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Giergiczny, M.

Publications and source records attributed to Giergiczny, M..

2 recordsLinked to original sources

Greener, Wilder, Better: Valuing Complexity and Diversity in Urban Riparian Areas

(1) Riparian areas are among the most valuable ecosystems on earth due to their high biodiversity and contributions to human well-being, yet urban riparian areas face significant threats from urbanization and associated expansion. Current management strategies do not consider all the contributions of urban green spaces to human well-being. Over the last decade stated preference studies have been widely used to gain insights into public attitudes towards urban green spaces. However, whether and to what extent the public values urban biodiversity in urban riparian areas remains unclear. (2) We used a discrete choice experiment approach to determine public preference for urban biodiversity and management interventions in urban riparian areas through a discrete choice experiment conducted in Poland. (3) We found strong positive preferences for highly complex and dense vegetation along urban riparian areas, indicating a public inclination towards enhancing natural biodiversity in public spaces. Additionally, respondents expressed a preference for reducing impermeable surfaces, such as concrete pathways, highlighting the value placed on minimizing urban encroachment. (4) Willingness-to-pay (WTP) results suggested that the public in Poland is prepared to financially support certain biodiversity conservation measures and land-conversion interventions in urban green spaces. (5) These results underscore the importance of integrating ecological research and public preferences into urban riparian management strategies, emphasizing the need for policy approaches that prioritize biodiversity conservation while balancing urban development.

ecology↗

TOWARDS CLIMATE-SMART REWILDING: AN INTEGRATED FRAMEWORK FOR BIODIVERSITY, CLIMATE CHANGE, AND SOCIETY

The UN Decade on Ecosystem Restoration and the Kunming-Montreal Global Biodiversity Framework aim to restore 30% of degraded ecosystems. Both the IPCC and IPBES highlight the crucial role of ecosystem restoration in addressing the interconnected crises of climate change and biodiversity loss. One key restoration strategy is rewilding, which enhances ecosystem complexity with minimal human intervention. While traditional rewilding strategies often focus on benefits for biodiversity, we propose a climate-smart rewilding framework as a new approach designed to deliver climate benefits alongside biodiversity restoration. This framework seeks to integrate biodiversity, climate change adaptation and mitigation, as well as socio-economic benefits and trade-offs. We illustrate how this framework can be utilized to identify areas across Europe where rewilding could increase carbon sequestration, enhance species abilities to adapt to the velocity of climate change, and maximize wildlife-watching benefits while minimizing the costs associated with livestock-wildlife conflict. Finally, we acknowledge some limitations of climate-smart rewilding, but we argue that its adaptability and low cost render it a promising solution to the challenges facing Europe and beyond.

ecology↗