加拿大萨斯喀彻温省间田和地下河谷含水层的地下水时代。

Ground water Pub Date : 2025-01-06 DOI:10.1111/gwat.13463
Chandler Noyes, Jennifer C McIntosh, Nicholas Dutka, Rebecca Tyne, Matthew B J Lindsay, Grant Ferguson
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引用次数: 0

摘要

更新世时期的大陆冰川作用在地球北部许多地区形成了复杂的含水层和引水系统。冰川坡耕地含水层的低水力导率表明,有限的补给将到达下面的含水层,潜在地保存了旧的地下水。本文利用14C、3H、4He、δ2H、δ18O和主要离子表征了加拿大萨斯喀彻温省间作层和隐谷含水层的补给历史。14C深度的间作含水层年龄在0 ~ 15.5 ka之间。这些含水层在一些地方还含有3H和/或升高的NO3,表明现代补给的一部分与旧水混合了。该地区朱迪思河基岩含水层的一个样品的14C校正年龄为10.2 ka, NO3升高。在深度89 ~ 123 m的埋藏山谷含水层样本中,一些地方含有年龄为bb0 ~ 38ka的较老的水,表明补给发生在该地区最后一次冰川推进之前。虽然测量覆盖广泛年龄范围的示踪剂对于了解这些流动系统是必要的,但δ2H和δ18O的诊断性较差,因为现代冬季降水的值与具有广泛年龄范围的地下水重叠。该区域间土层存在的年龄范围表明,这些系统目前正在得到补充,这表明地下水资源的一些开发是可能的,但也表明需要采取地下水保护措施。
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Groundwater Ages in Intertill and Buried Valley Aquifers in Saskatchewan, Canada.

Continental glaciations during the Pleistocene Epoch created complex systems of aquifers and aquitards across many northern regions of the Earth. The low hydraulic conductivities of glacial till aquitards suggest that limited recharge will reach the underlying aquifers, potentially preserving old groundwaters. Here, we characterize the recharge history in intertill and buried valley aquifers in Saskatchewan, Canada using 14C, 3H, 4He δ2H, δ18O, and major ions. Intertill aquifers with depths of <30 m had corrected 14C ages ranging from 0 to 15.5 ka. These aquifers also contained 3H and/or elevated NO3 in some locations, indicating that a component of modern recharge had mixed with older water. A single sample from the Judith River bedrock aquifer in the region had a corrected 14C age of 10.2 ka and elevated NO3. Samples from buried valley aquifers with depths of 89 to 123 m contained older waters with ages >38 ka in some locations, indicating that recharge occurred before the last glacial advance over the region. While measuring tracers that cover a wide range of ages is necessary to understand these flow systems, δ2H and δ18O were less diagnostic because values of modern winter precipitation overlapped with groundwaters with a wide range of ages. The range of ages present in the intertill aquifers of the region indicates that these systems are currently being recharged, which indicates some development of groundwater resources is possible but also points to a need for groundwater protection measures.

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