Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Dariusz Botor is active.

Publication


Featured researches published by Dariusz Botor.


Mineralogia | 2011

Trace element geochemistry of coals from the Southern Cantabrian Zone (NW Spain): preliminary results

Dariusz Botor

Trace element geochemistry of coals from the Southern Cantabrian Zone (NW Spain): preliminary results Bituminous to anthracite coals from three small Stephanian intramontane coal-bearing basins (La Magdalena, Cinera-Matallana and Sabero) located along the Sabero-Gordón fault line strike-slip systems of the Southern Cantabrian Zone (SCZ) were examined. Coal rank expressed as mean vitrinite reflectance values of these Stephanian coals is in the range 0.72-3.96%. The vitrinite maceral group exceeds 72 vol. % in all of the coals. The coals are characterized by relatively variable contents of mineral matter and coal-ash. The mineral matter comprises, in the main, clay minerals, carbonates, sulphides and quartz. The coals exhibit medium-high concentrations (see for comparison Ronov et al. 1990; Kabata-Pendias, Pendias 1999; Ketris, Yudovich 2009) of the following elements (in ppm): ΣREE (53-205), Ba (300-900), As (11-57), Zn (<50-150), Cr (10-160), Rb (50-145), Co (5-26), Sc (2-24.6), Ce (17-99), Yb (1.3-4.5), Th (2.4-11.9) and U (1.1-8.1), Br (<1-14), Cs (<2-9), Eu (<0,3-1.5), Lu (0.11-0.85) and Sb (0.8-4.8), and relatively low concentrations of Sm (0.6-6.6) and Ta (<1-2). They are also characterised by relatively high Th/U values (1.31-2.29). LREE/HREE values fall in the range 24-44 (average - 30). In contrast, concentrations of Au, Ag, Hg, Ir, Ni, Se, Sn, Sr, and W are below detection limits for the applied INAA method. As the concentrations of elements are significantly higher in coal-ash, most are likely related to mineral matter in the coals.


Organic Geochemistry | 2002

Petroleum generation in the Carboniferous strata of the Lublin Trough (Poland): an integrated geochemical and numerical modelling approach

Dariusz Botor; Maciej J. Kotarba; Paweł Kosakowski


Annales Societatis Geologorum Poloniae | 2013

Gas generation in Carboniferous source rocks of the Variscan foreland basin : implications for a charge history of Rotliegend deposits with natural gases

Dariusz Botor; Bartosz Papiernik; Tomasz Maćkowski; Beata Reicher; Paweł Kosakowski; Grzegorz Machowski; Wojciech Górecki


International Journal of Earth Sciences | 2015

Thermal history of the Sabero Coalfield (Southern Cantabrian Zone, NW Spain) as revealed by apatite fission track analyses from tonstein horizons: implications for timing of coalification

Dariusz Botor; Aneta A. Anczkiewicz


Przegląd Geologiczny | 1998

Model of gaseous hydrocarbon generation in the Miocene strata of the Polish part of the Carpathian Foredeep

Maciej J. Kotarba; Wacław Burzewski; Tadeusz Wilczek; Kazimierz Słupczyński; Paweł Kosakowski; Dariusz Botor


Geology, Geophysics and Environment | 2012

HYDROTHERMAL FLUIDS INFLUENCE ON THE THERMAL EVOLUTION OF THE STEPHANIAN SEQUENCE, THE SABERO COALFIELD (NW SPAIN)

Dariusz Botor


Przegląd Geologiczny | 2000

Zastosowanie modelowañ numerycznych do rekonstrukcji paleotemperatur i procesów generowania wêglowodorów

Dariusz Botor; Paweł Kosakowski


Tectonophysics | 2017

Post-Variscan thermal history of the Moravo-Silesian lower Carboniferous Culm Basin (NE Czech Republic - SW Poland)

Dariusz Botor; István Dunkl; Aneta A. Anczkiewicz; Stanisław Mazur


Annales Societatis Geologorum Poloniae | 2017

Thermal history of the lower Carboniferous Culm Basin in the Nízký Jeseník Mts. (NE Bohemian Massif, Czech Republic and Poland)

Dariusz Botor; Tomasz Toboła; Iwona Jelonek


Terra Nova | 2018

Tectonothermal history of the Holy Cross Mountains (Poland) in the light of low-temperature thermochronology

Dariusz Botor; Aneta A. Anczkiewicz; István Dunkl; Jan Golonka; Mariusz Paszkowski; Stanisław Mazur

Collaboration


Dive into the Dariusz Botor's collaboration.

Top Co-Authors

Avatar

Paweł Kosakowski

AGH University of Science and Technology

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Maciej J. Kotarba

AGH University of Science and Technology

View shared research outputs
Top Co-Authors

Avatar

Stanisław Mazur

Polish Academy of Sciences

View shared research outputs
Top Co-Authors

Avatar

Tomasz Maćkowski

AGH University of Science and Technology

View shared research outputs
Top Co-Authors

Avatar

István Dunkl

University of Göttingen

View shared research outputs
Top Co-Authors

Avatar

Barbara Bielowicz

AGH University of Science and Technology

View shared research outputs
Top Co-Authors

Avatar

Bartosz Papiernik

AGH University of Science and Technology

View shared research outputs
Top Co-Authors

Avatar

Beata Reicher

AGH University of Science and Technology

View shared research outputs
Top Co-Authors

Avatar

Grzegorz Machowski

AGH University of Science and Technology

View shared research outputs
Researchain Logo
Decentralizing Knowledge