165
Views
1
CrossRef citations to date
0
Altmetric
Articles

Application of the Multicomponent Spectral Fitting Algorithm in the Estimation of the Correct Value of Phosphorus determined by ICP OES in Soil Samples

ORCID Icon, , , ORCID Icon &
Pages 1671-1682 | Received 25 Feb 2019, Accepted 10 Jun 2019, Published online: 19 Jun 2019

References

  • Boeira, R. C., B. van Raij, A. S. Silva, and V. C. B. Maximiliano. 2004. Extração simultânea de alumínio, cálcio, magnésio, potássio e sódio do solo com solução de cloreto de amônio [Simultaneous extraction of aluminum, calcium, magnesium, potassium, and sodium with ammonium chloride solution]. Revista Brasileira De Ciência Do Solo 28:929–36. doi:10.1590/S0100-06832004000500015.
  • Bortolon, L., and C. Gianello. 2008. Interpretação de resultados analíticos de fósforo pelos extratores Mehlich-1 e Mehlich-3 em solos do Rio Grande do Sul [Interpretation of the avalilabre phosphorus by Mehlich-1 and Mehlich-3 extractant solution in soils of the Rio Grande do Sul State, Brazil]. Revista Brasileira De Ciência Do Solo 32:2751–56. doi:10.1590/S0100-06832008000700019.
  • Bortolon, L., and C. Gianello. 2009. Disponibilidade de cobre e zinco em solos do sul do Brasil [Availability of copper and zinc in soils from southern Brazil]. Revista Brasileira De Ciência Do Solo 33:647–58. doi:10.1590/S0100-06832009000300017.
  • Bortolon, L., and C. Gianello. 2010a. Fósforo extraído pela solução de mehlich-1 determinado por colorimetria e ICP em solos do sul do Brasil [Phosphorus extracted with Mehlich-1 determined by colorimetric and ICP methods in South Brazilian soils]. Revista Brasileira De Ciência Do Solo 34:263–68. doi:10.1590/S0100-06832010000100027.
  • Bortolon, L., and C. Gianello. 2010b. Extração de cobre e de zinco por soluções multielementares em solos do sul do Brasil [Copper and zinc extracted by multielement solution for Southern Brazilian soils]. Ciência Rural 40:670–73. doi:10.1590/S0103-84782010005000035.
  • Bortolon, L., C. Gianello, and J. L. Kovar. 2011a. Phosphorus availability to corn and soybean evaluated by three soil-test methods for southern Brazilian soils. Communications in Soil Science and Plant Analysis 42:39–49. doi:10.1080/00103624.2011.528488.
  • Bortolon, L., C. Gianello, S. Welter, R. G. O. Almeida, and E. Giasson. 2011b. Simultaneous extraction of phosphorus, potassium, calcium and magnesium from soils and potassium recommendations for crops in Southern Brazil. Pedosphere 21:365–72. doi:10.1016/S1002-0160(11)60137-9.
  • Boumans, P. W. J. M. 1981. Conversion of “tables of spectral-line intensities” for NBS copper arc into table for inductively coupled argon plasmas. Spectrochimica Acta – Part B: Atomic Spectroscopy 36:169–203. doi:10.1016/0584-8547(81)80022-5.
  • Cihacek, L. J., G. Yellajosula, K. A. Jacobson, and L. Swenson. 2015. Comparison of seven SO4-S extraction methods for analysis by turbidimetry or ICP spectrometry. Communications in Soil Science and Plant Analysis 46:2649–59. doi:10.1080/00103624.2015.1089266.
  • Drglin, T. 2005. Determination of phosphorus in steel using inductively coupled plasma atomic emission spectrometry. Materiali in Tehnologije 39:119–23.
  • Eckert, D. J., and M. E. Watson. 1996. Integrating the Mehlich-3 extractant into existing soil test interpretation schemes. Communications in Soil Science and Plant Analysis 27:1237–49. doi:10.1080/00103629609369629.
  • Gianello, C., and M. B. Amorim. 2014. Ammonium chloride solution as an alternative laboratory procedure for exchangeable cations in southern brazilian soils. Communications in Soil Science and Plant Analysis 46:94–103. doi:10.1080/00103624.2014.988580.
  • Ivaldi, J. C., D. Tracy, T. W. Barnard, and W. Slavin. 1992. Multivariate methods for interpretation of emission spectra from the inductively coupled plasma. Spectrochimica Acta - Part B: Atomic Spectroscopy 47:1361–71. doi:10.1016/0584-8547(92)80126-2.
  • Ivaldi, J. C., and T. W. Barnard. 1993. Advantages of coupling multivariate data reduction techniques with simultaneous inductively coupled plasma optical emission spectra. Spectrochimica. Acta - Part B: Atomic Spectroscopy. 48:1265–73. doi:10.1016/0584-8547(93)80111-7.
  • Ketterings, Q., C. Miyamoto, R. R. Mathur, K. Dietzel, and S. Gami. 2011. A Comparison of soil sulfur extraction methods. Soil Science Society of America Journal 75:1578–83. doi:10.2136/sssaj2010.0407.
  • Lambkin, D. C., and B. J. Alloway. 2000. The problem of arsenic interference in the analysis of soils for cadmium by inductively coupled plasma-optical emission spectrometry. The Science of the Total Environment 256:77–81. doi:10.1016/S0048-9697(00)00475-7.
  • Li, P., W. Cai, and X. Shao. 2015. Improved inductively coupled plasma optical emission spectroscopy analysis of trace elements in complex matrices by chemometric resolution. Journal of Analytical Atomic Spectrometry 30:936–40. doi:10.1039/C5JA00031A.
  • Mallarino, A. P. 2003. Field calibration for corn of the Mehlich 3 soil phosphorus test with colorimetric and inductively coupled plasma emission spectroscopy determination methods. Soil Science Society of America Journal 68:1928–34. doi:10.2136/sssaj2003.1928.
  • Milagres, J. J. M., V. H. A. Valadares, R. B. Cantarutti, and J. C. L. Neves. 2007. Determinação de Fe, Zn, Cu e Mn extraídos do solo por diferentes extratores e dosados por espectrofotometria de emissão ótica em plasma induzido e espectrofotometria de absorção atômica [Determination of soil-extracted Fe, Zn, Cu and Mn by different extractors by inductively coupled plasma optical emission spectrometry and atomic absorption spectrometry]. Revista Brasileira De Ciência Do Solo 31:237–45. doi:10.1590/S0100-06832007000200006.
  • Mylavarapu, R. S., J. F. Sanchez, J. H. Nguyen, and J. M. Bartos. 2002. Evaluation of Mehlich-1 and Mehlich-3 extraction procedures for plant nutrients in acid mineral soils of Florida. Communications in Soil Science and Plant Analysis 33:807–20. doi:10.1081/CSS-120003067.
  • Nölte, J. 2003. ICP emission spectrometry – A practical guide. Weinheim: Wiley-VCH Verlag.
  • Pittman, J. J., H. Zhang, J. L. Schroder, and M. E. Payton. 2005. Differences of phosphorus in Mehlich 3 extracts determined by colorimetric and spectroscopic methods. Communications in Soil Science and Plant Analysis 36:1641–59. doi:10.1081/CSS-200059112.
  • Raij, B. V. 1994. New diagnostics techniques, universal soil extractants. Communications in Soil Science and Plant Analysis 25:799–816. doi:10.1080/00103629409369081.
  • Santos, L. D. S., L. S. Da Silva, A. C. Filho, and G. Griebeler. 2014a. Efeito do grau de moagem, do tipo de frasco e do volume vazio sobre a variabilidade analítica do fósforo extraído pelos métodos Mehlich-1 e Mehlich-3 [Analytical variability of phosphorus extracted by Mehlich-1 and Mehlich-3 caused by soil particle size, container type and container void volume]. Revista Brasiliera De Ciência Do Solo 38:1478–86. doi:10.1590/S0100-06832014000500013.
  • Santos, L. D. S., L. S. D. Silva, and G. Griebeler. 2014b. Ácido ascórbico como agente redutor para determinação de fósforo por colorimetria [Ascorbic acid as a reducing agent for phosphorus analysis by colorimetry]. Ciência Rural 44: 1015–1018. doi:10.1590/S0103-84782014000600010.
  • Schlindwein, J. A., and C. Gianello. 2008a. Calibração de métodos de determinação de fósforo em solos cultivados sob sistema plantio direto [Calibration of phosphorus extraction methods in soils cultivated under no-tillage]. Revista Brasiliera De Ciência Do Solo 32:2037–49. doi:10.1590/S0100-06832008000500025.
  • Schlindwein, J. A., and C. Gianello. 2008b. Nível de suficiência e índice de equivalência entre o fósforo determinado pelos métodos da resina de troca iônica e Mehlich-1 [Level of sufficiency and equivalence index between phosphorus determinated for methods ionic resin exchang and Mehlich-1]. Revista Brasileira De Agrociências 14:299–306. doi:10.18539/CAST.V14I2.1916.
  • Schoninger, E. L., L. C. Gatiboni, and D. Linhares. 2012. Método Mehlich-3 como substituinte ao HCl para extração de Cobre e Zinco em solos com alto teor de matéria orgânica do sul do Brasil [Mehlich 3 method as substituent to the HCl method for extraction of copper and zinc in soils from Southern Brazil with high levels of organic matter]. Ciência Rural 42:1200–03. doi:10.1590/S0103-84782012000700010.
  • Sikora, F. J., P. S. Howe, L. E. Hill, D. C. Reid, and D. E. Harover. 2005. Comparison of colorimetric and ICP determination of phosphorus in Mehlich-3 soil extracts. Communications in Soil Science and Plant Analysis 36:875–87. 2005. doi:10.1081/CSS-200049468.
  • Soares, R., V. Escaleira, D. V. B. D. Campos, M. I. C. Monteiro, M. C. Carneiro, R. E. Santelli, and A. C. D. C. Bernardi. 2012. Comparação de métodos convencional e alternativo para determinação de sódio, potássio e fósforo em extratos de solos [Comparison of conventional and alternative determination methods of soil sodium, potassium and phosphorus extracted with mehlich-1 solution]. Revista Brasileira De Ciência Do Solo (36):105–12. doi:10.1590/S0100-06832012000100012.
  • Soares, R., V. Escaleira, M. I. C. Monteiro, F. V. M. Pontes, R. E. Santelli, and A. C. D. C. Bernardi. 2010. Uso de ICP OES e titrimetria para a determinação de cálcio, magnésio e alumínio em amostras de solos [Use of ICP OES and titrimetry for calcium, magnesium and aluminum determination in soil samples]. Revista Brasileira De Ciência Do Solo 34:1553–59. doi:10.1590/S0100-06832010000500008.
  • Tedesco, M. J., C. Gianello, C. A. Bissani, H. Bohnen, and S. J. Volkweiss. 1995. Análise de solo, plantas e outros materiais. Porto Alegre: Brasil: Departamento de Solos da UFRGS Press.
  • Valverde, C., B. Baseia, and V. S. Bagnato. 2016. Mecanismos de alargamento de linhas espectrais atômicas [Line broadening mechanisms of atomic spectral lines]. Revista Brasileira De Enino De Física 38:1–12. doi:10.1590/1806-9126-RBEF-2016-0092.
  • Van Veen, E. H., and M. T. C. Loss-Vollebregt. 1990. Kalman filtering of data from overlapping lines in inductively coupled plasma-atomic emission spectrometry. Spectrochimica Acta – Part B Atomic Spectroscopy 45:313–28. doi:10.1016/0584-8547(90)80106-S.
  • Xiuhuan, Y. W., J. L. Hongtao, T. Baoying, and Z. Zhanxia. 1998. Direct determination of trace elements in tungsten products using an inductively coupled plasma optical emission charge coupled device detector spectrometer. Spectrochimica Acta, Part B 53:1405–12. doi:10.1016/S0584-8547(98)00144-X.
  • Xu, J., H. Kawaguchi, and A. Mizuike. 1983. Spectral interferences in the determination of phosphorus in steel by inductively coupled plasma emission spectrometry with an echelle monochromator. Applied Spectroscopy 37:123–27. doi:10.1366/0003702834633993.
  • Ziadi, N., G. Bélanger, B. Gagnon, and D. Mongrain. 2009. Mehlich-3 soil phosphorus as determined by colorimetry and inductively coupled plasma. Communications in Soil Science and Plant Analysis 40:132–40. doi:10.1080/00103620802649377.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.