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- W2094798712 abstract "Traffic during construction has been shown to compact soils resulting in reduced porosity and infiltration rates and increased runoff. In agricultural settings soil amendments have been found to counter-act compaction effects. To evaluate the mitigation potential of two soil amendments (compost and fly ash) and determine potential water quality impacts, 42 lysimeters were filled with two soils (Orangeburg Sandy Loam and Arredondo Fine Sand) overlaying a drainage layer of quartz stone. The lysimeters had runoff and leachate outlets for sample collection. Runoff was directed into tanks which were instrumented with water level sensors. Runoff volumes and rates were monitored from both natural and simulated rainfall events. Soil moisture probes were installed in each of the lysimeters. One probe was buried 6 inches below the soil surface in each lysimeter, while an additional profile of three sensors was also installed into 14 lysimeters to sample the more of the soil profile. A rainfall simulator was also constructed, to supplement a potential lack of natural rainfall events and to produce a repeatable rainfall event for varying soil conditions. The soils were compacted to levels representative of observed levels found in North Central Florida based on bulk densities, and infiltration rates. Treatments (amendments: null, compost, fly ash; depths: 0, 15 and 30 cm) were then applied to the soils and runoff volumes and rates continued to be recorded. Runoff and leachate water samples were also collected for analysis. As a predecessor, a column study was performed to identify where the two amendments were incorporated into the two soils with increasing amendment fractions (0, 0.05, 0.10, 0.30, and 1.0). Results were analyzed to determine which analytes to include in runoff and leachate water quantify analysis." @default.
- W2094798712 created "2016-06-24" @default.
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- W2094798712 date "2010-04-06" @default.
- W2094798712 modified "2023-09-24" @default.
- W2094798712 title "Soil Amendments for Mitigation of Compacted Soils" @default.
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- W2094798712 doi "https://doi.org/10.1061/41099(367)66" @default.
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