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Changes in the composition of wastewater as a result of dehydrochlorination of 1,3-dichloropropan-2-ol under different process conditions

:// 12. Kijeński, J. & Krawczyk, Z. (2007). Perspektywy rynku gliceryny. Przem.Chem. 86, 273. 13. Solvay - offi cial website. (2013). 14. Bioplastic innovation, website. (2013). 15. Krzyżanowska, A. & Milchert, E. (2013). Continuous dehydrochlorination of 1,3-dichloropropan-2-ol to epichlorohydrin: process

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Epoxidation of crotyl alcohol in the presence of titanium silicalite Ti-MWW catalyst — the new and friendly method of 2,3-epoxybutane-1-ol synthesis

References Podraża, A., Łukasiewicz & M., Pielichowski, J. (2004). The application of urine-hydroperoxide complex in oxidation reactions of organic compounds. Przem. Chem. 83, 429-433 (in Polish). Schumacher, K. & Ravikovitch, P. (2000). Characterization of MCM-48 material. Am. Chem. Soc. 16, 4648-4654. DOI: 10.1021/la991595i. Thomas, J. M. & Raja, R. (2006). Innovations in Oxidation Catalysis Leading to a Sustainable Society. Catal. Today 117, 22-31. DOI: 10.1016/j

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The optimization of low-magnesium zinc concentrate production process

Silesia-Cracow deposit of Poland. 12 th Conference on Environment and Mineral Processing: Proceedings (Part II), 5 - 7 June 2008 (pp. 49 - 54). Ostrava, Czech Republic: VSB-TU Ostrava. Singh, V. (1996). Technological innovation in the zinc electrolyte purification process of a hydrometallurgical zinc plant through reduction in zinc dust consumption. Hydrometallurgy 40, 247 - 262. Booster, J.L., van Sandwijk, A. & Reuter M.A. (2000). Magnesium removal in the electrolytic zinc industry. Minerals Engineering 13

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Synthesis and characteristics of titanium silicalite TS-1, Ti-Beta and Ti-MWW catalysts

. 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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A Study on Damage to PLA Knitted Fabrics During Scouring and Bleaching 5. Dugan, J.S. (2000). Novel Properties of PLA Fibre, Research Fiber Innovation Technology, Inc. Retrieved February 05, 2014, from 6. Yang, Y. & Huda, S. (2003). Comparison of disperse dye exhaustion, color yield, and colorfastness between polylactides and poly (ethylene terephthalate), J. Appl. Polym. Sci. 90 (12), 3285-3290. DOI: 10.1002/app.13062. 7. Hawkyard, C. (2004). Synthetic Fibre Dyeing. Bradford, UK: SDC. 8. Madaras, G.W., Parish, G.J. & Shore, J. (1993). Batchwise

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Optimization Of Protocol For Biodiesel Production Of Linseed (Linum Usitatissimum L.) Oil

.K. Gupta (Ed.), Technological Innovations in Major World Oil Crops, Vol 1: Breeding, (pp. 131-145). Springer Science+Business Media, LLC, 233 Spring Street, New York, NY 10013, USA. 24. Ullah, F. & Bano, A. (2011). Effect of plant growth regulators on oil yield and biodiesel production of safflower ( Carthamus tinctorius L.). Braz. J. Plant Physiol . 23, 27-31. DOI: 10.1590/S1677-04202011000100005.

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Fabrication of Electrochemical Nanoelectrode for Sensor Application Using Focused Ion Beam Technology

Innovation. National Institute of Standards and Technology. Retrieved April 25, 2012, from 4. Wang, J. (2006). Electrochemical biosensors: Towards point-of-care cancer diagnostics. Biosensors and Bioelectronics 21(10), 1887-1892. DOI:10.1016/j.bios.2005.10.027. 5. Sadik, O.A., Mwilu, S.K. & Aluoch, A. (2010). Smart electrochemical biosensors: From advanced materials to ultrasensitive devices. Electrochimica Acta 55, 4287-4295. DOI:10.1016/j.electacta.2009

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Computational fluid dynamics analysis of an innovative start-up method of high temperature fuel cells using dynamic 3d model

. Guan, W.B., Jin, L., Ma, X. & Wang, W.G. (2012). Investigation of Impactors on Cell Degradation Inside Planar SOFC Stacks. Fuel Cells. 12(6), 1085-1094. DOI: 10.1002/ fuce.201200063. 14. Ferraro, M. (2015). Telecom technology. Int. Innovation. 173, 64-66. 15. Jewulski, J. & Kupecki, J. (2015). Polish Patent PL404264- -A1. Warsaw, Poland. 16. Wakui, T., Yokoyama, R. & Shimizu, K. (2010). Suitable operational strategy for power interchange operation using multiple residential SOFC (solid oxide fuel cell) cogeneration

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Numerical investigation of the turbulent flow generated with a radial Turbine using a converging hollow blade

/10.1016/ 14. Khapre, A. & Munshi, B. (2014) .Numerical Comparison of Rushton Turbine and CD-6 Impeller in Non-Newtonian Fluid Stirred Tank. International Scholarly and Scientific Research & Innovation. 811, 1235-1242. Available at: 15. Driss, Z., Karray, S., Chtourou, W., Kchaou, H. & Abid, M.S (2012).A study of mixing structure in stirred tanks equipped with multiple four-blade Rushton impellers., The Archive of Mechanical Engineering. 591, 53-72. DOI:

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Permeability of P and K-nutrient through polystyrene membrane from aqueous solutions of urea + KH2PO4

. 25. Wang, K., Lu, G., Zhou, G., Yang, H. & Su, D.: Molecular dynamics study on microstructure of potassium dihydrogen phosphates solution. Chinese J. Chem. Physics 23(2), 160-164 (2010). DOI: 10.1088/1674-0068/23/02/160-164 . 26. Sun, C., Xu, D. & Xue, D.: In situ FTIR-ATR observation of structural dynamics of H2PO4â’ in precrystallisation solution. Mater. Res. Innovations 18(5), 370-375 (2014). DOI: 10.1179/1433075X13Y.0000000155. 27. Palecz, B., Grala, A. & Kudzin, Z.: Calorimetric studies of the interactions between several

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