[1]
D.C. Adriano: Trace elements in terrestrial environments: biogeochemistry, bioavailability and risk of metals (Springer Press, New York 2001).
Google Scholar
[2]
I. Raskin, P. B. Kumar and D. E. Dushenkov. Current Opinion in Biotechnology. Vol. 5(1994), pp.285-290.
Google Scholar
[3]
P.A. Kabata and H. Pendias: Trace elements in soils and plants (CRC Press, Boca Raton 1992).
Google Scholar
[4]
A.M. Ure. Mikrochimica Acta. Vol. 2(1991), pp.49-57.
Google Scholar
[5]
J. R. Bacon and C.M. Davidson. The Analyst. Vol. 133(2008) , pp.25-46.
Google Scholar
[6]
S. R. Gummuluru, Krishnamurti and N. Ravendra. Environ. Sci. Technol. Vol. 36 (2002), p.2645–2651.
Google Scholar
[7]
P. Gunkel, E. Roth and B. Fabre. Environmental Chemistry Letters. Vol. 2(2004), pp.99-103.
Google Scholar
[8]
Z. Y. Hseu. Chemosphere. Vol. 63(2006), pp.762-771.
Google Scholar
[9]
P. Bhattaeharyya, A. Chakraborty and K. Chakrabarti. Environmental Geology . Vol. 49(2006), pp.1064-1070.
Google Scholar
[10]
Z.W. Wang, X.Q. Shan and S.Z. Zhang. Chemosphere. Vol. 46 (2002), pp.1163-1171.
Google Scholar
[11]
S. Tokahoglu and S. Kartal. Instrumentation Science & Technology. Vol. 32(2004), pp.387-400.
Google Scholar
[12]
G.S.R. Krishnamurti, M. Pigna, M. Arienzo and A. Violante. Chemical Speciation and Bioavailability. Vol. 19(2007), pp.57-67.
DOI: 10.3184/095422907x211891
Google Scholar
[13]
L. Brügmann. The Science of the Total Environment. Vol. 37(1984), pp.41-60.
Google Scholar
[14]
M. Korolczuk. Anal. Chim. Acta. Vol. 414(2000), pp.165-171.
Google Scholar
[15]
Yuxian L i, Yu Zeng and Guogang Li. Acta Science Circumstances. Vol. 17(1997), pp.116-120 (In Chinese).
Google Scholar
[16]
P.R.M. Silva, M.A. El Khakani and M. Chaker. Sensors and Actuators B. Vol. 76(2001), pp.250-257.
Google Scholar
[17]
C. H. B E N O Î T and S. Sebastien. Environ. Sci. Technol. Vol. 41(2007), p.8104–8110.
Google Scholar
[18]
A. L. Nolan, M.J. McLaughlin andS. D. Mason. Environ. Sci. Technol. Vol. 37 (2003), p.90–98.
Google Scholar
[19]
E. Tipping, J. Rieuwerts and G. Pan. Environmental Pollution. Vol. 125(2003), pp.213-225.
Google Scholar
[20]
B. Cancès, M. Ponthieu, M. C. and Rouelle. Geoderma. Vol. 113(2003), pp.341-355.
Google Scholar
[21]
T. Guerin, A. Astruc and M. Astruc. Talanta. Vol. 50(1999), pp.1-24.
Google Scholar
[22]
M.V. Gallardo, Y. Bohari and A. Astruc. Anal. Chim. Acta. Vol. 441(2001), pp.257-268.
Google Scholar
[23]
J.L. Gómez-Ariza, J.A. Pozas and I. Giráldez. Journal of Chromatography A. Vol. 823(1998), pp.259-277.
Google Scholar
[24]
M. O. Petropoulou, B. Michalke and D. Kavouras. Anal. Chim. Acta. Vol. 478(2003), pp.219-227.
Google Scholar
[25]
E. Vassileva, A. Becker and J.A.C. Broekaert. Anal. Chim. Acta. Vol. 441(2001), pp.135-146.
Google Scholar
[26]
Hongxia Yang, Wei Liu and Bing Li. Rock and mineral analysis. Vol. 29(2010), pp.9-13.
Google Scholar
[27]
O. Libbie G.S. Daniel and Gregory Moller. Environ. Sci. Technol. Vol. 45(2011), P. 870–875.
Google Scholar
[28]
T. Roberto, A.L.C. Ziad and V. Bart. Journal of agriculture and food chemistry. Vol. 56(2008), p.3222–3231.
Google Scholar
[29]
K. Saengdao, R. L. Chaney, L. Gautier, G.V. Matthew and L. Donald. Environ. Sci. Technol. Vol. 45(2011), p.4249–4255.
Google Scholar
[30]
Jianxu Wang, Xinbin Feng, W. N. Christopher and Anderson. Environ. Sci. Technol. Vol. 46(2012), p.5361–5368.
Google Scholar