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Off flavours in large waterbodies: physics, chemistry and biology in synchrony

机译:大型水体中的异味:物理,化学和生物学同步

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The Laurentian Great Lakes of North America are a drinking water source for millions of Canadian and US consumers. These waterbodies have undergone extensive change over the past century as a result of widespread degradation and remediation. Many of the Lakes are prone to taste and odour (T&O), and although these outbreaks have been poorly monitored, evidence suggests that they are increasing in frequency. Tracing and controlling T&O in such large systems presents a challenging task, due to their physical size and complexity. This paper presents an overview of recent investigative and management approaches to T&O in Lake Ontario and its outflow, the St. Lawrence River. We have identified three distinct patterns of T&O in these source-waters, caused by geosmin and 2-methylisoborneol and differing in their planktonic and benthic sources, and temporal and spatial dynamics. Each pattern has required a different approach by scientists and management, in partnership with the water industry. We have shown these T&O outbreaks are caused and moderated by physical, chemical and biological mechanisms over a spectrum of spatial and temporal scales. Canadian municipalities affected by these outbreaks have been key to the investigation of the links between T&O and ecosystem processes with the aim to develop more proactive water treatment and long-term management.
机译:北美的劳伦山脉五大湖是数百万加拿大和美国消费者的饮用水水源。由于广泛的退化和修复,这些水体在过去的一个世纪中发生了广泛的变化。许多湖泊都容易产生味道和气味(T&O),尽管对这些疾病的爆发没有进行很好的监测,但有证据表明它们的发生频率在增加。在如此大型的系统中跟踪和控制T&O由于其物理大小和复杂性而成为一项具有挑战性的任务。本文概述了安大略湖及其流出的圣劳伦斯河中T&O的最新调查和管理方法。我们已经确定了这些水源水的三种T&O模式,它们是土臭素和2-甲基异冰片醇引起的,并且它们的浮游和底栖生物源以及时空动态也不同。每种模式都需要科学家和管理层与水行业合作采取不同的方法。我们已经表明,这些T&O爆发是由一系列时空尺度上的物理,化学和生物机制引起和缓解的。受这些暴发影响的加拿大市政当局一直是调查T&O与生态系统过程之间联系的关键,其目的是发展更积极的水处理和长期管理。

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