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Revegetation on Tropical Steep Slopes after Mining and Infrastructure Projects: Challenges and Solutions

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SUSTAINABILITY
卷 14, 期 24, 页码 -

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MDPI
DOI: 10.3390/su142417003

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slope stability; erosion; succession; rupestrian ecosystems; species selection; mining; rehabilitation; carbon fixation

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Revegetation of steep slopes is a challenging and long-term process due to environmental constraints such as high temperature, toxic elements, and limited water and nutrient availability. Planting strategies and careful species selection are crucial for enhancing vegetation cover. Species from local rupestrian ecosystems show promise. Further research is needed to improve the effectiveness of steep slope rehabilitation.
The revegetation of steep slopes after mining and infrastructure projects is not an easy task. To enhance the effectiveness of revegetation projects, the present study aimed to review (i) specific challenges of steep slope revegetation, (ii) ecological succession patterns in similar environments, (iii) soil conditioning and revegetation strategies to enhance vegetation cover, (iv) the importance of microorganisms to enhance steep slope revegetation, and (v) the functional plant traits necessary to establish on steep slopes. In general, steep slopes are characterized by high bulk densities, potentially toxic elements, and low water and nutrient availability. Additionally, high temperature and elevated radiation constrain the soil conditioning and vegetation cover establishment. Lessons from ecological succession in natural steep slope habitats show that steep slope revegetation is a long-term process. Planting strategies, including hydroseeding and geotextiles, may enhance the implementation of vegetation cover. Different plant functional groups show adaptations necessary for establishment in steep slope environments, and mixtures of species containing different functional groups can promote diverse and resilient plant communities. Promising species may be retrieved from local rupestrian ecosystems, as these floras are adapted to shallow, oligotrophic soils. Further research on combining methods of soil conditioning with individual planting and/or seeding strategies of carefully selected species is necessary to enhance steep slope revegetation and rehabilitation, contributing to slope stability, erosion reduction, and carbon fixation in the long term.

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