加一点盐?道路除冰盐(NaCl)对淡水沉积物底栖生物呼吸和养分通量的影响

IF 1.2 4区 环境科学与生态学 Q4 LIMNOLOGY
Limnetica Pub Date : 2023-02-17 DOI:10.23818/limn.42.17
C. Williams, P. Frost, B. Ginn, J. Marsalek, M. Xenopoulos
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引用次数: 0

摘要

冬季道路盐的施用增加了许多淡水生态系统中的氯化物浓度。考虑到氯化物有可能破坏水生生态系统,这种趋势令人担忧。短期和长期盐暴露会影响生态系统代谢和养分循环。在这里,我们研究了氯化物浓度、水质条件、底栖生物呼吸和沉积物-水营养通量之间的联系,这些联系贯穿于一个大型(722平方公里)湖泊及其集水区。经历高浓度氯化物的水生地点是人类活动的指标,通常与额外的污染物有关。我们采用环境氯浓度和富集氯浓度下的沉积物芯流孵育来确定道路盐对河流、雨水塘和湖泊底栖生物呼吸和养分通量的影响。盐(如氯化钠)的加入使底栖生物的呼吸作用显著增加。当水温暖且环境氯化物浓度低(< 50 mg Cl-/L)或高(50 mg Cl-/L)或水寒冷且环境氯化物浓度中等(100-400 mg Cl-/L)时,急性暴露于道路盐会导致底栖生物呼吸的最强烈增加。硝酸盐通量对添加盐的反应不均匀。根据水体类型和季节的不同,加入氯化物后,进入沉积物的环境硝酸盐通量相似,增加或减少。盐的添加对溶解磷通量影响不显著。在湖泊和河流站点,我们的结果支持氯化物导致呼吸增加的假设,而营养循环在实验脉冲道路盐添加下发生微弱且不一致的改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Add a dash of salt? Effects of road de-icing salt (NaCl) on benthic respiration and nutrient fluxes in freshwater sediments
Winter road salt applications are increasing chloride concentrations in many freshwater ecosystems. This trend is alarming, giv¬en chloride’s potential to impair aquatic ecosystems. Short- and long-term exposure to salt could affect ecosystem metabolism and nutrient cycles. Here, we examine connections between chloride concentrations, water quality conditions, benthic respi¬ration, and sediment-water nutrient flux throughout a large (722 km2) lake and its catchment. Aquatic locations experiencing high concentrations of chloride are indicators of anthropogenic activities and are often associated with additional pollutants. We used sediment core flow-through incubations under ambient and enriched chloride concentrations to determine the effects of road salt on benthic respiration and nutrient fluxes in stream, stormwater pond, and lake sites. Salt (as sodium chloride) ad¬ditions caused a significant overall increase in benthic respiration. Acute exposure to road salt caused the strongest increase in benthic respiration when water was warm and at sites that had low (< 50 mg Cl-/L) or high (> 400 mg Cl-/L) ambient chloride concentrations or when water was cold and sites had intermediate (100-400 mg Cl-/L) ambient chloride concentrations. Nitrate flux responded less uniformly to salt additions. Depending on waterbody type and season, ambient nitrate flux into the sediment was similar, increased, or decreased post-chloride addition. Dissolved phosphorus flux was not significantly impacted by salt additions. Across lake and stream sites, our results supported the hypothesis that chloride causes increased respiration while nutrient cycles were weakly and inconsistently altered under experimental pulse road salt additions.
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来源期刊
Limnetica
Limnetica LIMNOLOGY-MARINE & FRESHWATER BIOLOGY
CiteScore
3.70
自引率
7.10%
发文量
26
审稿时长
>12 weeks
期刊介绍: Limnetica publishes original research articles on the ecology of inland waters. The scope of Limnetica includes the ecology of rivers, lakes, reservoirs, coastal lagoons and wetlands, as well as biogeochemistry, paleolimnology, development of new methodologies, taxonomy, biogeography and any aspect of theoretical and applied continental aquatic ecology such as management and conservation, impact assessment, ecotoxicology and pollution. Limnetica will accept for its publication scientific articles presenting advances in knowledge or technological development, as well as as papers derived from new practical approaches on the topics covered by the journal.
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