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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

://www.raportroczny.ciech.com/download/CIECH_raport_roczny_2010.pdf 12. Kijeński, J. & Krawczyk, Z. (2007). Perspektywy rynku gliceryny. Przem.Chem. 86, 273. 13. Solvay - offi cial website. (2013). http://www.solvaychemicals.com/EN/products/chlorinated/Allylicproducts/Epichlorohydrin.aspx 14. Bioplastic innovation, website. (2013). http://bioplastic--innovation.com/2012/04/05/vinythai-starts-glycerin-to-ech--plant/#more-5889 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

.natureworksllc.com/About-NatureWorks-LLC 5. Dugan, J.S. (2000). Novel Properties of PLA Fibre, Research Fiber Innovation Technology, Inc. Retrieved February 05, 2014, from www.fitfibers.com/files/PLA20%Fibers.doc 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 http://www.nist.gov/pml/div683/upload/bioelectronics_report.pdf 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/j.energy.2015.10.084. 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: scholar.waset.org/1999.2/5555526. 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: https://doi.org/10.2478/v

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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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