Academic literature on the topic 'Pedogeochemical'

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Journal articles on the topic "Pedogeochemical"

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Savosko, Vasyl'. "Pedogeochemical barriers of heavy metals’migration distribution in chernozems soil profile at Kryvorizhzhya." Biolohichni systemy 11, no. 2 (2019): 243–52. http://dx.doi.org/10.31861/biosystems2019.02.243.

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The basic regularities of the distribution of heavy metals’migration pedogeochemical barriers in soil profile of the chernozems ordinary and southern at Kryvy Rih mining and metallurgical regions were analyzed. It was pointed out that heavy metals’migration pedogeochemical barriers is a part of the soil horizon or soil profile, where there is a significant concentration of individual chemical elements as a consequence of the substitution-reaction phenomenon. Pedogeochemical barriers are classified into five types: mechanical, physical, physical and chemical, chemical and biological. The spread
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Savosko, V. M. "Indicators for pedogeochemical barriers of heavy metals’ migration." Fundamental and Applied Soil Science 19, no. 1 (2019): 15–21. http://dx.doi.org/10.15421/041903.

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The aims of this study were to substantiate indicators for pedogeochemical barriers of heavy metals’s migration. The concept of pedogeochemical barriers of heavy metals’migration. Pedogeochemical migration barrier is part of the soil horizon or soil profile, where, as a result of special pedosubstantsiya availability and certain pedogeochemical reactions percolation, there is a significant accumulation of some chemical elements. These barriers act as a «substation-reactionary phenomenon». Pedogeochemical migration barrier grouped into five types: mechanical A, physical (sorption) B, physicoche
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Savosko, V. M. "Genesis of the idea and definition of pedogeochemical barriers of heavy metals migration." Fundamental and Applied Soil Science 18, no. 3-4 (2017): 21–29. http://dx.doi.org/10.15421/041712.

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The aims of this study were to consider the genesis’s idea «geochemical barriers» and to invite a definition for «pedogeochemical barriers» by example of heavy metals’ migration. Object of this study – scientific publications that show the results of heavy metals’ content and distribution in soils. The concept of geochemical barriers was formulated by A. I. Perelman in 1961. At first ideas of this concept have been used for: 1) ordering of the geochemical conditions at hypergenesis zone, 2) justification the concept of geochemical field; 3) mathematical modeling of geochemical processes, 4) ef
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Bech, Jaume, E. Korobova, A. Lima, and C. Pérez-Sirvent. "Pedogeochemical mapping of potentially toxic elements." Journal of Geochemical Exploration 109, no. 1-3 (2011): vii—viii. http://dx.doi.org/10.1016/j.gexplo.2011.03.001.

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Melfi, Adolpho J., Celia R. Montes, Adilson Carvalho, and Maria Cristina Forti. "Use of pedological maps in the identification of sensitivity of soils to acidic deposition: application to Brazilian soils." Anais da Academia Brasileira de Ciências 76, no. 1 (2004): 139–45. http://dx.doi.org/10.1590/s0001-37652004000100012.

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The pedogeochemical maps present the spatial distribution of soils according to crystalochemical parameters (clay fraction) and physic-chemical aspects of the sorting complex (CEC and BS). These maps are adequate tool for environmental studies and particularly, for the analysis of the terrestrial ecosystem sensibility to acidic deposition. The pedogeochemical maps of the Brazilian soils, elaborated using FAO SoilWorld Map, allowed establishing the soil distribution according to 5 classes of vulnerability to acidic deposition, as defined by Stockholm Environmental Institute (SEI). From these ma
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Yuldashev, Gulom, Zikrjon Muhammadovich Azimov, Inomzhon Noralievich Mamajonov, and Sultonkhuzha Akramkhuzha coals Makhramkhuzhaev. "PEDOGEOCHEMICAL FEATURES OF SILICON IN SALT AND LIGHT SEROZEMS." European Journal of Technical and Natural Sciences, no. 2 (2023): 7–17. http://dx.doi.org/10.29013/ejtns-23-2-7-17.

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Bäumler, R., A. A. Ni, M. Petrov, I. Lemzin, and W. Zech. "Pedogeochemical studies and palaeoenvironmental implications in Kichik Alay Mountain soils (Kyrgyzstan)." Zeitschrift für Geomorphologie 46, no. 4 (2002): 461–74. http://dx.doi.org/10.1127/zfg/46/2002/461.

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Angelone, M., O. Vaselli, C. Bini, and N. Coradossi. "Pedogeochemical evolution and trace elements availability to plants in ophiolitic soils." Science of The Total Environment 129, no. 3 (1993): 291–309. http://dx.doi.org/10.1016/0048-9697(93)90324-y.

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Hseu, Zeng-Yei, and Yoshiyuki Iizuka. "Pedogeochemical characteristics of chromite in a paddy soil derived from serpentinites." Geoderma 202-203 (July 2013): 126–33. http://dx.doi.org/10.1016/j.geoderma.2013.03.021.

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Schünemann, Adriano Luis, André Thomazini, Pedro Henrique Araújo Almeida, et al. "Soil pedogeochemical attributes prediction by interpolators in ice-free areas of Antarctica." Research, Society and Development 11, no. 4 (2022): e51411427542. http://dx.doi.org/10.33448/rsd-v11i4.27542.

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The main objective of this paper is to predict soil attributes in unsampled areas using geostatistical models, By improving the prediction parameters of selected data, using environmental covariates characteristic of Antarctic ice free areas. In this study, 58 soil samples from a grid were collected at 0-10 cm depth in Keller Peninsula, King George Island, Antarctica. The soil chemical analysis was performed, and the values of potassium, calcium and magnesium were determined for each soil sampled. Simple kriging (SK) and Random Forest interpolator were used in this work to predict the values o
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Book chapters on the topic "Pedogeochemical"

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da Costa, Marcondes Lima, Dirse C. Kern, and Nestor Kämpf. "Pedogeochemical and Mineralogical Analyses of Amazonian Dark Earths." In Amazonian Dark Earths. Springer Netherlands, 2003. http://dx.doi.org/10.1007/1-4020-2597-1_17.

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"pedogeochemical." In Dictionary Geotechnical Engineering/Wörterbuch GeoTechnik. Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-41714-6_160580.

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Reports on the topic "Pedogeochemical"

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Савосько, Василь Миколайович. Pedogeochemical Barriers of Heavy Metals’ Migration. Lublin: Institute of Agrophysics, 2018. http://dx.doi.org/10.31812/123456789/2944.

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Савосько, Василь Миколайович, Юлія Віліївна Бєлик, Юрій Васильович Лихолат, et al. The Total Content of Macronutrients and Heavy Metals in the Soil on Devastated Lands at Kryvyi Rih Iron Mining & Metallurgical District (Ukraine). Geology-dnu-dp.ua, 2021. http://dx.doi.org/10.31812/123456789/4286.

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The relevance of the research is due to the need to develop technologies for phytoremediation of the devastated lands in the mining and metallurgical regions of Ukraine and the world. In this regard, the creation of tree plantations adapted to the ecological conditions of such territories is considered by many experts as the most promising option for innovative technologies. However, the development of artificial woodlands requires knowledge of the pedogeochemical character- istics of devastated lands. The aim of the work was to carry out a comparative analysis of the macronutrients and heavy
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