4.7 Article

How the ecosystem extent is changing: A national-level accounting approach and application

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 815, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2021.152903

关键词

Ecosystem accounting; Extent account; Natural capital; SEEA-EA; Spain

资金

  1. EU MAIA project [H2020-SC5-2018-1, 817527]
  2. Rey Juan Carlos University [PREDOC21-029]

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This study presents a novel approach to develop an ecosystem extent account at the national scale, providing reliable information on the spatial and statistical changes of 26 ecosystems in Spain between 1970 and 2015. The results show an increase in forest ecosystems, a decrease in agroecosystems (especially annual croplands), and significant development of urban areas. This method is crucial for understanding ecosystem dynamics and their implications for the environment and services.
Assessing the spatial and temporal changes in ecosystems is essential to account for natural capital contribution to human well-being. However, various methods to quantify these changes challenge the development of reliable values which can be integrated into national statistical accounts. Following the international system of environmentaleconomic accounting framework, which recently adopts an ecosystem accounting standard. We present a novel approach to develop an ecosystem extent account from existing ecosystem classifications. This study shows the spatial and statistical extent account of 26 ecosystems (i.e. forests, grasslands, croplands, and urban, among others) between 1970 and 2015 at the national scale. Extent accounts were developed at a resolution of 25 m and provided reliable information on how ecosystem types have changed over time in Spain. Our results reflect three main patterns in the extension account: (i) an increase in forest ecosystems, (ii) a considerable decrease in agroecosystems (especially annual croplands), and (iii) substantial development of urban areas. To the best of our knowledge, this method is the first attempt to develop a robust methodology to measure the extent of ecosystems at the national level. The proposed approach is crucial for a strong knowledge of ecosystem dynamics and their implications for ecosystem conditions and services at a national level. This has potential applications in urban planning, green infrastructure development, and multiple uses for territory management and policies, integrating natural capital into official statistics and mainstreaming ecosystems into national-level planning and monitoring processes.

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