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Evaluation of ecological restoration success in mining-degraded lands

机译:矿区退化土地生态恢复成功评价

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This review article analyzes the importance of assessing the success of ecological restoration by using four indicators: assemblage of the plant and animal communities; enzyme activity; litter accumulation and decomposition; and the improvement of soil quality. These indicators can be used alone or in combinations. Even though the Society for Ecological Restoration International provided a primer containing nine attributes to use as standards for measuring ecological restoration, only three of these attributes could be easily applied due to their low costs and low time requirements. These three attributes include: diversity, vegetation structure, and ecological processes. This review article emphasizes that the criteria for the selection of the indicator species should be based upon: habitat types, abundance of species, ease of measuring, quantifying and interpreting the results, gradual enhancement with time and cost-effectiveness, sensitivity, variability of response, size, residential status, and requirements of the area. Principal component analysis was applied to calculate the reclaimed mine soil quality index (RMSQI) and the forest soil quality index (FSQI) and the RMSQI value was compared with FSQI (optimum index value of reference ecosystem) to evaluate the restoration success. Available phosphorus, exchangeable magnesium, organic carbon, clay content, field moisture, available nitrogen, electrical conductivity, and pH are identified as the most influential parameters that regulate the health of reclaimed mine soil. Exchangeable calcium, magnesium, cation exchange capacity, sand, silt, clay content, field moisture, available phosphorus, and pH are the controlling properties for forest soil. The observed values of the above-stated soil indicator properties were converted into a unitless score (0-1.00) and integrated into index calculations (RMSQI and FSQI). The contribution of each soil indicator properties on the calculated index was analyzed, which provides insight into the reason for the measured index. A higher RMSQI indicates better ecological restoration success. The calculated RMSQI was found to be 0.473 in the reclaimed dump, which is 6% lower than the reference ecosystem.
机译:这篇综述文章通过使用四个指标来分析评估生态恢复成功与否的重要性:动植物群落的组合;酶活性垃圾堆积和分解;以及改善土壤质量。这些指标可以单独使用或组合使用。即使国际生态恢复学会提供了包含九个属性的底漆,可以用作衡量生态恢复的标准,但由于它们的成本低和时间短,因此这些属性中只有三个很容易应用。这三个属性包括:多样性,植被结构和生态过程。这篇评论文章强调选择指标物种的标准应基于:栖息地类型,物种丰富度,易于测量,量化和解释结果,随着时间和成本效益逐步增强,敏感性,响应变异性,面积,居住状况和该地区的要求。应用主成分分析法计算矿山复垦土壤质量指数(RMSQI)和森林土壤质量指数(FSQI),并将RMSQI值与FSQI(参考生态系统的最佳指数值)进行比较,以评估恢复的成功程度。有效磷,可交换镁,有机碳,粘土含量,田间水分,有效氮,电导率和pH被确定为调节再生矿土壤健康的最具影响力的参数。可交换的钙,镁,阳离子交换容量,沙子,淤泥,粘土含量,田间水分,有效磷和pH值是森林土壤的控制特性。将上述土壤指示剂特性的观测值转换为无单位得分(0-1.00),并整合到指数计算中(RMSQI和FSQI)。分析了每种土壤指示剂特性对计算指标的贡献,从而可以深入了解测量指标的原因。 RMSQI越高,表明生态恢复成功越好。在回收的垃圾场中发现计算得出的RMSQI为0.473,比参考生态系统低6%。

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