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Contributions to the study of organic-mineral complexes from hortic anthrosols

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dc.contributor.author Bulgariu, D.
dc.contributor.author Buzgar, N.
dc.contributor.author Filipov, F.
dc.date.accessioned 2025-01-13T08:57:27Z
dc.date.available 2025-01-13T08:57:27Z
dc.date.issued 2008
dc.identifier.citation Bulgariu, D., N. Buzgar, F. Filipov. 2008. "Contributions to the study of organic-mineral complexes from hortic anthrosols". Lucrări Ştiinţifice USAMV - Iaşi Seria Agronomie 51(1): 197-202.
dc.identifier.uri https://repository.iuls.ro/xmlui/handle/20.500.12811/4979
dc.description.abstract In this paper are presented the preliminary results of studies concerning the composition, structure and stability of organic-mineral complexes from hortic anthrosols. The separation of organic-mineral complexes has been performing by isodynamic magnetic method and by extraction in aqueous Na2SO4 –polyethylene glycol two-phase systems. The composition and structure of organic-mineral complexes have been studied by Raman, FT-IR and UV-VIS spectroscopy, optic microscopy, thermal and chemical analysis. In studied horthic antrosol, the content of organic-mineral complexes varied between 20.42-48.36 % [w/w], being evidenced a relative accumulation tendency in Ahok (48.36 %) horizon and in grain size fractions < 0.002 mm (63.62-86.30 %, from total determined organic-mineral complexes), respectively. The maximum weight (29.45-64.56 %) has been observed at grain size fractions < 0.001 mm. The high apparition frequencies and stability have organic-mineral complexes which include in their structures predominantly, the amorphous forms of clay minerals and of iron oxi-hydroxides. In function of clay mineral type from organic-mineral complexes composition, have been observed that the apparition frequency and stability follow the order: smectite > illite >> kaolinite (have been evidenced a special stabilization effect in case of Ca and Mg forms of clay minerals). In function of iron oxi-hydroxides type from organic-mineral complexes composition, has been observed that the apparition frequency and the stability follow the order: Fe(OH)3 (amorphous) > Fe(OH)3 (ferihidrite, amorphous) > -FeO(OH).nH2O (lepidocrocite) > -FeO(OH).nH2O (göethite) > -Fe2O3 (hematite). The separated and studied organic-mineral complexes have very complex compositions and structures (generally have 4- 5 structure levels), include over 65 % from mineral and organic components of anthrosol and are behaves as supra-molecular assembles very stable and with a high chemical-structural flexibility degree. In function of chemicalmineralogical composition and of their structure, the organic-mineral complexes from studied anthrosol have been classified in four main classes. en_US
dc.language.iso en en_US
dc.publisher “Ion Ionescu de la Brad” University of Agricultural Sciences and Veterinary Medicine, Iaşi en_US
dc.subject organic-mineral complexes en_US
dc.subject hortic anthrosols en_US
dc.title Contributions to the study of organic-mineral complexes from hortic anthrosols en_US
dc.type Article en_US
dc.author.affiliation D. Bulgariu, N. Buzgar, ”Al.I.Cuza” University of Iaşi, Faculty of Geography and Geology, Department of Geology, Iaşi
dc.author.affiliation F. Filipov, ”Ion Ionescu de la Brad” University of Agricultural Science and Veterinary Medicine Iaşi, Faculty of Agriculture and Horticulture, Iaşi,
dc.publicationName Lucrări Ştiinţifice USAMV - Iaşi Seria Agronomie
dc.volume 51
dc.issue 1
dc.publicationDate 2008
dc.startingPage 197
dc.endingPage 202
dc.identifier.eissn 2069-6727


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