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Atık Sularda ICP-MS Cihazı ile Cıva Tayini ve Geçerli Kılınması

Year 2020, Volume: 1 Issue: 13, 1 - 14, 01.06.2020

Abstract

Bu çalışmada uygulanan validasyon yaklaşımı, ISO / IEC 17025 standardı ve Eurachem yönergeleri ile uyumlu olarak gerçekleştirilmiştir. Validasyon parametrelerinden Seçicilik, çalışma aralığı, doğrusallık, geri kazanım, tekrarlanabilirlik , yeniden üretilebilirlik çalışmaları gerçekleştirildi.Geri kazanım çalışmasında numune üzerine katkı yapılarak % 95 ile % 110 arasında, tekrarlanabilirlik çalışmasında çalışma aralığının alt, orta,üst noktalarında % 0,35 ile % 5,95 Tayin Sınırı LOQ tespit ve teyit çalışmasında 0,02-0,60 µg/L arasında, Genişletilmiş Ölçüm Belirsizliği tespit çalışmalarında k=2 % 0,68- % 3,31 arasında sonuçlar elde edilmiştir. Elde edilen sonuçlar kapsamında atıksular da ICP-MS de cıva analizleri geçerli kılınmıştır

References

  • Allan, M. M., Yardley, B. W., Forbes, L. J., Shmulovich, K. I., Banks, D. A., andShepherd, T. J. J. A. M. 2005. Validation of LA-ICP-MS fluid inclusion analysis with synthetic fluid inclusions. 90(11-12), 1767-1775.
  • Caner, M. (2014). Icp-ms İle Demir Analizlerindeki Girişim Etkilerinin Gıda, Cam Ve Su Örneklerinde İncelenmesi. Fen Bilimleri Enstitüsü,
  • Chudzinska, M., Debska, A., Baralkiewicz, D. J. A., andAssurance, Q. 2012. Method validation for determination of 13 elements in honey samples by ICP-MS. 17(1), 65-73.
  • da Silva, R. J., Santos, J. R., Camões, M. J. A., and assurance, q. 2006. A new terminology for the approaches to the quantification of the measurement uncertainty. 10(12), 664-671.
  • Ellison, S., King, B., Rösslein, M., Salit, M., and Williams, A. 2008. Eurachem/CITAC Guide Traceability in chemical measurement. A guide to achieving comparable results in chemical measurement, Eurachem, 2003. In.
  • Ghuniem, M. M., Khorshed, M. A., and Souaya, E. R. J. I. J. o. E. A. C. 2019. Method validation for direct determination of some trace and toxic elements in soft drinks by inductively coupled plasma mass spectrometry. 1-26.
  • Ghuniem, M. M., Souaya, E. R., and Khorshed, M. A. J. J. o. A. I. 2019. Optimization and Validation of an Analytical Method for the Determination of Some Trace and Toxic Elements in Canned Fruit Juices Using Quadrupole Inductively Coupled Plasma Mass Spectrometer. 102(1), 262-270.
  • Gray, P. J., & Cunningham, W. J. J. o. A. I. 2019. Inductively Coupled Plasma Collision Cell Quadrupole Mass Spectrometric Determination of Extractible Arsenic, Cadmium, Chromium, Lead, Mercury, and Other Elements in Food Using Microwave-Assisted Digestion: Results from an FDA Interlaboratory Study. 102(2), 590-604.
  • Guide, I. Reference Materials–Good practice in using reference materials.
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  • Luna, D., Miranda, M., Minervino, A. H. H., Piñeiro, V., Herrero-Latorre, C., and López- Alonso, M. J. P. o. 2019. Validation of a simple sample preparation method for multielement analysis of bovine serum. 14(2), e0211859.
  • Marschner, K., Pétursdóttir, Á. H., Bücker, P., Raab, A., Feldmann, J., Mester, Z., Musil, S. J. A.. 2019. Validation and inter-laboratory study of selective hydride generation for fast screening of inorganic arsenic in seafood. 1049, 20-28.
  • Mlangeni, A. T., Vecchi, V., Norton, G. J., Raab, A., Krupp, E. M., & Feldmann, J. J. F. c. 2018. Comparison of on-site field measured inorganic arsenic in rice with laboratory measurements using a field deployable method: Method validation. 263, 180-185.
  • Normalización, O. I. d. 1994. Accuracy (Trueness and Precision) of Measurement Methods and Results: ISO.
  • Standardization, I. O. f. 1994. Accuracy (Trueness and Precision) of Measurement Methods and Results-Part 2: Basic Method for the Determination of Repeatability and Reproducibility of a Standard Measurement Method: International Organization for Standardization.
  • Standardization., I. O. f. 2006. Statistics—Vocabulary and Symbols—Part 1: General Statistical Terms and Terms Used in Probability. In: ISO Geneva.
  • Tarverniers, I., Loose, M., & Bockstaele, E. J. T. A. C. 2004. Trends in quality in the analytical laboratory. II. Analytical method validation and quality assurance. 23, 535-552.
  • Vassileva, E., Wysocka, I., Orani, A. M. ve Quétel, C. J. S. A. P. B. A. S. 2019. Off-line preconcentration and inductively coupled plasma sector field mass spectrometry simultaneous determination of Cd, Co, Cu, Mn, Ni, Pb and Zn mass fractions in seawater: Procedure validation. 153, 19-27.
  • Wolle, M. M., Conklin, S. D. J. A., and chemistry, B. 2018. Speciation analysis of arsenic in seafood and seaweed: Part II—single laboratory validation of method. 1-14.
  • Yılmaz, A. J. T. K. v. D. L. D., TURKLAB Rehber. 2013. Kimyasal Analizlerde Metot Validasyonu ve Verifikasyonu. 1.
  • Yuksel, B., & Arica, E. J. A. S. 2018. Assessment of Toxic, Essential, and Other Metal Levels by ICP-MS in Lake Eymir and Mogan in Ankara, Turkey: An Environmental Application. 39(5), 179-184.

Determination and Application of Mercury with ICP-MS Device in Waste Water

Year 2020, Volume: 1 Issue: 13, 1 - 14, 01.06.2020

Abstract

The validation approach applied in this study was carried out in accordance with the ISO / IEC 17025 standard and Eurachem directives. Selectivity, working range, linearity, recovery, reproducibility, reproducibility studies were carried out from the validation parameters. Between 95% and 110% by making contribution to the sample in the study, the lower, middle and upper points of the working range in the reproducibility study were determined as 0.35% and 5%. , 95 Determination Limit LOQ detection, confirmation studies with 0,02-0,60 tespitg / L, Extended Measurement Uncertainty detection studies k = 2 between 0,68% -3,31% results were obtained. Based on the results obtained, mercury analyzes in ICP-MS were also validated in wastewater

References

  • Allan, M. M., Yardley, B. W., Forbes, L. J., Shmulovich, K. I., Banks, D. A., andShepherd, T. J. J. A. M. 2005. Validation of LA-ICP-MS fluid inclusion analysis with synthetic fluid inclusions. 90(11-12), 1767-1775.
  • Caner, M. (2014). Icp-ms İle Demir Analizlerindeki Girişim Etkilerinin Gıda, Cam Ve Su Örneklerinde İncelenmesi. Fen Bilimleri Enstitüsü,
  • Chudzinska, M., Debska, A., Baralkiewicz, D. J. A., andAssurance, Q. 2012. Method validation for determination of 13 elements in honey samples by ICP-MS. 17(1), 65-73.
  • da Silva, R. J., Santos, J. R., Camões, M. J. A., and assurance, q. 2006. A new terminology for the approaches to the quantification of the measurement uncertainty. 10(12), 664-671.
  • Ellison, S., King, B., Rösslein, M., Salit, M., and Williams, A. 2008. Eurachem/CITAC Guide Traceability in chemical measurement. A guide to achieving comparable results in chemical measurement, Eurachem, 2003. In.
  • Ghuniem, M. M., Khorshed, M. A., and Souaya, E. R. J. I. J. o. E. A. C. 2019. Method validation for direct determination of some trace and toxic elements in soft drinks by inductively coupled plasma mass spectrometry. 1-26.
  • Ghuniem, M. M., Souaya, E. R., and Khorshed, M. A. J. J. o. A. I. 2019. Optimization and Validation of an Analytical Method for the Determination of Some Trace and Toxic Elements in Canned Fruit Juices Using Quadrupole Inductively Coupled Plasma Mass Spectrometer. 102(1), 262-270.
  • Gray, P. J., & Cunningham, W. J. J. o. A. I. 2019. Inductively Coupled Plasma Collision Cell Quadrupole Mass Spectrometric Determination of Extractible Arsenic, Cadmium, Chromium, Lead, Mercury, and Other Elements in Food Using Microwave-Assisted Digestion: Results from an FDA Interlaboratory Study. 102(2), 590-604.
  • Guide, I. Reference Materials–Good practice in using reference materials.
  • Guide, I. J. I. O. f. S., Geneva. 2006. 35 2006 Reference materials—general and statistical principles for certification. 64.
  • Luna, D., Miranda, M., Minervino, A. H. H., Piñeiro, V., Herrero-Latorre, C., and López- Alonso, M. J. P. o. 2019. Validation of a simple sample preparation method for multielement analysis of bovine serum. 14(2), e0211859.
  • Marschner, K., Pétursdóttir, Á. H., Bücker, P., Raab, A., Feldmann, J., Mester, Z., Musil, S. J. A.. 2019. Validation and inter-laboratory study of selective hydride generation for fast screening of inorganic arsenic in seafood. 1049, 20-28.
  • Mlangeni, A. T., Vecchi, V., Norton, G. J., Raab, A., Krupp, E. M., & Feldmann, J. J. F. c. 2018. Comparison of on-site field measured inorganic arsenic in rice with laboratory measurements using a field deployable method: Method validation. 263, 180-185.
  • Normalización, O. I. d. 1994. Accuracy (Trueness and Precision) of Measurement Methods and Results: ISO.
  • Standardization, I. O. f. 1994. Accuracy (Trueness and Precision) of Measurement Methods and Results-Part 2: Basic Method for the Determination of Repeatability and Reproducibility of a Standard Measurement Method: International Organization for Standardization.
  • Standardization., I. O. f. 2006. Statistics—Vocabulary and Symbols—Part 1: General Statistical Terms and Terms Used in Probability. In: ISO Geneva.
  • Tarverniers, I., Loose, M., & Bockstaele, E. J. T. A. C. 2004. Trends in quality in the analytical laboratory. II. Analytical method validation and quality assurance. 23, 535-552.
  • Vassileva, E., Wysocka, I., Orani, A. M. ve Quétel, C. J. S. A. P. B. A. S. 2019. Off-line preconcentration and inductively coupled plasma sector field mass spectrometry simultaneous determination of Cd, Co, Cu, Mn, Ni, Pb and Zn mass fractions in seawater: Procedure validation. 153, 19-27.
  • Wolle, M. M., Conklin, S. D. J. A., and chemistry, B. 2018. Speciation analysis of arsenic in seafood and seaweed: Part II—single laboratory validation of method. 1-14.
  • Yılmaz, A. J. T. K. v. D. L. D., TURKLAB Rehber. 2013. Kimyasal Analizlerde Metot Validasyonu ve Verifikasyonu. 1.
  • Yuksel, B., & Arica, E. J. A. S. 2018. Assessment of Toxic, Essential, and Other Metal Levels by ICP-MS in Lake Eymir and Mogan in Ankara, Turkey: An Environmental Application. 39(5), 179-184.
There are 21 citations in total.

Details

Primary Language Turkish
Journal Section Research Article
Authors

Osman Taner This is me

Ahmet Furkan Kayiş This is me

Özcan Yalçınkaya This is me

Publication Date June 1, 2020
Published in Issue Year 2020 Volume: 1 Issue: 13

Cite

APA Taner, O., Kayiş, A. F., & Yalçınkaya, Ö. (2020). Atık Sularda ICP-MS Cihazı ile Cıva Tayini ve Geçerli Kılınması. Science and Technique in the 21st Century, 1(13), 1-14.