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道路盐对淡水生态系统的影响及减轻氯化物污染的解决方案——综述。

The effects of road salt on freshwater ecosystems and solutions for mitigating chloride pollution - A review.

机构信息

European Regional Centre for Ecohydrology, Polish Academy of Sciences, Tylna 3, 90-364 Lodz, Poland.

University of Lodz, Doctoral School of Exact and Natural Sciences, 90-237 Lodz, Banacha 12/16, Poland.

出版信息

Sci Total Environ. 2022 Jan 20;805:150289. doi: 10.1016/j.scitotenv.2021.150289. Epub 2021 Sep 11.

Abstract

Road salt (mainly NaCl) is commonly used during the winter to ensure road and pavement safety; however, the long-term application of NaCl has negative consequences on soil and the water environment. The aims of the present review were to evaluate the impact of road salt on catchment processes which accelerate the eutrophication of waters, and to identify a possible approach for reducing the impact of winter salt treatments of roads and sidewalks, on water body quality. The objectives were implemented in accordance with the ecohydrological approach, which recommends using hierarchical steps to solve problems. The first step was the monitoring of threats, in which the causes of high chloride (Cl) concentrations in groundwater and surface water were identified. The results indicate that long-term winter application of road salt increases the annual mean concentrations of Cl in rivers and lakes, due to Cl entering groundwater. The second step was a cause-effect analysis of the impact of NaCl on the abiotic processes in soil and water, and on the biotic response to chloride exposure. Chlorides appear to decrease the biodiversity of aquatic animals and plants but favour the growth of phytoplankton, especially cyanobacteria. Moreover, Cl reduces the self-purification processes of water by decreasing nutrient accumulation in macrophytes, decreasing the denitrification rate and reducing organic matter decomposition. The third step was to evaluate possible solutions for reducing the negative impact of NaCl on the environment, and to improve the effectiveness of alternative de-icing agents. An analysis of available literature indicates that a system-based approach integrating engineering knowledge with an understanding of biological and hydrological processes is necessary to indicate solutions for reducing environmental risks from road salt use.

摘要

道路盐(主要是 NaCl)通常在冬季用于确保道路和路面安全;然而,长期应用 NaCl 对土壤和水环境有负面影响。本综述的目的是评估道路盐对集水区过程的影响,这些过程会加速水体富营养化,并确定减少冬季道路和人行道盐处理对水体质量影响的可能方法。目标是按照生态水文学方法实施的,该方法建议使用分层步骤来解决问题。第一步是监测威胁,确定地下水和地表水高氯(Cl)浓度的原因。结果表明,由于 Cl 进入地下水,道路盐的长期冬季应用会增加河流和湖泊中 Cl 的年平均浓度。第二步是分析 NaCl 对土壤和水中非生物过程以及对氯化物暴露的生物反应的影响。Cl 似乎会降低水生动植物的生物多样性,但有利于浮游植物的生长,特别是蓝藻。此外,Cl 通过减少藻类中营养物质的积累、降低反硝化速率和减少有机物分解来降低水的自净过程。第三步是评估减少 NaCl 对环境的负面影响的可能解决方案,并提高替代除冰剂的有效性。对现有文献的分析表明,需要一种基于系统的方法,将工程知识与对生物和水文学过程的理解相结合,以指出减少道路盐使用带来的环境风险的解决方案。

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