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CO2 Emission to the Atmosphere from Carbonate Waters: The Study Case of the Lublin Upland and Roztocze Regions

, Yuan DX. CO 2 source-sink in karst processes in karst areas of China. Episodes. 1999;22:1:33-35. [13] Liu Z, Zhao J. Contribution of carbonate rock weathering to the atmospheric CO 2 sink. Environ Geology. 1999;39(9):1053-1058. DOI: 10.1007/s002549900072. [14] Kindler R, Siemens J, Kaiser K, Walmsley DC, Bernhofer C, Buchmann N, et al. Dissolved carbon leaching from soil is a crucial component of the net ecosystem carbon balance. Glob Change Biol. 2011;17:1167-1185. DOI: 10.1111/j.1365-2486.2010.02282.x. [15] Butman D, Raymond PA. Significant

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Application of Selected Methods of Black Box for Modelling the Settleability Process in Wastewater Treatment Plant

, Adeloye AJ, Rustum R. Application of self-organising maps and multi-layer perceptron-artificial neural networks for streamflow and water level forecasting in data-poor catchments: The case of the Lower Shire floodplain, Malawi. Nordic Hydrol. 2014;45(6):838-854. DOI: 10.2166/nh.2014.168. [12] Rustum R, Adeloye A. Improved modelling of wastewater treatment primary clarifier using hybrid anns. Int J Computer Sci Artificial Intelligen. 2012;2(4):14-22. DOI: 10.5963/IJCSA/0204002. [13] Belanche L, Valdes J, Comas J, Roda I, Poch M. Prediction

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Soybean Seedlings Enriched with Iron and Magnesium - Impact on Germination, Growth and Antioxidant Properties

). [4] Hruby A, McKeown NM. Magnesium deficiency. What is our status. Nutr Today. 2008;51:121-128. DOI: 10.1097/NT.0000000000000158. [5] DiNicolantonio JJ, O’Keefe JH, Wilson W. Subclinical magnesium deficiency: a principal driver of cardiovascular disease and public health crisis. Open Heart. 2018 ; 5:e000668. DOI: 10.1136/openhrt-2017-000668. [6] Rude KR. Magnesium deficiency: A cause of heterogenous disease in humans. J Bone Mineral Res. 1998;13:749-758. DOI: 10.1359/jbmr.1998.13.4.749. [7] Grebow J. Ingredient trends to watch for food, drinks and

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The Use of Moss Pleurozium schreberi (Brid.) Mitt. as Bioindicator of Radionuclide Contamination in Industrial Areas of Upper Silesia

;409:2281-2297. DOI: 16/j.scitotenv.2011.02.003. [18] Krmar M, Radnovic D, Mihailovic DT, Lalic B, Slivka J, Bikit I. Temporal variations of 7Be, 210Pb and 137Cs in moss samples over 14 month period. Appl Radiat Isot. 2009;67:1139-1147. DOI: 10.1016/j.apradiso.2009.01.001. [19] Ziembik Z, Dołhańczuk-Środka A, Majcherczyk T, Wacławek M. Illustration of constrained composition statistical methods in the interpretation of radionuclide concentrations in the moss Pleurozium schreberi. J Environ Radioact. 2013;117:13-18. DOI: 10.1016/j.jenvrad.2012

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Investigation of committed radiation dose rate and relationships between alkaline metals concentrations in mushroom Xerocomus badius / Badanie wchłoniętej, skutecznej dawki promieniowania i zależności pomiędzy stężeniami metali alkalicznych w owocnikach Xerocomus badius

habitats. Mol Ecol. 2007;16:4728-4737. [13] Lasota W, Florczak J, Karmańska A. Zależność zawartości pierwiastków toksycznych Hg, Cd, Pb w grzybach uprawowych od ich obecności w podłożu. Problemy Higieny. Materiały z VIII Krajowego Zjazdu Mikologicznego. Warszawa. 1987;1:145-161. [14] Grzybek J, Janczy B, Muszyńska B, Wiatr E. Zawartość ołowiu, kadmu i niklu oznaczona metodą spektroskopii absorpcji atomowej w wybranych gatunkach grzybów jadalnych rosnących w Polsce. Problemy Higieny. Materiały z IX Krajowego Zjazdu Mikologicznego. Warszawa

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Community Composition and Abundance of Protozoa Under Different Concentration Of Nitrogen Compounds at “Hajdow” Wastewater Treatment Plant / Zbiorowiska Pierwotniaków I Ich Liczebność W Oczyszczalni Ścieków „Hajdów” Przy Różnych Stężeniach Związków Azotu

industry wastewater in a rotating disc biological reactor. World J Microbiol and Biotechnol. 1997;13(5):511-517. DOI: 10.1023/A:1018505107030. [4] Martín-Cereceda M, Pérez-Uz B, Serrano S, Guinea A. Dynamics of protozoan and metazoan communities in a full scale wastewater treatment plant by rotating biological contactors. Microbiol Res. 2001;156(3):225-238. DOI: 10.1078/0944-5013-00105. [5] Madoni P. Estimates of ciliated protozoa biomass in activated sludge and biofilm. Bioresour Technol. 1994;48(3):245-249. DOI: 10

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Surfactants in Klodnica River (Katowice, Poland). Part I. Linear Alkylbenzene Sulphonates (LAS)

, et al. Biosens Bioelectron. 1998;13:1047-53. DOI: 10.1016/S0956-5663(97)00077-8. [13] Jensen J. Sci Total Environ. 1999;226:93-111. DOI: 10.1016/S0048-9697(98)00395-7. [14] Paria S. Adv Colloid Interface Sci. 2008;138:24-58. DOI: 10.1016/j.cis.2007.11.001. [15] Szymański A, Wyrwas B, Jesiołowska A, Kaźmierczak S, Przybysz T, Grodecka J, et al. Pol J Environ Stud. 2001;10:371-376. http://www.pjoes.com/. [16] Czaja S, Rahmonov O, Wach J, Gajos M. Pol J Environ Stud. 2014;23:629-637. http

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Determination of Surfactants in Environmental Samples. Part II. Anionic Compounds

. 2000;14:61-68. DOI: 10.1016/S0887-2333(99) 00083-1. [13] Singh RP, Gupta N, Singh S, Singh A, Suman R, Annie K. Bull Environ Contam Toxicol. 2002;69:265-270. DOI : 10.1007/s00128-002-0056-z. [14] Pavlic Z, Vidakovic-Cifrek Z, Puntaric D. Chemosphere. 2005;61:1061-1068. DOI: 10.1016/j.chemosphere.2005.03.051. [15] Nomura Y., Ikebukuro K., Yokoyama K., Takeuchi T., Arikawa Y., Ohno S. et al. Biosens Bioelectron. 1998;13:1047-1053. DOI: 10.1016/S0956-5663(97)00077-8. [16] Jensen J. Sci Total Environ. 1999

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Variability of Oxygen-Thermal Conditions in Selected Lakes in Poland

a hard water Lake, Limnologica. 2015;52:59-66. DOI: 10.1016/j.limno.2015.03.003. [11] Pełechata A, Pełechaty M, Pukacz A. Winter temperature and shifts in phytoplankton assemblages in a small Chara-lake. Aquat Bot. 2015;124:10-18. DOI: 10.1016/j.aquabot.2015.03.001. [12] Yue S, Pilon P, Phinney B, Cavadias G. The influence of autocorrelation on the ability to detect trend in hydrological series. Hydrol Process. 2002;16(9):1807-1829. DOI: 10.1002/hyp.1095. [13] Bronaugh D, Werner A. Zhang + Yue-Pilon trends package. R package version 0

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Contribution of Agricultural Field Production to Emission of Greenhouse Gases (Ghg)

References [1] IPCC (Intergovernmental Panel on Climate Change). http://www.ipcc.ch/index.htm. [2] GEIA (Global Emissions Initiative). http://www.geiacenter.org/. [3] EDGAR (Emissions Database For Global Atmospheric Research). http://ies.jrc.ec.europa.eu/dataportals. html/#dp25. [4] Rowlings D, Grace P, Kiese R, Scheer C. Quantifying N2O and CO2 emissions from a subtropical pasture. 19th World Congress of Soil Science, Soil Solutions for a Changing World. 1-6 August 2010. Brisbane

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