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A comparison of phosphorus deficiency indicators with steady state phosphate in lakes

机译:湖泊缺磷指标与稳态磷酸盐的比较

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摘要

A fundamental step in the management of nutrient impacted water bodies is the determination of the type and degree of nutrient limitation. However, nutrient deficiency indicators often provide inconsistent results. Recent advances in the measurement of phosphate concentrations may provide a better means to understand results from P deficiency indicators. With regards to phosphorus, deficiency indicators should predict P-limitation when phosphate concentrations are consistently low. We use this new understanding to examine the relationships between phosphate concentration and P deficiency. Patterns of steady state phosphate (ssPO_4~(3-)) concentrations and P deficiency were evaluated in 109 lakes located across Canada. Lakes encompassed a broad range in TP concentration (1.79-139.7 μg L~(-1)). The relationships between ssPO_4~(3-) concentrations and simultaneously measured total P (TP), total dissolved P (TDP) and soluble reactive P (SRP) concentrations, paniculate C:P and N:P ratios, alkaline phosphatase activities (APA) and phosphate turnover times (TT) were analyzed. ssPO_4~(3-) was positively correlated with TP and TDP. The ssPO_4~(3-) concentrations were 2-3 orders of magnitude lower than SRP concentrations. These two measures were only weakly correlated, suggesting that SRP is a major overestimate of PO_4~(3-). The ssPO_4~(3-) concentrations were negatively correlated with C:P and N:P ratios, and with APA, consistent with expectations. When only lakes with TT < 15 min were considered, TT was negatively correlated with TP, challenging the idea that nutrients become less limiting in more eutrophic systems. Overall, P deficiency indicators related to ssPO_4~(3-) in the expected manner. However, variability in relationships with APA and paniculate stoichiometry emphasize the need for cautious interpretation of P deficiency measurements. We recommend simultaneous use of multiple techniques to confidently assess P deficiency.
机译:管理受养分影响的水体的基本步骤是确定养分限制的类型和程度。但是,养分缺乏指标往往提供不一致的结果。磷酸盐浓度测量的最新进展可能提供更好的方法来了解磷缺乏指标的结果。关于磷,当磷酸盐浓度始终较低时,缺乏指标应预测P限。我们使用这种新的理解来检查磷酸盐浓度与磷缺乏之间的关系。在加拿大各地的109个湖泊中评估了稳态磷酸盐(ssPO_4〜(3-))浓度和磷缺乏的模式。湖泊的总磷浓度范围很广(1.79-139.7μgL〜(-1))。 ssPO_4〜(3-)浓度与同时测量的总P(TP),总溶解P(TDP)和可溶性反应性P(SRP)浓度,颗粒C:P和N:P比率,碱性磷酸酶活性(APA)之间的关系和磷酸盐转换时间(TT)进行了分析。 ssPO_4〜(3-)与TP和TDP呈正相关。 ssPO_4〜(3-)浓度比SRP浓度低2-3个数量级。这两个指标之间的相关性很弱,这表明SRP是PO_4〜(3-)的主要高估。 ssPO_4〜(3-)浓度与C:P和N:P比率以及APA呈负相关,与预期一致。当仅考虑TT <15分钟的湖泊时,TT与TP呈负相关,这挑战了营养素在富营养化系统中的限制越来越少的观点。总体而言,磷缺乏指标以预期的方式与ssPO_4〜(3-)相关。但是,与APA和颗粒化学计量关系的可变性强调需要谨慎解释P缺乏量的测量结果。我们建议同时使用多种技术来自信地评估P缺乏症。

著录项

  • 来源
    《Water Research》 |2013年第5期|1816-1826|共11页
  • 作者单位

    University of Saskatchewan, Department of Biology, 112 Science Place, Saskatoon, SK, Canada S7N 5E2;

    University of Saskatchewan, Department of Biology, 112 Science Place, Saskatoon, SK, Canada S7N 5E2;

    Water Security Agency of Saskatchewan, # 101-108 Research Drive, Saskatoon, SK, Canada S7N 3R3;

    University of Saskatchewan, Department of Biology, 112 Science Place, Saskatoon, SK, Canada S7N 5E2;

  • 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

    nutrients; phosphorus; steady state phosphate; plankton; alkaline phosphatase; p deficiency;

    机译:营养素;磷;稳态磷酸盐;浮游生物;碱性磷酸酶;磷缺乏;
  • 入库时间 2022-08-17 13:45:31

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