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Preconcentration Techniques

Development of a New and Facile Carrier Element-Free Coprecipitation Procedure for Separation, Preconcentration and Sensitive Determination of Cu(II) and Cd(II) Ions in Water and Vegetable Samples

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Pages 225-236 | Received 16 Dec 2022, Accepted 12 Apr 2023, Published online: 05 May 2023

References

  • Ali, M. H. H., and K. M. Al-Qahtani. 2012. Assessment of some heavy metals in vegetables, cereals and fruits in Saudi Arabian markets. The Egyptian Journal of Aquatic Research 38 (1):31–7. doi:10.1016/j.ejar.2012.08.002.
  • Ali, M. M., M. L. Ali, S. Islam, and Z. Rahman. 2016. Preliminary assessment of heavy metals in water and sediment of Karnaphuli River, Bangladesh. Environmental Nanotechnology, Monitoring & Management 5:27–35. doi:10.1016/j.enmm.2016.01.002.
  • Bahadır, Z., G. Kültür, M. Yazar, D. Çakır, and C. Duran. 2022. Preconcentration and determination of palladium by solvent-free microextraction and flame atomic absorption spectrometry (FAAS) in environmental samples. Analytical Letters 55 (12):1847–56. doi:10.1080/00032719.2022.2030350.
  • Baysal, A., S. Akman, and F. Calisir. 2008. A novel slurry sampling analysis of lead in different water samples by electrothermal atomic absorption spectrometry after coprecipitated with cobalt/pyrrolidine dithiocarbamate complex. Journal of Hazardous Materials 158 (2-3):454–9. doi:10.1016/j.jhazmat.2008.01.090.
  • Behbahani, M., M. Salarian, M. M. Amini, O. Sadeghi, A. Bagheri, and S. Bagheri. 2013. Application of a new functionalized nanoporous silica for simultaneous trace separation and determination of Cd(II), Cu(II), Ni(II), and Pb(II) in food and agricultural products. Food Analytical Methods 6 (5):1320–9. doi:10.1007/s12161-012-9545-9.
  • Buema, G., A. I. Borhan, D. D. Herea, G. Stoian, H. Chiriac, N. Lupu, T. Roman, A. Pui, M. Harja, and D. Gherca. 2021. Magnetic solid-phase extraction of cadmium ıons by hybrid self-assembled multicore type nanobeads. Polymers 13 (2):229. doi:10.3390/polym13020229.
  • Bulgariu, L., D. Bulgariu, and I. Sarghie. 2005. Spectrophotometric determination of cadmium(II) using p,p-Dinitro-SYM-diphenylcarbazid in aqueous solutions. Analytical Letters 38 (14):2365–75. doi:10.1080/0003271050031659.
  • Bulgariu, L., D. Bulgariu, I. Sârghie, and T. Măluṭan. 2007. Cd(II) extraction in PEG-based two-phase aqueous systems in the presence of iodide ions. Analysis of PEG-rich solid phases. Central European Journal of. Open Chemistry 5 (1):291–302. doi:10.2478/s11532-006-0048-7.
  • Duran, C., D. Ozdes, D. Sahin, V. N. Bulut, A. Gundogdu, and M. Soylak. 2011. Preconcentration of Cd(II) and Cu(II) ions by coprecipitation without any carrier element in some food and water samples. Microchemical Journal 98 (2):317–22. doi:10.1016/j.microc.2011.02.018.
  • Efendioğlu, A., M. Yağan, and B. Batı. 2007. Bi(III) 4-methylpiperidinedithiocarbamate coprecipitation procedure for separation–pre-concentration of trace metal ions in water samples by flame atomic absorption spectrometric determination. Journal of Hazardous Materials 149 (1):160–5. doi:10.1016/j.jhazmat.2007.03.065.
  • Feist, B., and B. Mikula. 2014. Preconcentration of some metal ions with lanthanum-8-hydroxyquinoline co-precipitation system. Food Chemistry 147:225–9. doi:10.1016/j.foodchem.2013.09.149.
  • Gouda, A. A. 2016. A new coprecipitation method without carrier element for separation and preconcentration of some metal ions at trace levels in water and food samples. Talanta 146:435–41. doi:10.1016/j.talanta.2015.09.005.
  • Jamshidifard, S., S. Koushkbaghi, S. Hosseini, S. Rezaei, A. Karamipour, A. Jafari Rad, and M. Irani. 2019. Incorporation of UiO-66-NH2 MOF into the PAN/chitosan nanofibers for adsorption and membrane filtration of Pb(II), Cd(II) and Cr(VI) ions from aqueous solutions. Journal of Hazardous Materials 368:10–20. doi:10.1016/j.jhazmat.2019.01.024.
  • JECFA – Joint FAO/WHO Expert Committee on Food Additives. 2010. Evaluation of certain food additives and contaminants: 73ed report of the Joint FAO/WHO Expert Committee on Food Additives. WHO Technical Report Series 960.
  • Jitar, O., C. Teodosiu, A. Oros, G. Plavan, and M. Nicoara. 2015. Bioaccumulation of heavy metals in marine organisms from the Romanian sector of the Black Sea. New Biotechnology 32 (3):369–78. doi:10.1016/j.nbt.2014.11.004.
  • Khan, M., T. G. Kazi, H. I. Afridi, M. Bilal, A. Akhtar, N. Ullah, S. Khan, and S. Talpur. 2017. Application of ultrasonically modified cloud point extraction method for simultaneous enrichment of cadmium and lead in sera of different types of gallstone patients. Ultrasonics Sonochemistry 39:313–20. doi:10.1016/j.ultsonch.2017.04.043.
  • Kumar, R., J. Chawla, and I. Kaur. 2015. Removal of cadmium ion from wastewater by carbon-based nanosorbents: A review. Journal of Water and Health 13 (1):18–33. http://iwaponline.com/jwh/article-pdf/13/1/18/396092/jwh0130018.pdf. doi:10.2166/wh.2014.024.
  • Menteşe, E., S. Ülker, and B. Kahveci. 2015. Synthesis and study of α-glucosidase ınhibitory, antimicrobial and antioxidant activities of some benzimidazole derivatives containing triazole, thiadiazole, oxadiazole, and morpholine rings. Chemistry of Heterocyclic Compounds 50 (12):1671–82. doi:10.1007/s10593-015-1637-1.
  • Mohamed, A. E., M. N. Rashed, and A. Mofty. 2003. Assessment of essential and toxic elements in some kinds of vegetables. Ecotoxicology and Environmental Safety 55 (3):251–60. doi:10.1016/S0147-6513(03)00026-5.
  • Mohammadi, S. Z., T. Shamspur, and Y. M. Baghelani. 2019. Determination of copper, nickel, manganese and cadmium ions in aqueous samples by flame atomic absorption spectrometry after simultaneous coprecipitation with Co(OH)2. Arabian Journal of Chemistry 12 (7):1751–7. doi:10.1016/j.arabjc.2014.11.054.
  • Moreira, L. S., Í. P. Sá, R. C. Machado, A. R. A. Nogueira, E. G. P. da Silva, and C. D. B. Amaral. 2020. Coprecipitation magnesium(II) hydroxide as a strategy of pre-concentration for trace elemental determination by microwave-induced plasma optical emission spectrometry. Spectrochimica Acta Part B: Atomic Spectroscopy 169:105899. doi:10.1016/j.sab.2020.105899.
  • Ozdes, D., C. Duran, H. Bektas, and E. Mentese. 2023. A facile and sensitive coprecipitation method coupled with flame atomic absorption spectrometry for quantification of Cu(II) ions in complex matrices. Journal of the Serbian Chemical Society 88 (3):301–12. doi:10.2298/JSC220122074O.
  • Ozdes, D., C. Duran, H. Serencam, and D. Şahin. 2013. Selective separation, preconcentration, and determination of Au(III) ıons in environmental samples by coprecipitation with a 1,2,4-triazole derivative. Atomic Spectroscopy 34 (5):164–9. doi:10.46770/AS.2013.05.002.
  • Pereira, M. G., and M. A. Z. Arruda. 2003. Trends in preconcentration procedures for metal determination using atomic spectrometry techniques. Microchimica Acta 141 (3-4):115–31. doi:10.1007/s00604-002-0941-5.
  • Pourbakhshi, Y., M. Heidari, E. Yahaei, S. Ghiyasi, H. E. Najafabadi, and E. Bozorgzadeh. 2021. Dispersive liquid–liquid microextraction followed by solidified floating organic drop for hexavalent chromium determination: A method for occupational and environmental exposure monitoring for heavy metals. Journal of Analytical Chemistry 76 (6):714–20. doi:10.1134/S1061934821060083.
  • Rihana-Abdallah, A., Z. Li, and K. C. Lanigan. 2022. Using cloud point extraction for preconcentration and determination of ıron, lead, and cadmium in drinking water by flame atomic absorption spectrometry. Analytical Letters 55 (8):1296–305. doi:10.1080/00032719.2021.2002349.
  • Roushani, M., Y. M. Baghelani, S. Abbasi, S. Z. Mohammadi, M. Zahedifar, and M. Mavaei. 2016. Separation of Ag(I) ıons from Lepidium draba L. plant and water and standard samples by carrier element-free coprecipitation method prior to their flame atomic absorption spectrometric determination. Communications in Soil Science and Plant Analysis 47 (10):1207–15. doi:10.1080/00103624.2016.1166381.
  • Saçmacı, Ş., and Ş. Kartal. 2010. Determination of some trace metal ions in various samples by FAAS after separation/preconcentration by copper(II)-BPHA coprecipitation method. Microchimica Acta 170 (1-2):75–82. doi:10.1007/s00604-010-0391-4.
  • Saracoglu, S., M. Soylak, D. Çabuk, Z. Topalak, and Y. Karagozlu. 2012. Determination of some trace elements in food and soil samples by atomic absorption spectrometry after coprecipitation with holmium hydroxide. Journal of AOAC International 95 (3):892–6. doi:10.5740/jaoacint.11-304.
  • Serencam, H., C. Duran, D. Ozdes, and H. Bektas. 2013. Application of carrier element free coprecipitation (CEFC) method for determination of Co(II), Cu(II) and Ni(II) ıons in food and water samples. Acta Chimica Slovenica 60 (2):287–93. https://journals.matheo.si/index.php/ACSi/article/view/52.
  • Soylak, M., and H. Balgunes. 2008. Gadolinium hydroxide coprecipitation system for the separation–preconcentration of some heavy metals. Journal of Hazardous Materials 155 (3):595–600. doi:10.1016/j.jhazmat.2007.11.096.
  • Soylak, M., and N. D. Erdogan. 2006. Copper(II)–rubeanic acid coprecipitation system for separation–preconcentration of trace metal ions in environmental samples for their flame atomic absorption spectrometric determinations. Journal of Hazardous Materials 137 (2):1035–41. doi:10.1016/j.jhazmat.2006.03.031.
  • Suhani, I., S. Sahab, V. Srivastava, and R. P. Singh. 2021. Impact of cadmium pollution on food safety and human health. Current Opinion in Toxicology 27:1–7. doi:10.1016/j.cotox.2021.04.004.
  • Tavallali, H., S. Lalehparvar, A.-R. Nekoei, and K. Niknam. 2011. Ion-flotation separation of Cd(II), Co(II) and Pb(II) traces using a new ligand before their flame atomic absorption spectrometric determinations in colored hair and dryer agents of paint. Journal of the Chinese Chemical Society 58 (2):199–206. doi:10.1002/jccs.201190077.
  • Tokalıoğlu, Ş., and O. Daşdelen. 2011. Coprecipitation with Cu(II)-4-(2-Pyridylazo)-resorcinol for Separation and Preconcentration of Fe(III) and Ni(II) in Water and Food Samples. CLEAN - Soil, Air, Water 39 (3):296–300. doi:10.1002/clen.201000394.
  • Tokalıoğlu, Ş., and S. Yıldız. 2009. A comparative study on the preconcentration of some metal ions in water samples with Cu(II) and Ni(II) salicylaldoxime coprecipitants. Microchimica Acta 165 (1-2):129–33. doi:10.1007/s00604-008-0110-6.
  • Tuzen, M., and M. Soylak. 2009. Multi-element coprecipitation for separation and enrichment of heavy metal ions for their flame atomic absorption spectrometric determinations. Journal of Hazardous Materials 162 (2-3):724–9. doi:10.1016/j.jhazmat.2008.05.087.
  • Uluozlu, O. D., and M. Tuzen. 2015. Carrier element-free coprecipitation and speciation of inorganic tin in beverage samples and total tin in food samples using N-Benzoyl-N,N diisobutylthiourea and its determination by graphite furnace atomic absorption spectrometry. LWT - Food Science and Technology 63 (2):1091–6. doi:10.1016/j.lwt.2015.04.025.
  • World Health Organization. 2004. Guidelines for drinking water quality, 3rd edition, Geneva:WHO.

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