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首页> 外文期刊>Science of the total environment >Using ~(14)C and ~3H to delineate a recharge 'window' into the Perth Basin aquifers,North Gnangara groundwater system, Western Australia
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Using ~(14)C and ~3H to delineate a recharge 'window' into the Perth Basin aquifers,North Gnangara groundwater system, Western Australia

机译:用〜(14)C和〜3H划定补给“窗口”到西澳大利亚州北加纳加拉地下水系统的珀斯盆地含水层

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摘要

The Gnangara Mound and the underlying Perth Basin aquifers are the largest source of groundwater for the southwest of Australia, supplying between 35 and 50% of Perth's potable water (2009-2010). However, de clining health of wetlands on the Mound coupled with the reduction in groundwater levels from increased irrigation demands and drier climatic conditions means this resource is experiencing increased pressures. The northern Cnangara is an area where the Yarragadee aquifer occurs at shallow depths (~50 m) and is in direct contact with the superficial aquifer, suggesting the possibility of direct recharge into a generally con fined aquifer. Environmental isotopes (~(14)C and ~3H) and hydrochemical modelling were used to assess the presence of a recharge 'window' as well as understand the groundwater residence time within different aqui fers. Forty-nine groundwater samples were collected from depths ranging from 11 to 311 m below ground surface. The isotopic variation observed in the superficial aquifer was found to be controlled by the different lithologies present, i.e. quartz-rich Bassendean Sand and carbonate-rich sediments of the Ascot Formation. Rainfall recharge into the Bassendean Sand inherits its dissolved inorganic carbon from the soil CO_2. Organic matter throughout the soil profile is degraded by oxidation leading to anoxic/acidic groundwater, which if in contact with the Ascot Formation leads to enhanced dissolution of carbonates. Hydrochemical mass balance modelling showed that carbonate dissolution could contribute 1-2 mmol kg~(-1) of carbon to groundwaters recharged through the Ascot Formation. The corrected groundwater residence times of the Yarragadee aqui fer in the northern part of the study area ranged from 23 to 35 ka, while waters in the southeastern corner ranged from sub-modern to 2 ka. Groundwater ages increase with distance radiating from the recharge 'win dow'. This study delineates a recharge 'window' into the commonly presumed confined aquifers of the Perth Basin, highlighting the need for appropriate sustainable management.
机译:加纳加拉土墩和基础的珀斯盆地含水层是澳大利亚西南部最大的地下水源,供应珀斯的饮用水的35%至50%(2009-2010年)。但是,丘陵湿地的健康状况下降,再加上灌溉需求增加和气候条件更干旱导致地下水位下降,这意味着该资源正承受着越来越大的压力。 Cnangara北部是Yarragadee含水层出现在较浅深度(〜50 m)的区域,并且与浅层含水层直接接触,这表明有可能直接补给一般受限的含水层。使用环境同位素(〜(14)C和〜3H)和水化学模型来评估补给“窗口”的存在以及了解地下水在不同含水层中的停留时间。在地表以下11至311 m的深度收集了49个地下水样品。发现在浅层含水层中观察到的同位素变化是由存在的不同岩性控制的,即,富含石英的巴塞地沙和阿斯科特组的富含碳酸盐的沉积物。向Bassendean沙中补给的雨水从土壤CO_2继承了其溶解的无机碳。整个土壤剖面中的有机物会被氧化降解,导致缺氧/酸性地下水,如果与Ascot地层接触,则会增加碳酸盐的溶解。水化学质量平衡模型表明,碳酸盐的溶解可为通过阿斯科特组补给的地下水贡献1-2 mmol kg〜(-1)的碳。在研究区域的北部,Yarragadee含水层的校正后的地下水停留时间范围为23至35 ka,而东南角的水域范围为近现代至2 ka。地下水的年龄随着补给“双陶”的辐射距离增加而增加。这项研究勾勒出珀斯盆地通常假定的承压含水层的补给“窗口”,强调了适当可持续管理的必要性。

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  • 来源
    《Science of the total environment 》 |2012年第1期| p.456-469| 共14页
  • 作者单位

    Australian Nuclear Science and Technology Organisation, Institute for Environmental Research, Locked Bag 2001, Kirrawee DC, NSW 2232, Australia;

    Australian Nuclear Science and Technology Organisation, Institute for Environmental Research, Locked Bag 2001, Kirrawee DC, NSW 2232, Australia;

    Department of Water, PO Box K822 Perth WA 6842, Australia;

    Australian Nuclear Science and Technology Organisation, Institute for Environmental Research, Locked Bag 2001, Kirrawee DC, NSW 2232, Australia;

    Australian Nuclear Science and Technology Organisation, Institute for Environmental Research, Locked Bag 2001, Kirrawee DC, NSW 2232, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    gnangara mound; ~(14)C; ~3H; groundwater; isotopes; water resource;

    机译:gnangara土墩;〜(14)C;〜3小时;地下水;同位素水资源;

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