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Anna M. Baryła

muda R., P okładek R. 2018. Hydrological performance and runoff water quality of experimental green roofs. Water. Vol. 10 (1185) pp. 15. PN-EN 1097-3:2000 Badania mechanicznych i fizycznych właściwości kruszyw – Oznaczanie gęstości nasypowej i jamistości [Tests of mechanical and physical properties of aggregates – Determination of loose bulk density and voids]. PN-EN 1936:2010 Metody badań kamienia naturalnego – Oznaczanie gęstości i gęstości objętościowej oraz całkowitej i otwartej porowatości [Methods of testing natural stone – Determination of

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Hanene Bessaklia, Abderrahmane Nekkache Ghenim, Abdessalam Megnounif and Javier Martin-Vide

. Theoretical and Applied Climatology. Vol. 118. Iss. 3 p. 581–595. IPCC 2007. Climate change 2007: The physical science basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge, United Kingdom, New York, USA. Cambridge University Press pp. 18. J amaludin S., A bdul -A ziz J. 2012. Spatial analysis of daily rainfall intensity and concentration index in Peninsular Malaysia. Theoretical and Applied Climatology. Vol. 108. Iss. 1 p. 235–245. J olliffe I.T., H ope P.B. 1996

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Santosh M. Pingale, Deepak Khare, Mahesh K. Jat and Jan Adamowski

–2660. H amed K.H., R ao A.R. 1998. A modified Mann-Kendall trend test for auto correlated data. Journal of Hydrology. Vol. 204 p. 182–196. H elsel D.R., H irsch R.M. 2002. Statistical methods in water resources. Techniques of water resources investigations. Book 4. Hydrologic analysis and interpretation. Chapter A3. U.S. Geological Survey pp. 522. I nam A., A damowski J., H albe J., P rasher S. 2015. Using causal loop diagrams for the initialization of stakeholder engagement in soil salinity management in agricultural watersheds in developing

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Maja Radziemska, Jerzy Jeznach, Zbigniew Mazur, Joanna Fronczyk and Ayla Bilgin

description and contaminant source mass reduction. Journal of Contaminant Hydrology. Vol. 140–141 p. 56–66. F ronczyk J., P awluk K. 2014. Hydraulic performance of zero-valent iron and nano-sized zero-valent iron permeable reactive barriers – laboratory test. Annals of Warsaw University of Life Sciences-SGGW. Land Reclamation. Vol. 46. Iss. 1 p. 33–42. H wang Y., S alatas A., M ines P.D., J akobsen M.H., A ndersen H.R. 2016. Graduated characterization method using a multi-well microplate for reducing reactivity of nanoscale zero valent iron materials

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Dounia Mrad, Yassine Djebbar and Yahia Hammar

méthodes statistiques en géographie [Introduction to statistical methods in geography]. Paris. Masson et Cie pp. 192. H assini N., A bderrahmani B., D obbi A. 2011. Trends of precipitation and drought on the Algerian littoral: Impact on the water reserves. International Journal of Water Resources and Arid Environments. Vol. 1. Iss. 4 p. 271–275. IPCC 2013. Climate change 2013: The physical science basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [online]. Eds. T.F. Stocker, D. Qin, G

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Ahmed Tagar and Jan Adamowski

: physical and chemical criteria. American Journal of Alternative Agriculture. Vol. 7. Iss. 1–2 p. 25–32. B elayneh A., A damowski J., K halil B., O zga -Z ielinski B. 2014. Long-term SPI drought forecasting in the Awash River Basin in Ethiopia using wavelet-support vector regression models. Journal of Hydrology. Vol. 508 p. 418–429. B ouyoucos G.J., 1927. The hydrometer as a new method for the mechanical analysis of soils. Soil Science. Vol. 23. Iss. 5 p. 343–353. B raunack M.V., D exter A.R. 1989. Soil aggregation in the seedbed: A review. II

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Nugroho Suryoputro, Suhardjono, Widandi Soetopo, Ery S. Suhartanto and Lily M. Limantara

toward a physical interpretation of infiltration capacity. Soil Science Society of America Journal. Vol. 5 p. 339–417. K ostiakov A. 1932. O dinamike koefficienta prosachivania vody v pochvogrunty i neobkhodimosti dinamicheskogo podkhoda k ego izucheniu v meliorativnykh celyakh [On the dynamics of the coefficient of water-percolation in soils and on the necessity of studying it from a dynamic point of view for purposes of amelioration]. Pochvovedenie. No 3 p. 293–298. K rause P., B oyle D., B ase F. 2005. Comparison of different efficiency criteria for

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Michał Marzec

treatment plants. Investors guide]. Ed. 2. Warszawa. Seidel-Przywecki Sp. z o.o. ISBN 978-83-60956-39-7 pp. 174. H ermanowicz W., D ojlido W., D ożańska W., K oziorowski B., Z erbe J. 1999. Fizyko-chemiczne badanie wody i ścieków [Physical-chemical testing of water and wastewater]. Warszawa. Arkady. ISBN 978-83-213-4067-8 pp. 558. I gnatowicz K., P uchlik M. 2015. Ekologiczne rozwiązania oczyszczania małych ilości ścieków bytowych [Ecological solutions for treatment of domestic wastewater]. Rynek Instalacyjny. Nr 5 p. 80–85. J awecki B., P awęska

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Noureddine Merniz, Ali Tahar and Amine M. Benmehaia

eal J., S ilva V.C., M edeiros I.C. 2015. Rainfall and river flow trends using Mann–Kendall and Sen’s slope estimator statistical tests in the Cobres River basin. Natural Hazards. Vol. 77. Iss. 2 p. 1205–1221. D jellouli Y. 1990. Flores et climat sen Algérie septentrionale. Déterminismes climatiques de la répartition des plantes [Flores and climates in northern Algeria. Climatic determinants of plant distribution]. PhD Thesis. Alger, Algerie. USTHB pp. 210. D joufack V. 2011. Étude multi-échelles des précipitations et du couvert végétal au Cameroun

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Pratibha Warwade, Shalini Tiwari, Sunil Ranjan, Surendra K. Chandniha and Jan Adamowski

. Variability of rainfall and its current trend in Amhara region, Ethiopia. African Journal of Agricultural Research. Vol. 7(10) p. 1475–1486. B uishand T.A. 1982. Some methods for testing the homogeneity of rainfall records. Journal of Hydrology. Vol. 58. Iss. 1–2 p. 11–27. C handniha S.K., M eshram S.G., A damowski J.F., M eshram C. 2016. Trend analysis of precipitation in Jharkhand State, India. Theoretical and Applied Climatology. Vol. 130. Iss. 1–2 p. 1–14. C hen F.W., L iu C.W. 2012. Estimation of the spatial rainfall distribution using inverse