首页> 外文学位 >SOIL SUITABILITY FOR ON-SITE SEWAGE TREATMENT IN THE FLATHEAD VALLEY, MONTANA: SOIL PERMEABILITY, VARIABILITY, AND GROUNDWATER CONTAMINATION.
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SOIL SUITABILITY FOR ON-SITE SEWAGE TREATMENT IN THE FLATHEAD VALLEY, MONTANA: SOIL PERMEABILITY, VARIABILITY, AND GROUNDWATER CONTAMINATION.

机译:蒙大拿州弗拉特黑河谷现场污水处理的土壤适宜性:土壤渗透性,变异性和地下水污染。

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摘要

A field study of in situ soil hydraulic conductivity was conducted in the Flathead Valley of northwestern Montana. Of special interest was interpretation of soil properties in terms of suitability for on-site sewage treatment systems. Thirteen sites were selected, soil profiles described and sampled, and the gypsum crust method used to determine hydraulic conductivity at saturation and in the near-saturation range. Multivariate statistical techniques were employed for data analysis.; Results suggest that soil water movement is strongly influenced by the vertical variability (textural stratification) often noted in soil profiles in the study area. Complex glacial and proglacial depositional environments are responsible for this variability, which is also strongly expressed horizontally as lateral variation across the landscape. Soils formed from similar parent materials (and/or with similar textural properties) generally exhibit similar hydraulic characteristics in the saturated and near-saturated range. Substantial variability within these groups is not uncommon. This variability requires that determination of site/soil suitability for septic systems include on-site observations of soil profile characteristics. The implications of textural stratification within the soil profile need to be considered for proper design and long-term operation of individual on-site sewage treatment systems. Multivariate statistical techniques were employed in analysis of the physical and chemical properties of the soil horizons studied. Principle component analysis was shown to be an effective tool for graphical expression of soil profile variability. Cluster analysis demonstrated the ability of such methods to group horizons with similar properties.; Aquifer assessment should be included as an integral component of the site evaluation process for on-site sewage treatment systems. A simple model has been proposed that is designed to assist local regulatory officials in their efforts to minimize the environmental impacts of sewage treatment from suburban and rural housing developments. The model demonstrates that it is important to estimate the nitrogen load to the receiving aquifer (including the potential for denitrification), evaluate the diluting capacity of the aquifer, and also assess the relative importance of the particular ground-water system.
机译:在蒙大拿州西北部的弗莱德黑德山谷进行了现场土壤水力传导率的现场研究。特别感兴趣的是根据现场污水处理系统的适用性来解释土壤特性。选择了13个地点,描述和采样了土壤剖面,并使用了石膏结皮法确定饱和度和接近饱和度范围内的水力传导率。采用多元统计技术进行数据分析。结果表明,土壤水分运动受到研究区域土壤剖面中经常提到的垂直变化(纹理分层)的强烈影响。复杂的冰川和冰川沉积环境是造成这种变化的原因,这种变化在横向上也强烈表达为横向的横向变化。由相似的母体材料(和/或具有相似的质地特性)形成的土壤通常在饱和和接近饱和范围内表现出相似的水力特性。这些人群之间的巨大差异并不少见。这种可变性要求确定化粪池系统的场地/土壤是否适合包括对土壤剖面特征的现场观察。为了适当设计和单独运行现场污水处理系统,需要长期考虑土壤剖面中纹理分层的影响。采用多元统计技术分析所研究土壤层的物理和化学性质。主成分分析被证明是土壤剖面变异性图形表达的有效工具。聚类分析证明了这种方法能够对具有相似属性的地域进行分组。含水层评估应作为现场污水处理系统的现场评估过程的组成部分。已经提出了一个简单的模型,该模型旨在帮助地方监管官员努力最大程度地减少郊区和农村住房开发对污水处理的环境影响。该模型表明,重要的是估算接收水层的氮负荷(包括反硝化作用的潜力),评估水层的稀释能力以及评估特定地下水系统的相对重要性。

著录项

  • 作者

    BAUMAN, BRUCE JOHN.;

  • 作者单位

    Montana State University.;

  • 授予单位 Montana State University.;
  • 学科 Environmental Sciences.
  • 学位 Ph.D.
  • 年度 1985
  • 页码 221 p.
  • 总页数 221
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学基础理论;
  • 关键词

  • 入库时间 2022-08-17 11:51:07

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