneous determination of Cu and Mn in water samples using a minicolumn packed with sisal fiber by MIP OES,” RIQUIM - Repositorio Institucional de la Facultad de Química - UdelaR, accessed March 21, 2023, http://riquim.fq.edu.uy/items/show/6273.
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