화학공학소재연구정보센터
Journal of Industrial and Engineering Chemistry, Vol.28, 377-383, August, 2015
Ion pairing based polyurethane foam sorbent packed column combined with inductively coupled plasma.optical emission spectrometry for sensitive determination and chemical speciation of bismuth(III & V) in water
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The sorption profile of trace concentrations of bismuth(III) species from aqueous KI.H2SO4 media onto the ion pairing procaine hydrochloride (PQ+.Cl-) based polyurethane foam (PUFs) was studied. A dual. mode of bismuth(III) sorption as a ternary complex ion associate [PQ+.BiI4 -] involving absorption due to a ‘‘weak base anion exchanger’’ and an added component for ‘‘surface adsorption’’ seems the proposed mechanism for bismuth(III) retention. The capacity of bismuth(III) sorption was found equal 40.05 ± 1.10 mg g-1. Complete separation of spiked bismuth(III) at various concentrations (5.15 mg mL-1) 1) from water onto the proposed sorbent packed columns at 5 mL min-1 flow rate was successfully achieved. The retained bismuth(III) species were recovered quantitatively from the sorbent packed columns (98.4 ± 2.4%, n = 5) with HNO3 (1.0 mol L-1). Bismuth(V) after reduction to Bi(III) was also preconcentrated, recovered from the sorbent packed column and subsequently analyzed by inductively coupled plasma. optical emission spectrometry (ICP.OES). The height equivalent to the theoretical plates (HETP), number of plates (N), critical and breakthrough capacities of sorbent packed column towards bismuth(III) retention were evaluated. Based on these results, a simple and sensitive PQ+.Cl-.PUF packed column was developed for determination and speciation of trace concentrations of bismuth(III & V) species in water by ICP.OES. The limits of detection (LOD) and quantification (LOQ) of Bi(III) were found 0.09 and 0.30 mg L-1, respectively. The relative standard deviation (RSD) for 5 replicates of 50 ng L-1 Bi at 2.0 mL min-1 flow was ± 3.7%. The proposed column was validated and applied for the preconcentration, separation and subsequent determination of analyte in Environmental water reference material (TMDW) and water samples. The results were found to be in good agreement with the CRM at the 95% confidence level.
  1. Merian E, Anke M, Ihnat M, Stoeppler M, Elements and Their Compounds in the Environment: Occurrence, Analysis and Biological Relevance, second ed., Wiley, Weinheim, 2004.
  2. Filella M, J. Environ. Monit., 12, 90 (2010)
  3. Briand GG, Burford N, Chem. Rev., 99(9), 2601 (1999)
  4. Slikkerveer A, De Wolff FA, Med. Toxicol. Adv. Drug Exp., 4(5), 303 (1989)
  5. Taher MA, Rahimi M, Fazelirad H, J. Lumines., 145, 976 (2014)
  6. Koper A, Grabarczyk M, Electroanalysis, 26, 697 (2014)
  7. Minagawa A, Sawada K, Suzuki T, Anal. Chim. Acta, 278, 287 (1993)
  8. Manning PL, in: McIlroy D (Ed.), The Application of Ichnology to Palaeoenvironmental and stratigraphic analysis, vol. 28, The Geological Society Publishing House, London, 2004, p. 93 (3).
  9. Sahan S, Sacmaci S, Sahin U, Ulgen A, Kartal S, Talanta, 80, 2127 (2010)
  10. Dobrowolski R, Dobrzynska J, Gawronska B, Environ. Monit. Assess., 187, 4125 (2015)
  11. Wen X, Yang S, Zhang H, Wang J, Anal. Methods, 6, 8773 (2014)
  12. Haraguchi H, Teramae Y, Furuta N, Saruwatar H, in: Vandecasteel C, Block CB(Eds.), Modern Methods for Trace Element Determination, Chichester, 1995, p.154.
  13. Kula I, Arslanb Y, Bakırdere S, Titretir S, Kenduzler E, Ataman OY, Talanta, 80, 127 (2009)
  14. Kratzer J, Bousek J, Sturgeon RE, Mester Z, Dedina J, Anal. Chem., 86, 9620 (2014)
  15. Moyano S, Wuilloud RG, Olsina RA, Gasques JA, Martinez LD, Talanta, 54, 211 (2001)
  16. Popp M, Hann S, Koellensperger G, Anal. Chim. Acta, 668, 114 (2010)
  17. Pohl P, Jamroz P, J. Anal. At. Spectrom., 26, 1317 (2011)
  18. Krupp EM, Grumping R, Furchtbar URR, Hirmer AV, J. Anal. Chem., 354, 546 (1996)
  19. Laborda F, Bolea E, Gorriz MP, Martin-Ruiz MP, Ruiz-Begueria S, Castillo JR, Anal. Chim. Acta, 606, 1 (2008)
  20. Tooth B, Etschmann B, Pokrovski GS, Testemale D, Hazemann JL, Grundler PV, Brugger J, Geochim. Cosmochim. Acta, 101, 156 (2013)
  21. Yang MS, Jin JH, An H, Cui FL, J. Anal. Chem., 69, 942 (2014)
  22. Das AK, Chakraborty R, Cervera ML, de la Guardia M, Trends Anal. Chem., 25, 599 (2006)
  23. Wang SB, Li H, Xu LY, J. Colloid Interface Sci., 295(1), 71 (2006)
  24. Vasic M, Sljukic B, Wildgoose GG, Compton RG, Phys. Chem. Chem. Phys., 14, 10027 (2012)
  25. Oshita K, Noguchi O, Oshima M, Motomizu S, Anal. Sci., 23, 1203 (2007)
  26. Mandal B, Ghosh N, J. Hazard. Mater., 182(1-3), 363 (2010)
  27. Braun T, Navratil JD, Farag AB, Polyurethane Foam Sorbents in Separation Science, CRC Press, Boca Raton, FL, 1985.
  28. El-Shahawi MS, Othman MA, Abdel-Fadeel MA, Anal. Chim. Acta, 546, 221 (2005)
  29. El-Shahawi MS, Hamza A, Al-Sibaai AA, Al-Saidi HM, Chem. Eng. J., 173(2), 29 (2011)
  30. Farag AB, Soliman MH, Abdel-Rasoul OS, El-Shahawi MS, Anal. Chim. Acta, 601(2), 218 (2007)
  31. Bashammakh AB, Bahaffi SO, Al-Shareef FM, El-Shahawi MS, Anal. Sci., 25, 413 (2009)
  32. Vongboot M, Suesoonthon M, Talanta, 131, 325 (2015)
  33. Rzeszutek K, Chow A, Membrane J, Science, 181, 265 (2001)
  34. Oleschuk RD, Chow A, Talanta, 43, 1545 (1996)
  35. Palagyi S, Braun T, Homonnay Z, Vertes A, Analyst, 117, 1537 (1992)
  36. Xue Z, Hu C, Rao H, Wang X, Zhou X, Liu X, Lu X, Anal. Methods, 7, 1167 (2015)
  37. Cotton FA, Wilkinson G, Advanced Inorganic Chemistry, Wiley, London, 1972.
  38. Marczenko Z, Spectrophotometric Determination of Elements, first ed., Ellis Horwood Chichester, UK, 1986 (Chapter 9 and references cited in).
  39. Sant’Ana OD, Oliveira LG, Jesuino LS, Carvalho MS, Domingues ML, Cassella RJ, Santelli RE, J. Anal. At. Spectrom., 17, 258 (2002)
  40. Wen B, Shuan XQ, Liu RX, Tang HX, Fresenius J. Anal. Chem., 363, 251 (1999)
  41. Ma WX, Liu F, Li KA, Chen W, Tong SY, Anal. Chim. Acta, 416, 191 (2000)
  42. Somorjai GA, Introduction to Surface Chemistry and Catalysis, John Wiley& Sons, New York, 1994.
  43. Miller JN, Miller JC, Statistics and Chemometrics for Analytical Chemistry, sixth ed., Ellis-Horwood, New York, NY, 1994.
  44. Burns DT, Tungkananuruk N, Thuwasin S, Anal. Chim. Acta, 419, 41 (2000)
  45. Bhalotra A, Prui BK, J. AOAC Int., 84, 47 (2001)
  46. Pournaghi-Azr MH, Djozan D, Zadeh HA, Anal. Chim. Acta, 437, 217 (2001)
  47. Lin C, Wang H, Wang Y, Cheng Z, Talanta, 81, 30 (2010)