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Tytuł artykułu

The influence of thiuram on the mobility of heavy metals in soils

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The work is a continuation of previous studies on the effect of thiuram on the mobility of heavy metals in soils. The introductory part of the work involved the analysis of properties of the soils used for the examination i.e.: the content of organic matter, acidity and mechanical properties. The content of lead, copper, manganese and zinc was determined in soils (IM HC1 extracts) free from additives and soils sprayed with thiuram after 3, 6, 9 and 12 weeks. The content of total metals was determined in mineralizates (soils without thiuram) obtained by a conventional method according to the ISO standards. The analysis showed that the soils used for the examination were not contaminated with any of the determined elements. The contents of Pb, Cu, Mn and Zn in soils with thiuram were different depending on metals and the time of contact of the soils with thiuram.
Słowa kluczowe
EN
Rocznik
Strony
83--90
Opis fizyczny
bibliogr. 22 poz., tab., wykr.
Twórcy
  • Institute of General and Ecological Chemistry, Technical University, 90-924 Łódź. Żeromskiego 116, Poland
autor
  • Institute of General and Ecological Chemistry, Technical University, 90-924 Łódź. Żeromskiego 116, Poland, dadamczyk@poczta.fm
Bibliografia
  • [1] Adamczyk, D., 2006. The effect of thiuram on the uptake of lead and copper by Melissa officinalis, Environ. Eng. Sci. 23 (4): 610-614.
  • [2] Directive of the Polish Minister of Environment Protection of 9 September 2002. Journal of Laws (in Polish). 165: 1359.
  • [3] Howard, P.H., W&9. Ed. Handbook of Environmental Fate and Exposure Data for Organic Chemicals, III, Pesticides. Lewis Publishers, Chelsea, ML 4-20.
  • [4] Jankiewicz, B., Kobyłecka, I., Ptaszyński, B. and Turek, A. 2004. Determination of Bioa\ai\able Forms of Heavy Metals in the Soils From Selected Allotment Gardens in Łódź. Chem. Ing. Ecol. 11 (9): 907-913.
  • [5] Kabata-Pendias, A. and Pendias, H. 1999. Biogeochemistry of trace elements (in Polish). PWN, Warsaw 398pp.
  • [6] Nieuwenhuizen, P.J., Van Duin, M., Haasnoot, I.G., and Reedijk, J. 1999. Journal of Applied Polymer Science. 73(7): 1247-1252.
  • [7] Ostrowska, K., Gawliński, S. and Szczubiałka, Z. 1991. Methods of Analysis and evaluation of soil and plant properties (in Polish). Catalogue of the Institute of Environment. Protection, Warsaw 334pp.
  • 8] Polish Standards (a). 1992. Chemo-agricultural analysis of soil. Determination of bioavailable zinc content PN-92/R-04016 (in Polish). Polish Committee for Standardization, Warsaw.
  • [9] Polish Standards (b). 1992. Chemo-agricultural analysis of soil. Determination of bioavailable copper content. PN-92/R-04017 (in Polish). Polish Committee for Standardization, Warsaw.
  • [10] Polish Standards (c). 1992. Chemo-agricultural analysis of soil. Determination of bioavailable manganese content. PN-92/R-040119 (in Polish). Polish Committee for Standardization, Warsaw.
  • [11] Polish Standards. 1997. Soil Quality. Determination of pH. PN-ISO 10390:1997 (in Polish). Polish Committee for Standardization,. Warsaw.
  • [12] Polish Standards. 1998. Soil and mineral soil materials-Sampling and determination of particle size distribution. PN-R-04032 (in Polish). Polish Committee for Standardization, Warsaw.
  • [13] Polish Standards. 1999. Soil Quality. Preliminary preparation of samples for physico-chemical analysis. PN-ISO 11464 (in Polish). Polish Committee for Standardization, Warsaw.
  • [14] Polish Standards. 2001. Soil quality - Simplified soil description. PN-ISO 112 59:2001 (in Polish). Polish Committee for Standardization, Warsaw.
  • [15] Polish Standards. 2002. Soil Quality. Extraction of trace elements in king's water. PN-ISO-11466 (in Polish). Polish Committee for Standardization, Warsaw.
  • [16] Różański, L., 1998. Vademecum of pesticides. Agra-Enviro Lab. Poznań 327pp.
  • [17] Turek, A., Kobyłecka, I., Skiba, E. and Adamczyk, D. 2004. Contribution of pesticides in circulation of metals in the environment. Pathways of pollutants and mitigation strategies of their impact on the ecosystems, Monograph, 27, PAN Lublin.
  • [18] Victoriano, L. and Cortes H. 1996. Cuprous dithiocarbamates. Syntheses and reactivity. J. Coord. Chem. 39 (3-4): 231-239.
  • [19] Victoriano, L., Cortes, H. 1996. Copper(III) dithiocarbamate complexes from thiuram disulfides and copper(I) halides., J. Coord. Chem. 39 (3-4): 241-251.
  • [20] Victoriano, L., Granifo, I. and Parraguez, L. 2000. Copper(III) dithiocarbamates. Biol. Soc. Chil. Quim. 45 (3): 487-489.
  • [21] Wauchope, R. D., Buttler, T. M., Hornsby, A. G., Augustijn-Beckers, P. W. M. and Burt, J. P. 1992. Rev.Environ.Contam.Toxicol. 123, (1-157): 4-21.
  • [22] Yong-Gang, Z., Xiu-Wen, Z., Zhi-Ying, H. and Ming-Min, Y. 2003. Anal. Chim. Acta, 482: 29-33.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0013-0027
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