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Study of triacetate cinematographic films and magnetic audio track by infrared spectroscopy

. ARSC Journal 2008 , 39 (2), 240-274. 5. Mizumura, Y.; Hiura, N.; Miyake, H., Magnetic recording medium. Google Patents: 1979. 6. Edge, M.; Allen, N.; Chen, W.; Horie, C., Degradation of magnetic tape: binder oxidation studies. European Polymer Journal 1993 , 29 (8), 1031-1035. 7. Newnham, M. In The Sticking Point: Dealing With Blocked Motion Picture Films , Sustainable Audiovisual Collections Through Collaboration: Proceedings of the 2016 Joint Technical Symposium, Indiana University Press: 2017; p 205. 8. Schilling, M.; Bouchard, M

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Chromium Coating as a Surface Protection of Zirconium Alloys

. Kratochvílová, I.; Škoda, R.; Škarohlíd, J.; Ashcheulov, P.; Jäger, A.; Racek, J.; Taylor, A.; Shao, L. Nanosized polycrystalline diamond cladding for surface protection of zirconium nuclear fuel tubes. Journal of Materials Processing Technology 2014, 214, 2600-2605. 7. Krausová, A.; et al. Polykrystalická diamantová vrstva: vhodná ochrana povrchu zirkoniových slitin?. Koroze a ochrana materiálu 2015, 59 (2), 37-43. 8. Daub, K.; Nieuwenhove, R.; Nordin, H. Investigation of the impact of coatings on corrosion and hydrogen uptake of Zircaloy-4

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Mechanisms of degradation of organic coatings

References 1. G. P. Bierwagen: Reflections on corrosion control by organic coatings, Progress in Organic Coatings 1996, 28, 43-48. 2. N. L. Thomas: The barrier properties of paint coatings, Progress in Organic Coatings 1991, 19, 101-121. 3. N. S. Sangaj, V. C. Malshe: Permeability of polymers in protective organic coatings, Progress in Organic Coatings 2004, 50, 28-39. 4. J. E. O. Mayne: The mechanism of inhibition of the corrosion of iron and steel by means of paint, Official Digest 1952, 24

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NOx photocatalytic degradation on gypsum plates modified by TiO2-N,C photocatalysts

LITERATURE CITED 1. Fujishima, A.X., Zhang & Tryk, D.A. (2007). Heterogeneous photocatalysis: from water photolysis to applications in environmental cleanup. Int. J. Hydrogen Energy 32(14), 2664–2672. DOI: 10.1016/j.ijhydene.2006.09.009. 2. Lackhoff, M., Prieto, X., Nestle, N., Dehn, F. & Niessner, R. (2003). Photocatalytic activity of semiconductor-modified cement-influence of semiconductor type and cement angeing. Appl. Catal. B-Environ. 43(3), 205–216. DOI: 10.1016/S0926-3373(02)00303-X. 3. Meng, T., Yu, Y., Qian, X., Zhan, S. & Qian, K

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Simultaneous synthesis-immobilization of nano ZnO on perlite for photocatalytic degradation of an azo dye in semi batch packed bed photoreactor

.05.028. 43. Dijkstra, M.F.J., Panneman, H.J., Winkelman, J.G.M., Kelly, J.J. & Beenackers, A.A.C.M. (2002). Modeling the photocatalytic degradation of formic acid in a reactor with immobilized catalyst. Chem. Eng. Sci., 57(22-23), 4895-4907. DOI: 10.1016/S0009-2509(02)00290-7. 44. Behnajady, M.A., Modirshahla, N., Shokri, M. & Vahid, B. (2008). Effect of operational parameters on degradation of Malachite Green by ultrasonic irradiation. Ultrasonics Sonochemistry, 15(6), 10091014. DOI: 10.1016/j.ultsonch.2008.03.004.

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Mechanical and thermal properties of tungsten carbide – graphite nanoparticles nanocomposites

. Carbon 50(10), 36073615. DOI:10.1016/j.carbon.2012.03.031. 7. Rutkowski, P., Klimczyk, P., Jaworska, L., Stobierski, L. & Dubiel, A. (2015) Thermal properties of pressure sintered alumina–graphene composites. J. Therm. Anal. Calorim. 1–10 DOI: 10.1007/s10973-015-4694-x. 8. Rutkowski, P., Stobierski, L. & Górny, G. (2014). Thermal stability and conductivity of hot-pressed Si 3 N 4 –graphene composites. J. Therm. Anal. Calorim. 116(1), 321–328. DOI: 10.1007/s10973-013-3565-6. 9. Ramírez, C., Vega-Diaz, S.M., Morelos-Gomez, A., Figueiredo, F.M., Terrones

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Epoxidation of 1,5,9-cyclododecatriene with H2O2 in the presence of tungstophosphoric acid (H3PW12O40)

References Lewandowski, G. & Rytwińska, E. (2004). Epoxidation of 1,5,9-cyclododecatriene to 1,2-epoxy-5,9-cyclododecadiene. Przem. Chem., 83 (11), 559-563 (in Polish). Sasson, Y. & Neumann, R. (1997). Handbook of Phase Transfer Catalysis. Blackie Academic & Professional. Witczak, T., Grzesik, M., Witczak, M. & Skrzypek, J. (2007). Heteropolyacids as modern catalysts for esterification reactions , Przem. Chem., 86 (1), 43-47. (in Polish). Kabisch, G

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Characteristic of physicochemical properties of Pd/MgO catalysts used in the hydrodechlorination process with CCI4

References Dal Santo V., Dossi C., Recchia S., Colavita P. E., Vlaic G., Psaro R.: Carbon tetrachloride hydrodechlorination with organometallics-based platinum and palladium catalysts on MgO, J. Mol. Catal. A , 2002 , 182 - 183, 157. Dempsey C. R., Oppelt E. T.: Incineration of Hazardous Waste: A critical Review Update, Air and Waste , 1993 , Vol. 43, 25. Kalnes T. N., James R. B.: Hydrogenation and Recycle of Organic Waste Streams, Environ. Prog. , 1988 , Vol. 7, No. 3, 185

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Corrosion rate of cathodically "protected" steel in carbonate environment

. Materials Science   2002 , 38 (3), 394-398. Freiman, L.; Kuznetsova, E. Model investigation of the peculiarities of the corrosion and cathodic protection of steel in the insulation defects on underground steel pipelines. Protection of metals   2001 , 37 (5), 484-490. Glass, G.; Chadwick, J. An investigation into the mecha-nisms of protection afforded by a cathodic current and the implications for advances in the field of cathodic protection. Corros. Sci.   1994 , 36 (12), 2193

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Development of a Simulation Model for Controlling and Improving the Productivity of Batch Reactors

general simulation model and a heating/cooling strategy to improve controllability of batch reactors. Trans IchemE . 79, Part A, 641-646. DOI: 10.1205/026387601316971217. 4. Josep, A., Felliu, Iban Grau, Miquel A. Alos, Jose, J. & Macias-Hernandez (2003). Match Your Process Constraints Using Dynamic Simulation . December, (pp. 42-43). Information Technology C.E.P. 5. Uhlemann, J., Cabassud, M. & Le Lann M.V. (1994). Semi-Batch reactor optimization and control for the epoxidation of furfural. Chem. Eng. Sci. 49 (18), 3169-3191. DOI: 10

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