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Acknowledgments
This work has been funded by the Spanish Ministry of Science and Innovation (Project CTQ2009-08606)
and the Aragon Government ('Programa de apoyo a la I
+
D
+
I' from ARAID Foundation and 'Obra Social
de IberCaja', with additional support from Inycom).
References
1. Anastas, P.T. and Warner, J.C. (1998) Green Chemistry: Theory and Practice , Oxford University Press, New York.
2. Clark, J.H. (1999) Green Chemistry: challenges and opportunities, Green Chem. , 1 , 1-8.
3. Anastas, P.T. (1999) Green Chemistry and the role of analytical methodology development, Crit. Rev. Anal. Chem. ,
29 , 167-175.
4. de la Guardia, M. and Ruzicka, J. (1995) Towards environmentally conscientious analytical chemistry through
miniaturization, containment and reagent replacement, Analyst , 120 , 17N.
5. Keith, L.H.; Gron, L.U. and Young, J.L. (2007) Green analytical methodologies, Chem. Rev. , 107 , 2695-2708.
6. He, Y.; Tang, L.; Wu, X.; Hou, X.D. and Lee, Y.I. (2007) Spectroscopy: The best way toward Green Chemistry?,
Appl. Spectrosc. Rev. , 42 , 119-138.
7. de la Guardia, M. (2010) Green Analytical Chemistry, TrAC- Trend. Anal. Chem. , 29 , 577.
8. de la Guardia, M. and Armenta, S. (2011) Multianalyte determination versus one-at-a-time methodologies, in Green
Analytical Chemistry: Theory and Practice , (eds M. de la Guardia and S. Armenta) Comprehensive Analytical
Chemistry 57, Elsevier, Oxford,.
9. Tobiszewski, M.; Mechli ´ska, A.; Zygmunt, B. and Namie´nik, J. (2009) Green Chemistry in sample preparation
for determination of trace organic pollutants, TrAC- Trend. Anal. Chem. , 28 , 943-951.
10. Halls, D.J. (1995) Analytical minimalism applied to the determination of trace elements by atomic spectrometry,
J Anal. Atom. Spectrom. , 10 , 169-175.
11. Hou, X. and Jones, B.T. (2002) Tungsten devices in analytical atomic spectrometry, Spectrochim. Acta B , 57 , 659-688.
12. Hou, X. and Jones, B.T. (2000) Field instrumentation in atomic spectroscopy, Microchem. J. , 66 , 115-145.
13. Karanassios, V. (2004) Microplasmas for chemical analysis: analytical tools or research toys?, Spectrochim. Acta B ,
59 , 909-928.
14. Welz, B.; Becker-Ross, H.; Florek, S. and Heitmann, U. (2005) High-Resolution Continuum Source AAS , Wiley-
VCH Verlag GmbH & Co. KGaA, Weinheim.
15. Resano, M.; Briceño, J. and Belarra, M.A. (2009) Direct determination of phosphorus in biological samples using
a solid sampling-high resolution-continuum source electrothermal spectrometer: comparison of atomic and
molecular absorption spectrometry, J . Anal. Atom. Spectrom. , 24 , 1343-1354.
16. Tobiszewski, M.; Mechli ´ska, A. and Namie´nik, J. (2010) Green Chemistry - theory and practice, Chem. Soc, Rev .,
39 , 2869-2878.
17. Moreda-Piñeiro, A.; Barciela-Alonso, M.C.; Domínguez-González, R.; Peña-Vázquez, E.; Herbello-Hermelo, P.
and Bermejo-Barrera, P. (2009) Alternative solid sample pretreatment methods in green analytical atomic
spectrometry, Spectrosc. Lett. , 42 , 394-417.
18. Koel, M. and Kaljurand, M. (2006) Application of the principles of Green Chemistry in analytical chemistry, Pure
Appl. Chem ., 78 , 1993-2002.
19. Moros, J.; Garrigues, S. and de la Guardia, M. (2010) Vibrational spectroscopy provides a green tool for multi-
component analysis, TrAC-Trend. Anal. Chem. , 29 , 578-591.
20. Belarra, M.A.; Resano, M.; Vanhaecke, F. and Moens , L. (2002) Direct solid sampling with electrothermal
vaporization/atomization: what for and how?, TrAC-Trend. Anal. Chem. , 21 , 828-839.
21. Armenta, S.; Garrigues, S. and de la Guardia, M. (2008) Green Analytical Chemistry, TrAC-Trend. Anal. Chem. ,
27 , 497-511.
22. Resano, M.; García-Ruiz, E.; Aramendía, M. and Belarra, M.A. (2005) Solid sampling-graphite furnace atomic
absorption spectrometry for Hg monitoring in soils. Performance as a quantitative and as a screening method,
J Anal. Atom. Spectrom. , 20 , 1374-1380.
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