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Maroš Sirotiak, Marek Lipovský and Alica Bartošová

The Total Environment, 366 (2–3), pp. 409 – 426. 4. BAILEY, S. E., OLIN, T. J., BRICKA, R. M. and ADRIAN, D.D. 1999. A review of potentially low-cost sorbents for heavy metals. Water Rescue, 33, pp. 2469–2479. 5. WANG, S. and PENG, Y. 2010. Natural zeolites as effective adsorbents in water and wastewater treatment. Chemical Engineering Journal , 156 (1) p. 11 – 24. 6. BARATA-RODRIGUESA, P. M, MAYS, T.J. and MOGGRIDGE, G. D. 2003. Structured carbon adsorbents from clay, zeolite and mesoporous aluminosilicate templates. Carbon , 41 (12), pp

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Z. Owsiak and P. Czapik

.A.T.M. Broekmans, “Structural properties of quartz and their potential role for ASR”, Materials Characterization 53, 129-140 (2004). [5] J.M. Ponce and O.R. Batic, “Different manifestation of the alkali-silica reaction in concrete according to the kinetics of the reactive aggregate”, Cement & Concrete Research 36, 1148-1156 (2006). [6] S. Diamond, “Cement pastes: rheology and evolution of properties and structures, Proc. 7th ICCC Paris 4, 113-123 (1980). [7] X. Feng and N. Feng, “Effect of natural zeolite on alkali-silica reaction

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Ana Marija Grancarić, Anita Tarbuk and Lea Botteri

. (2004). Special Finishing Treatments and UPF improvement; in Book of Proceedings, 2nd International Textile, Clothing & Design conference - Magic World of Textiles, (Ed. Z. Dragčević), Dubrovnik, 3-6 October 2004, 340-346. [21] Grancarić, A.M., Penava, Ž., Tarbuk, A. (2005) UV Protection of Cotton - the Influence of Weawing Structure, Hemijska industrija (Serbian Society of Chemical Industry Journal) 59(9-10), 230-234. [22] Grancarić, A. M.; Tarbuk, A.; Marković, L. (2007). UV Protection with Zeolite Treated Cotton Knitted Fabric - The

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Agnieszka Brochocka, Aleksandra Zagawa, Rafał Panek, Jarosław Madej and Wojciech Franus

, Poland, Urząd Patentowy RP. [18] Brochocka, A., Orlikowski, W., Majchrzycka, K., Patent PAT.226188, date of decision 2016.12.20, Fiber forming head for the production of modified electret nonwovens, Poland, Urząd Patentowy RP. [19] Chroma, J., Jaroniec, M., Ustinov, E.A. (2004). Adsorptive characterization of activated carbons with very well developed porosity. Ochrona Srodowiska, 4(26), 3-9. [20] Franus, W. (2017). The use of synthetic zeolites in environmental engineering. Monograph of the Committee of Environmental

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Anita Tarbuk, Ana Marija Grancarić and Mirna Šitum

(Serbian Soc. Chem. Ind. J.) 59(9-10), 230-234. [22] Grancarić, A. M., Tarbuk, A. (2009). EDA Modified PET Fabric Treated with Activated Natural Zeolite Nanoparticles, Materials Technology: Advan. Performance Materials, 24 (1); 58-63. [23] Cox Crews P., Zhou Y. (2004). The effect of wetness on the UVR transmission of woven fabrics. AATCC Review, 4(8), 41-43. [24] Riva, A., Algaba, I., Prieto, R. (2007). Optical Brightening Agents Based on Stilbene and Distyryl Biphenyl for the Improvement of Ultraviolet Protection of Cotton Fabrics, Tekstil 56 (1), 1

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D. Barloková and J. Ilavský

Manganese by Oxide-Coated Filter Media: Sorption Rate and Removal Mechanism Issues . Jour. AWWA, Vol. 8, 1991, pp. 64-69. [6] Knocke, W.R., Hamon, J.R., Thompson, C.P. : Soluble Manganese Removal on Oxide-Coated Filter Media. Jour. AWWA, Vol. 12, 1988, pp. 65-70. [7] Merkle, P.B., Knocke, W.R, Gallagher, D. : Characterizing Filter Media Mineral Coatings . Jour. AWWA, Vol. 12, 1996, pp. 62-73. [8] Barloková, D., Ilavský, J. : Prírodné zeolity v úprave vody. Natural Zeolites in Water Treatment . Vodní hospodářství, Vol

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T. Chellappa, M. Jose Fonseca Costa, W.A. Nascimento, L. Ferreira De Lima, I. Almeida Bassan, M. Tavares, V.J. Fernandes, A. Menezes, L. Guilherme Meira, J. Telesforo Nóbrega De Medeiros and R. Maribondo Do Nascimento

. Rodriguez, and M.M. Ramirezagudelo, “The successive crystallization and characterization of SAPO-31 and SAPO-11 from the same synthesis gel - influence on the selectivity for 1- butene isomerization”, Zeolites 19, 133-141 (1997). [4] A.K. Sinha and S. Seelan, “Characterization of SAPO-11 and SAPO-31 synthesized from aqueous and non-aqueous media”, Appl. Catal. A. 270, 245-252 (2004). [5] B.M. Lok, C.A. Messina, R.L. Patton, R.T. Gajek, T.R. Cannan, and E.M. Flanigen, “Crystalline silicoaluminophosphates”, US Patent, 4440871, (1984

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Marek Lipovský, Maroš Sirotiak and Maroš Soldán

References: 1. RAO, G., LU, C., SU, F. 2007. Sorption of divalent metal ions from aqueous solution by carbon nanotubes: A review. Sep. Purif. Technol. , 58 (1), pp. 224–231. 2. DOULA, M. K.: Synthesis of a clinoptilolite-Fe system with high Cu sorption capacity. Chemosphere , 67 (4), pp. 731–40. 3. SVILOVIĆ, S., RUSIĆ, D., STIPISIĆ, R. 2009. Modeling batch kinetics of copper ions sorption using synthetic zeolite NaX. J. Hazard. Mater , 170 (2–3), pp. 941–7. 4. SCHWERTMANN, U., CORNELL, R. M. 1991. Iron Oxides in the Laboratory

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Bernhard Pucher and Guenter Langergraber

septage treatment in French rural area. Water Science and Technology, 51, 9, 145–155. Pálfy, T.G., Molle, P., Langergraber, G., Troesch, S., Gourdon, R., Meyer, D., 2016. Simulation of constructed wetlands treating combined sewer overflow using HYDRUS/CW2D. Ecological Engineering, 87, 340–347. Pucher, B., 2015. Simulation of vertical flow filters for the treatment of domestic wastewater using sand and zeolite as filter materials. Master Thesis. University of Natural Resources and Applied Life Sciences, Vienna (BOKU University), Austria. Pucher, B

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V. N. Narwade and R. S. Khairnar

, S. Di Gennaro, A. Lettino, A. Palma, P. Ragone, and S. Fiore, “Removal of Mn from aqueous solution using fly ash and its hydrothermal synthetic zeolite”, J. Environ. Manage. 137, 16‒22 (2014). [5] S. Rengaraj and S.H. Moon, “Kinetics of adsorption of Co (II) removal from water and wastewater by ion exchange resins”, Water. Res. 36 (7), 1783-1793 (2002). [6] D. Baralkiewicz and J. Siepak, “Chromium, nickel and cobalt in environmental samples and existing legal norms”, Pol. J. Environ. Stud. 8 (8), 201‒208 (1999). [7