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Assessing nutrient loads from in-situ fertilizer amendments in Willard Spur.

机译:通过Willard Spur中的原位肥料改良剂评估养分含量。

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摘要

A research team studied relationships between nutrient loading and submerged aquatic vegetation (SAV) in the Willard Spur as related to increased nutrient loading by the Perry/Willard Regional Wastewater Treatment Plant (PWRWTP). In-situ plots containing slow-release nutrient amendments were constructed in the Willard Spur in 2012 and 2013. The water and sediment chemistry of the plots was monitored monthly in 2012 and bimonthly in 2013. Another team member assessed plant health metrics concurrently with surface water and sediment samples to determine short-term response of SAV to increased nutrient loading. In 2012 water and sediment analysis showed amendment affects from fertilizer amendments. In 2013 only the water column was amended. Nutrient concentrations in the water column did not show significant amendment effects, likely due to changes in fertilizer formulation. Laboratory and in-situ mesocosm tests provided surrogate settings in which nutrient release rates were measured under a variety of conditions. Release rate constants were obtained for a range of conditions through multivariate linear regression of data from these tests. Nitrogen isotopes provided evidence of perturbation of the system in the amended plots in 2012 and 2013. SAV health corresponded with the amount of fertilizer added to the plot, indicating that fertilizer amendments successfully bracketed a range of plant responses to nutrient loading.;In a separate study, depth profiles of dissolved and solid phase phosphorus and phosphorus mineral concentrations were examined in an impounded wetland before and after being drained and again following re-flooding to explore the potential benefit of periodic drying and oxidation of sediment. Surface water, pore water, and sediment nutrients were measured in order to monitor changes resulting from the drying and re-flooding process. The efficacy of Quantitative Evaluation of Minerals by SCANning (QEMSCAN) to determine mineral content in fine-grained sediment was also explored. Changes in phosphorus speciation in surface water, pore water, and sediment were observed in response to the drying and re-flooding process. Surface water dissolved phosphorus increased by 35% and pore water dissolved phosphorus increased by 50 to 125% following re-flooding between depths of 5 and 20 cm. Available phosphorus in the top 3 cm of sediment increased by approximately 10% after re-flooding.
机译:一个研究小组研究了威拉德马刺中养分含量与水下水生植物(SAV)之间的关系,这些关系与佩里/威拉德地区废水处理厂(PWRWTP)增加的养分含量有关。 2012年和2013年,在Willard Spur上建造了含有缓释养分改良剂的原地。该地的水和沉积物化学成分在2012年每月监测,2013年每两个月监测一次。另一位团队成员与地表水同时评估了植物健康指标和沉积物样品,以确定SAV对养分增加的短期反应。 2012年的水和沉积物分析显示,肥料的修正影响了修正。 2013年,仅对水柱进行了修改。水柱中的养分浓度未显示出明显的改良效果,这可能是由于肥料配方的变化所致。实验室和原位介观试验提供了在各种条件下测量营养释放速率的替代设置。通过这些测试数据的多元线性回归,获得了一系列条件下的释放速率常数。氮同位素在2012年和2013年的修正地块中提供了对该系统造成干扰的证据。SAV的健康状况与该地块中添加的肥料量相对应,表明肥料改良剂成功地将一系列植物对养分负荷的反应括起来。在一项研究中,在排水前和排水后以及在重新注水后再次检查了蓄水湿地中溶解态和固相态磷以及磷矿物质浓度的深度分布图,以探讨定期干燥和氧化沉积物的潜在益处。测量了地表水,孔隙水和沉积物养分,以监测干燥和重新注水过程引起的变化。还探讨了通过扫描定量评估矿物质(QEMSCAN)来确定细颗粒沉积物中矿物质含量的功效。观察到地表水,孔隙水和沉积物中磷形态的变化是响应于干燥和再驱替过程的。在5至20厘米深度之间重新注水后,地表水溶解的磷增加了35%,孔隙水溶解的磷增加了50%至125%。重新注水后,顶部3 cm沉积物中的有效磷增加了约10%。

著录项

  • 作者

    Pierson, Joel Thomas.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Geology.;Environmental Geology.;Geochemistry.
  • 学位 M.S.
  • 年度 2014
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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