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首页> 外文期刊>Water, Air, and Soil Pollution >Operational Evaluation of Phoslock Phosphorus Locking Technology in Laguna Niguel Lake, California
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Operational Evaluation of Phoslock Phosphorus Locking Technology in Laguna Niguel Lake, California

机译:加利福尼亚拉古纳尼格尔湖磷锁磷技术的运行评估

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摘要

Management strategies that prevent the onset of nuisance and noxious cyanobacteria blooms are needed to preserve the integrity and safety of freshwater resource uses. Scientifically defensible data are needed regarding efficacy of proactive approaches in order to assist water resource managers in making informed decisions. As phosphorus availability has been indicated as a crucial aspect of cyanobacteria presence/dominance in freshwater systems, the integration of novel technologies to inactivate phosphorus is a critical component to achieve improved water quality. Phoslock (Phoslock Water Solutions, Ltd.) phosphorus locking technology is composed of the element lanthanum in a bentonite clay matrix that has a high specificity to bind and inactivate soluble reactive phosphorus. This research evaluated the phosphorus binding efficiency of Phoslock in aqueous and sediment matrices and the consequent impact on algae assemblage composition and water quality parameters. Laguna Niguel Lake in California afforded an opportunity to evaluate the operational effectiveness of Phoslock in a system historically plagued by high phosphorus concentrations, potentially toxic cyanobacteria (Aphanizomenonflos-aquae dominant), and lake closures. Phoslock was able to rapidly (<2 weeks) and significantly (p<0.0005) decrease total (>80 %) and free reactive (>95 %) phosphorus in the water column and shift potentially releasable sediment phosphorus fractions to residual forms after treatment. Despite documented cyanobacteria blooms and high pretreatment cell densities, cyanobacteria levels remained below or near detection limits and only comprised a small fraction of the algae assemblage following Phoslock application. This study provides water resource managers an information on operational implementation and efficacy of a phosphorus binding technology.
机译:为了防止淡水资源使用的完整性和安全性,需要采取防止滋生有害细菌和有害蓝藻水华的管理策略。关于主动方法的有效性,需要科学上可辩护的数据,以帮助水资源管理者做出明智的决策。由于磷的有效性已被证明是淡水系统中蓝细菌存在/优势的关键方面,因此整合灭活磷的新技术是实现改善水质的关键组成部分。 Phoslock(Phoslock Water Solutions,Ltd.)磷锁定技术由膨润土粘土基质中的镧元素组成,该元素具有高的特异性,可结合和灭活可溶性活性磷。这项研究评估了磷磷在水和沉积物基质中的磷结合效率,以及对藻类组合物组成和水质参数的影响。加利福尼亚的Laguna Niguel湖提供了一个机会,可以评估Phoslock在高磷浓度,潜在有毒的蓝细菌(Aphanizomenonflos-aquae占主导地位)和湖泊关闭所困扰的系统中的运行效率。 Phoslock能够快速(<2周)并显着(p <0.0005)减少水柱中的总磷(> 80%)和游离反应性磷(> 95%),并在处理后将可能释放的沉积物磷级分转化为残留形式。尽管有记录的蓝细菌花开和高预处理细胞密度,但在Phoslock施用后,蓝细菌水平仍低于或接近检测极限,仅占藻类组合的一小部分。这项研究为水资源管理者提供了有关磷结合技术的实施和功效的信息。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2014年第7期|2018.1-2018.11|共11页
  • 作者单位

    SePRO Research and Technology Campus, 16013 Watson Seed Farm Road, Whitakers, NC 27891, USA;

    AquaTechnex, LLC, 2124 Grant Street, Bellingham, WA 98225, USA;

    AquaTechnex, LLC, 2124 Grant Street, Bellingham, WA 98225, USA;

    SePRO Research and Technology Campus, 16013 Watson Seed Farm Road, Whitakers, NC 27891, USA;

    SePRO Corporation, 11550 N. Meridian Street, Carmel, IN 46032, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phosphorus; Cyanobacteria; In situ management; Water quality;

    机译:磷;蓝细菌;现场管理;水质;

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