Ceramic Sector Focusing on Waste Heat Recovery

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Energies 2020, 13, 6096 17 of 24 12. European Comission. Reference Document on Best Available Techniques in the Ceramic Manufacturing Industry. 2007. Available online: https://eippcb.jrc.ec.europa.eu/sites/default/files/2019-11/cer_bref_0807.pdf (accessed on 21 August 2019). 13. Rocha, C.S. O papel do Ecodesign na Eficiência Energética dos Produtos Cerâmicos. Available online: http://repositorio.lneg.pt/bitstream/10400.9/2403/1/art_tecnico_164_2.pdf (accessed on 30 October 2019). 14. CTCV—Centro Tecnológico da Cerâmica e do Vidro. Definição das Principais Áreas de Inovação no Sector da Cerâmica e do Vidro. 2010. Available online: http://www.produtech.org/documentos/estrategia/ definicao-das-principais-areas-de-inovacao-no-sector-da-ceramica-e-do-vidro/at_download/file (accessed on 21 August 2019). 15. Sinton, C.W. Is there a place for renewable energy in ceramics, glass manufacturing? Am. Ceram. Soc. Bull. 2015, 84, 18–22. 16. Agrafiotis, C.; Tsoutsos, T. Energy saving technologies in the European ceramic sector: A systematic review. Appl. Eng. 2001, 21, 1231–1249. [CrossRef] 17. Jouhara, H.; Khordehgah, N.; Delpech, B.; Chauhan, A.; Tassou, S.A. Waste heat recovery technologies and applications. Therm. Sci. Eng. Prog. 2018, 6, 268–289. [CrossRef] 18. Ceramie-Unie—The European Ceramic Industry Association. Available online: http://cerameunie.eu (accessed on 21 August 2019). 19. European Commission. Cumulative Cost Assessment (CCA) of the EU Ceramics Industry—Final Report. 2017. Available online: File:///C:/Users/Ioana%20Cristea/Desktop/Cumulative%20Cost%20Assessment%20CCA% 20of%20the%20EU%20CERAMICS%20Industry%20-%20Final%20Report.pdf (accessed on 10 July 2020). 20. Fraunhofer Institute for Systems and Innovation Research. Methodology for the Free Allocation of Emission Allowances in the EU ETS Post 2012—Sector Report for the Ceramics Industry. 2009. Available online: https://ec.europa.eu/clima/sites/clima/files/ets/allowances/docs/bm_study-lime_en.pdf (accessed on 10 July 2020). 21. EU-MERCI. Analysis of the Industrial Sectors in the European Union—WP4: Picture of Efficiency Projects Implemented by the Industry Sector-by-Sector and Process-by-Process. 2017. Available online: http: //www.eumerci-portal.eu/documents/20182/38527/0+-+EU.pdf (accessed on 10 July 2020). 22. Delpech, B.; Axcel, B.; Jouhara, H. A review on waste heat recovery from exhaust in the ceramics industry. E3s Web Conf. 2017, 22. [CrossRef] 23. Pezzutto, P.; Zambotti, S.; Croce, A.; Zambelli, P.; Garegnani, G.; Scaramuzzino, C.; Pascuas, R.P.; Haas, F.; Exner, D.; Lucchi, E.; et al. Hotmaps—D2.3 WP2 Report—Open Data Set for the EU28. 2019. Available online: https://www.hotmaps-project.eu/wp-content/uploads/2018/03/D2.3-Hotmaps_for-upload_revised- final_.pdf (accessed on 10 July 2020). 24. Mezquita, A.; Boix, J.; Monfort, E.; Mallol, G. Energy saving in ceramic tile kilns: Cooling gas heat recovery. Appl. Therm. Eng. 2014, 65, 102–110. [CrossRef] 25. Ferrera, S.; Mezquita, A.; Aguilella, V.M.; Monfort, E. Beyond the energy balance: Exergy analysis of an industrial roller kiln firing porcelain tiles. Appl. Eng. 2019, 150, 1002–1015. [CrossRef] 26. Gomez, R.S.; Porto, T.R.N.; Magalhães, H.L.F.; Moreira, G.; André, A.M.M.C.N.; Melo, R.B.F.; Lima, A.G.B. Natural Gas Intermittent Kiln for the Ceramic Industry: A Transient Thermal Analysis. Energies 2019, 12, 1568. [CrossRef] 27. Magueijo, V.; Fernandes, M.C.; Matos, H.A.; Nunes, C.P.; Calau, J.P.; Carneiro, J.; Oliveira, F. Medidas de Eficiência Energética Aplicáveis à Indústria Portuguesa: Um Enquadramento Tecnológico Sucinto; ADENE—Agência para a Energia: Lisbon, Portugal, 2010; ISBN 978-972-8646-18-9. 28. Mujumdar, A.S. Handbook of Industrial Drying; CRC Press: Boca Raton, FL, USA, 2016. 29. Utlu, Z.; Hepbasli, A.; Turan, M. Performance Analysis and Assessment of an Industrial Dryer in Ceramic Production. Dry. Technol. 2011, 29, 1792–1813. [CrossRef] 30. Dudam, V.P. Numerical and Experimental Thermal Analysis of a Tunnel Kiln used in Ceramic Production. J. Braz. Soc. Mech. Sci. Eng. 2009, 31, 297–304. 31. Wang, Y.; Yang, H.; Xu, K. Thermal Performance Combined with Cooling System Parameters Study for a Roller Kiln Based on Energy-Exergy Analysis. Energies 2020, 13, 3922. [CrossRef] 32. Ceramic Industry. Available online: https://www.ceramicindustry.com/articles/84527-successful-spray- drying (accessed on 31 October 2019).

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