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Preconcentration Techniques

Preconcentration of Nickel by Magnetic Solid-Phase Extraction (MSPE) as the 2-(5-Bromo-2-Pyridylazo)-5-Diethylamino-Phenol (PADAP) Chelate upon Multiwalled Carbon Nanotubes (MWCNTs) with Determination by Flame Atomic Absorption Spectrometry (FAAS)

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Pages 449-463 | Received 02 Jan 2022, Accepted 22 Feb 2022, Published online: 22 Mar 2022

References

  • Al-Kinani, E. M., M. B. Al-Behadili, M. Eftekhari, and M. Gheibi. 2021. Dispersive solid phase extraction of Ni2+ using graphene oxide-polyethylenimine nanocomposite as an efficient adsorbent in different real samples; Response surface methodology based on central composite design optimisation. International Journal of Environmental Analytical Chemistry 1–15. in press. doi:10.1080/03067319.2021.1903889.
  • Al-Kinani, A., M. Eftekhari, M. Gheibi, and M. Chamsaz. 2018. Polyaniline-coated cerium oxide nanoparticles as an efficient adsorbent for preconcentration of ultra-trace levels of cadmium (ІІ) followed by electrothermal atomic absorption spectrometry. Spectroscopy Letters 51 (6):287–96. doi:10.1080/00387010.2018.1473884.
  • Allahyar, N, and C. Ozeroğlu. 2021. Adsorption of silver ions from aqueous solutions using copolymer containing sodium methacrylate functional groups. Iranian Journal of Catalysis 11:303–15.
  • ALOthman, Z. A., M. Habila, E. Yilmaz, and M. Soylak. 2012. Solid phase extraction of Cd(II), Pb(II), Zn(II) and Ni(II) from food samples using multiwalled carbon nanotubes impregnated with 4-(2-thiazolylazo)resorcinol. Microchimica Acta 177 (3–4):397–403. doi:10.1007/s00604-012-0789-2.
  • Bahrami, M., A. M. H. Shabani, S. Dadfarnia, M. R. Moghadam, and M. Baneshi. 2021. Experimental design optimization of supramolecular dispersive liquid–liquid microextraction of nickel and its spectrophotometric determination. Journal of Analytical Chemistry 76 (4):442–51. doi:10.1134/S106193482104002X.
  • Barreto, J. A., R. dos, S. de Assis, R. J. Cassella, and V. A. Lemos. 2019. A novel strategy based on in-syringe dispersive liquid-liquid microextraction for the determination of nickel in chocolate samples. Talanta 193:23–8.
  • Basheer, A. A., I. Hussain, M. T. Scotti, L. Scotti, and I. Ali. 2020. Advances in chiral separations at nano level. Current Analytical Chemistry 16 (4):351–68. doi:10.2174/1573407215666190131122413.
  • Baykal, G., D. Kazan, K. Seval, D. T. Bulut, S. G. Elci, U. Divrikli, and A. Akdogan. 2022. Determination of lead and cadmium in water samples by magnetic solid-phase extraction with iron oxide@silicon oxide-graphene oxide (Fe3O4@SiO2-GO) hybrid magnetic nanoparticles and microinjection sampling flame atomic absorption spectrometry. Instrumentation Science & Technology 50 (3):288–305. doi:10.1080/10739149.2021.1996389.
  • Buke, B., U. Divrikli, M. Soylak, and L. Elci. 2009. on-line preconcentration of copper as its pyrocatechol violet complex on Chromosorb 105 for flame atomic absorption spectrometric determinations. Journal of Hazardous Materials 163 (2–3):1298–302. doi:10.1016/j.jhazmat.2008.07.096.
  • Buyukpinar, Ç., E. Yazıcı, N. San, O. T. Komesli, and S. Bakırdere. 2021. Determination of nickel in daphne tea extract and lake water samples by flame atomic absorption spectrophotometry with a zirconium-coated T-shaped slotted quartz tube-atom trap and photochemical vapor generation sample introduction. Environmental Monitoring and Assessment 193 (10):627. doi:10.1007/s10661-021-09430-2.
  • Cai, Y. Q., G. B. Jiang, J. F. Liu, and Q. X. Zhou. 2003a. Multi-walled carbon nanotubes packed cartridge for the solid-phase extraction of several phthalate esters from water samples and their determination by high performance liquid chromatography. Analytica Chimica Acta 494 (1–2):149–56. doi:10.1016/j.aca.2003.08.006.
  • Cai, Y., G. Jiang, J. Liu, and Q. Zhou. 2003b. Multiwalled carbon nanotubes as a solid-phase extraction adsorbent for the determination of bisphenol A, 4-n-nonylphenol, and 4-Tert-octylphenol. Analytical Chemistry 75 (10):2517–21. doi:10.1021/ac0263566.
  • Camel, V. 2003. Solid phase extraction of trace elements. Spectrochimica Acta Part B: Atomic Spectroscopy 58 (7):1177–233. doi:10.1016/S0584-8547(03)00072-7.
  • Dos Santos, P., C. Tarley, and M. Corazza. 2022. Dispersive solid-phase extraction using 3-mercaptopropyltrimethoxysilane functionalized magnetic MWCNT-based nanocomposite for selective and efficient preconcentration of Pb2+ with FAAS determination. Journal of the Brazilian Chemical Society 33:37–47. doi:10.21577/0103-5053.20210122.
  • Ebrahimi, B., S. Bahar, and S. E. Moedi. 2015. Evaluation of graphene as a solid-phase extraction sorbent for the preconcentration and determination of trace amounts of nickel in food samples prior to flame atomic absorption spectrometry. Journal of AOAC International 98 (3):822–7. doi:10.5740/jaoacint.14-190.
  • Elci, S. G. 2020. A magnetic solid-phase extraction method using Fe3O4@coPANI-PTH for microsample injection system-flame atomic absorption spectrometric determination of nickel and copper in soft drinks and spice samples. International Journal of Environmental Analytical Chemistry 1–15. in press. doi:10.1080/03067319.2020.1747615.
  • Elci, L., M. Soylak, A. Uzun, E. Buyukpatir, and M. Dogan. 2000. Determination of trace impurities in some nickel compounds by flame atomic absorption spectrometry after solid phase extraction using amberlite XAD-16 resin. Fresenius Journal of Analytical Chemistry 368:358–61.
  • Erbas, Z., M. Soylak, E. Yilmaz, and M. Dogan. 2019. Deep eutectic solvent based liquid phase microextraction of nickel at trace level as its diethyldithiocarbamate chelate from environmental samples. Microchemical Journal 145:745–50. doi:10.1016/j.microc.2018.11.039.
  • Filik, H., T. Cengel, and R. Apak. 2009. Selective cloud point extraction and graphite furnace atomic absorption spectrometric determination of molybdenum (VI) ion in seawater samples. Journal of Hazardous Materials 169 (1–3):766–71. doi:10.1016/j.jhazmat.2009.04.017.
  • Ghaedi, M., M. Montazerozohori, S. Heidarpour, H. R. Noormohamadi, A. Asghari, and M. Soylak. 2013. Physical modification of palladium and silver nanoparticles loaded on activated carbon with 2-(2-nitrobenzylideneamino)thiophenol to preconcentrate and separate metal ions from food samples. Fresenius Environmental Bulletin 22:3343–51.
  • Gou, Y., X. Mu, Y. Li, M. Tang, G. Chen, and S. Xiao. 2021. Three-liquid-phase extraction and re-partition as an integrated process for simultaneous extraction and separation of lithospermic acid B and tanshinone IIA. Biochemical Engineering Journal 176:108173. doi:10.1016/j.bej.2021.108173.
  • Guclu, K, and R. Apak. 2000. Modeling of copper(II), cadmium(II), and lead(II) adsorption on red mud from metal-EDTA mixture solutions. Journal of Colloid and Interface Science 228 (2):238–52. doi:10.1006/jcis.2000.6974.
  • Habila, M. A., Z. A. ALOthman, E. Yilmaz, and M. Soylak. 2018. Activated carbon cloth filled pipette tip for solid phase extraction of Nickel(II), Lead(II), Cadmium(II), Copper(II) and Cobalt(II) as 1,3,4-thiadiazole-2,5-dithiol chelates for ultra-trace detection by FAAS. International Journal of Environmental Analytical Chemistry 98 (2):171–81. doi:10.1080/03067319.2018.1430794.
  • Hamid, S., K. Merchant, and M. D. Mobarake. 2019. Ultrasound-assisted solid-liquid trap phase extraction based on functionalized multi wall carbon nanotubes for preconcentration and separation of nickel in petrochemical waste water. Journal of Analytical Chemistry 74:865–76.
  • Hennion, M. C. 1999. Solid-phase extraction: Method development, sorbents, and coupling with liquid chromatography. Journal of Chromatography. A 856 (1–2):3–54. doi:10.1016/S0021-9673(99)00832-8.
  • Herrero-Latorre, C., J. Barciela-García, S. García-Martín, R. M. Peña-Crecente, and J. Otárola-Jiménez. 2015. Magnetic solid-phase extraction using carbon nanotubes as sorbents: A review. Analytica Chimica Acta 892:10–26. doi:10.1016/j.aca.2015.07.046.
  • Jagirani, M. S., F. Uzcan, and M. Soylak. 2021. A selective and sensitive procedure for magnetic solid-phase microextraction of lead(II) on magnetic cellulose nanoparticles from environmental samples prior to its flame atomic absorption spectrometric detection. Journal of the Iranian Chemical Society 18 (5):1005–13. doi:10.1007/s13738-020-02085-9.
  • Kamel, R. M., A. Shahat, A. H. Atta, and M. M. A. Farag-Allah. 2022. Development of a novel and potential chemical sensor for colorimetric detection of Pd(II) or Cu(II) in e-wastes. Microchemical Journal 172:106951. doi:10.1016/j.microc.2021.106951.
  • Kartoğlu, B., E. Tezgit, A. Yiğit, B. T. Zaman, E. G. Bakırdere, and S. Bakırdere. 2021. Determination of trace nickel after complexation with a schiff base by switchable solvent–liquid phase microextraction (SS-LPME) and flame atomic absorption spectrometry (FAAS). Analytical Letters 1–10. in press. doi:10.1080/00032719.2021.1980797.
  • Keskin, F., C. Sarikurkcu, I. Akata, and B. Tepe. 2021. Metal concentrations of wild mushroom species collected from Belgrad forest (Istanbul, Turkey) with their health risk assessments. Environmental Science and Pollution Research International 28 (27):36193–204.
  • Khodarahmi, M., M. Eftekhari, M. Gheibi, and M. Chamsaz. 2018. Preconcentration of trace levels of cadmium (ІІ) ion using Descurainia Sophia seeds as a green adsorbent for solid phase extraction followed by its determination by flame atomic absorption spectrometry. Journal of Food Measurement and Characterization 12 (3):1485–92. doi:10.1007/s11694-018-9763-y.
  • Kolarova, N, and P. Napiórkowski. 2021. Trace elements in aquatic environment. Origin, distribution, assessment and toxicity effect for the aquatic biota. Ecohydrology & Hydrobiology, 21 (4):655–68. doi:10.1016/j.ecohyd.2021.02.002.
  • Konno, M, and Y. Takagai. 2018. Simple radiometric determination of strontium-90 in seawater using measurement of yttrium-90 decay time following iron-barium co-precipitation. Analytical Sciences: The International Journal of the Japan Society for Analytical Chemistry 34 (11):1277–83. doi:10.2116/analsci.18P145.
  • Krawczyk-Coda, M, and E. Stanisz. 2018. Low cost adsorbents in ultrasound-assisted dispersive micro solid-phase extraction for simultaneous determination of indium and nickel by high-resolution continuum source graphite furnace atomic absorption spectrometry in soils and sediments. Analytical Methods 10 (23):2681–90. doi:10.1039/C8AY00527C.
  • Lima, T. M., L. A. Meira, G. C. Moreira, and F. d S. Dias. 2022. Development of the method for determination and preconcentration of uranium in water samples using XAD-4 resin loaded with Br-PADAP. Journal of the Indian Chemical Society 99 (3):100256. doi:10.1016/j.jics.2021.100256.
  • Meng, L., C. Chen, and Y. Yang. 2015. Suspension dispersive solid phase extraction for preconcentration and determination of cobalt, copper, and nickel in environmental water by flame atomic absorption spectrometry. Analytical Letters 48 (3):453–63. doi:10.1080/00032719.2014.947537.
  • Mutlu, T. 2021. Heavy metal concentrations in the edible tissues of some commercial fishes caught along the Eastern Black Sea coast of Turkey and the health risk assessment. Spectroscopy Letters 54 (6):437–45. doi:10.1080/00387010.2021.1939386.
  • Nakhaei, J. M., M. R. Jamali, S. Sohrabnezhad, and R. Rahnama. 2019. In-syringe solvent-assisted dispersive solid phase extraction followed by flame atomic absorption spectrometry for determination of nickel in water and food samples. Microchemical Journal 144:88–92. doi:10.1016/j.microc.2018.08.063.
  • Ozdes, D., C. Duran, H. Bektaş, M. Tufekci, and M. Soylak. 2012. Acetohydrazide derivative for selective separation and preconcentration of Cu(II) ions by coprecipitation method without using a carrier element. Spectroscopy Letters 45 (5):330–6. doi:10.1080/00387010.2012.666698.
  • Racheva, P. V., N. P. Milcheva, F. Genc, and K. B. Gavazov. 2021. A centrifuge-less cloud point extraction-spectrophotometric determination of copper(II) using 6-hexyl-4-(2-thiazolylazo)resorcinol. Spectrochimica Acta. Part A, Molecular and Biomolecular Spectroscopy 262:120106. doi:10.1016/j.saa.2021.120106.
  • Rajabi, M., M. Abolhosseini, A. Hosseini-Bandegharaei, M. Hemmati, and N. Ghassab. 2020. Magnetic dispersive micro-solid phase extraction merged with micro-sampling flame atomic absorption spectrometry using (Zn-Al LDH)-(PTh/DBSNa)-Fe3O4 nanosorbent for effective trace determination of nickel(II) and cadmium(II) in food samples. Microchemical Journal 159:105450. doi:10.1016/j.microc.2020.105450.
  • Ravelo-Pérez, L. M., A. V. Herrera-Herrera, J. Hernández-Borges, and M. A. Rodríguez-Delgado. 2010. Carbon nanotubes: Solid-phase extraction. Journal of Chromatography. A 1217 (16):2618–41. doi:10.1016/j.chroma.2009.10.083.
  • Rezaee, M., F. Khalilian, H. Khodaverdi, and M. R. Pourjavid. 2021. Graphite furnace atomic absorption spectrometry determination of trace amounts of nickel in water samples after homogeneous liquid-liquid microextraction via flotation assistance. Journal of Water Chemistry and Technology 43:139–44. doi:10.3103/S1063455X21020119.
  • Saracoglu, S., M. Soylak, and L. Elci. 2003a. Preconcentration of Cu (II), Fe(III), Ni(II), Co(II) And Pb(II) ions in some manganese salts with solid phase extraction method using chromosorb-102 resin. Acta Chimica Slovenica 50:807–14.
  • Saracoglu, S., M. Soylak, and L. Elci. 2003b. Determination of trace amounts of copper in natural water samples by flame atomic absorption spectrometry coupled with flow injection on-line solid phase extraction on ambersorb 563 adsorption resin. Chemia Analityczna 48:77–85.
  • Saydan Kanberoglu, G., E. Yilmaz, and M. Soylak. 2020. Fabrication and characterization of SiO2@Fe3O4@nanodiamonds for vortex-assisted magnetic solid-phase extraction of lead in cigarette samples prior to FAAS detection. Journal of the Iranian Chemical Society 17 (7):1627–34. doi:10.1007/s13738-020-01882-6.
  • Shahryari, T., P. Singh, P. Raizada, A. Davidyants, L. Thangavelu, S. Sivamani, A. Naseri, F. Vahidipour, A. Ivanets, and A. Hosseini-Bandegharaei. 2022. Adsorption properties of Danthron-impregnated carbon nanotubes and their usage for solid phase extraction of heavy metal ions. Colloids and Surfaces A: Physicochemical and Engineering Aspects 641:128528. doi:10.1016/j.colsurfa.2022.128528.
  • Soukal, J, and S. Musil. 2022. Detailed evaluation of conditions of photochemical vapor generation for sensitive determination of nickel in water samples by ICP-MS detection. Microchemical Journal 172:106963. doi:10.1016/j.microc.2021.106963.
  • Soylak, M. 1998. Determination of trace amounts of copper in high-purity aluminum samples after preconcentration on an activated carbon column. Fresenius Environmental Bulletin 7:383–7.
  • Soylak, M, and M. Dogan. 1996. Separation and enrichment of zinc, copper, iron, cadmium, cobalt, and nickel from urine with amberlite XAD-16 resin. Trace Elements and Electrocytes 13:130–2.
  • Soylak, M., L. Elci, and M. Doǧan. 1996. Determination of some trace metal impurities in refined and unrefined salts after preconcentration onto activated carbon. Fresenius Environmental Bulletin 5:148–55.
  • Soylak, M., L. Elci, and M. Dogan. 1997. Determination of trace amounts of cobalt in natural water samples as 4-(2-thiazolylazo) recorcinol complex after adsorptive preconcentration. Analytical Letters 30 (3):623–31. doi:10.1080/00032719708001806.
  • Soylak, M., O. Ozalp, and F. Uzcan. 2021. Magnetic nanomaterials for the removal, separation and preconcentration of organic and inorganic pollutants at trace levels and their practical applications: A review. Trends in Environmental Analytical Chemistry 29: E 00109. doi:10.1016/j.teac.2020.e00109.
  • Soylak, M, and M. Tuzen. 2006. sorbent extraction of rubeanic acid-metal chelates on a new adsorbent: Sepabeads SP70. Journal of Hazardous Materials 138 (1):195–200. doi:10.1016/j.jhazmat.2006.05.055.
  • Soylak, M, and S. Yigit. 2015. Preconcentration-separation of germanium at ultra trace levels on polysulfone membrane filter and its determination by spectrophotometry. Journal of Industrial and Engineering Chemistry 24:322–5. doi:10.1016/j.jiec.2014.10.003.
  • Tekkeli, S. E. K, and Z. Durmus. 2019. Magnetic solid phase extraction applications combined with analytical methods for determination of drugs in different matrices. Journal of the Chilean Chemical Society 64 (2):4448–58. doi:10.4067/S0717-97072019000204448.
  • Tirpak, F., M. Halo, Jr., K. Tokárová, L. J. Binkowski, J. Vašíček, A. Svoradová, M. Błaszczyk-Altman, A. Kováčik, E. Tvrdá, P. Chrenek, et al. 2021. Composition of stallion seminal plasma and its impact on oxidative stress markers and spermatozoa quality. Life 11 (11):1238. doi:10.3390/life11111238.
  • Tuzen, M., K. O. Saygi, and M. Soylak. 2008. Solid phase extraction of heavy metal ions in environmental samples on multiwalled carbon nanotubes. Journal of Hazardous Materials 152 (2):632–9. doi:10.1016/j.jhazmat.2007.07.026.
  • Uluozlu, O. D., M. Tuzen, D. Mendil, and M. Soylak. 2009. Assessment of trace element contents of chicken products from Turkey. Journal of Hazardous Materials 163 (2–3):982–7. doi:10.1016/j.jhazmat.2008.07.050.
  • Uzcan, F, and M. Soylak. 2021. CuCo2O4 as affective adsorbent for dispersive solid-phase extraction of lead from food, cigarette and water samples before FAAS detection. Chemical Papers 75 (12):6367–75. doi:10.1007/s11696-021-01797-3.
  • Uzun, A., M. Soylak, L. Elci, and M. Dogan. 2002. Application of sorbent extraction for preconcentration/separation of trace amounts of cadmium(II), silver(I), gold(II) and lead(II) from metallic zinc samples and their determinations by atomic absorption spectrometry. Asian Journal of Chemistry 14:1277–81.
  • Van Beik, J., K. B. Fontana, D. C. C. S. Medeiros, A. C. N. Sydney, and E. S. Chaves. 2021. Feasibility of calcium alginate beads to preconcentrate lead in river water samples prior to determination by flame atomic absorption spectrometry. Environmental Monitoring and Assessment 193 (10):666–75. doi:10.1007/s10661-021-09453-9.
  • Vuckovic, I., Z. Špirić, T. Stafilov, V. Kušan, and K. Bačeva. 2013. the study on air pollution with nickel and vanadium in croatia by using moss biomonitoring and ICP-AES. Bulletin of Environmental Contamination and Toxicology 91 (4):481–7. doi:10.1007/s00128-013-1067-7.
  • Yalcin, S., S. Sezer, and R. Apak. 2012. Characterization and lead(II), cadmium(II), nickel(II) biosorption of dried marine brown macro algae Cystoseira barbata. Environmental Science and Pollution Research International 19 (8):3118–25. doi:10.1007/s11356-012-0807-2.

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