首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Comment on 'Protecting the Florida Everglades wetlands with wetlands: Can stormwater phosphorus be reduced to oligotrophic conditions?' by W.Mitsch et al
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Comment on 'Protecting the Florida Everglades wetlands with wetlands: Can stormwater phosphorus be reduced to oligotrophic conditions?' by W.Mitsch et al

机译:评论“保护佛罗里达沼泽地湿地用湿地保护湿地:雨水磷会降低到寡营植物的条件?” 由w.mitsch等

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Mitsch et al. (2015) recently examined the results of a three-year mesocosm study that investigated several wetland vegetation options for enhancing phosphorus (P) removal performance of existing Stormwater Treatment Areas (STA's) for Everglades restoration. Here, we comment on that article and provide additional context to those results. Specifically, (1) similar transient demonstrations of ultra-low discharge P concentrations (<= 12 mu g/l) in past STA mesocosm and full-scale systems have not been reliable indicators of long-term performance, (2) P removal rates are always much lower in "back-end" of wetland systems, such as those investigated by Mitsch, than front-end or STA-average rates, and (3) there already exist numerous full and field-scale back-end STA systems that outperform these mesocosm results and have been doing so for years. For these reasons, we recommend caution in interpreting their results. (C) 2015 Elsevier B.V. All rights reserved.
机译:Mitsch等人。 (2015年)最近审查了三年间科科姆研究的结果,调查了几种湿地植被选择,用于增强现有的暴雨治疗区域(STA)的磷(P)去除性能,使大沼泽地恢复。 在这里,我们对该文章发表评论并为这些结果提供额外的上下文。 具体而言,(1)过去STA Mesocosm和全规模系统中的超低放电P浓度(<=12μg/ L)的类似瞬态演示并不可靠的长期性能指标,(2)P拆卸速率 在湿地系统的“后端”中总是低得多,例如由初端或STA平均速率调查的那些,而(3)已经存在许多完整和现场级的后端STA系统 优于这些中科科莫的结果,多年来一直这样做。 由于这些原因,我们建议谨慎解释其结果。 (c)2015 Elsevier B.v.保留所有权利。

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