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Denisa Valachova, Nada Zdrazilova, Vladan Panovec and Iveta Skotnicova

. – VORWERG, W. – BUDTOVA, T.: Starch Aerogels: A Member of the Family of Thermal Superinsulating Materials. Biomacromolecules, Vol. 18, Iss. 12, 2017, pp. 4232 - 4239, DOI: 10.1021/acs.biomac.7b01272. [8] KOEBEL, M. – RIGACCI, A. – ACHARD, P.: Aerogel-based thermal superinsulation: An overview. Journal of Sol-Gel Science and Technology, Vol. 63, Iss. 3, 2012, pp. 315 - 339, DOI: 10.1007/s10971-012-2792-9. [9] SWIMM, K., - REICHENAUER, G. – VIDI, S. – EBERT, H.-P.: Impact of thermal coupling effects of the effective thermal conductivity of aerogels. Journal of

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Jana Vlčková, Nikola Kaspříková and Markéta Vlčková

References ACS, Z., AUDRETSCH, D. B. (1989): Patents as a measure of innovative activity. Kyklos, 42(2): 171–180. AGHION, P., HOWITT, P. (1990): A model of growth through creative destruction (No. 3223). Cambridge, National Bureau of Economic Research. ARCHIBUGI, D., PIANTA, M. (1992): Specialization and size of technological activities in industrial countries: The analysis of patent data. Research Policy, 21(1): 79–93. ASHEIM, B. T., GERTLER, M. S. (2005): The geography of innovation: regional innovation systems. In: Fagerberg, J., Mowery

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Agnieszka Turek and Maria Włodarczyk-Makuła

., Jain A., Hoynak W.: The determination of anaerobic biodegradation products of aromatic hydrocarbons in groundwater using LC/MS/MS, ACS Symposium Series, 850, 325-337 (2003). 5. Wąsowski J., Piotrowska A.: The distribution of organic pollutants in water depth of oxidation processes, Environmental Protection, 2, 85 27-32 (2002). 6. Grzechulska-Damszel J., Orecki A., Mozik S., Tomaszewska M., Morawski A. W.: Opportunities and prospects for water and wastewater treatment in the system photocatalysis/membrane processes, Chemical Industry