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亚热带半混合城市湖泊水动力与水质的变化

Changes in hydrodynamics and water quality of a subtropical meromictic urban lake.

作者信息

Wei Hengyu, Zhang Hong, Hamilton David P, Zhang Fuxin, McVeigh Steven

机构信息

School of Engineering and Built Environment, Griffith University, Gold Coast Campus, Gold Coast, QLD, 4222, Australia.

Australian Rivers Institute, Griffith University, Nathan Campus, Brisbane, QLD, 4111, Australia.

出版信息

Environ Monit Assess. 2025 Jul 15;197(8):918. doi: 10.1007/s10661-025-14347-1.

Abstract

Coastal canal and waterway development has expanded rapidly over the past half-century, contributing to environmental issues such as declining water quality and saltwater intrusion. This study analysed 35 years of field sampling data from a subtropical meromictic lake to investigate water quality changes caused by intermittent saltwater intrusion. Saltwater intrusion began after a canal expansion converted a stormwater pipe into a bidirectional conduit, allowing saltwater to flow into the lake during high tides. Lake surface water temperature increased at a rate of 0.019 °C p.a. and pH has shifted from acidic to circumneutral over the study period, likely due to the disturbance of a pyrite layer during the initial construction phase and progressive increases in trophic state. Salinity accumulation in the bottom waters has caused the lake to transition from monomictic to meromictic, with stratification increasing through the 1990s, as evidenced by increases in Schmidt stability index. This shift to meromixis has resulted in permanent bottom-water deoxygenation and has led to eutrophication, evidenced by elevated nutrient levels and the development of a deep chlorophyll layer at the chemocline of the lake within recent years. This study provides valuable insights for managing other coastal lakes and wetlands experiencing similar challenges, offering guidance on mitigating the adverse impacts of saltwater intrusion that may increase with sea level rise due to climate change.

摘要

在过去的半个世纪里,沿海运河和水道的开发迅速扩张,引发了诸如水质下降和海水入侵等环境问题。本研究分析了一个亚热带半混合湖35年的实地采样数据,以调查间歇性海水入侵导致的水质变化。在一次运河扩建将一条雨水管道改造成双向管道后,海水入侵开始,使得海水在涨潮时流入湖泊。在研究期间,湖面水温以每年0.019℃的速度上升,pH值已从酸性转变为接近中性,这可能是由于在初始建设阶段黄铁矿层受到扰动以及营养状态逐渐增加所致。底部水域盐分的积累导致该湖从单循环湖转变为半混合湖,20世纪90年代分层加剧,施密特稳定性指数的增加证明了这一点。这种向半混合状态的转变导致底部水永久性脱氧,并导致富营养化,近年来湖泊化学分层处营养水平升高以及深层叶绿素层的形成证明了这一点。本研究为管理其他面临类似挑战的沿海湖泊和湿地提供了宝贵的见解,为减轻因气候变化导致海平面上升可能增加的海水入侵的不利影响提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2dfe/12263782/39916e9bfdd9/10661_2025_14347_Fig1_HTML.jpg

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