Search results for "Chernozem"

showing 4 items of 4 documents

Fluorescence of soil humic acids and their fractions obtained by tandem size exclusion chromatography-polyacrylamide gel electrophoresis

2002

Humic acids (HAs) extracted from soils of different origin (chernozem, ferralsol and ranker) and their fractions (A, B and C+D) obtained by tandem size exclusion chromatography–polyacrylamide gel electrophoresis were investigated by steady-state fluorescence spectroscopy in the emission mode. Independently of HA source, high molecular size fractions A and B are shown to be weakly fluorescent. The main fluorophores, especially those emitting at long wavelength (around 500–510 nm), are contained in the polar and low molecular size fractions C+D. As indicated by the observed pH effect, aromatic structures bearing carboxylate and OH substituents may be involved in these longer wavelength emissi…

Gel electrophoresis[SDE] Environmental SciencesChromatographyChemistry[SDV]Life Sciences [q-bio]Size-exclusion chromatographyMineralogyFluorescenceFluorescence spectroscopy[SDV] Life Sciences [q-bio]Electrophoresischemistry.chemical_compoundGeochemistry and Petrology[SDE]Environmental SciencesCarboxylatePolyacrylamide gel electrophoresisChernozem
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Features of selected benchmark soils along an elevational transect of the northeastern part of the Moldavian Plateau (Romania)

2018

Soil morphological, physical and chemical properties are described at four locations along an elevational transect in the northeastern part of the Moldavian Plateau (Romania). These data contribute to the knowledge of the soils of this area and to their classification according to the USDA-Soil Taxonomy, FAO-WRB and the SRTS-Romanian System. The soils were classified as Inceptisols, Alfisols and Mollisols, according to the USDA-Soil Taxonomy; Gleysol, Chernozem and Luvisol, according to the FAO-WRB and Gleiosol, Cernoziom, Preluvosol, Luvosol, according to the SRTS-Romanian System. The selected soils have a range of properties that represent the soilscape of the Moldavian subcarpathian plat…

Inceptisol0208 environmental biotechnologySoil Science02 engineering and technologyInceptisolMoldavian PlateauMollisolTransectChernozemNature and Landscape ConservationWater Science and TechnologyHydrologygeographyPlateaugeography.geographical_feature_category04 agricultural and veterinary sciences020801 environmental engineeringlcsh:TA1-2040Leaching (pedology)Soil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceAlfisollcsh:Engineering (General). Civil engineering (General)GleysolMollisolAgronomy and Crop ScienceClimo sequence
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The influence of industrial emissions of zinc plant on the properties of chernozem soil.

2018

East Kazakhstan is a storehouse of ore raw materials. Here the main ore-mining industrial objects are concentrated. Most of these deposits and ore deposits are characterized by polymetallic and substantially lead-zinc ore composition. When developing ore deposits, the soil-vegetation cover of the territories is disturbed, and sometimes their complete destruction occurs. On the investigated object leached and podzolized chernozems are widespread. The study of the soil cover at the territories adjacent to the zinc plant showed a negative impact of the plant's emissions on the soil and vegetation cover. Thus, where there is a major outflow from the wind rose, there are manifestations of deep e…

soil pollutionSettore AGR/14 - PedologiaChernozem soilsmine soils
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The influence of industrial emissions from a zinc factory on the properties of Chernozem soil

2018

This article describes the influence of zinc factory emissions on soil cover and vegetation cover of the lands of East Kazakhstan. It is shown how the physical properties of water affect soil moisture. The authors consider how heavy metals destroy the composition of organic acids and how it affects the aggregate state of the soil cover.

Settore AGR/14 - Pedologiasoil properties chernozem soil degradation heavy metals
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