磷和湖泊富营养化:最新发现和新出现的挑战

Philippe Van Cappellen
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引用次数: 0

摘要

本报告回顾了最近和正在进行的关于各种湖泊系统中磷循环的研究。磷是一种必需的营养元素,其人为富集通常被认为是淡水湖人工富营养化的主要驱动因素,在最坏的情况下,会导致有害藻华的发生、缺氧的加剧和水生生物的死亡。研究表明,过量的外部磷负荷会导致湖泊底部沉积物中活性化学磷形式的积累(更新#1)。随着外部磷负荷的减少,这种反应性遗留磷缓慢释放回水柱会显著延迟湖泊的恢复(更新#2)。伴随着农业集约化和城市化的土地利用变化通常会增加磷排放,但农业和雨水最佳管理实践的实施可以有效减轻接收湖泊的外部磷负荷(更新#3)。然而,包括气候变化和盐碱化在内的其他压力因素放大了湖内磷的动员途径,因此增加了湖泊(再)富营养化的风险(更新#4)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phosphorus and Lake Eutrophication: Recent Findings and Emerging Challenges
This presentation reviews some recent and ongoing research on phosphorus (P) cycling in a variety of lake systems. Phosphorus is an essential nutrient element, and its anthropogenic enrichment is generally considered to be the main driver of cultural eutrophication of freshwater lakes, which, in the worst case, leads to the occurrence of harmful algal blooms, the intensification of hypoxia and the die-off of aquatic life. The research presented shows that excess external P loading causes the accumulation of reactive chemical P forms in the bottom sediments of lakes (Update #1). The slow release of this reactive legacy P back to the water column can significantly delay a lake’s recovery following the reduction of external P loading (Update #2). Land use changes accompanying agricultural intensification and urbanization generally increase P emissions, but the implementation of agricultural and stormwater best management practices can effectively mitigate external P loads to receiving lakes (Update #3). However, additional stressors, including climate change and salinization, magnify in-lake P mobilization pathways and, hence, increase the risks of lake (re-)eutrophication (Update #4).
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