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April 21, 2026Frontiers in Environmental Science2 citationsOpen Access

A land-based pathway to carbon neutrality in rural districts

GPGabriele PizzileoRVRiccardo ValentiniMEMario Elia

Key Points

  • This research aims to assess the potential of sustainable land management for reducing greenhouse gas emissions while restoring rural areas.
  • Developed and applied a land-based approach using Life Cycle Assessment and IPCC methods.
  • Conducted a case study in southern Apulia, Italy, focusing on an area affected by olive quick decline syndrome.
  • Evaluated GHG emissions and mitigation potential from sustainable land management solutions.
  • Sustainable land-based solutions can lead to the complete offset of agricultural GHG emissions.
  • Net carbon removal could reach approximately 384 Gg CO2 per year.
  • Showed that land use conversions and sustainable practices significantly restore degraded farming systems.

Abstract

The land sector has a crucial role in the global pathway towards carbon neutrality, being at the same time a significant contributor to global greenhouse gases (GHG) emissions and an active removal and storage of atmospheric carbon when sustainably managed. In this paper, we develop and apply a land-based approach to assess how sustainable land management solutions can pursue the dual aim of regenerating degraded rural areas and offsetting agricultural GHG emissions, thereby contributing to the achievement of carbon neutrality in rural districts. The proposed land-based approach integrates different methodologies, including Life Cycle Assessment, literature data and IPCC methods, with the objective to determine the agriculture-related GHG emissions and the potential for mitigation through sustainable land-based solutions implemented within the same rural district. The application to a case study in the Mediterranean region, i.e., southern Apulia region (Italy) affected since 2013 by the “olive quick decline syndrome” which causal agent is identified in the bacterium Xylella fastidiosa , showed that sustainable land-based solutions, besides restoring the degraded farming system, can lead to a carbon neutral rural district. Land use conversions, afforestation and sustainable agricultural practices would lead to a reduction and a complete offset of the agricultural GHG emissions in the area, even producing a net carbon removal (i.e., negative emissions) up to about 384 Gg CO 2 year −1 . As such, this study demonstrates that sustainable land-use options are key in contributing to climate change mitigation while improving the landscape and related co-benefits.

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Cite This Study

Pizzileo et al. (2026) studied this question.

synapsesocial.com/papers/69e7132bcb99343efc98cdf4https://doi.org/10.3389/fenvs.2026.1792209
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