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首页> 外文期刊>Soil Research >Spatial heterogeneity of soil physico-chemical properties in contrasting wetland soils in two agro-ecological zones of Lesotho.
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Spatial heterogeneity of soil physico-chemical properties in contrasting wetland soils in two agro-ecological zones of Lesotho.

机译:莱索托两个农业生态区湿地土壤中土壤理化性质的空间异质性。

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摘要

Wetlands are complex ecosystems, often exhibiting considerable spatial variability, making the understanding of soil spatial relationships within them difficult. A study was conducted to evaluate spatial variability of soil physico-chemical properties in two contrasting wetlands in two agro-ecological zones (AEZs) of Lesotho. Soil samples were collected along two transects in mini-pits dug at different depths at 50-m intervals. The collected samples were analysed for particle size, pH, soil organic carbon (SOC), SOC pool, available phosphorus (Av-P), cation exchange capacity (CEC), and base cations. Results: showed that within-site variability was very low for sand particles and pH (coefficient of variation <15% for both properties). Soil physical properties generally showed less spatial heterogeneity than chemical properties, which differed widely within and between the study sites. There was generally low correlation between soil properties, and SOC accounted for most of the variation observed at both sites, especially T'sakholo with partial R2=94%; at Thaba-Putsoa, partial R2=44%. Geostatistical analysis showed that all of the nugget to sill ratios (NSR) showed strong spatial dependence (i.e. NSR of 54-94%) except SOC (T'sakholo stream-bank) with no spatial dependence, with the nugget accounting for 23.43%. We therefore conclude that further wetland studies in Lesotho should attempt to quantify not only the soil properties or processes under investigation but also their spatial variability, because this spatial variability can provide insight into underlying ecosystem processes and may itself indicate wetland condition. In addition, results of stepwise multiple regression showed that SOC and texture could be used across these sites for the sustainable management of these wetlands.
机译:湿地是复杂的生态系统,通常表现出很大的空间变异性,因此很难了解其中的土壤空间关系。进行了一项研究,以评估莱索托两个农业生态区(AEZ)中两个相反的湿地中土壤理化性质的空间变异性。沿两个样带在不同深度以50米间隔开挖的微型坑中收集土壤样品。分析收集的样品的粒径,pH,土壤有机碳(SOC),SOC池,有效磷(Av-P),阳离子交换容量(CEC)和碱性阳离子。结果:表明,对于沙粒和pH值,场地内变异性非常低(两种特性的变异系数<15%)。土壤物理性质通常表现出比化学性质更少的空间异质性,在研究地点之内和之间差异很大。土壤特性之间的相关性通常较低,SOC占两个站点观察到的大部分变化的原因,尤其是T'sakholo,部分R 2 = 94%;在Thaba-Putsoa,部分R 2 = 44%。地统计分析表明,除SOC(T'sakholo流库)无空间依赖性外,所有块金与门槛之比(NSR)均显示出强烈的空间依赖性(即NSR为54-94%),其中金块占23.43%。因此,我们得出结论,在莱索托进行的更多湿地研究不仅应量化被调查的土壤性质或过程,而且还应量化其空间变异性,因为这种空间变异性可以提供对潜在生态系统过程的洞察力,并且本身可以指示湿地状况。此外,逐步多元回归的结果表明,SOC和质地可用于这些地点,以可持续管理这些湿地。

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