Reduction of stream sediment concentration by a riparian buffer: Filtering of road runoff in disturbed headwater basins of montane mainland Southeast Asia

We determined the extent that a riparian buffer reduces stream suspended sediment concentrations by filtering road runoff during 18 rain events in a 2.5-ha, multi-use watershed in northern Thailand. The dominant buffer species was the perennial sedge Fimbristylis aphylla Zoll. ex Steud. (Cyperaceae)...

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Veröffentlicht in:Journal of environmental quality 2006-01, Vol.35 (1), p.151-162
Hauptverfasser: Ziegler, A.D, Negishi, J, Sidle, R.C, Preechapanya, P, Sutherland, R.A, Giambelluca, T.W, Jaiaree, S
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Sprache:eng
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Zusammenfassung:We determined the extent that a riparian buffer reduces stream suspended sediment concentrations by filtering road runoff during 18 rain events in a 2.5-ha, multi-use watershed in northern Thailand. The dominant buffer species was the perennial sedge Fimbristylis aphylla Zoll. ex Steud. (Cyperaceae). We monitored stream sediment concentration for situations where road runoff either flowed into the riparian buffer or was diverted directly into the stream (buffer and no buffer scenarios). These data were used to develop the following relationships between instantaneous stream sediment concentration (C(i)) and discharge (Q(i)): C(i) = 28.329Q(i)0.851 (buffer scenario) and C(i) = 22.265Q(i)1.579 (no buffer scenario). Using these functions to calculate total event suspended concentrations, we determined that the buffer reduced suspended sediment concentration by 34 to 87%, for the range of events monitored. Removal of sediment from runoff generated on a 2.4-m-wide, 165-m-long unpaved road section was achieved principally via ponding, which reduced the transport capacity as flow entered the relatively flat, saturated buffer. Sediment deposition occurred primarily within the first 10 m of the buffer. Some sediment was also deposited on the fillslope leading to the buffer. Maximum road sediment concentration during the largest buffer event approached 100 000 mg L(-1). Meanwhile, the corresponding maximum stream suspended sediment concentration was
ISSN:0047-2425
1537-2537
DOI:10.2134/jeq2005.0103