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Cadion ile birlikte çöktürmeden sonra Fe, Cr, Pb eser elementlerinin atomik absorpsiyon spektrometresiyle tayini

Yıl 2015, Cilt: 31 Sayı: 3, 179 - 184, 01.06.2015

Öz

Bu çalışma cadion ile birlikte çöktürülen Fe, Pb ve Cr un AAS de tayinini üzerinedir. Metot üzerine cadionun miktarı, örnek hacmi, matriks etkisi ve bekleme süresi gibi birçok etkinin analit iyonlarının geri kazanımına olan etkileri incelenmiştir. Hatta santirifüjleme süreleri bile incelenmiştir. Pb, Fe ve Cr için tayin sınırları 0.300, 0.090, 0.060 mgL-1 olarak belirlenmiştir. Metot, gerçek örneklere, musluk suyuna, doğal ve krater göllerinden alınan örnek sulara da uygulanmıştır.Aynı zamanda metot referans madde ile de test edilmiştir. Standart sapmalar % 5 in altında çıkarken geri kazanımlar % 95 in üzerindeydi.

Kaynakça

  • Lavilla, I.; Vilas, P.; Bendicho, C., Fast determination of arsenic, selenium, nickel and vanadium in fish and shellfish by electrothermal atomic absorption spectrometry following ultrasound-assisted extraction. Food Chem., 106, 409, 2008
  • Kumar, A.R.; Riyazuddin, P., Non- chromatographic hydride generation atomic spectrometric techniques for the speciation analysis of arsenic, antimony, selenium, and tellurium in water samples —a review. Int. J. Environ. Anal. Chem., 87, 469-500, 2007
  • Maroulis, M.; Economou, A.; Voulgaropoulos, A., Determination of Cd and Pb in phosphorites and phosphate fertilizers by means of a portable voltammetric Instrumentation. Electroanalysis, 19, 2149-215 4,
  • Külahci, F.; Dogru, M., Physical and chemica l investigation of water and sediment of the Keban Dam Lake, Turkey. J. Nuclear Chem., 268, 517- , 2006
  • Gao, Y.; Wei, W.; Gao, X.; Zeng, J.; Yin, J.; Determination of ultratrace lead with bismuth film electrodes based on magneto-voltammetry, Int. J. Environ. Anal. Chem., 87, 521-533, 2007
  • Jarup, L.; Hazards of heavy metal contamination. Br. Med. Bull., 68, 167-182, 2003
  • Momani, K.A.; Chemical assessment of bottled drinking waters by IC, GC, and ICP-MS. Instrum. Sci. Technol., 34, 587-605, 2006
  • Holynska, B.; Ostachwicz, B.; Wegrzynek, D.; Simple method of determination of copper, mercury and lead in portable water with preliminary pre-concentration by total reflection X-ray fluorescence spectrometry. Spectrochim. Acta B, 51, 769-773, 1996,
  • Kojima, I.; Katsuzaki, M.; Selective extraction and ‘One-Drop’ spectrometric determination of silver in biological standard reference materials. Anal. Sci., 13, 1021- , 1997, atomic absorption Tao, G.H.; Fang, Z.L.; Dual Stage
  • Preconcentration System For Flame Atomic- Absorption Spectrometry Using Flow-Injection . Fresen. J. Anal. Chem., 360, 156-160, 1998
  • Cuesta, A.; Todoli, J.L.; Canals , A.; Flow injection method for the rapid determination of chemica l oxygen demand based on microwave digestion and chromium absorption spectrometry. Spectrochim. Acta B, 51, 1800, 1996 atomic
  • Ferreira, S.C.L.; de Brito, C.F.; Separation and preconcentration of cobalt after sorption onto Amberlite XAD-2 loaded with 2-(2-thiazolyla zo )- p-cresol. Anal. Sci., 15: 189-191, 1996
  • Gaspar, A.; Sogor, C.; Posta, J.; Possibilities for the simultaneous Preconcentration and flame atomic absorption spectroscopic determination of Cr(III) and Cr(VI) using a C18 column and sorption loop. Fresen. J. Anal. Chem., 363, 480- , 1999
  • Shah, R.; Devi, S.; Preconcentration and separation of and platinum(IV) palladium(I1) anchored poly(vinylpyridine)-based chelating resin. Anal. Chim. Acta, 341, 217-224, 1997
  • Zhang, T.H.; Shan, X.Q.; Liu, R.X.; Tang, H.X.; Zhang, S.Z.; Preconcentration of rare earth elements in dithiocarbamate) chelating fiber prior to determination by inductively coupled plasma mass spectrometry. Anal. Chem., 70, 3964-3968, 1998
  • Liu, R., Zhang, B., Tang, H., Fresen. J. Anal. Chem., , 258-262, 1998
  • Tsai, S.J.J.; Jan, C.C.; Determination of lead and bismuth in nickel-based alloys by graphite-furnace atomic-absorption spectrometry using continuum source background correction. Spectrochim. Acta B, (8), 773-785, 1994
  • Atanassova, D.; Stefanova, V.; Russeva, E.; Co- pre-concentration precipitative diethyldithiocarbamate and ICP-AES determination of Se, Cu, Pb, Zn, Fe, Co, Ni, Mn, Cr and Cd in water, Talanta, 47, 1237-1243, 1998 with sodium Hiraide, M.; Chen, Z.S.; Kawaguchi, H.;
  • Coprecipitation of traces of heavy metals with indium hydroxide for graphite-furnace atomic absorption spectrometry. Anal. Sci., 7, 65-68, 1991
  • Atsumi, K.; Minami, T.; Ueda, J.; Determination of cadmium in spring water by graphite-furnace atomic absorption spectrometry after coprecipitatio n with ytterbium hydroxide. Anal. Sci., 21, 647-649, 2005
  • Akagi, T.; Horaguci, H.; Simultaneous multieleme n t determination of trace metals using 10 ml of seawater spectrometry with gallium microsampling technique Anal. Chem., 62, 81-85, coprecipitation and Minami, T.; Sohrin, Y.; Ueda, J.; Determination of chromium, copper and lead in river water by graphite- furnace coprecipitation with terbium hydroxide. Anal. Sci., 21, 1521, 2005 after
  • Atsuya, I.; Itoh, K.; Ariu, I.; Preconcentration by lead coprecipitation Ni/pyrolidine-dithiocarbamate simultaneous determination by internal standard atomic absorption spectrometry with the solid sampling technique. Pure Appl. Chem., 63, 1221- , 1991 and selenium with complex and their
  • Atsuya, I.; Itoh, K.; Ariu, I.; Preconcentration by lead coprecipitation Ni/pyrolidine-dithiocarbamate simultaneous determination by internal standard atomic absorption spectrometry with the solid sampling technique. Pure Appl. Chem., 63, 1221 - , 1991 and selenium with complex and their
  • Arpadjan, S.; Jordenova, L.; Karadjuva, I.; Reductive coprecipitation and extraction as separation methods for the determination of gold in copper concentrates by AAS and ICP- AES. Fresen. J. Anal. Chem., 347, 482, 1993
  • Welz, B.; Xu, S.; Sperling, M.; Flame atomic absorption spectrometric determination of Cd, Co and Ni in biological samples using a flow injection system with on-line preconcentration by co-precipitation without filtration Appl. Spectr., 45, 1433-1443, 1991 Peker, D.S.K.; Turkoglu, O.; Soylak, M.;
  • Dysprosium(III) hydroxide coprecipitation system for the separation and preconcentration of heavy metal contents of table salts and natural waters. J. Hazard. Mater., 143, 555-560, 2007
  • Kagaya, S.; Serikawa, Y.; Yashima, R.; Tanaka, T.; Hasegawa, K.; A simple preconcentration-storing technique based on sulfide precipitation for multipoint monitoring of mercury in rainwater and snow by cold vapor atomic absorption spectrometry. Bull. Chem. Soc. Jpn., 79 (11), 1719-1724, 2006
  • Yang, W.; Wang, J.H.; An octadecyl immobilized silica beads polytetrafluoroethylene knotted reactor for Cd(OH)2 precipitate collection coupled to electrothermal atomic absorption spectrometry for cadmium screening. Chin. J. Anal. Chem., 34 (8), 1078-1082, 2006 versus
  • Zhuang, Z.; Wang, X.; Yang, P.; Yangand, C.; Huang, B.; pyrrolodine-1-yldithiofomate preconcentration of trace amounts of metals in waters with simultaneous determination by inductively coupled plasma atomic emission spectrometry. J. Anal. Atom. Spectrom., 9, 779-783, 1994 cobalt-ammoniu m coprecipitation for
  • Hosseini, M.S.; Hassan-Abadi, R.; Flotation separation and determination of trace amount of lead in some environmental samples. Ann. Chim., 97, 1269-12 78 , absorption spectrometric
  • Hosseini, M.S.; Hosseini, A.H.; Solvent impregnated resins application to batch-mode separation of Cd(II), Cu(II), Ni(II), and Zn(II) in aqueous media prior to the determination by flame atomic absorption spectrometry. Sep. Sci. Technol., 42, 3465-3480, 2007 and [33] Yu, L.; Peng, X.; Ni, F.; Li, J.; Wang, D.; Luan, Z.;
  • Arsenite removal from aqueous solutions by γ-Fe2O3– TiO2 magnetic nanoparticles through simultaneous photocatalytic oxidation and adsorption. J. Hazard. Mater., 246 (17), 10-17, 2013
  • Wang, G.; Um, W.; Facilitated strontium transport by remobilization of strontium-containing secondary precipitates in Hanfod Site subsurface. J. Hazard. Mater., 248-249, 364-370, 2013 Wang, Y.; Xu, J.; Li, J.; Wu, F.; Natural montmorillonite induced photooxidation of A s(III) in aqueous suspensions: Roles and sources of hydroxyl and hydroperoxyl/superoxide radicals. J. Hazard. Mater., 260, 255-262, 2013

Determination of Fe, Cr, Pb trace elements by atomic absorption spectrometry after co precipitation with Cadion

Yıl 2015, Cilt: 31 Sayı: 3, 179 - 184, 01.06.2015

Öz

This paper describes a method to determine the trace amounts of iron (III), lead (II) and chromium (III), where atomic absorption spectrometry with cadion coprecipitation is used. We examined the effects of analytical parameters such as the amount of cadion, sample volume, matrix effect and waiting time before and after centrifugation, etc. in the recovery of analyte ions. The effect of centrifuge time was also examined. The detection limits for Pb, Fe, Cr were 0.300, 0.090, 0.060 mgL-1 respectively. Validation of the presented coprecipitation method was performed via analysis by means of using standard reference materials. The method was applied to determine the degree of analytes present in real samples, including tap water collected form a lake, a Crater Lake and dam in Kayseri and Sivas. The standard deviations and recoveries were found to be <5% and >95 % respectively.

Kaynakça

  • Lavilla, I.; Vilas, P.; Bendicho, C., Fast determination of arsenic, selenium, nickel and vanadium in fish and shellfish by electrothermal atomic absorption spectrometry following ultrasound-assisted extraction. Food Chem., 106, 409, 2008
  • Kumar, A.R.; Riyazuddin, P., Non- chromatographic hydride generation atomic spectrometric techniques for the speciation analysis of arsenic, antimony, selenium, and tellurium in water samples —a review. Int. J. Environ. Anal. Chem., 87, 469-500, 2007
  • Maroulis, M.; Economou, A.; Voulgaropoulos, A., Determination of Cd and Pb in phosphorites and phosphate fertilizers by means of a portable voltammetric Instrumentation. Electroanalysis, 19, 2149-215 4,
  • Külahci, F.; Dogru, M., Physical and chemica l investigation of water and sediment of the Keban Dam Lake, Turkey. J. Nuclear Chem., 268, 517- , 2006
  • Gao, Y.; Wei, W.; Gao, X.; Zeng, J.; Yin, J.; Determination of ultratrace lead with bismuth film electrodes based on magneto-voltammetry, Int. J. Environ. Anal. Chem., 87, 521-533, 2007
  • Jarup, L.; Hazards of heavy metal contamination. Br. Med. Bull., 68, 167-182, 2003
  • Momani, K.A.; Chemical assessment of bottled drinking waters by IC, GC, and ICP-MS. Instrum. Sci. Technol., 34, 587-605, 2006
  • Holynska, B.; Ostachwicz, B.; Wegrzynek, D.; Simple method of determination of copper, mercury and lead in portable water with preliminary pre-concentration by total reflection X-ray fluorescence spectrometry. Spectrochim. Acta B, 51, 769-773, 1996,
  • Kojima, I.; Katsuzaki, M.; Selective extraction and ‘One-Drop’ spectrometric determination of silver in biological standard reference materials. Anal. Sci., 13, 1021- , 1997, atomic absorption Tao, G.H.; Fang, Z.L.; Dual Stage
  • Preconcentration System For Flame Atomic- Absorption Spectrometry Using Flow-Injection . Fresen. J. Anal. Chem., 360, 156-160, 1998
  • Cuesta, A.; Todoli, J.L.; Canals , A.; Flow injection method for the rapid determination of chemica l oxygen demand based on microwave digestion and chromium absorption spectrometry. Spectrochim. Acta B, 51, 1800, 1996 atomic
  • Ferreira, S.C.L.; de Brito, C.F.; Separation and preconcentration of cobalt after sorption onto Amberlite XAD-2 loaded with 2-(2-thiazolyla zo )- p-cresol. Anal. Sci., 15: 189-191, 1996
  • Gaspar, A.; Sogor, C.; Posta, J.; Possibilities for the simultaneous Preconcentration and flame atomic absorption spectroscopic determination of Cr(III) and Cr(VI) using a C18 column and sorption loop. Fresen. J. Anal. Chem., 363, 480- , 1999
  • Shah, R.; Devi, S.; Preconcentration and separation of and platinum(IV) palladium(I1) anchored poly(vinylpyridine)-based chelating resin. Anal. Chim. Acta, 341, 217-224, 1997
  • Zhang, T.H.; Shan, X.Q.; Liu, R.X.; Tang, H.X.; Zhang, S.Z.; Preconcentration of rare earth elements in dithiocarbamate) chelating fiber prior to determination by inductively coupled plasma mass spectrometry. Anal. Chem., 70, 3964-3968, 1998
  • Liu, R., Zhang, B., Tang, H., Fresen. J. Anal. Chem., , 258-262, 1998
  • Tsai, S.J.J.; Jan, C.C.; Determination of lead and bismuth in nickel-based alloys by graphite-furnace atomic-absorption spectrometry using continuum source background correction. Spectrochim. Acta B, (8), 773-785, 1994
  • Atanassova, D.; Stefanova, V.; Russeva, E.; Co- pre-concentration precipitative diethyldithiocarbamate and ICP-AES determination of Se, Cu, Pb, Zn, Fe, Co, Ni, Mn, Cr and Cd in water, Talanta, 47, 1237-1243, 1998 with sodium Hiraide, M.; Chen, Z.S.; Kawaguchi, H.;
  • Coprecipitation of traces of heavy metals with indium hydroxide for graphite-furnace atomic absorption spectrometry. Anal. Sci., 7, 65-68, 1991
  • Atsumi, K.; Minami, T.; Ueda, J.; Determination of cadmium in spring water by graphite-furnace atomic absorption spectrometry after coprecipitatio n with ytterbium hydroxide. Anal. Sci., 21, 647-649, 2005
  • Akagi, T.; Horaguci, H.; Simultaneous multieleme n t determination of trace metals using 10 ml of seawater spectrometry with gallium microsampling technique Anal. Chem., 62, 81-85, coprecipitation and Minami, T.; Sohrin, Y.; Ueda, J.; Determination of chromium, copper and lead in river water by graphite- furnace coprecipitation with terbium hydroxide. Anal. Sci., 21, 1521, 2005 after
  • Atsuya, I.; Itoh, K.; Ariu, I.; Preconcentration by lead coprecipitation Ni/pyrolidine-dithiocarbamate simultaneous determination by internal standard atomic absorption spectrometry with the solid sampling technique. Pure Appl. Chem., 63, 1221- , 1991 and selenium with complex and their
  • Atsuya, I.; Itoh, K.; Ariu, I.; Preconcentration by lead coprecipitation Ni/pyrolidine-dithiocarbamate simultaneous determination by internal standard atomic absorption spectrometry with the solid sampling technique. Pure Appl. Chem., 63, 1221 - , 1991 and selenium with complex and their
  • Arpadjan, S.; Jordenova, L.; Karadjuva, I.; Reductive coprecipitation and extraction as separation methods for the determination of gold in copper concentrates by AAS and ICP- AES. Fresen. J. Anal. Chem., 347, 482, 1993
  • Welz, B.; Xu, S.; Sperling, M.; Flame atomic absorption spectrometric determination of Cd, Co and Ni in biological samples using a flow injection system with on-line preconcentration by co-precipitation without filtration Appl. Spectr., 45, 1433-1443, 1991 Peker, D.S.K.; Turkoglu, O.; Soylak, M.;
  • Dysprosium(III) hydroxide coprecipitation system for the separation and preconcentration of heavy metal contents of table salts and natural waters. J. Hazard. Mater., 143, 555-560, 2007
  • Kagaya, S.; Serikawa, Y.; Yashima, R.; Tanaka, T.; Hasegawa, K.; A simple preconcentration-storing technique based on sulfide precipitation for multipoint monitoring of mercury in rainwater and snow by cold vapor atomic absorption spectrometry. Bull. Chem. Soc. Jpn., 79 (11), 1719-1724, 2006
  • Yang, W.; Wang, J.H.; An octadecyl immobilized silica beads polytetrafluoroethylene knotted reactor for Cd(OH)2 precipitate collection coupled to electrothermal atomic absorption spectrometry for cadmium screening. Chin. J. Anal. Chem., 34 (8), 1078-1082, 2006 versus
  • Zhuang, Z.; Wang, X.; Yang, P.; Yangand, C.; Huang, B.; pyrrolodine-1-yldithiofomate preconcentration of trace amounts of metals in waters with simultaneous determination by inductively coupled plasma atomic emission spectrometry. J. Anal. Atom. Spectrom., 9, 779-783, 1994 cobalt-ammoniu m coprecipitation for
  • Hosseini, M.S.; Hassan-Abadi, R.; Flotation separation and determination of trace amount of lead in some environmental samples. Ann. Chim., 97, 1269-12 78 , absorption spectrometric
  • Hosseini, M.S.; Hosseini, A.H.; Solvent impregnated resins application to batch-mode separation of Cd(II), Cu(II), Ni(II), and Zn(II) in aqueous media prior to the determination by flame atomic absorption spectrometry. Sep. Sci. Technol., 42, 3465-3480, 2007 and [33] Yu, L.; Peng, X.; Ni, F.; Li, J.; Wang, D.; Luan, Z.;
  • Arsenite removal from aqueous solutions by γ-Fe2O3– TiO2 magnetic nanoparticles through simultaneous photocatalytic oxidation and adsorption. J. Hazard. Mater., 246 (17), 10-17, 2013
  • Wang, G.; Um, W.; Facilitated strontium transport by remobilization of strontium-containing secondary precipitates in Hanfod Site subsurface. J. Hazard. Mater., 248-249, 364-370, 2013 Wang, Y.; Xu, J.; Li, J.; Wu, F.; Natural montmorillonite induced photooxidation of A s(III) in aqueous suspensions: Roles and sources of hydroxyl and hydroperoxyl/superoxide radicals. J. Hazard. Mater., 260, 255-262, 2013
Toplam 33 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Diğer ID JA79DE74TG
Bölüm Makaleler
Yazarlar

İshak Afşin Kariper Bu kişi benim

Yayımlanma Tarihi 1 Haziran 2015
Yayımlandığı Sayı Yıl 2015 Cilt: 31 Sayı: 3

Kaynak Göster

APA Kariper, İ. A. (2015). Determination of Fe, Cr, Pb trace elements by atomic absorption spectrometry after co precipitation with Cadion. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi, 31(3), 179-184.
AMA Kariper İA. Determination of Fe, Cr, Pb trace elements by atomic absorption spectrometry after co precipitation with Cadion. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi. Haziran 2015;31(3):179-184.
Chicago Kariper, İshak Afşin. “Determination of Fe, Cr, Pb Trace Elements by Atomic Absorption Spectrometry After Co Precipitation With Cadion”. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi 31, sy. 3 (Haziran 2015): 179-84.
EndNote Kariper İA (01 Haziran 2015) Determination of Fe, Cr, Pb trace elements by atomic absorption spectrometry after co precipitation with Cadion. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi 31 3 179–184.
IEEE İ. A. Kariper, “Determination of Fe, Cr, Pb trace elements by atomic absorption spectrometry after co precipitation with Cadion”, Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi, c. 31, sy. 3, ss. 179–184, 2015.
ISNAD Kariper, İshak Afşin. “Determination of Fe, Cr, Pb Trace Elements by Atomic Absorption Spectrometry After Co Precipitation With Cadion”. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi 31/3 (Haziran 2015), 179-184.
JAMA Kariper İA. Determination of Fe, Cr, Pb trace elements by atomic absorption spectrometry after co precipitation with Cadion. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi. 2015;31:179–184.
MLA Kariper, İshak Afşin. “Determination of Fe, Cr, Pb Trace Elements by Atomic Absorption Spectrometry After Co Precipitation With Cadion”. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi, c. 31, sy. 3, 2015, ss. 179-84.
Vancouver Kariper İA. Determination of Fe, Cr, Pb trace elements by atomic absorption spectrometry after co precipitation with Cadion. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi. 2015;31(3):179-84.

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