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Evaluating the environmental and economic impact of mining for post-mined land restoration and land-use: A review

机译:评估采矿后矿床恢复和土地利用的环境和经济影响:审查

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Mining has been a long-standing key player in economic development, employment, infrastructure, and supply of essential raw materials for society. It has served as a viable route to economic transformation in resource-rich countries like Australia, Canada, the United States, and parts of Africa. In this review, the impact of mining has been conceptualized into economic, environmental, and social impacts. While it is clear that mining has transformed many economies, it has also impacted negatively on the environment and, to some extent, society. Some of the negative impacts of mining are loss of vegetation cover, mass destruction of water bodies, loss of biodiversity, land-use changes and food insecurity, increased social vices and conflicts, high cost of living, and air pollution. However, reclamation has been a viable way of reducing the negative impacts of abandoned mine lands and ensure productive and efficient utilization of mine wastelands. Compaction, low or high pH, low water holding capacity, gullies, bulk density, deficiency of micro, and macronutrients are the major factors limiting the productivity of mine wastelands. A combination of physical, chemical, and biological restoration practices is ideal for restoring the mine soil productivity. While the physical method deals with earth-battering, thus putting the land back to shape, the chemical and biological methods include various amendments such as biochar, compost, synthetic fertilizers, synthetic chelates, shrubs, and grasses, and nanoparticles. A combination of these three restoration methods restores soil fertility, stimulates microbial growth, and facilitates early ecological succession. However, before embarking on reclamation, the particular post-mined land use should be clearly stated, such as conservations, forestry, agriculture, construction, intensive recreation, non-intensive recreation, and lake or pool through land suitability and selection analyses. This review has guiding significance and recommendations for mining and post-mined rehabilitation.
机译:矿业一直是经济发展,就业,基础设施和社会基本原材料供应的长期关键球员。它担任资源丰富国家的可行途径,如澳大利亚,加拿大,美国和非洲的部分地区。在本文中,采矿的影响已被概念化为经济,环境和社会影响。虽然很明显,矿业改造了许多经济体,但它也对环境产生了负面影响,而且在某种程度上会影响社会。采矿的一些负面影响是植被覆盖的损失,对水体的大规模破坏,生物多样性丧失,土地利用变化和粮食不安全,增加了社会恶习和冲突,生活成本高,生活成本高。然而,回收是减少废弃矿山土地的负面影响的可行方式,并确保矿山荒地的生产力有效利用。压实,低或高pH,低水持有能力,沟渠,散装密度,微观和Macronurivers的缺乏是限制矿山荒地生产率的主要因素。物理,化学和生物修复实践的组合是恢复矿井土壤生产率的理想选择。虽然物理方法涉及地球抗磨,从而将陆地恢复到形状,化学和生物方法包括生物炭,堆肥,合成肥料,合成螯合物,灌木和草等各种修正,以及纳米颗粒。这三种恢复方法的组合恢复土壤肥力,刺激微生物生长,并促进早期生态继承。然而,在开始填海过程之前,应清楚地说明特定的后勤土地使用,如保护,林业,农业,建筑,密集娱乐,非密集娱乐和湖泊或池中,通过土地适用性和选择分析。该综述具有指导矿业和开采后康复的推荐和建议。

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