Success in restoring native plant communities on kimberlite mining dumps in the Afro-alpine Drakensberg region of Lesotho
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Abstract
Rehabilitation strategies for degraded mine dumps have generally seen limited success due to different complications associated with mining biophysical disturbance.
In this study, we tested a combination of two methods to expedite revegetation
of kimberlite tailings at Letseng Diamond Mine (i.e., in the Afro-alpine areas of
Lesotho). We ran trials on different growth media located on fine and coarse kimberlite tailings (i.e. sites) mixed with different substrate combinations and topsoil
and sowing a seed mix comprised of native plant species. Overall, as predicted, fine
kimberlite tailings displayed significantly higher plant abundance than coarse kimberlite tailings, and sown seeds performed significantly better than spontaneous
colonisation by emerging species. Kimberlite tailings mixed with topsoil (100 mm)
showed significantly greater plant abundance, and similarly, when coarse kimberlite tailings were introduced to fine tailings. Physicochemical analyses of growth
media components suggested that topsoil provided additional nutrients and that
plants could readily access available nutrients in the fine kimberlite tailings. We
noted a gradual significant increase in plant abundance over 5 years, enhanced by
new plant species emerging from the topsoil seed bank or by natural seed dispersal.
Although plant abundance differed significantly, both fine and coarse kimberlite
tailings displayed high plant species diversity (H = 3.4 and D = 0.95 and H = 3.5 and
D = 0.95, respectively). Out of 36 emerging plant species, 15 species spontaneously colonised both growth media. The significant variation in abundance among
plant species between treatments was mostly attributed to dominant forb species, namely Chrysocoma ciliata, Glumicalyx montanus, Oxalis obliquifolia, Senecio
inaequidens and Trifolium burchellianum. We have identified suitable growth media
for plant community restoration on kimberlite tailings in the Drakensberg alpine
area using a seed mix of native plant species in combination with natural seed dispersal from the surrounding pristine environment. We provide evidence for using
two complementary approaches to optimise native plant community development
during restoration in the Drakensberg alpine area.
Sustainable Development Goals
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Unit for Environmental Sciences and
Management, North-West University,
Potchefstroom, South Africa
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Citation
Ntloko, B.R., Mokotjomela, T.M., Mphafi, S.P. and Siebert, S.J., 2024. Success in restoring native plant communities on kimberlite mining dumps in the Afro-alpine Drakensberg region of Lesotho. Ecol Evol 14 (3): e11022 [online]
