Department of Geography, McGill University, 805 Sherbrooke Street West, Montreal, Quebec H3A 0B9, Canada.
Department of Civil Engineering & Applied Mechanics, McGill University, 817 Sherbrooke Street West, Montreal, Quebec H3A 0C3, Canada.
Sci Total Environ. 2016 Jan 15;541:825-838. doi: 10.1016/j.scitotenv.2015.09.100. Epub 2015 Oct 2.
Chemicals released into freshwater systems threaten ecological functioning and may put aquatic life and the health of humans at risk. We developed a new contaminant fate model (CFM) that follows simple, well-established methodologies and is unique in its cross-border, seamless hydrological and geospatial framework, including lake routing, a critical component in northern environments. We validated the model using the pharmaceutical Carbamazepine and predicted eco-toxicological risk for 15 pharmaceuticals in the Saint-Lawrence River Basin, Canada. The results indicated negligible to low environmental risk for the majority of tested chemicals, while two pharmaceuticals showed elevated risk in up to 13% of rivers affected by municipal effluents. As an integrated model, our CFM is designed for application at very large scales with the primary goal of detecting high risk zones. In regulatory frameworks, it can help screen existing or new chemicals entering the market regarding their potential impact on human and environmental health. Due to its high geospatial resolution, our CFM can also facilitate the prioritization of actions, such as identifying regions where reducing contamination sources or upgrading treatment plants is most pertinent to achieve targeted pollutant removal or to protect drinking water resources.
化学物质释放到淡水系统中会威胁生态功能,并可能使水生生物和人类健康面临风险。我们开发了一种新的污染物命运模型(CFM),该模型遵循简单、成熟的方法,其独特之处在于跨境、无缝的水文和地理空间框架,包括湖泊输送,这是北方环境的一个关键组成部分。我们使用药物卡马西平对该模型进行了验证,并预测了加拿大圣劳伦斯河流域 15 种药物的生态毒理学风险。结果表明,大多数测试化学品的环境风险可以忽略不计或较低,而有两种药物在多达 13%受城市废水影响的河流中显示出较高的风险。作为一个综合模型,我们的 CFM 旨在非常大的范围内应用,其主要目标是检测高风险区域。在监管框架中,它可以帮助筛选进入市场的现有或新的化学品,以评估它们对人类和环境健康的潜在影响。由于其具有较高的地理空间分辨率,我们的 CFM 还可以帮助确定优先行动的区域,例如确定减少污染源或升级处理厂的区域,以实现有针对性的污染物去除,或保护饮用水资源。