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Changes in soil chemical composition caused by self‐heating of a coal‐waste dump

Bibliographic Data

ID21648880
AuthorsAnna K Abramowicz (0000-0002-8259-6033, Faculty of Natural Sciences University of Silesia Sosnowiec Poland, corresponding author), Oimahmad Rahmonov (0000-0003-4883-3784, Faculty of Natural Sciences University of Silesia Sosnowiec Poland), Monika Fabiańska (0000-0002-8270-9384, Faculty of Natural Sciences University of Silesia Sosnowiec Poland, corresponding author), Ádám Nádudvari (0000-0003-3265-6664, Faculty of Natural Sciences University of Silesia Sosnowiec Poland, corresponding author), Ryszard Chybiorz (0000-0003-3596-8081, Faculty of Natural Sciences University of Silesia Sosnowiec Poland), Michał Michalak (0000-0002-2852-3984, Faculty of Natural Sciences University of Silesia Sosnowiec Poland)
Year2021
Volume32
Issue15
Pages4340-4349
Publication date2021-09-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueLand Degradation and Development (JOURNAL)
Journal identifiersISSN: 1085-3278 • E-ISSN: 1099-145X
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ldr.4040
OpenAlexW3183594393
LanguageEN
Citations received2
References cited26

The paper presents soil features and chemical composition in a self‐heating coal‐waste dump. The investigations were carried out in the Upper Silesian Coal Basin. A fire zone in which the soil temperature exceeded 50°C was selected for our study. Soil analyses were carried out for three grain sizes – d > 1 mm, 0.063 mm ‐1 ), Zn (127–3283 mg kg ‐1 ), Pb (33.6–1344.7 mg kg ‐1 ), Cu (38.9–101.4 mg kg ‐1 ), and major elements by Fe (14,300–117,400 mg kg ‐1 ) and Ca (900–63,600 mg kg ‐1 ). Soil chemistry showed variations within individual studied sites. The soil reaction ranges from acidic (4.3 in KCl and 5.26 in H 2 O) to moderate alkaline (7.96 in H 2 O and 7.31 in KCl), whereas TOC ranges from 1.21% to 14.60% and TN from 0.023% to 0.291%. The distribution of n ‐alkanes clearly showed a low degree of transformation of organic matter and characteristic high values of Pr/Ph ratio for humic coals and coal waste in the region. Grains with diameters greater than 1 mm exhibited completely different features than those of fractions smaller than or equal to 1 mm. High organic carbon content (14.60) was detected in the samples along with PAHs. The influence of fire on the chemical composition of all samples was identified using geochemical indicators. PCA analysis showed that the values of the variables were more closely correlated in finer grains than in the coarsest fraction

Carbon fibers · Chemical composition · Coal · Mineralogy · Organic matter · Pyrolysis · Soil test · Soil water · Total organic carbon · Chemistry · Coal and Its By-products · Coal Properties and Utilization · Environmental Science · Fire effects on ecosystems · Materials Science · Environmental Chemistry · Soil Science

  • Assessing Thermal Activity and Ecological Response in Coal‐Waste Dumps

    Open Access•Anna K Abramowicz, Oimahmad Rahmonov et al.•Land Degradation and Development•2025

  • Accumulation of Heavy Metals and PAHs in Algal Crust on Burning Coal‐Waste Dumps

    Open Access•Anna K Abramowicz, Oimahmad Rahmonov et al.•Land Degradation and Development•2026

  • An Introduction to Statistical Learning

    Open Access•Gareth James, Daniela Witten et al.•An Introduction to Statistical…•2013

  • Short-chain n-alkanes (C16–20) in ancient soil are useful molecular markers for prehistoric biomass burning

    Open Access•Eileen Eckmeier, Guido L B Wiesenberg•Journal of Archaeological Science•2009

Unique citing works2
Citations per year2
Citation span2025 - 2026 (2)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 2

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