...
首页> 外文期刊>Physics and chemistry of the earth >The role of lysimeters in the development of our understanding of processes in the vadose zone relevant to contamination of groundwater aquifers
【24h】

The role of lysimeters in the development of our understanding of processes in the vadose zone relevant to contamination of groundwater aquifers

机译:渗渗仪在我们对与地下水含水层污染有关的渗流带过程的认识发展中的作用

获取原文
获取原文并翻译 | 示例
           

摘要

With the recognition that landscape position affects potential gradients for water movement, the linkages between soil, geology and the quality of groundwater resources have become evident. This paper provides a historical perspective of the contribution that the use of lysimeters has made to our understanding of the physical, chemical and biological features that govern water and contaminant flows through the soil-geological strata-groundwater continuum, leading to contamination of unconfined aquifers. It indicates how we can take action to mitigate effects of some of the land management practices that increase the threats to groundwater resources.The term 'lysimeter' has been applied to a wide variety of structures that allow measurement of changes in the volume of water within or flow of water through a bounded soil column of a variety of depths. Some have contained repacked or undisturbed soil from one or more layers, while others have enclosed the three primary soil horizons (A, B and C) together with fractured bedrock layers. Lysimeters have ranged in the size of the upper boundary from a few tens of cm~2 to at least 1ha, and in depth from about 20cm to a few metres.Lysimeters were first used to gain an understanding of the importance of water for plants as well as the components of the soil water balance. The quantification of the drainage component was quickly followed by enquiries into the chemical content of the leachate. Lysimeters have been used to quantify the loss of NO3--N by leaching from the soil into shallow groundwater and elucidate the sources of the nitrogen lost at any one time. With the availability of organic pesticides immediately after World War II and their identification in groundwater, considerable attention has been paid to the mechanisms governing their downwards transport and the important role of preferential flow paths in the soil. More recently concerns for the transport of pathogenic microorganisms to groundwater have further highlighted the importance of preferential flow. Lysimeters have permitted investigation of the mechanisms by which these chemical and biological materials, which can be hazardous to human health, reach our sources of drinking water. They have also provided the means of identifying soil management practices that could be used to reduce the movement contaminants in the leachate from agricultural fields.
机译:认识到景观位置会影响水运动的潜在坡度,土壤,地质学和地下水资源质量之间的联系已变得显而易见。本文提供了溶渗仪的使用的历史观点,即溶渗仪的使用对我们理解控制水和污染物流经土壤-地质地层-地下水连续体的物理,化学和生物学特征做出了贡献,从而导致了无限制含水层的污染。它表明了我们如何采取行动来减轻某些土地管理实践的影响,这些实践增加了对地下水资源的威胁。术语“测渗仪”已被用于各种各样的结构,这些结构可以测量内部水量的变化。或水流通过各种深度的有界土壤柱。一些包含一层或多层的重新包装或未扰动的土壤,而其他一些则将三个主要土壤层(A,B和C)与破裂的基岩层一起封闭。测渗仪的上限范围从几十cm〜2到至少1ha,深度从约20cm到几米不等。首先使用测渗仪来了解水对于植物的重要性以及土壤水分平衡的组成部分。在对排水成分进行定量之后,立即查询了渗滤液的化学含量。溶渗仪已用于通过从土壤浸入浅层地下水中来量化NO3--N的损失,并阐明任何时间的氮损失源。随着第二次世界大战后立即获得有机农药并在地下水中对其进行鉴定,人们对控制农药向下运输的机制以及土壤中优先流动路径的重要作用给予了极大关注。最近,有关病原微生物向地下水运输的关注进一步突出了优先流动的重要性。溶血仪已允许研究这些可能危害人类健康的化学和生物材料到达我们饮用水源的机理。他们还提供了识别土壤管理实践的方法,这些实践可用于减少农田渗滤液中的运动污染物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号