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P. Jastrzębski, Z. Adamiak, A. Pomianowski, W. Krystkiewicz, P. Holak, S. Sawicki, P. Przyborowska, Y. Zhalniarovich and G. Gudzbeler

References Levi M, De Jonge E, Van der Poll T (2006) Plasma and plasma components in the management of disseminated intravascular coagulation. Best Pract Res Clin Haematol 19: 127-142. Li J, Cao W, Lv XX, Jiang L, Li YJ, Li WZ, Chen SZ, Li XY (2013) Zeolite-based hemostat QuikClot releases calcium into blood and promotes blood coagulation in vitro. Acta Pharmacol Sin 34: 367-372. Marcucci R, Gori AM, Giannotti F, Baldi M, Verdiani V, Del Pace S, Nozzoli C, Abbate R (2006) Markers of hypercoagulability and

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Izabela Polowczyk, Anna Bastrzyk, Tomasz Koźlecki, Piotr Rudnicki, Wojciech Sawiński, Zygmunt Sadowski and Adam Sokołowski

Recycling , 43 ( 2005 )313 - 336. Suchecki T. T.: Zeolites from fly ashes, [in Polish] Ossolineum, 2005 . Sarbak Z., Stańczyk A., Kramer-Wachowiak M.: Characterization of surface properties of various fly ashes, Powder Technology , 145 ( 2004 ) 82 - 87. Drąg E. B: Zeolitization of fly ash (in Polish), Proccedings of XII Zeolites Forum, Ciążeń, 19 - 23 July 2005 , 37 - 42. Molina A., Poole C.: A comparative study using two methods to produce zeolites from fly ash

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Marek Tańczyk, Krzysztof Warmuziński, Aleksandra Janusz-Cygan and Manfred Jaschik

-2509(97)00440-5. Giannakopoulos I.G., Nikolakis V., 2007. Separation of CO 2 /H 2 mixtures using FAU membranes. Effect of operating temperature, feed composition and humidity on separation performance. Fourth International Zeolite Membrane Meeting (IZMM-2007). Zaragoza, Spain, 22-25 July 2007. Sircar S., Waldron W.E., Rao M.B., Anand M., 1999. Hydrogen production by hybrid SMR-PSA-SSF membrane system. Sep. Pur. Tech. , 17, 11-20. DOI: 10.1016/S1383-5866(99)00021-0. Warmuziński K., Tańczyk M., Jaschik M., 2006. Hybrid hydrogen — carbon

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Agnieszka Marcewicz-Kuba and Danuta Olszewska

and Zinc Contents in DESONOX Catalysts on the Course of the DESOX Reaction, Ads. Sci. & Technol. , 16 , 803, 1998. Marcewicz-Kuba A., Nazimek D.: Influence of Added Zeolite and Vanadium on the Physico-chemical Properties of DESONOX Catalysts, Pol. J. of Envir. Stud. , 6 , 29, 2000. Marcewicz-Kuba A., Nazimek D.: Influence of added molybdenum on the activity of DESONOX catalysts, Ads. Sci. & Technol. 6 , 549, 2002. Grzybek T., Klinik J., Olszewska D., Papp H., Smarzowski J.: The

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Ante Vučemilović, Mirko Hadžija and Ivan Jukić

, Hadžija M. The zeolites as skin decontaminants against nerve agent sarine in vivo. First World Congress on Chemical and Biological Terrorism. CBMTS - Industry II. Dubrovnik 2001. Abstracts p. 257--9. Hadžija M, Križanac S. Studija akutne, subkronične i kronične toksičnosti tribomehanički aktiviranog zeolita [Acute, subchronic and chronic toxicity study of tribomechanically activated micronized mineral zeolite, in Croatian]. Research study. Zagreb: Ruđer Bošković Institute; 1999. Vučemilović A. Učinci zeolita na nokse

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Mirosław Grzesik and Teresa Witczak

References Lipin´ska-Łuczyn E., Perkowski J.: Analiza rynku monomerów metakrylowych, Przemysł Chemiczny, 1998 , 77(10), 363. Izumi Y., Urabe K., Onaka M.: Zeolite, Clay and Heteropoly Acid in Organic Reactions Kodansha/VCH, Tokyo, 1992. Izumi Y.: Hydration/Hydrolysis by Solid Acids, Catalysis Today, 1997 , 33, 371. Kozhevnikov I. V.: Heteropoly Acids and Related Compounds as Catalysts for Fine Chemical Synthesis, Catalysis Reviews - Science Engineering

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Agnieszka Wróblewska, Anna Fajdek and Eugeniusz Milchert

. 137(2), 497 - 503. Wróblewska, A. & Milchert, E. (2002). Synthesis of titanium-silicalite catalysts. Pol. J. App.Chem. 46(3 - 4), 151 - 175. Khouw, C., Dartt, C., Labinger, J. & Davis, M. (1994). Studies on the catalytic oxidation of alkanes and alkenes by titanium silicalites. J. Catal. 149, 195 - 205. Notari, B. (1987). Innovation in Zeolite Material Scienece. Stud. Surf. Sci. Catal. 37, 413. Hauptman, S. (1985). Organische Chemie. Leibziger: VEB

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Eleonora Sočo and Jan Kalembkiewicz

. Desalination , 223, 269-273. DOI: 10.1016/j.desal.2007.02.078. Bowman R.S., 2003. Applications of surfactant-modified zeolites to environmental remediation. Micropor. Mesopor. Mat ., 61, 43-56. DOI: 10.1016/S1387-1811(03)00354-8. Brunauer S., Emmett P.H., Teller E., 1938. Adsorption of gases in multimolecular layers. J. Am. Chem. Soc . 60, 309-319. DOI: 10.1021/ja01269a023. Canpolat F., Yilmaz K., Kose M.M., Sumer M., Yurdusev M.A., 2004. Use of zeolite, coal bottom ash and fly ash as replacement materials in cement production. Cement Concrete Res ., 34

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Ashok Borhade and Arun Dholi

.1063/1.1660796 [13] Chang I.F., J. Electrochem. Soc., 121 (1974), 815. http://dx.doi.org/10.1149/1.2401925 [14] Godber J., Ozin G.A., J. Phys. Chem., 92 (1988), 4980. http://dx.doi.org/10.1021/j100328a032 [15] Newsam J.M., IN: A.K. Cheetham, P. Day (Eds.), Solid State Chemistry: Compounds, Chapter 7, Oxford University Press, Oxford, 1992. [16] Meier W.M., Olson D.H., Baerlocher Ch., Atlas of Zeolite Structure Types, Fourth ed., Elsevier, London, 1996. [17] Neurgaonkar R

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Lenka Kuboňová, Lucie Obalová, Oldřich Vlach, Ivana Troppová and Jaroslav Kalousek

voidage in packed beds. Heat Recovery Syst. CHP , 11 (2/3), 127-130. Gómez-García M.A., Pitchon V., Kiennemann A., 2005. Pollution by nitrogen oxides: an approach to NOx abatement by using sorbing catalytic materials. Environ. Int. , 31, 445-467. DOI: 10.1016/j.envint.2004.09.006. Gupta A., Gaur V., Verma N., 2002. Breakthrough analysis for adsorption of sutur-dioxide over zeolites. Chem. Eng. Process. , 43, 9-22. DOI: 10.1016/S0255-2701(02)00213-1. Herčík M., 2004. Environmental