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Business Plan Concept for the Production of Rubber-Based Noise Reduction Walls in Slovakia for the Potential of Worn Tires Material Recovery

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[1] D. Czajczyńska, K.M. Czajka, R. Krzyżyńska and H. Jouhara. “Experimental analysis of waste tyres as a sustainable source of energy.” in E3S Web of Conferences, Polanica-Zdrój, Poland, pp. 1-9. https://doi.org/10.1051/e3sconf/201910000012, 2019.10.1051/e3sconf/201910000012 Search in Google Scholar

[2] S. Gigli, D. Landi and M. Germani. “Cost-benefit analysis of a circular economy project: a study on a recycling system for end-of-life tyres.” Journal of Cleaner Production. 229, pp. 680-694. https://doi.org/10.1016/j.jclepro.2019.03.223.2019. Search in Google Scholar

[3] S. Andrén and M. Hedin. Business model innovation for asphalt with rubber content: The road towards a circular economy and a sustainable society. [On-line]. p. 93. 2018. Available: https://www.diva-portal.org/smash/record.jsf?pid=diva2%3A1232914&dswid=9585 [August 31, 2020]. Search in Google Scholar

[4] A. Fischer and S. Pascucci. “Institutional incentives in circular economy transition: The case of material use in the Dutch textile industry.” Journal of Cleaner Production. 155, pp. 17-32. https://doi.org/10.1016/j.jclepro.2016.12.038.2017. Search in Google Scholar

[5] C. Mair and T. Stern. “Cascading Utilization of Wood: a Matter of Circular Economy?” Current Forestry Reports. 3, pp. 281-295, https://doi.org/10.1007/s40725-017-0067-y.2017. Search in Google Scholar

[6] “DRON Industries Recyklácia pneumatík.” Internet: https://www.dron.sk/sk/ [September 4, 2020]. Search in Google Scholar

[7] C. Clauzade, P. Osset, Ch. Hugrel, A. Chappert, M. Durande and M. Palluau. “Life cycle assessment of nine recovery methods for end-of-life tyres.” International Journal Of Life Cycle Assessment. 15, pp. 883-892. doi: 10.1007/s11367-010-0224-z. 2010.10.1007/s11367-010-0224-z Search in Google Scholar

[8] R. Feraldi, S. Cashman, M. Huff and L. Raahauge. “Comparative LCA of treatment options for US scrap tires: material recycling and tire-derived fuel combustion.” International Journal of Life Cycle Assessment. 18, pp. 613-625. https://doi.org/10.1007/s11367-012-0514-8.2013. Search in Google Scholar

[9] K. Piotrowska, W. Kruszelnicka, P. Bałdowska-Witos, R. Kasner, J. Rudnicki, A. Tomporowski, J. Flizikowski and M. Opielak. “Assessment of the Environmental Impact of a Car Tire throughout Its Lifecycle Using the LCA Method.” Materials. 12, pp. 4177. https://doi.org/10.3390/ma12244177.2019. Search in Google Scholar

[10] Á. Uruburu, E. Ponce-Cueto, J.R. Cobo-Benita, J. Ordieres-Meré. “The new challenges of end-of-life tyres management systems: A Spanish case study.” Waste Management. 33(3), pp. 679-688. https://doi.org/10.1016/j.wasman.2012.09.006.2013. Search in Google Scholar

[11] C.F. Revelo, M. Correa, C. Aguilar, H.A. Colorado. “Composite materials made of waste tires and polyurethane resin: A case study of flexible tiles successfully applied in industry.” Case Studies in Construction Materials. 15, https://doi.org/10.1016/j.cscm.2021.e00681.2021. Search in Google Scholar

[12] D. Dobrotă, G. Dobrotă, T. Dobrescu. “Improvement of waste tyre recycling technology based on a new tyre markings.” Journal of Cleaner Production. 260 p. https://doi.org/10.1016/j.jclepro.2020.121141.2020. Search in Google Scholar

[13] A. Fazli, D. Rodrigue. “Recycling Waste Tires into Ground Tire Rubber (GTR)/Rubber Compounds: A Review.” Journal of Composites Science. 4 (3): 103 p. https://doi.org/10.3390/jcs4030103.2020. Search in Google Scholar

[14] “Bonus, Výroba a prodej granulátů.” Internet: http://bonus-cb.cz/cz/produkty-a-sluzby/vyroba-granulatu/ [September 4, 2020]. Search in Google Scholar

[15] “Salvadori, METAMORPHOSIS II”, Internet: https://www.salvadori.com/recycling/machines/metamorphosis-ii/ [September 4, 2020]. Search in Google Scholar

[16] “AVE.” Internet: https://www.gumovadlazba.sk/agrosegment/gumova-dlazba-special-cierna [August 20, 2021]. Search in Google Scholar

[17] B. Balaram. “Comparison between net present value and internal rate of return.” International Journal of Research in Finance and Marketing, 5 (12), pp. 61-71. 2015. Search in Google Scholar

[18] J.R. Cuthbert and C.A. Magni. “Measuring the inadequacy of IRR in PFI schemes using profitability index and AIRR.” International Journal of Production Economics. 179, pp. 130-140. https://doi.org/10.1016/j.ijpe.2016.05.024.2016. Search in Google Scholar

[19] O. Mørch, K. Fagerholt, G. Pantuso and J. Rakke. “Maximizing the rate of return on the capital employed in shipping capacity renewal.” Omega. 67, pp. 42-53. https://doi.org/10.1016/j.omega.2016.03.007.2017. Search in Google Scholar

[20] R.A. Brealey and S.C. Myers. Teorie a praxe firemních finance. Praha: Victoria Publishing, 971 p. 1992. Search in Google Scholar

[21] J. Fotr and I. Souček. Podnikatelský záměr a investiční rozhodování. Praha: Grada Publishing, 356 p. 2005. Search in Google Scholar

[22] O. Bret and M. Lidmila. “Vybrané příklady využití gumového granulátu jako zvukově pohltivé vrtsvy.” in Research, Development and Innovation in Transport – RDIT 2017, Vysoké Mýto, Czech republic, pp. 39-45. 2017. Search in Google Scholar

[23] M. Lidmila, H. Krejčiříková and K. Šafner. “Nové protihlukové prvky z drcené gumy.” Available: https://docplayer.cz/5248691-Nove-protihlukove-prvkyz-drcene-gumy.html [September 4, 2020]. Search in Google Scholar

[24] O. Bret. “Experimentální analýza konstrukce pražcového podloží obsahující gumový granulát.” Thesis, Fakulta stavební – České Vysoké Učení Technické v Praze, 2016. Search in Google Scholar