Determination of Cu, Zn, Fe, Ni and Cd by flame atomic absorption spectrophotometry after preconcentration by Escherichia coli immobilized on sepiolite
A method for the determination of Cu, Zn, Fe, Ni and Cd by flame atomic absorption spectrophotometry (FAAS) after preconcentrating on a column containing Escherichia coli immobilized on sepiolite has been developed. Optimum pH values, amount of adsorbent, elution solution and flow rate have been obt...
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Published in: | Talanta (Oxford) Vol. 51; no. 5; pp. 1035 - 1043 |
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Abstract | A method for the determination of Cu, Zn, Fe, Ni and Cd by flame atomic absorption spectrophotometry (FAAS) after preconcentrating on a column containing
Escherichia coli immobilized on sepiolite has been developed. Optimum pH values, amount of adsorbent, elution solution and flow rate have been obtained for the elements studied. The effect of interfering ions on the recovery of the analytes has also been investigated. Recoveries of Cu, Zn, Fe, Ni and Cd by
E. coli immobilized on sepiolite were 99.1±0.6, 98.2±0.6, 98.1±0.5, 97.2±0.8 and 98.2±0.4% at 95% confidence level, respectively. The adsorption capacity of
E. coli immobilized on sepiolite was found as 0.148, 0.064, 0.098, 0.134 and 0.088 mmol/g for Cu, Zn, Fe, Ni and Cd, respectively. The proposed method was applied to the determination of trace metals in alloys (NBS SRM 85b). Trace metals have been determined with relative error lower than 10%. |
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AbstractList | A method for the determination of Cu, Zn, Fe, Ni and Cd by flame atomic absorption spectrophotometry (FAAS) after preconcentrating on a column containing Escherichia coli immobilized on sepiolite has been developed. Optimum pH values, amount of adsorbent, elution solution and flow rate have been obtained for the elements studied. The effect of interfering ions on the recovery of the analytes has also been investigated. Recoveries of Cu, Zn, Fe, Ni and Cd by E. coli immobilized on sepiolite were 99.1+/-0.6, 98.2+/-0.6, 98.1+/-0.5, 97.2+/-0.8 and 98.2+/-0.4% at 95% confidence level, respectively. The adsorption capacity of E. coli immobilized on sepiolite was found as 0.148, 0.064, 0.098, 0.134 and 0.088 mmol/g for Cu, Zn, Fe, Ni and Cd, respectively. The proposed method was applied to the determination of trace metals in alloys (NBS SRM 85b). Trace metals have been determined with relative error lower than 10%. A method for the determination of Cu, Zn, Fe, Ni and Cd by flame atomic absorption spectrophotometry (FAAS) after preconcentrating on a column containing Escherichia coli immobilized on sepiolite has been developed. Optimum pH values, amount of adsorbent, elution solution and flow rate have been obtained for the elements studied. The effect of interfering ions on the recovery of the analytes has also been investigated. Recoveries of Cu, Zn, Fe, Ni and Cd by E. coli immobilized on sepiolite were 99.1±0.6, 98.2±0.6, 98.1±0.5, 97.2±0.8 and 98.2±0.4% at 95% confidence level, respectively. The adsorption capacity of E. coli immobilized on sepiolite was found as 0.148, 0.064, 0.098, 0.134 and 0.088 mmol/g for Cu, Zn, Fe, Ni and Cd, respectively. The proposed method was applied to the determination of trace metals in alloys (NBS SRM 85b). Trace metals have been determined with relative error lower than 10%. |
Author | Lale, Mustafa Bağ, Hüseyin Türker, A.Rehber |
Author_xml | – sequence: 1 givenname: Hüseyin surname: Bağ fullname: Bağ, Hüseyin organization: Kırıkkale Üniversitesi, Fen Edebiyat Fakültesi, TR-71450 Kırıkkale, Turkey – sequence: 2 givenname: A.Rehber surname: Türker fullname: Türker, A.Rehber email: rturker@quark.fef.gazi.edu.tr organization: Gazi Üniversitesi, Fen Edebiyat Fakültesi, TR-06500 Ankara, Turkey – sequence: 3 givenname: Mustafa surname: Lale fullname: Lale, Mustafa organization: Kırıkkale Üniversitesi, Fen Edebiyat Fakültesi, TR-71450 Kırıkkale, Turkey |
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Keywords | Cu, Zn, Fe, Ni and Cd determination Preconcentration Immobilization Flame atomic absorption spectrometry Escherichia coli Sepiolite Trace analysis Adsorption Alloys Bacteria Transition metal Spectrophotometry Flame spectrometry Chemical enrichment Atomic absorption spectrometry |
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References | Mahan, Holcombe (BIB6) 1992; 64 Maquieira, Elmahadi, Puchades (BIB8) 1996; 11 Madrid, Cámara (BIB1) 1997; 16 Bağ, Lale, Türker (BIB16) 1998; 47 Robles, Aller (BIB7) 1996; 15 Robles, Garcia-Olalla, Aller (BIB9) 1993; 8 Marhol (BIB15) 1982 Türker, Bağ, Erdoğan (BIB13) 1997; 357 Maquieira, Elmahadi, Puchades (BIB4) 1994; 66 Cantle (BIB14) 1986; 5 Robles, Aller (BIB10) 1995; 42 Maquieira, Elmahadi, Puchades (BIB5) 1994; 66 Whiteside, Milner (BIB12) 1984 Bağ, Lale, Türker (BIB17) 1999; 363 Elmahadi, Greenway (BIB3) 1991; 6 Aller, Robles (BIB2) 1998; 13 Aller, Lumbreras, Robbles, Fernández (BIB11) 1996; 330 |
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SubjectTerms | Analytical chemistry Applied sciences Chemistry Cu, Zn, Fe, Ni and Cd determination Escherichia coli Exact sciences and technology Flame atomic absorption spectrometry Immobilization Metals. Metallurgy Preconcentration Sepiolite Spectrometric and optical methods |
Title | Determination of Cu, Zn, Fe, Ni and Cd by flame atomic absorption spectrophotometry after preconcentration by Escherichia coli immobilized on sepiolite |
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