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A field-based evaluation of the effects of spatial and temporal variability on water quality along Geronimo Creek watershed in Guadalupe County, Texas.

机译:基于田野的时空变化对德克萨斯州瓜达卢佩县Geronimo Creek流域水质的影响。

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摘要

With the exploding human population coupled with the advancements in technology and sophistication in life style, water quality is constantly being compromised and has lately been getting the desired attention from all the stakeholders. Following the monitoring results on Geronimo creek by Guadalupe-Blanco River Authority (GBRA) as reported in the 2004 and subsequent Texas Water Quality Inventory (TWQI) and the Federal Clean Water Act (CWA) 303(d) List, bacteria concentrations exceeded the standard for normal recreational use (mean of 162 organisms/100 mL) while the nitrate-nitrogen level was documented as high and increasing (mean concentration of 11.0 mg/L). This study monitored water quality for twelve months along the Geronimo Creek in Guadalupe County, Texas in order to conduct an assessment of pollutants, their estimates and likely sources. It also examined the influence of spatial and temporal variability on the water quality along the entire segment of Geronimo creek. The study goal was to conduct and present a Texas Commission on Environmental Quality Clean Rivers Program (TCEQCRP) quality assurance-compliant water quality monitoring and data analysis to establish an estimate, likely origin and distribution of pollutants for various planning and management needs. Statistically, monitoring data was analyzed using the two-way ANOVA to assess the impact or contribution of land use and/or season on water quality of Geronimo creek during the sampling period. Correlation analysis was also done on some of the parameters. Data was compared with established state standards to determine compliance. Consistent with the foregoing, this study focused on sampling flow, field, conventional, and bacteriological parameters to establish baseline pollutant levels for future monitoring programs. The majority of the routine water quality parameters were at levels lower than what would be considered detrimental to the stream and public health. Only TSS, total hardness, E. coli and nitrate-nitrogen values exceeded specific limits established by state agency. Metal toxicity was not an issue with this creek as the metal concentrations of both historical and current monitoring programs were far below the established standards. The Soil and Water Assessment Tool (SWAT) was applied to quantify, and predict under different control scenarios, the effects of the reported impairments and guide the development of best management practices (BMPs) for reducing the nitrate and E. coli levels. It was, however, verified that the model could not produce reliable results given the available data and location of existing stream flow monitoring station. Necessary recommendations for a reliable future data collection and better modeling results were identified.
机译:随着人口的激增以及技术和生活方式的先进发展,水质不断受到损害,最近一直受到所有利益相关者的关注。继2004年瓜达卢佩-布兰科河管理局(GBRA)对Geronimo小河的监测结果以及随后的《得克萨斯水质清单》(TWQI)和《联邦清洁水法》(CWA)303(d)清单中的监测结果之后,细菌浓度超过了标准正常娱乐用途(平均162个生物/ 100毫升),而硝酸盐氮水平据报道又高又在增加(平均浓度为11.0毫克/升)。这项研究监测了得克萨斯州瓜达卢佩县Geronimo溪沿岸的水质,为期12个月,以评估污染物,污染物的估计值和可能的来源。它还考察了Geronimo小溪整个区域的时空变化对水质的影响。研究目标是进行并提出德克萨斯州环境质量清洁河流计划委员会(TCEQCRP)符合质量保证标准的水质监测和数据分析,以建立各种计划和管理需求的估计值,可能的污染物来源和分布。统计上,使用双向方差分析分析监测数据,以评估采样期间土地利用和/或季节对杰罗尼莫河水质的影响或贡献。还对一些参数进行了相关分析。将数据与已建立的州标准进行比较以确定合规性。与前述一致,本研究集中在采样流量,田间,常规和细菌学参数上,以建立基线污染物水平,以用于将来的监测程序。大多数常规水质参数的水平都低于被认为对河流和公共卫生有害的水平。只有TSS,总硬度,大肠杆菌和硝酸盐氮值超过了国家机构规定的特定限制。金属毒性不是这条小河的问题,因为历史和当前监测计划的金属浓度都远低于既定标准。土壤和水评估工具(SWAT)用于量化和预测在不同的控制情景下所报告的损害的影响,并指导制定最佳管理实践(BMP)以降低硝酸盐和大肠杆菌的水平。但是,已证实,鉴于现有数据流和现有流量监测站的位置,该模型无法产生可靠的结果。确定了可靠的未来数据收集和更好的建模结果的必要建议。

著录项

  • 作者

    Ovuegbe, Emeka Hawkyns.;

  • 作者单位

    The University of Texas at San Antonio.;

  • 授予单位 The University of Texas at San Antonio.;
  • 学科 Engineering Civil.;Engineering Environmental.;Water Resource Management.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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