The rapid pace of technological advancement presents cities with emerging socio-economic and environmental challenges. Drastic climate change threatens the viability of biologically comfortable environments, compelling urban areas to adapt to new conditions. This adaptation necessitates the implementation of various strategies to maintain the population’s well-being, including mitigating climate change effects, which are characterized by rising average temperatures and prolonged droughts. Addressing critical issues such as water scarcity and extreme temperatures—particularly in Mediterranean regions, where summer temperatures can reach 48–50 °C—requires substantial energy consumption, which must be met through clean energy sources to reduce carbon emissions. Decarbonization efforts must be accompanied by the restructuring of urban green spaces, the expansion of peri-urban parks, and large-scale reforestation to enhance carbon sequestration. These measures, combined with the adoption of clean energy, would mitigate the impact of elevated CO2 concentrations. In urban areas, the restructuring of green spaces should prioritize biodiversity through the use of native, water-efficient species while avoiding non-native, potentially invasive plants. Furthermore, societal engagement is essential in achieving these objectives, with the education system playing a pivotal role in fostering environmental awareness and promoting collective action.

Socio-Economic Development and Eco-Education for Urban Planning Committed to Sustainability / Cano-Ortiz, A., Musarella, C.M., Cano, E.. - In: SUSTAINABILITY. - ISSN 2071-1050. - 17:6(2025). [10.3390/su17062442]

Socio-Economic Development and Eco-Education for Urban Planning Committed to Sustainability

Musarella, Carmelo Maria;
2025-01-01

Abstract

The rapid pace of technological advancement presents cities with emerging socio-economic and environmental challenges. Drastic climate change threatens the viability of biologically comfortable environments, compelling urban areas to adapt to new conditions. This adaptation necessitates the implementation of various strategies to maintain the population’s well-being, including mitigating climate change effects, which are characterized by rising average temperatures and prolonged droughts. Addressing critical issues such as water scarcity and extreme temperatures—particularly in Mediterranean regions, where summer temperatures can reach 48–50 °C—requires substantial energy consumption, which must be met through clean energy sources to reduce carbon emissions. Decarbonization efforts must be accompanied by the restructuring of urban green spaces, the expansion of peri-urban parks, and large-scale reforestation to enhance carbon sequestration. These measures, combined with the adoption of clean energy, would mitigate the impact of elevated CO2 concentrations. In urban areas, the restructuring of green spaces should prioritize biodiversity through the use of native, water-efficient species while avoiding non-native, potentially invasive plants. Furthermore, societal engagement is essential in achieving these objectives, with the education system playing a pivotal role in fostering environmental awareness and promoting collective action.
2025
11-mar-2025
Inglese
17
6
agriculture
education
knowledge
learning
management
natural spaces
societies
Cano-Ortiz, Ana; Musarella, Carmelo Maria; Cano, Eusebio
info:eu-repo/semantics/article
1 Contributo su Rivista::1.1 Articolo in rivista
262
Socio-Economic Development and Eco-Education for Urban Planning Committed to Sustainability / Cano-Ortiz, A., Musarella, C.M., Cano, E.. - In: SUSTAINABILITY. - ISSN 2071-1050. - 17:6(2025). [10.3390/su17062442]
3
open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12318/161991
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