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Demir ve Alüminyumun Doğal Sularda UV Spektrofotometrik Tayini İçin Yöntem Geliştirilmesi ve Elde Edilen Verilerin Kemometrik Kalibrasyon Yöntemleriyle Değerlendirilmesi

Year 2014, Volume: 18 Issue: 3, 52 - 59, 07.01.2015

Abstract

Bu çalışmada, kemometrik kalibrasyon yöntemlerinden temel bileşen analizi yöntemi (PCA), temel bileşen regresyonu yöntemi (PCR) ve kısmi en küçük kareler yöntemi (PLS), doğal sularda bulunan Fe³âº ve Al³âº'ün miktar tayininde başarı ile uygulanmıştır. UV- Görünür Alan Spektroskopisinden elde edilen veriler kemometrik olarak değerlendirilmiştir. Uygulamada iki farklı ligand chrome azurol S (CAS) ve pyrocatechol violet (PCV) denenmiş ve daha kararlı sonuçlar elde edildiğinden CAS ile çalışmalara devam edilmiştir. Fe³âº ve Al³âº CAS ile komplekslerinin spektrofotometrik yöntemlerle uygun parametreleri belirlenmiş (ligand miktarı, pH, bekleme süreleri, metal derişimi ve absorbans arasındaki ilişki ve yabancı iyon etkisi) ve optimum koşullar sağlanmıştır. Optimum koşullar sağlandıktan sonra Fe³âº ve Al³âº içeren doğal su örneğinin spektrofotometrik tayinleri gerçekleştirilmiş ve elde edilen veriler kemometrik olarak değerlendirilmiştir.

References

  • Belce A (2002) Mineraller, In ‘’ İnsan Biyokimyası’’
  • Ed. By Onat T, Emerk k ve Sözmen EY, 529-537, Palme Yayıncılık, Ankara. Bond A.M., Nagaosa Y., (1985) "Determination of aluminium, copper and manganase in biological and other samples as 8-quinolinol complexes by high- performance electrochemical and spectrohotometric detection", Anal. Chim. Acta, 178, 197-208. with
  • Coscaine A.R, Andrade J.C., Poppi R.J.,(2002) "PLS regression using real sample calibration for aluminium and iron determination in plant extracts", Analyst, 127,135-139.
  • Coscine A.R., Andrade J.C., Poppi R.J., Mello C., Raji B.V., Mbreu M.F., (2000) "Multivariate calibration applied to a highly interfering chemical system:The simultaneous spectrophotometric determination of aluminium and iron in plants using xylenol orange and partial least squares regression", Anal. Chim. Acta, 423, 31-40.
  • Gao H.W., Chen L., Yang Q.Z., (2005) "Direct sensitive determination of trace amounts of dissolved ferric iron in naturel water by light absorption ratio variation spectrometry", Journal of International, 88, 1231-1235. AOAC
  • Honorato R.S., Carneiro J.M.T., Zagatto E.A.G., (2001)
  • "Spectrophotometric flowbatch determination of aluminium in plant tissues exploiting a feedback mechanism", Anal. Chim. Acta, 441, 309–315. Kendüzler E., Türker A.R., (2003) "Atomic absorption spectrophotometric determination of trace copper in waters, aluminium foil and tea samples after preconcentration disulfonic acid on Amsersorb 572", Anal. Chim. Acta, 480, 259-266. 1-nitroso-2-napthol-3,6
  • Kaya S ve Akar F (1998) Metallerin ‘Veteriner
  • Hekimliğinde Toksikoloji’ Ed. By Kaya S, Pirinçci İ. ve Bilgili A, 119-143, 1. Baskı, Medisan Yayıncılık, Ankara. Kaya,B., (2007) “Kombine Farmasötik Preparatlardan
  • Telmisartan ve Hidroklorotiyazid’in kemometrik Kemometrik Kalibrasyon Yöntemleriyle Aynı Anda Miktar Tayinleri.”, Ankara Üniversitesi Sağlık Bilimleri Enstitüsü, Yüksek Lisans Tezi, 104s, Ankara. Kramer, R., (1998) "Chemometrics Techniques for
  • Quantitative Analysis", New York, Marcel Dekker Limson J., Nyokong T., Daya S.,(1998) "The interaction of melatonin and its precusors with aluminium, cadmium, copper, iron, lead, and zinc: An adsorptive voltametric study", Journal of Pineal Research, 24(1), 15-21. Marczenko
  • "Spectrophotometric determination of iron(III) with chrome azurol s or eriochrome cyanine R and some cationic surfactants", Anal. Chim. Acta, 123, 279-287. Martens, H., Naes, T., (1989) "Multivariate
  • Calibration", Wiley, Chichester. Nagaoku M.H., Maitani T., (2000) "Binding patterns of co-existing aluminium and iron to human serum transferrin studied by HPLC-high resolution ICP-MS", Analyst, 125, 1962-1965.
  • Otto, M., (1998) "Chemometrics: Statistics and Computer Applications in Analytical Chemistry", Weinheim, Wiley-VCH.
  • Reddy V.K., Reddy S.M., Reddy P.R., Reddy T.S., (2000)
  • "Simultaneous spectrophotometric determination of copper (II), vanadium (V) and iron (III) using 2- hydroxy-1-naphthaldehyde Journal of Analytical Chemistry, 55(5), 435-439. benzoylhydrazone", Rodrigues J.L., de Magalhaes S.C., Luccas P.O.,(2005)
  • "Flow injection spectrophotometric determination of Al in hemodialysis solutions", Journal of Pharmaceutical and Biomedical Analysis, 36, 1119– 1
  • Royset O.,(1985) "Comparison of four chromogenic reagents for the flow-injection determination of aluminium in water", Anal. Chim. Acta, 178, 223-230.
  • Ryan E., Meaney M., (1992) "Determination of trace levels of copper (II), aluminium (III) and iron (III) by reversed chromatography using a novel on-line sample preconcentration technique", Analyst, 117, 1435- 14 performance liquid
  • Safavi A., Abdollahi H., Mirzajani R., (2006)
  • "Simultaneous spectrophotometric determination of Fe(III), Al (III) and Cu(III) by partial least squares calibration method", Spectrochimica Acta Part A, 63, 196-1
  • Scancar J., Benedik R.M.M., Krızaj I., (2003) "Total metal concentrations in serum of dialysis patients anf fractionation of Cu, Rb, Al, Fe and Zn in spent continuous ambulatory peritoneal dialysis fluid", Talanta, 59, 355-364.
  • Tahan J.E., Granadilla V.A., Romero R.A., (1994)
  • "Electrothermal atomic absorption spectrometric determination of Al, Cu, Fe, Pb, V and Zn in clinical samples and certified environmental reference materials", Anal. Chim. Acta, 295, 187-197. Thakur M., Deb M.K., (1999) " The use of 1-[pyridyl
  • (2)-azo]-naphthol-(2) in the presence of Tx-100 and N-N'-diphenylbenzamidine specrophotometric determination of copper in real samples", Talanta, 49, 561-569. for the Wang N., Liang W., (1993) "Simultaneous third- derivative spectrophotometric determination of copper and nickel in iron alloys and aluminium alloy", Talanta, 40(6), 897-899.
  • Zarei K., Atabati M., Malekshabani Z., (2006)
  • "Simultaneous spectrophotometric determination of iron, nickel and cobalt in micellar media by using direct orthogonal signal correction-partial least squares method", Anal. Chim. Acta, 556, 247-254.

UV Spectrophotometric Method Development for the Determination of Iron and Aluminum in Natural Waters and Evaluation of the data Obtained from the Calibration of Chemometric Methods

Year 2014, Volume: 18 Issue: 3, 52 - 59, 07.01.2015

Abstract

In this study, principal component analysis method (PCA), principal component regression method (PCR), partial least squares method (PLS) of chemometry calibration methods, are successfully realized on quantitation of Fe³⁺ and Al³⁺ present at natural water. The data gathered from UV- Visible Spectroscopy are evaluated chemometrically. In the application two distinctive ligand chrome azurol S (CAS) and pyrocatechol violet (PCV) are tested and studies are proceeded with CAS due to more stable results that are obtained. Optimum parameters (ligand amount, pH, waiting period, relation between metal concentration and absorbance, foreign ion effect) and conditions of Fe³⁺ and Al³⁺ CAS and their complexes are determined with spectrophotometric methods. After the optimum conditions are provided, spectrophotometric determinations of natural water including Fe³⁺ and Al³⁺ are realized and obtained data are evaluated as chemometry

References

  • Belce A (2002) Mineraller, In ‘’ İnsan Biyokimyası’’
  • Ed. By Onat T, Emerk k ve Sözmen EY, 529-537, Palme Yayıncılık, Ankara. Bond A.M., Nagaosa Y., (1985) "Determination of aluminium, copper and manganase in biological and other samples as 8-quinolinol complexes by high- performance electrochemical and spectrohotometric detection", Anal. Chim. Acta, 178, 197-208. with
  • Coscaine A.R, Andrade J.C., Poppi R.J.,(2002) "PLS regression using real sample calibration for aluminium and iron determination in plant extracts", Analyst, 127,135-139.
  • Coscine A.R., Andrade J.C., Poppi R.J., Mello C., Raji B.V., Mbreu M.F., (2000) "Multivariate calibration applied to a highly interfering chemical system:The simultaneous spectrophotometric determination of aluminium and iron in plants using xylenol orange and partial least squares regression", Anal. Chim. Acta, 423, 31-40.
  • Gao H.W., Chen L., Yang Q.Z., (2005) "Direct sensitive determination of trace amounts of dissolved ferric iron in naturel water by light absorption ratio variation spectrometry", Journal of International, 88, 1231-1235. AOAC
  • Honorato R.S., Carneiro J.M.T., Zagatto E.A.G., (2001)
  • "Spectrophotometric flowbatch determination of aluminium in plant tissues exploiting a feedback mechanism", Anal. Chim. Acta, 441, 309–315. Kendüzler E., Türker A.R., (2003) "Atomic absorption spectrophotometric determination of trace copper in waters, aluminium foil and tea samples after preconcentration disulfonic acid on Amsersorb 572", Anal. Chim. Acta, 480, 259-266. 1-nitroso-2-napthol-3,6
  • Kaya S ve Akar F (1998) Metallerin ‘Veteriner
  • Hekimliğinde Toksikoloji’ Ed. By Kaya S, Pirinçci İ. ve Bilgili A, 119-143, 1. Baskı, Medisan Yayıncılık, Ankara. Kaya,B., (2007) “Kombine Farmasötik Preparatlardan
  • Telmisartan ve Hidroklorotiyazid’in kemometrik Kemometrik Kalibrasyon Yöntemleriyle Aynı Anda Miktar Tayinleri.”, Ankara Üniversitesi Sağlık Bilimleri Enstitüsü, Yüksek Lisans Tezi, 104s, Ankara. Kramer, R., (1998) "Chemometrics Techniques for
  • Quantitative Analysis", New York, Marcel Dekker Limson J., Nyokong T., Daya S.,(1998) "The interaction of melatonin and its precusors with aluminium, cadmium, copper, iron, lead, and zinc: An adsorptive voltametric study", Journal of Pineal Research, 24(1), 15-21. Marczenko
  • "Spectrophotometric determination of iron(III) with chrome azurol s or eriochrome cyanine R and some cationic surfactants", Anal. Chim. Acta, 123, 279-287. Martens, H., Naes, T., (1989) "Multivariate
  • Calibration", Wiley, Chichester. Nagaoku M.H., Maitani T., (2000) "Binding patterns of co-existing aluminium and iron to human serum transferrin studied by HPLC-high resolution ICP-MS", Analyst, 125, 1962-1965.
  • Otto, M., (1998) "Chemometrics: Statistics and Computer Applications in Analytical Chemistry", Weinheim, Wiley-VCH.
  • Reddy V.K., Reddy S.M., Reddy P.R., Reddy T.S., (2000)
  • "Simultaneous spectrophotometric determination of copper (II), vanadium (V) and iron (III) using 2- hydroxy-1-naphthaldehyde Journal of Analytical Chemistry, 55(5), 435-439. benzoylhydrazone", Rodrigues J.L., de Magalhaes S.C., Luccas P.O.,(2005)
  • "Flow injection spectrophotometric determination of Al in hemodialysis solutions", Journal of Pharmaceutical and Biomedical Analysis, 36, 1119– 1
  • Royset O.,(1985) "Comparison of four chromogenic reagents for the flow-injection determination of aluminium in water", Anal. Chim. Acta, 178, 223-230.
  • Ryan E., Meaney M., (1992) "Determination of trace levels of copper (II), aluminium (III) and iron (III) by reversed chromatography using a novel on-line sample preconcentration technique", Analyst, 117, 1435- 14 performance liquid
  • Safavi A., Abdollahi H., Mirzajani R., (2006)
  • "Simultaneous spectrophotometric determination of Fe(III), Al (III) and Cu(III) by partial least squares calibration method", Spectrochimica Acta Part A, 63, 196-1
  • Scancar J., Benedik R.M.M., Krızaj I., (2003) "Total metal concentrations in serum of dialysis patients anf fractionation of Cu, Rb, Al, Fe and Zn in spent continuous ambulatory peritoneal dialysis fluid", Talanta, 59, 355-364.
  • Tahan J.E., Granadilla V.A., Romero R.A., (1994)
  • "Electrothermal atomic absorption spectrometric determination of Al, Cu, Fe, Pb, V and Zn in clinical samples and certified environmental reference materials", Anal. Chim. Acta, 295, 187-197. Thakur M., Deb M.K., (1999) " The use of 1-[pyridyl
  • (2)-azo]-naphthol-(2) in the presence of Tx-100 and N-N'-diphenylbenzamidine specrophotometric determination of copper in real samples", Talanta, 49, 561-569. for the Wang N., Liang W., (1993) "Simultaneous third- derivative spectrophotometric determination of copper and nickel in iron alloys and aluminium alloy", Talanta, 40(6), 897-899.
  • Zarei K., Atabati M., Malekshabani Z., (2006)
  • "Simultaneous spectrophotometric determination of iron, nickel and cobalt in micellar media by using direct orthogonal signal correction-partial least squares method", Anal. Chim. Acta, 556, 247-254.
There are 27 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section TEMEL BİLİMLER
Authors

A. Hakan Aktaş This is me

Bengisu Mutlutürk This is me

Publication Date January 7, 2015
Published in Issue Year 2014 Volume: 18 Issue: 3

Cite

APA Aktaş, A. H., & Mutlutürk, B. (2015). Demir ve Alüminyumun Doğal Sularda UV Spektrofotometrik Tayini İçin Yöntem Geliştirilmesi ve Elde Edilen Verilerin Kemometrik Kalibrasyon Yöntemleriyle Değerlendirilmesi. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 18(3), 52-59.
AMA Aktaş AH, Mutlutürk B. Demir ve Alüminyumun Doğal Sularda UV Spektrofotometrik Tayini İçin Yöntem Geliştirilmesi ve Elde Edilen Verilerin Kemometrik Kalibrasyon Yöntemleriyle Değerlendirilmesi. J. Nat. Appl. Sci. January 2015;18(3):52-59.
Chicago Aktaş, A. Hakan, and Bengisu Mutlutürk. “Demir Ve Alüminyumun Doğal Sularda UV Spektrofotometrik Tayini İçin Yöntem Geliştirilmesi Ve Elde Edilen Verilerin Kemometrik Kalibrasyon Yöntemleriyle Değerlendirilmesi”. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi 18, no. 3 (January 2015): 52-59.
EndNote Aktaş AH, Mutlutürk B (January 1, 2015) Demir ve Alüminyumun Doğal Sularda UV Spektrofotometrik Tayini İçin Yöntem Geliştirilmesi ve Elde Edilen Verilerin Kemometrik Kalibrasyon Yöntemleriyle Değerlendirilmesi. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi 18 3 52–59.
IEEE A. H. Aktaş and B. Mutlutürk, “Demir ve Alüminyumun Doğal Sularda UV Spektrofotometrik Tayini İçin Yöntem Geliştirilmesi ve Elde Edilen Verilerin Kemometrik Kalibrasyon Yöntemleriyle Değerlendirilmesi”, J. Nat. Appl. Sci., vol. 18, no. 3, pp. 52–59, 2015.
ISNAD Aktaş, A. Hakan - Mutlutürk, Bengisu. “Demir Ve Alüminyumun Doğal Sularda UV Spektrofotometrik Tayini İçin Yöntem Geliştirilmesi Ve Elde Edilen Verilerin Kemometrik Kalibrasyon Yöntemleriyle Değerlendirilmesi”. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi 18/3 (January 2015), 52-59.
JAMA Aktaş AH, Mutlutürk B. Demir ve Alüminyumun Doğal Sularda UV Spektrofotometrik Tayini İçin Yöntem Geliştirilmesi ve Elde Edilen Verilerin Kemometrik Kalibrasyon Yöntemleriyle Değerlendirilmesi. J. Nat. Appl. Sci. 2015;18:52–59.
MLA Aktaş, A. Hakan and Bengisu Mutlutürk. “Demir Ve Alüminyumun Doğal Sularda UV Spektrofotometrik Tayini İçin Yöntem Geliştirilmesi Ve Elde Edilen Verilerin Kemometrik Kalibrasyon Yöntemleriyle Değerlendirilmesi”. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi, vol. 18, no. 3, 2015, pp. 52-59.
Vancouver Aktaş AH, Mutlutürk B. Demir ve Alüminyumun Doğal Sularda UV Spektrofotometrik Tayini İçin Yöntem Geliştirilmesi ve Elde Edilen Verilerin Kemometrik Kalibrasyon Yöntemleriyle Değerlendirilmesi. J. Nat. Appl. Sci. 2015;18(3):52-9.

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