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Electrospinning of Polymer Fibres Using Recycled PET

References [1] Khan W. S., Asmatulu R., Davuluri S., Dandin V. K.: Improving the Economic Values of the Recycled Plastics Using Nanotechnology Associated Studies . Journal of Materials Science & Technology, 30/9. (2014) 854–859. [2] EPA U.S. Environmental Protection Agency, Wastes – Resource Conservation – Common Wastes & Materials – Plastics. [3] Welle F.: Twenty years of PET bottle to bottle recycling – an overview . Resources, Conservation

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Fuel fractions obtained in the recycling of plastics

References Miskolczi N., Bartha L.: Gy. Deak, Polymer Degradation and Stability , 91, 2006 , 517 - 526. Aguado J., Serrano D.P., San Miguel G.: European trends in the feedstock recycling of plastic wastes. Global NEST Journal, 2006 . Sarbak Z.: Kataliza w ochronie środowiska (Catalysis in environment protection), Wydawnictwo UAM, Poznań 2004 . Sokołowski J., Rokicki G., Marczewski M., Baranowska M.: Ceramika 89, 2005 , 86 - 94

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Research On Recycling Of Hardened Mortar From Construction And Demolition Waste

5. REFERENCES Bravo, M., de Brito, J., Pontes, J., Evangelista, L., 2015. Mechanical performance of concrete made with aggregates from construction and demolition waste recycling plants, Journal of Cleaner Production , (99), pp. 59-74 Cojocaru, R., Andrei, R., Muscalu, M., Ţăranu, N., Budescu, M., Lungu, I., 2013. The Behaviour of Cement Concrete Made With Recycled Materials for Airport Rigid Pavements, Romanian Journal of Materials , 43 (4), pp. 363-372. Corbu, Ofelia, Puskás, A., Szilágyi, Henriette, Baeră, Cornelia, 2014. C16/20 concrete

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Considerations on the Benefits of Using Recyclable Materials for Road Construction

“Proceedings of the Transport Research Board Annual Meeting”, 1998 . [5]. W.H.CHESNER, R.J.COLLINS, M.H.MACKAY: “ User Guidelines for Waste and By-Product Materials in Pavement Construction ”, nr. FHWA-RD-97-148, April 1998 . [6]. R.G.HICKS: “Asphalt rubber design and construction guidelines - volume 1-design guidelines” , 2002 . [7]. WRAP: “ AggRegain materials information - recycled plastics ”, 2003 . [8]. J. MELI: “ A Life Cycle Perspective on Concrete and Asphalt Roadways: Embodied Primary Energy and Global Warming Potential ”, Athena

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Assessment Method of End-of-Life Vehicles Recycling Network Efficiency

, S., Thomas, J., Economies of scale and scope: a cost analysis of municipal solid waste services , Land economics, Vol. 77 (4), pp. 548-560, 2001. [5] Chavez, A. P., Armijo de Vega, C., Benitez, S. O., Measuring Progress of Waste Management Programs , International Journal of Environmental Science and Development, Vol. 2 (5), pp. 372-376, 2011. [6] DG Environment A study to examine the benefits of the End of Life Vehicles Directive and the costs and benefits of a revision of the 2015 targets for recycling, re-use and recovery under the ELV Directive

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Re-Use and Recycling of Different Electrical Machines

., 53 (6), 37–46. 8. Mahajan, S. (2001). Encyclopedia of materials: Science and technology . Elsevier. 9. Shokrollahi, H., & Janghorban, K. (2007). Soft magnetic composite materials (SMCs). J. Mater. Process. Technol ., 189 (1), 1–12. 10. Alatalo, M., Lundmark, S. T., & Grunditz, E. A. (2011). Electric machine design for traction applications considering recycling aspects-review and new solution. In IECON 2011 – 37th Annual Conference of the IEEE Industrial Electronics Society (pp. 1836–1841), 7–10 November 2011, Melbourne, Australia. 11

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Recycling of Cerium and Lanthanum from Glass Polishing Sludge

and Zn from the stream of used Ni-MH cells. Waste. Manag. 77, 213–219. DOI: 10.1016/j.wasman.2018.03.046. 11. Lee, C.H., Yen, H.Y., Liao, C.H., Popuri, S.R., Cadogan, E. & Hsu, C.J. (2017). Hydrometallurgical processing of Nd–Fe–B magnets for Nd purification. J. Mater. Cycles. Waste. Manag. 19(1), 102–110. DOI: 10.1007/s10163-015-0382-y. 12. Önal, M.A.R., Aktan, E., Borra, C.R., Blanpain, B., Van Gerven, T. & Guo, M. (2017). Recycling of NdFeB magnets using nitration, calcination and water leaching for REE recovery. Hydrometallurgy. 167, 115–123. DOI

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Burden of industrial waste and potential for recycling: technological, economic and environmental aspects

Directive, Council Directive 2006/21/EC of 15 March 2006 on the management of waste from extractive industries and amending Directive 2004/35/ECl, Official Journal L 102, 2006, 15. Forsberg, L.S., Ledin, S. (2006). Effects of sewage sludge on pH and plant availability of metals in oxidising sulphide mine tailings. Science of The Total Environment, 358 (1–3), 21 - 35. Gorai, B., Jana, R.K. (2012). Characteristics and utilisation of copper slag - a review, resources . Conservation and Recycling, 39(4), 299-313. Habashi F. (2009). Recent trends in

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Initial research on recycled tyre bales for road infrastructure applications

Geology and Hydrogeology, Vol. 38, pp. 377-386. [4] [5] Hodgson, I. F., Beales, S. P. and Curd, M. J. (2012), “Use of tyre bales as lightweight fill for the A421 improvements scheme near Bedford, UK”. Engineering Geology Special Publications, 26, 101-108, [6] [7] PKN-CEN ISO/TS 17892-7:2009. Grunty budowlane - badanie na ściskanie gruntów drobnoziarnistych w jednoosiowym stanie

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Technological and economic study of ship recycling in Egypt

References Andersen, A.B., 2001. Worker safety in the ship-breaking industries. International Labour Office, Geneva. Department for Environment, Food and Rural Affairs DEFRA, 2007. Overview of ship recycling in the UK, Guidance, UK.Germanischer Llyod, 2010. Thomas Schulte Contracts GL for Certified Ship Recycling. [online] Available at: <http://www.> [Accessed January 2011]. ILO, 2004. Safety and health in shipbreaking: Guidelines for Asian countries and Turkey (ISBN 92-2-115289-8). Geneva

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