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Hossein Taherifar, Sima Rezvantalab, Fatemeh Bahadori and Omid Sadrzadeh Khoei

. 116–123. H assanpour A slania S., G hafourianb H., A rdakanic M.R., T orabid S. 2013. Feasibility study of reducing the total dissolved solids (TDS) from contaminated water in radish plant ( RaphanusSativus ) using nano activated carbon and zeolite. Journal of Nano Structures. Vol. 3. Iss. 2 JNS 3 p. 219–225. J ing G., W ang X., Z hao H. 2009. Study on TDS removal from polymer-flooding wastewater in crude oil: extraction by electrodialysis. Desalination. Vol. 244 p. 90–96. M ohammadesmaeili F., K abiri B.M., A bbaszadegan M., F ox P

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Viktor Fylypchuk, Stanislav Induchny, Pete Pearce, Leonid Fylypchuk and Serhii Martynov

REFERENCES A rimi M.M. 2017. Modified natural zeolite as heterogeneous Fenton catalyst in treatment of recalcitrants in industrial effluent. Progress in Natural Science: Materials International. Vol. 27 p. 275–282. DOI 10.1016/j.pnsc.2017.02.001. A ttoui B., T oumi N., M essaoudi S., B enrabah S. 2016. Degradation of water quality: the case of plain west of Annaba (northeast of Algeria). Journal of Water and Land Development. Vol. 31 p. 3–10. DOI 10.1515/jwld-2016-0031. B artnik A., M oniewski P. 2016. Changes in water quality of a small

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Michał Marzec, Agata Pieńko, Magdalena Gizińska-Górna, Aneta Pytka, Krzysztof Jóźwiakowski, Bożena Sosnowska, Agnieszka Kamińska and Agnieszka Listosz

References ANIELAK A. M., ARENDACZ M. 2007. Efektywność usuwania żelaza i manganu na zeolitach [Iron and manganese removal effects using zeolites]. Ochrona Środowiska. Nr 9 p. 9-18. BENEFIELD L.D., MORGAN J.M. 1990. Chemical precipitation. In: Water quality and treatment. Handbook of community water supplies. 4th ed. New York, McGraw-Hill Inc. p. 641-708. BROGOWSKI Z., RENMAN G. 2004. Characterization of opoka as a basis for its use in wastewater treatment. Polish Journal of Environmental Studies. Vol. 13. Iss

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

., D rzymała S. 2010. Geneza, analiza i klasyfikacja gleb [Genesis, analysis and soil classification]. Poznań. Wydaw. UP. ISBN 978-83-71605-86-4 pp. 420. P uls W., P aul C.J., P owell R.M. 1999. The application of in situ permeable reactive (zero-valent iron) barrier technology for the remediation of chromate – contaminated ground water: a field test. Applied Geochemistry. Vol. 14 p. 989–1000. R adziemska M., M azur Z., J eznach J. 2013. Influence of applying halloysite and zeolite to soil contaminated with nickel on the content of selected

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Jan Brouček and Bohuslav Čermák

.H. & Wathes C.M. (2000). Ammonia and poultry welfare: a review. World's Poultry Science Journal , 56, 235-245. DOI: 10.1079/WPS20000018. Kristensen, H.H., Burgess, L.R., Demmers, T.G.M. & Wathes C.M. (2000). The preferences of laying hens for different concentrations of atmospheric ammonia. Appl. Anim. Behav. Sci. , 68, 307-318. DOI: 10.1016/S0168-1591(00)00110-6. Li, H., Xin, H., Liang, Y. & Burns R.T. (2008). Reduction of ammonia emissions from stored laying hen manure through topical application of zeolite, Al+ Clear, Ferix-3, or poultry litter treatment. Journal

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G. Mecheri, S. Hafsi and N. Gherraf

production by hydrothermal method, High pressure research, 2001 , 20 , 307-310. [10]. Mekatel, E.; Amokrane, S.; Aid, A.; Nibou, D.; Trari, M., Adsorption of methyl orange on nanoparticles of a synthetic zeolite NaA/CuO, Comptes Rendus Chimie , 2015 , 18 (3), 336-344. [11]. Peng, C.; Liu Z., Preparation of nanosized SSZ-13 zeolite with enhanced hydrothermal stability by a two-stage synthetic method, Microporous and Mesoporous Materials , 2018, 255 , 192-199. [12]. Ling, R.; Chen, W.; Hou, J., Preparation of modified MFI (ZSM-5 and silicalite-1