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Quantification of the inevitable: the influence of soil macrofauna on soil water movement in rehabilitated open-cut mined lands

机译:定量分析的必然结果:土壤改良动物对恢复开垦地雷后土壤水分运动的影响

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Recolonisation of soil by macrofauna (especially ants, termites and earthworms) in rehabilitated open-cut mine sites is inevitable and, in terms of habitat restoration and function, typically of great value. In these highly disturbed landscapes, soil invertebrates play a major role in soil development (macropore configuration, nutrient cycling, bioturbation, etc.) and can influence hydrological processes such as infiltration, seepage, runoff generation and soil erosion. Understanding and quantifying these ecosystem processes is important in rehabilitation design, establishment and subsequent management to ensure progress to the desired end goal, especially in waste cover systems designed to prevent water reaching and transporting underlying hazardous waste materials. However, the soil macrofauna is typically overlooked during hydrological modelling, possibly due to uncertainties on the extent of their influence, which can lead to failure of waste cover systems or rehabilitation activities. We propose that scientific experiments under controlled conditions and field trials on post-mining lands are required to quantify (i) macrofauna–soil structure interactions, (ii) functional dynamics of macrofauna taxa, and (iii) their effects on macrofauna and soil development over time. Such knowledge would provide crucial information for soil water models, which would increase confidence in mine waste cover design recommendations and eventually lead to higher likelihood of rehabilitation success of open-cut mining land.
机译:在开阔的露天矿区,大型动物(尤其是蚂蚁,白蚁和earth)对土壤进行重新定殖是不可避免的,就生境恢复和功能而言,通常具有很大的价值。在这些高度受干扰的景观中,无脊椎动物在土壤发育(大孔构造,养分循环,生物扰动等)中起着重要作用,并且可以影响水文过程,例如渗透,渗流,径流的产生和土壤侵蚀。了解和量化这些生态系统过程对于恢复设计,建立和后续管理非常重要,以确保进展到预期的最终目标,尤其是在旨在防止水到达和运输潜在有害废物的废物覆盖系统中。但是,土壤大型动物通常在水文建模过程中被忽略,这可能是由于其影响程度的不确定性,这可能导致废物覆盖系统或恢复活动失败。我们建议需要在受控条件下进行科学实验并在采矿后土地上进行田间试验,以量化(i)大型动物-土壤结构的相互作用,(ii)大型动物群的功能动力学,以及(iii)它们对大型动物和土壤发育的影响时间。这些知识将为土壤水模型提供关键信息,这将增加对矿山废物覆盖设计建议的信心,并最终导致露天矿恢复成功的可能性更高。

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