Hydrogen Valleys – Scenari di transizione energetica e sviluppo locale per città medie

Autori

  • Alessandra Battisti Università ‘Sapienza’ di Roma (Italia)
  • Angela Calvano Università ‘Sapienza’ di Roma (Italia)

DOI:

https://doi.org/10.19229/2464-9309/1532024

Parole chiave:

neutralità climatica, rigenerazione territoriale, sistemi energetici locali, transizione energetica, idrogeno

Abstract

Nell’attuale scenario di decarbonizzazione, produzione, trasporto e consumi di energia investono la dimensione territoriale delle comunità mentre il carattere di prossimità delle fonti rinnovabili e degli impianti di generazione diffusa consentono di ridefinire il legame socio-spaziale con l’energia. Si tratta di una deterritorializzazione da dismissione di impianti alimentati da fonti fossili, ri-territorializzazione per conversione di aree industriali in disuso e costruzione di una catena di valore fondata sulla neutralità climatica. Il progetto di rigenerazione del patrimonio territoriale, reinterpretato dalle comunità insediate come potenziale rete energetica, risponde alle esigenze del New Deal, garantendo energia sicura ed equa. Obiettivo del paper è comprendere come le città medie possano contribuire alla sperimentazione di processi decisionali e soluzioni progettuali a idrogeno.

 

Info sull'articolo

Ricevuto: 29/03/2024; Revisionato: 19/04/2024; Accettato: 29/04/2024

Downloads

I dati di download non sono ancora disponibili.

##plugins.generic.articleMetricsGraph.articlePageHeading##

Biografie autore

Alessandra Battisti, Università ‘Sapienza’ di Roma (Italia)

Architetto e PhD, è Professore Ordinario di Progettazione Tecnologica Ambientale presso il Dipartimento PDTA. La sua ricerca verte sui temi dell’innovazione tecnologica, dell’efficienza ecologica ed energetica, dell’approccio bioclimatico nella progettazione e della sostenibilità ambientale a livello architettonico, urbano e insediativo.
E-mail: alessandra.battisti@uniroma1.it

Angela Calvano, Università ‘Sapienza’ di Roma (Italia)

Architetto, è Dottoranda presso il Dipartimento PDTA. La sua ricerca indaga la gestione tecnologico-ambientale di processi innovativi, secondo un approccio multi-scalare di città, distretti urbani e architetture, orientato alla neutralità carbonica.
E-mail: angela.calvano@uniroma1.it

Riferimenti bibliografici

Arbab, P. and Alborzi, G. (2022), “Toward developing a sustainable regeneration framework for urban industrial heritage”, in Journal of Cultural Heritage Management and Sustainable Development, vol. 12, issue 3, pp. 263-274. [Online] Available at: doi.org/10.1108/JCHMSD-04-2020-0059 [Accessed 15 March 2024].

Battisti, A. and Tucci, F. (2015), “Rigenerazione urbana tra qualità ambientale, gestione delle risorse e coesione sociale | Urban regeneration featuring environmental quality, the management of resources and social cohesion”, in Techne | Journal of Technology for Architecture and Environment, vol. 10, pp. 141-152. [Online] Available at: doi.org/10.13128/Techne-17510 [Accessed 15 March 2024].

Bernabò, R. (2022), Città Italia – Dieci visioni e dieci città per una nuova Agenda della provincia italiana, Il Sole 24 Ore, Milano.

Confindustria (2021), Piano d’Azione per l’Idrogeno – Potenzialità dell’industria nazionale nella prospettiva della transizione ecologica e mappatura dei potenziali Off-Takers. [Online] Available at: confindustria.it/wcm/connect/737f1918-a488-4117-95e5-b6c9d0c8ed6c/Position+Paper_Piano+d%27azione+per+l%27idrogeno+-+Focus+Offtaker+Industriali_Confindustria.pdf?MOD=AJPERES&CONVERT_TO=url&CACHEID=ROOTWORKSPACE-737f1918-a488-4117-95e5-b6c9d0c8ed6c-nWbWgXs [Accessed 22 April 2024].

Confindustria (2020), Piano d’Azione per l’Idrogeno. [Online] Available at: confindustria.it/wcm/connect/552759de-3bb8-472f-a20b-07ab2aa5f21f/Position+Paper_Piano+d%27azione+per+l%27idrogeno_ott+ 2020_Confindustria.pdf?MOD=AJPERES&CACHEID=ROOTWORKSPACE-552759de-3bb8-472f-a20b-07ab2aa5f21f-nuhfm09 [Accessed 22 April 2024].

Cova, B. and Migliorini, L. (2021), Strategia italiana sull’idrogeno – Quale impatto sul sistema elettrico?, CESI, Milano. [Online] Available at: cesi.it/app/uploads/2021/10/CESI-Studio-Idrogeno.pdf [Accessed 15 March 2024].

Decreto Legislativo 8 novembre 2021 n. 199, “Attuazione della direttiva (UE) 2018/2001 del Parlamento europeo e del Consiglio, dell’11 dicembre 2018, sulla promozione dell’uso dell’energia da fonti rinnovabili (21G00214), in Gazzetta Ufficiale Repubblica Italiana, Serie Generale n. 285 del 30/11/2021, Suppl. Ordinario n. 42. [Online] Available at: gazzettaufficiale.it/eli/id/2021/11/30/21G00214/sg [Accessed 15 March 2024].

European Commission – Eurostat (2019), Methodological manual on territorial typologies – 2018 edition, Publications Office. [Online] Available at: doi.org/10.2785/930137 [Accessed 15 March 2024].

European Commission – Joint Research Centre (2020), Social innovations for the energy transition – An overview of concepts and projects contributing to behavioural changes, and increased well-being. [Online] Available at: data.europa.eu/doi/10.2760/555111 [Accessed 15 March 2024].

European Commission (2023a), Commission Delegated Regulation (EU) 2023/1184 of 10 February 2023 supplementing Directive (EU) 2018/2001 of the European Parliament and of the Council by establishing a Union methodology setting out detailed rules for the production of renewable liquid and gaseous transport fuels of non-biological origin, document 32023R1184, C/2023/1087. [Online] Available at: data.europa.eu/eli/reg_del/2023/1184/oj [Accessed 15 March 2024].

European Commission (2023b), Commission Delegated Regulation (EU) 2023/1185 of 10 February 2023 supplementing Directive (EU) 2018/2001 of the European Parliament and of the Council by establishing a minimum threshold for greenhouse gas emissions savings of recycled carbon fuels and by specifying a methodology for assessing greenhouse gas emissions savings from renewable liquid and gaseous transport fuels of non-biological origin and from recycled carbon fuels, document 32023R1184, C/2023/1086. [Online] Available at: eur-lex.europa.eu/legal-content/EN/TXT/?uri=COM%3A2022%3A230%3AFIN [Accessed 15 March 2024].

European Commission (2022), Communication from the Commission to the European Parliament, the European Council, the European Economic and Social Committee and the Committee of the Regions – REPowerEU Plan, document 52022DC0230, 230 final. [Online] Available at: eur-lex.europa.eu/legal-content/EN/TXT/?uri=COM%3A2022%3A230%3AFIN [Accessed 15 March 2024].

European Commission (2021), Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions – A Hydrogen Strategy for a Climate-neutral Europe. [Online] Available at: eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A52020DC0301 [Accessed 15 March 2024].

European Commission (2020), Powering a climate-neutral economy – Commission sets out plans for the energy system of the future and clean hydrogen. [Online] Available at: ec.europa.eu/commission/presscorner/detail/en/ip_20_1259 [Accessed 15 March 2024].

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=COM%3A2019%3A640%3AFIN [Accessed 15 March 2024].

European Commission (2018a), 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 Clean Planet for All – A European strategic long-term vision for a prosperous, modern, competitive and climate neutral economy, document 52018DC0773, 773 final. [Online] Available at: eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A52018DC0773 [Accessed 15 March 2024].

European Commission (2018b), Final Report of the High-Level Panel of the European Decarbonisation Pathways Initiative. [Online] Available at: data.europa.eu/doi/10.2777/636 [Accessed 15 March 2024].

European Commission (2016), 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 – Clean Energy for All Europeans, document 52016DC0860, 860 final. [Online] Available at: eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A52016DC0860&qid=1713606107255 [Accessed 15 March 2024].

European Parliament and Council of the European Union (2023), Directive (EU) 2023/2413 of the European Parliament and of the Council of 18 October 2023 amending Directive (EU) 2018/2001, Regulation (EU) 2018/1999 and Directive 98/70/EC as regards the promotion of energy from renewable sources and repealing Council Directive (EU) 2015/652, document 32023L2413, PE/36/2023/REV/2. [Online] Available at: data.europa.eu/eli/dir/2023/2413/oj [Accessed 23 April 2024].

European Parliament and Council of the European Union (2018), Directive (EU) 2018/2001 of the European Parliament and of the Council of 11 December 2018 on the promotion of the use of energy from renewable sources (recast), document 32108L2001, PE/48/2018/REV/1. [Online] Available at: eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A32018L2001&qid=1713606635772 [Accessed 15 March 2024].

Ficco, G., Arpino, F., Dell’Isola, M., Grimaldi, M. and Lisi, S. (2022), “Development of a Hydrogen Valley for Exploitation of Green Hydrogen in Central Italy”, in Energies, vol. 15, issue 21, article 8072, pp. 1-10. [Online] Available at: doi.org/10.3390/en15218072 [Accessed 15 March 2024].

Gandiglio, M. and Marocco, P. (2024), “Mapping hydrogen initiatives in Italy – An overview of funding and projects”, in ChemRxiv, pp. 1-19. [Online] Available at: doi.org/10.26434/chemrxiv-2024-1mssg [Accessed 24 April 2024].

Garrett-Petts, W. (2005), The small cities book – On the cultural future of small cities, New Star Books, Vancouver.

Genovese, M., Piraino, F. and Fragiacomo, P. (2024), “3E analysis of a virtual hydrogen valley supported by railway-based H2 delivery for multi-transportation service”, in Renewable and Sustainable Energy Reviews, vol. 191, article 114070, pp. 1-22. [Online] Available at: doi.org/10.1016/j.rser.2023.114070 [Accessed 23 April 2024].

IEA – International Energy Agency (2019), The Future of Hydrogen – Seizing today’s opportunities, Report prepared by the IEA for the G20, Japan. [Online] Available at: iea.org/reports/the-future-of-hydrogen [Accessed 15 March 2024].

IRENA Coalition for Action (2022), Sector coupling – A key concept for accelerating the energy transformation, International Renewable Energy Agency, Abu Dhabi. [Online] Available at: irena.org/Publications/2022/Dec/Sector-coupling-A-key-concept-for-accelerating-the-energy-transformation [Accessed 15 March 2024].

ISTAT (2022), Popolazione residente e dinamica demografica – Anno 2021. [Online] Available at: istat.it/it/files/2022/12/CENSIMENTO-E-DINAMICA-DEMOGRAFICA-2021.pdf [Accessed 15 March 2024].

Karjunen, H., Sikiö, P., Lassila, J., Vilppo, J., Räisänen, O., Inkeri, E., Tynjälä, T. and Laaksonen, P. (2022), South-East Finland Hydrogen Valley – Project report, Research report, n. 144. [Online] Available at: lutpub.lut.fi/bitstream/handle/10024/164642/Southeast%20Finland% 20Hydrogen%20 Valley%20Report.pdf?sequence=8&isAllowed=y [Accessed 27 April 2024].

Kostešić, I., Vukić, J. and Vukić, F. (2019), “A Comprehensive Approach to Urban Heritage Regeneration”, in Obad Šćitaroci, M., Bojanić Obad Šćitaroci, B. and Mrđa, A. (eds), Cultural Urban Heritage, Springer, Cham, pp. 65-76. [Online] Available at: doi.org/10.1007/978-3-030-10612-6_6 [Accessed 15 March 2024].

Majka, A., Klimczyk, M., Kucharski, K. and Muszyńska-Pałys, J. (2023), “Hydrogen Valley as a hub for technological cooperation between science, business, local government and NGOS – An Overview of approach in Europe”, in Torun International Studies, vol. 1, issue 17, pp. 5-15. [Online] Available at: apcz.umk.pl/TSM/article/view/43458 [Accessed 23 April 2024].

MASE – Ministero dell’Ambiente e della Sicurezza Energetica (2023a), Il ruolo della partecipazione e dello stakeholder engagement nella definizione e attuazione delle politiche per lo sviluppo sostenibile. [Online] Available at: mase.gov.it/sites/default/files/archivio/allegati/sviluppo_sostenibile/Il_ruolo_ della_partecipazione_per_la_sostenibilit%C3%A0_2023.pdf [Accessed 15 March 2024].

MASE – Ministero dell’Ambiente e della Sicurezza Energetica (2023b), Piano Nazionale Integrato per l’Energia e il Clima – Italia. [Online] Available at: mase.gov.it/sites/default/files/PNIEC_2023.pdf [Accessed 15 March 2024].

MASE – Ministero dell’Ambiente e della Sicurezza Energetica (2020), Strategia Nazionale Idrogeno – Linee Guida Preliminari. [Online] Available at: mimit.gov.it/images/stories/documenti/Strategia_Nazionale_Idrogeno_Linee_ guida_preliminari_nov20.pdf [Accessed 15 March 2024].

Mayer, H. and Lazzeroni, M. (2022), A Research Agenda for Small and Medium-sized Town, Edward Elgar Publishing. [Online] Available at: doi.org/10.4337/9781800887121 [Accessed 15 March 2024].

MIMIT – Ministero delle Imprese e del Made in Italy (2023), Piano Nazionale di Ripresa e Resilienza – #NextGenerationItalia. [Online] Available at: mimit.gov.it/images/stories/documenti/PNRR_Aggiornato.pdf [Accessed 15 March 2024].

Noussan, M., Raimondi, P. P., Scita, R. and Hafner, M. (2021), “The role of green and blue hydrogen in the energy transition – A technological and geopolitical perspective”, in Sustainability, vol. 13, issue 1, article 298, pp. 1-26. [Online] Available at: doi.org/10.3390/su13010298 [Accessed 15 March 2024].

OECD – Organisation for Economic Co-operation and Development (2020), A Territorial Approach to the Sustainable Development Goals – Synthesis Report. [Online] Available at: doi.org/10.1787/e86fa715-en [Accessed 15 March 2024].

Paltsev, S., Morris, J., Kheshgi, H. and Herzog, H. (2021), “Hard-to-Abate Sectors – The role of industrial Carbon Capture and Storage (CCS) in emission mitigation”, in Applied Energy, vol. 30, article 117322, pp. 1-11. [Online] Available at: doi.org/10.1016/j.apenergy.2021.117322 [Accessed 15 March 2024].

Pica, V., Baldazzini, A., Miccolis, S. and Venturi, P. (2024), L’orientamento alla comunità nella rigenerazione territoriale – Comunità, cultura e impatto sociale, I Quaderni dell’Economia Civile, vol. 12, AICCON Research Center, Forlì. [Online] Available at: aiccon.it/wp-content/uploads/2024/01/Quaderni-dellEconomia-Civile-12_ok.pdf [Accessed 15 March 2024].

Reitsma, A. (2023), European Hydrogen Valleys – An energy security perspective, Master International Relations – International Relations and International Organisations (track). [Online] Available at: heavenn.org/wp-content/uploads/2023/07/Master-thesis_AnniekReitsma_European-Hydrogen-Valleys_an-energy-security-perspective_1-gecomprimeerd.pdf [Accessed 24 April 2024].

Rifkin, J. (2014), Economia all’idrogeno – La creazione del Worldwide Energy Web e la redistribuzione del potere sulla terra, Mondadori, Milano.

Setti, L. and Sandri, S. (2022), Studio della sostenibilità economica della filiera di produzione di idrogeno verde backbone italiana, Re-Common. [Online] Available at: recommon.org/download/studio-sulla-sostenibilita-economica-della-filiera-di-produzione-dellidrogeno-verde-per-una-hydrogen-backbone-italiana/ [Accessed 15 March 2024].

Skaloumpakas, P., Sarmas, E., Rachmanidis, M. and Marinakis, V. (2024), “Reshaping the energy landscape of Crete through renewable energy valleys”, in Scientific Report, vol. 14, article 8038, pp. 1-13. [Online] Available at: doi.org/10.1038/s41598-024-57471-7 [Accessed 25 April 2024].

UN – United Nations (2015), Transforming our World – The 2030 Agenda for Sustainable Development, document A/RES/70/1. [Online] Available at: sdgs.un.org/2030agenda [Accessed 15 March 2024].

UNSC – UN Statistical Commission (2020), A recommendation on the method to delineate cities, urban and rural areas for international statistical comparisons, prepared by the European Commission – Eurostat and DG for Regional and Urban Policy – ILO, FAO, OECD, UN-Habitat, World Bank. [Online] Available at: unstats.un.org/unsd/statcom/51st-session/documents/BG-Item3j-Recommendation-E.pdf [Accessed 15 March 2024].

Vezzoni, R. (2024), “How clean is the hydrogen economy? Tracing the connections between hydrogen and fossil fuels”, in Environmental Innovation and Societal Transitions, vol. 50, article 100817, pp. 1-16. [Online] Available at: doi.org/10.1016/j.eist.2024.100817 [Accessed 15 March 2024].

Vivanco-Martín, B. and Iranzo, A. (2023), “Analysis of the European Strategy for Hydrogen – A Comprehensive Review”, in Energies, vol. 16, issue 9, article 3866, pp. 1-36. [Online] Available at: doi.org/10.3390/en16093866 [Accessed 24 April 2024].

Weichenhan, U., Kaufmann, M., Hölscher, M. and Scheiner, M. (2022), Going Global – An update on Hydrogen Valleys and their role in the new hydrogen economy. [Online] Available at: clean-hydrogen.europa.eu/system/files/2022-09/Hydrogen_Valleys_online_2022.pdf [Accessed 24 April 2024].

Hydrogen classification: type and characteristics (source: GEA ETS, 2021; adapted by the Authors). AGATHÓN 15 | 2024

##submission.downloads##

Pubblicato

30-06-2024

Come citare

Battisti, A. e Calvano, A. (2024) «Hydrogen Valleys – Scenari di transizione energetica e sviluppo locale per città medie», AGATHÓN | International Journal of Architecture Art and Design, 15, pagg. 48–57. doi: 10.19229/2464-9309/1532024.

Gemello digitale urbano e modellazione energetica – Esperienze e analisi di casi d’uso

Danila Longo, Beatrice Turillazzi, Rossella Roversi, Stefano Lilla, Carlo Alberto Nucci, Andrea...