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A simulation experiment on the effectiveness of tree and pasture filter strips to remove NO3-N in lateral soil water flow.

作者信息

Wang L, Duggin J A

机构信息

Ecosystem Management, School of Environmental and Rural Sciences, The Univ. of New England, Armidale, NSW Australia 2351.

出版信息

J Environ Qual. 2008 Oct 23;37(6):2145-54. doi: 10.2134/jeq2007.0084. Print 2008 Nov-Dec.

Abstract

The impact of vegetative filter strips to reduce the delivery of nonpoint source pollutants from agricultural land to inland water systems is now recognized as an important element in overall agro-ecosystem management. A glasshouse experiment was undertaken to measure the effectiveness of tree (Eucalyptus camaldulensis Dehnh. and Casuarina cunninghamiana Mq.) and pasture filter strips to intercept lateral movement of NO(3)-N in soil water. Tree treatments retained significantly more NO(3)-N associated with shallow soil water movement (between the A and B soil horizons) than bare ground. Nitrate-N removal was not significantly different between trees and pasture, and among the tree treatments. However, uptake and accumulation of NO(3)-N by pastures was significantly (P < 0.001) greater than the trees. The average rates of N accumulation were 0.82 g m(-)(2) and 1.52 g m(-2) wk(-1) for the tree plots and the pasture plots, respectively. The experiment also showed that the efficiency of NO(3)-N removal from soil solutions by trees was greater when NO(3)-N concentrations were relatively higher in the soil (81.4% removal at 20 mg L(-1) compared to 68.1% at 10 mg L(-1)).

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