Egidio Elena, De Luca Domenico Antonio, Lasagna Manuela
University of Torino, Earth Sciences Department, Via Valperga Caluso 35, 10125, Torino, Italy.
Heliyon. 2024 Mar 16;10(6):e27762. doi: 10.1016/j.heliyon.2024.e27762. eCollection 2024 Mar 30.
Groundwater (GW) is sensitive to climate change (CC), and the effects have become progressively more evident in recent years. Many studies have examined the effects of CC on GW quantity. Still, there is growing interest in assessing the qualitative impacts of CC, especially on GW temperature (GWT), and the consequences of these impacts. This study aimed to systematically review recently published papers on CC and GWT, determine the impacts of CC on GWT, and highlight the possible consequences. The Scopus and Web of Science databases were consulted, from which 144 papers were obtained. After an initial screening for duplicate papers, a second screening based on the titles and abstracts, and following an analysis of topic applicability to this subject after examining the full text, 44 studies were included in this review. The analysed scientific literature, published in 29 different journals, covered all five continents from 1995 to 2023. This review indicated that the subject of GWT variations due to CC is of global interest and has attracted significant attention, especially over the past two decades, with many studies adopting a multidisciplinary approach. A general increase in GWT was noted as a primary effect of CC (especially in urban areas); furthermore, the implications of this temperature increase for contaminants and GW-dependent ecosystems were analysed, and various applications for this increase (e.g. geothermal) were evaluated. This review highlights that GWT is vulnerable to CC and that the consequences can be serious and worthy of further investigation.
地下水(GW)对气候变化(CC)敏感,近年来这种影响愈发明显。许多研究探讨了气候变化对地下水量的影响。然而,人们越来越关注评估气候变化的定性影响,尤其是对地下水温度(GWT)的影响以及这些影响带来的后果。本研究旨在系统回顾最近发表的关于气候变化和地下水温度的论文,确定气候变化对地下水温度的影响,并突出可能产生的后果。我们查阅了Scopus和科学网数据库,从中获取了144篇论文。在初步筛选重复论文、基于标题和摘要进行二次筛选,并在检查全文后分析主题对该主题的适用性之后,本综述纳入了44项研究。分析的科学文献发表在29种不同的期刊上,涵盖了1995年至2023年的五大洲。该综述表明,气候变化导致的地下水温度变化这一主题受到全球关注,并引起了广泛关注,特别是在过去二十年中,许多研究采用了多学科方法。人们注意到地下水温度普遍升高是气候变化的主要影响(尤其是在城市地区);此外,分析了这种温度升高对污染物和依赖地下水的生态系统的影响,并评估了这种升高的各种应用(如地热)。本综述强调,地下水温度易受气候变化影响,其后果可能很严重,值得进一步研究。