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The relationship between native vegetation and in-stream salinity: an Australian case study

机译:原生植被与流盐度之间的关系:澳大利亚案例研究

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The Glenelg-Hopkins area is a large regional watershed (2.6 million ha) in southwest Victoria that has been extensively cleared for agriculture. In-stream electrical conductivity (EC) in relation to remnant native vegetation is examined from the headwaters to the upper extent of the estuary of the Glenelg River. Five water quality gauging stations were selected. Their contributing subcatchments represent a continuum of disturbance. Proportions of native vegetation ranged from —100% at the headwaters of the river to 30% at the furthest downstream gauge station. The relationship between remnant vegetation and in-stream EC was examined using aggregated and non-aggregated land use statistics over a period of 22 years from three land use maps. Increased proportions of native vegetation were significantly negatively correlated with in-stream EC and were consistent across all scenarios investigated.
机译:格兰内尔格霍普金斯地区是维多利亚西南西南部大型区域分水岭(260万公顷),已被广泛清理农业。在河口的河口河口的上部范围内,将相对于残余天然植被的流动电导率(EC)从格兰尔格河河口的上部范围内检查。选择了五个水质测量站。他们的贡献分部代表了一个干扰的连续性。在河道的河口到最远的下游计站,原生植被的比例从-100%到30%。使用汇总和非聚合的土地利用统计数据从三个土地使用的22年来检查残余植被和流中EC之间的关系。增加的原生植被比例与流欧共体显着呈负相关,并在调查的所有情景中一致。

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