Materiali rigenerativi bio-based. Una proposta innovativa per il packaging e i prodotti da costruzione

Autori

  • Antonella Violano Università della Campania ‘Luigi Vanvitelli’ (Italia)
  • Monica Cannaviello Università della Campania ‘Luigi Vanvitelli’ (Italia)
  • Salvatore Del Prete Service Biotech Srl

DOI:

https://doi.org/10.19229/2464-9309/9242021

Parole chiave:

economia circolare, transizione energetica, bioplastica, materiale a base biologica, materiale coltivato

Abstract

Il Green Deal Europeo e l’European Climate Law del Parlamento Europeo sono il contesto socio-politico nel quale l’Industria delle Costruzioni deve impegnarsi per ridurre l’upfront carbon. Questo obiettivo pone in una nuova luce il ruolo dei materiali edili. Concentrandosi sullo sviluppo di soluzioni innovative che riguardano propriamente i materiali biotici e trasformati-biotici, l’approccio Cradle to Cradle premia i biobased materials attribuendo ad essi un ruolo fondamentale nella transizione verso l’economia circolare. Il contributo presenta un materiale innovativo, esito complesso di due differenti progetti di ricerca condotti dal ZEBtwdZEEB Group dell’Università della Campania ‘L. Vanvitelli’ in collaborazione con la Start-up innovativa Service Biotech Srl, vincitore al BioInItaly Investment Forum 2021 & Intesa Sanpaolo Start-Up Initiative per il settore Circular Bioeconomy.

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Biografie autore

Antonella Violano, Università della Campania ‘Luigi Vanvitelli’ (Italia)

Architetto e PhD, è Professore Associato di Tecnologia dell’Architettura presso il Dipartimento di Architettura e Disegno Industriale, e svolge ricerca nel settore dell’innovazione tecnologica per l’ambiente costruito, con focus specifici sui materiali eco-compatibili e a base biologica, sulla progettazione tecnologica sostenibile ed energeticamente efficiente.
E-mail: antonella.violano@unicampania.it

Monica Cannaviello, Università della Campania ‘Luigi Vanvitelli’ (Italia)

Architetto e PhD Europeus, è Professore a contratto presso il Dipartimento di Architettura e Disegno Industriale. Svolge attività di ricerca prevalentemente nell’ambito della progettazione tecnologica sostenibile ed energeticamente efficiente.
E-mail: monica.cannaviello@unicampania.it

Salvatore Del Prete, Service Biotech Srl

Biotecnologo, Amministratore Delegato di Service Biotech Srl, svolge ricerca sullo studio morfologico delle strutture superficiali e degli organelli cellulari eucarioti e procarioti (patogeni e non patogeni) e sulla biochimica del film precorneale e sulla struttura e morfologia e funzione dei microvilli, grazie all’utilizzo di microscopi SEM e TEM.
E-mail: info@servicebiotech.com

Riferimenti bibliografici

Cannaviello, M. (2017), La sfida dell’impronta di carbonio del cantiere edile | Tackling carbon footprint of construction site, La scuola di Pitagora editrice, Napoli.

Cerimi, K., Can Akkaya, K., Pohl, C., Schmidt, B. and Neubauer, P. (2019), “Fungi as source for new bio-based materials – A patent review”, in Fungal Biology and Biotechnology, vol. 6, article 17, pp. 1-10. [Online] Available at: doi.org/10.1186/s40694-019-0080-y [Accessed 15 April 2021].

Circular Economy Network (2021), 3° Rapporto sull’Economia Circolare in Italia – Focus sull’economia circolare nella transizione alla neutralità climatica. [Online] Available at: circulareconomynetwork.it/wp-content/uploads/2021/03/3%C2%B0-Rapporto-economia-circolare_CEN.pdf [Accessed 15 April 2021].

Curran, M. A. (2010), “Biobased materials”, in Kirk-Othmer – Encyclopedia of Chemical Technolnology, John Wiley & Sons. [Online] Available at: doi.org/10.1002/0471238961.biobcurr.a01 [Accessed 15 April 2021].

Dahiya, S., Katakojwala, R., Ramakrishna, S. and Venkata Mohan, S. (2020), “Biobased Products and Life Cycle Assessment in the Context of Circular Economy and Sustainability”, in Materials Circular Economy, vol. 2, article 7, pp. 1-28. [Online] Available at: doi.org/10.1007/s42824-020-00007-x [Accessed 15 April 2021].

Dobrucka, R. (2019), “Bioplastic packaging materials in circular economy”, in LogForum, vol. 15, issue 1, pp. 129-137. [Online] Available at: doi.org/10.17270/J.LOG.2019.322 [Accessed 15 April 2021].

European Commission (2020), Proposal for a Regulation of the European Parliament and of the Council establishing the framework for achieving climate neutrality and amending Regulation (EU) 2018/1999 (European Climate Law), document 52020PC0080, 80 final. [Online] Available at: eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A52020PC0080&qid=1619929730292 [Accessed 16 April 2021].

European Commission (2019), Communication from the Commission to the European Parliament, the European Council, the Council, the European Economic and Social Committee and the Committee of the Regions – The European Green Deal, document 52019DC0640, 640 final. [Online] Available at: eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A52019DC0640&qid=1619930051365 [Accessed 16 April 2021].

European Commission (2018), Communication from the Commission to the European Parliament, the European Council, the Council, the European Economic and Social Committee and the Committee of the Regions – A European Strategy for Plastics in a Circular Economy, document 52018DC0028, 028 final. [Online] Available at: eur-lex.europa.eu/legal-content/EN/TXT/?qid=1516265440535&uri=COM:2018:28:FIN [Accessed 16 April 2021].

European Commission (2017), Expert Group Report – Review of the EU Bioeconomy Strategy and its Action Plan. [Online] Available at: core.ac.uk/download/pdf/227290013.pdf [Accessed 16 April 2021].

Federici, F., Fava, F., Kalogerakis, N. and Mantzavinos, D. (2009), “Valorisation of agro‐industrial by‐products, effluents and waste: concept, opportunities and the case of olive mill wastewaters”, in Journal of Chemical Technology and Biotechnology, vol. 84, issue 6, pp. 895-900. [Online] Available at: doi.org/10.1002/jctb.2165 [Accessed 15 April 2021].

Fondazione per lo Sviluppo Sostenibile and FISE UNICIRCULAR (2020), L’Italia del Riciclo – 2020. [Online] Available at: doi.org/10.1002/jctb.2165 [Accessed 15 April 2021].

Manuelli, M. T. (2020), “In che modo il packaging sostenibile guiderà le scelte della nostra spesa”, in IlSole24Ore, newspaper, 28/02/2020. [Online] Available at: 24plus.ilsole24ore.com/art/il-packaging-sostenibile-guida-scelte-spesa-business-65-miliardi-ACNf7WJB [Accessed 15 April 2021].

McDonough, W. and Braungart, M. (2002), Cradle to cradle – Remaking the way we make things, North Point Press, New York.

Narayan, R. (2012), “Biobased & Biodegradable Plastics – Rationale, Drivers, and Technology Exemplars”, in Khemani, K. and Scholz, C. (eds), Degradable Polymers and Materials – Principles and Practice (2nd Edition), ACS Publication, pp. 13-31. [Online] Available at: doi.org/10.1021/bk-2012-1114.ch002 [Accessed 15 April 2021].

National Bioeconomy Coordination Board (2021), Implementation Action Plan (2020-2025) for the Italian Bioeconomy Strategy Bit II. [Online] Available at: cnbbsv.palazzochigi.it/media/2078/iap_2332021.pdf [Accessed 15 April 2021].

Netti, M. and Cannaviello, M. (2018), “Blockchain technology – Opportunities for sustainability of construction sector”, in Beyond all Limits 2018 – International Congress on Sustainability in Architecture, Planning, and Design, 17-19 October 2018, Ankara, Turkey, Cankaya University Press, pp. 558-562.

Plastics Europe (2019), The Circular Economy for Plastics – A European Overview. [Online] Available at: plasticseurope.org/download_file/force/3259/181 [Accessed 15 April 2021].

Scalisi, F. and Sposito, C. (2020), “Measure the Embodied Energy in Building Materials – An Eco-Sustainable Approach for Construction”, in Sayigh, A. (ed.), Renewable Energy and Sustainable Buildings, Selected Papers from the World Renewable Energy Congress WREC 2018, University of Kingston, UK, 30 July-3 August 2018, Springer, Cham (Switzerland), pp. 245-256. [Online] Available at: doi.org/10.1007/978-3-030-18488-9_19 [Accessed 15 April 2021].

Sposito, C. and Scalisi, F. (2019), “A possible tool for the choice of building materials – The environmental product declaration (EPD)”, in Bisson, M. (ed.), 3rd International Conference on Environmental Design, 3-4 October | Marsala – Sicily, Palermo University Press, Palermo, pp. 189-199. [Online] Available at: demetracerimed.com/wp-content/uploads/2020/07/A-possible-tool-for-the-choice-of-building-materials_2019-1.pdf [Accessed 15 April 2021].

UN – General Assembly (2015), Transforming our world – The 2030 Agenda for Sustainable Development, document A/RES/70/1. [Online] Available at: un.org/ga/search/view_doc.asp?symbol=A/RES/70/1&Lang=E [Accessed 14 April 2021].

Venkata Mohan, S., Modestra, J. A., Amulya, K., Butti, S. K. and Velvizhi, G. (2016), “A Circular Bioeconomy with Biobased Products from CO2 Sequestration”, in Trends in Biotechnology, vol. 34, issue 6, pp. 506-519. [Online] Available at: doi.org/10.1016/j.tibtech.2016.02.012 [Accessed 15 April 2021].

Violano, A. (2018), “Oltre la Materia – La sperimentazione di bio-based grown materials dai miceli | Beyond Materials – The experimentation of bio-based grown materials from mycelia”, in Techne | Journal of Technology for Architecture and Environment, vol. 16, pp. 299-307. [Online] Available at: doi.org/10.13128/Techne-23029 [Accessed 15 April 2021].

Violano, A. and Del Prete, S. (2020), “Dentro la materia – L’analisi SEM per la determinazione delle prestazioni di materiali bioplastici innovative | Within the matter – Determining the performance of innovative bioplastic materials with SEM analysis”, in Agathón | International Journal of Architecture, Art and Design, vol. 7, pp. 174-179. [Online] Available at: doi.org/10.19229/2464-9309/7182020 [Accessed 15 April 2021].

World Green Building Council (2019), Bringing embodied carbon upfront – Coordinated action for the building and construction sector to tackle embodied carbon. [Online] Available at: worldgbc.org/bringing-embodied-carbon-upfront-report-download [Accessed 15 April 2021].

BBbT: understanding the biotic phenomenon (credit: A. Violano and S. Del Prete, 2020). AGATHÓN 09 | 2021

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Pubblicato

22-06-2021

Come citare

Violano, A., Cannaviello, M. e Del Prete, S. (2021) «Materiali rigenerativi bio-based. Una proposta innovativa per il packaging e i prodotti da costruzione», AGATHÓN | International Journal of Architecture Art and Design, 9(online), pagg. 244–253. doi: 10.19229/2464-9309/9242021.

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