洪水频率对洪泛平原表层土壤性质非均质性的影响

IF 2.9 Q2 SOIL SCIENCE
S. Rayburg, M. Neave, Justin Thompson-Laing
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引用次数: 0

摘要

洪泛平原土壤受到准周期性洪水扰动。这种洪水有助于丰富泛滥平原土壤,增加其肥力,通常使其成为农业的理想地点。然而,人们不太了解洪水频率如何影响土壤肥力和土壤特性的多样性。本研究调查了洪水频率如何影响澳大利亚新南威尔士州半干旱泛滥平原湿地系统中泛滥平原土壤的异质性(使用26种物理和地球化学土壤特性进行评估)。该研究包括对四个洪水频率(或干扰频率)类别的土壤特性的调查,从频繁到罕见的洪水干扰。从每个区域收集了30个样本,并使用一套单变量和多变量统计检验对物理和地球化学土壤数据进行了分析。结果表明,与经常遭受洪水干扰的地点相比,遭受中等程度洪水干扰的地区土壤性质具有更大的多样性。这些结果反映了中间干扰假说的结果,这是一种生态理论,认为在中间干扰的环境中也会发现最高的生物多样性,并表明在中间干扰洪泛平原中可能存在生物多样性的物理栖息地驱动因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Impact of Flood Frequency on the Heterogeneity of Floodplain Surface Soil Properties
Floodplain soils are subject to quasi-periodic flood disturbances. This flooding serves to enrich floodplain soils, increasing their fertility and often making them ideal locations for agriculture. However, what is less well understood is how the frequency of flooding impacts on soil fertility and the diversity of soil character. This study investigates how flood frequency influences the heterogeneity (assessed using 26 physical and geochemical soil properties) of floodplain soils in a semi-arid floodplain wetland system in New South Wales, Australia. The study includes an investigation of soil properties across four flood frequency (or disturbance frequency) categories ranging from frequent through to infrequent flood disturbance. Thirty samples were collected from each zone and the physical and geochemical soil data were analyzed using a suite of univariate and multivariate statistical tests. The results show that sites subject to an intermediate level of flood disturbance have a greater level of diversity in soil properties than those sites subject to frequent flood disturbances. These results reflect those of the Intermediate Disturbance Hypothesis, an ecological theory that posits the highest biological diversity will also be found in intermediately disturbed environments and suggests that there might be physical habitat drivers of biological diversity in intermediately disturbed floodplains.
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
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