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首页> 外文期刊>Environmental Geology >Saline groundwater seepage zones and their impact on soil and water resources in the Spicers Creek catchment, central west, New South Wales, Australia
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Saline groundwater seepage zones and their impact on soil and water resources in the Spicers Creek catchment, central west, New South Wales, Australia

机译:澳大利亚新南威尔士州中西部的Spicers Creek流域的盐渍地下水渗流区及其对土壤和水资源的影响

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摘要

Saline seepage zone development and hence dryland salinity is a major environmental problem which many arid to semiarid landscapes in Australia are experiencing. Due to the geological complexity of the regional aquifer system and the heterogeneous nature of the local groundwater system, each groundwater seepage zone in the Spicers Creek catchment, central west, New South Wales, Australia possesses different mechanisms which control its development. Saline seepage zones have formed adjacent to a fault zone, and two experimental sites were established through these groundwater discharge zones to understand geochemical processes which have led to the development of soil sodicity, gully erosion and the flushing of salts into the surface water systems. Seepage zone groundwaters contain a distinctive geochemical signature with elevated concentrations of Na, Cl, HCO3, Ca, Sr, B, As and Li. The mixing of deep saline groundwaters together with ion exchange processes lead to a distinctive seepage zone groundwater chemistry being developed. Altering the landscape features within this rural groundwater system has developed water toxicity for crops, soil sodicity leading to land degradation, and waterlogging problems.
机译:盐碱渗漏区的发展以及干旱地区盐碱化是澳大利亚许多干旱至半干旱景观所面临的主要环境问题。由于区域含水层系统的地质复杂性和当地地下水系统的异质性,澳大利亚新南威尔士州中西部的Spicers Creek流域的每个地下水渗流区都有不同的机制来控制其发展。在断层带附近形成了盐渍渗漏区,并通过这些地下水排放区建立了两个实验点,以了解地球化学过程,这些过程导致了土壤的碱化,沟壑侵蚀和盐分冲入地表水系统。渗流带地下水含有独特的地球化学特征,其中Na,Cl,HCO3,Ca,Sr,B,As和Li的浓度升高。深层盐水地下水与离子交换过程的混合导致开发出独特的渗漏区地下水化学物质。在这种农村地下水系统中改变景观特征,已经对农作物产生了水毒性,导致土壤退化的土壤碱化以及内涝问题。

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