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Seasonal and Temporal Dynamics ofPhysicochemical and Biological Propertiesof Chronosequence Coal Mine Spoil Soils

机译:时序煤Sp土壤的理化生物学特性的时空动态

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摘要

Open cast coal mining cause severe damage to soil physicochemical and biological properties. The present study, therefore, was carried out to evaluate the effect of open cast coal mining on the seasonal and temporal dynamics of soil properties. Soil samples were collected from chronosequence spoil soils and one undisturbed forest in two seasons for 2 consecutive years. Most of the studied soil properties deviated from the forest soil. The dumping soils were highly acidic as compared to the forest soil. Soil acidity decreased with increase in soil age. Significant negative correlation of soil pH and nickel (Ni), zinc (Zn), copper (Cu), nitrogen (N), phosphorus (P) (p<0.01), indicated that increase in spoil soil acidity increased the solubility/availability of these heavy metals, while decrease in soil acidity increased the availability of N and P. High soil acidity and higher concentration of heavy metals reduced the bacterial population number and activity of soil enzymes. Soil enzymes and bacterial population number significantly correlated with each other indicating their interdependence. Seasonal dynamics was observed in soil temperature. While, temporal dynamics was exhibited by soil pH, N, P, Ni, Zn, Cu, and dehydrogenase activity. Soil moisture content, arsenic, bacterial population number, urease, and phosphatase activity exhibited both seasonal and temporal dynamics. Ordination diagram of principal component analysis showed strong relationship of soil biological properties with undisturbed forest and heavy metals with disturbed spoil soils.
机译:露天煤矿开采对土壤的理化和生物学特性造成严重损害。因此,本研究旨在评估露天煤矿对土壤性质的季节性和时间动态的影响。在连续2年的两个季节中,从时序序列的弃土和一个未受干扰的森林中收集土壤样品。大多数研究的土壤性质都偏离了森林土壤。与森林土壤相比,倾倒土壤是高酸性的。土壤酸度随年龄的增长而降低。土壤pH值与镍(Ni),锌(Zn),铜(Cu),氮(N),磷(P)呈显着负相关(p <0.01),表明土壤酸性的增加增加了土壤的溶解度/有效性。这些重金属虽然降低了土壤酸度,但增加了氮和磷的利用率。高土壤酸度和较高重金属浓度降低了细菌的数量和土壤酶的活性。土壤酶和细菌种群数量显着相关,表明它们相互依赖。在土壤温度中观察到季节动态。同时,土壤pH,N,P,Ni,Zn,Cu和脱氢酶活性表现出时间动态。土壤水分,砷,细菌数量,脲酶和磷酸酶活性均表现出季节和时间动态。主成分分析的排序图表明,土壤生物学特性与未受干扰的森林以及重金属与扰动的土壤有很强的关系。

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