Masarik Kevin C, Norman John M, Brye Kristofor R, Baker John M
Department of Soil Science, University of Wisconsin, 1525 Observatory Drive, Madison, WI 53706, USA.
J Environ Qual. 2004 May-Jun;33(3):1152-8. doi: 10.2134/jeq2004.1152.
Evaluating the impact of land use practices on ground water quality has been difficult because few techniques are capable of monitoring the quality and quantity of soil water flow below the root zone without disturbing the soil profile and affecting natural flow processes. A recently introduced method, known as equilibrium tension lysimetry, was a major improvement but it was not a true equilibrium since it still required manual intervention to maintain proper lysimeter suction. We addressed this issue by developing an automated equilibrium tension lysimeter (AETL) system that continuously matches lysimeter tension to soil-water matric potential of the surrounding soil. The soil-water matric potential of the bulk soil is measured with a heat-dissipation sensor, and a small DC pump is used to apply suction to a lysimeter. The improved automated approach reported here was tested in the field for a 12-mo period. Powered by a small 12-V rechargeable battery, the AETLs were able to continuously match lysimeter suction to soil-water matric potential for 2-wk periods with minimal human attention, along with the added benefit of collecting continuous soil-water matric potential data. We also demonstrated, in the laboratory, methods for continuous measurement of water depth in the AETL, a capability that quantifies drainage on a 10-min interval, making it a true water-flux meter. Equilibrium tension lysimeters have already been demonstrated to be a reliable method of measuring drainage flux, and the further improvements have created a more effective device for studying water drainage and chemical leaching through the soil matrix.
评估土地利用方式对地下水水质的影响一直很困难,因为很少有技术能够在不干扰土壤剖面和不影响自然流动过程的情况下监测根区以下土壤水流的质量和数量。最近引入的一种方法,即平衡张力蒸渗仪,是一个重大改进,但它并非真正的平衡状态,因为仍需要人工干预来维持蒸渗仪的适当吸力。我们通过开发一种自动平衡张力蒸渗仪(AETL)系统解决了这个问题,该系统能使蒸渗仪的张力与周围土壤的土壤水基质势持续匹配。用热消散传感器测量原状土壤的土壤水基质势,并用一个小型直流泵对蒸渗仪施加吸力。本文报道的改进后的自动化方法在田间进行了为期12个月的测试。由一个小型12伏可充电电池供电,AETL能够在最少人工关注的情况下,持续两周使蒸渗仪吸力与土壤水基质势相匹配,同时还能收集连续的土壤水基质势数据。我们还在实验室演示了在AETL中连续测量水深的方法,这种能力能以10分钟的间隔量化排水量,使其成为一个真正的水流测量仪。平衡张力蒸渗仪已被证明是测量排水通量的可靠方法,进一步的改进创造了一种更有效的装置,用于研究通过土壤基质的排水和化学淋溶。