Minerals (May 2020)

Successful Ecological Regeneration of Opencast Coal Mine Spoils through Forestation: From Cradle to Grove

  • Martin Haigh,
  • Patricia Woodruffe,
  • Margaret D’Aucourt,
  • Elanor Alun,
  • Gillian Wilding,
  • Susan Fitzpatrick,
  • Ekaterina Filcheva,
  • Maya Noustorova

DOI
https://doi.org/10.3390/min10050461
Journal volume & issue
Vol. 10, no. 5
p. 461

Abstract

Read online

The reclamation of surface (opencast) coal mines is not always successful; there remains a legacy of degraded land that burdens local communities. This article evaluates a community-oriented, low-cost means of geoecological regeneration, the “Cradle for Nature” strategy, which uses mosaic tree planting to foster positive natural ecological processes. Results show that, while the autocompaction of minestones quickly raises soil densities to levels hostile to plant growth, forestation helps moderate soil densities. Weathering concentrates metals in minestones, but 14 years of forestation reduced the loadings of five metals by 35–52%. Twenty years of forestation doubled soil organic carbon to >7%; increased bacilli from 7% to 46%; actinomycetes from 10% to 26%; and soil microbe counts 12–15 times, especially in tree plantings treated with fertiliser. Soils under trees also supported a significantly greater earthworm biomass than under grass but, while open-canopy plantings had increased ground flora biodiversity, closed-canopy plantings had lower diversity and biomass. Following closure to grazing, ground biomass increased sevenfold. Young trees act as bird perches and significantly increase seed fall. Small mammal biomass and biodiversity increases after tree planting and higher predators appear. Varteg’s constructed forest provides an effective “cradle” for an emergent geoecological system and its habitat mosaic maximises biodiversity.

Keywords