HR: 10:35h
AN: H51F-02 [PDF]
TI: Suspended-Sediment Export From Four Small Montane Humid-Tropical Watersheds With Varying Land use and
Lithology, Puerto Rico
AU: * Larsen, M C
EM: mclarsen@usgs.gov
AF: US Geological Survey, 436 National Center, Reston, VA 20192 United States
AB:
Intensive land-use conversion of forested landscapes to agricultural use accelerated in most of the global tropics during the
20th century and has resulted in large increases in soil erosion and suspended-sediment export. Fluvial sediment is one of
the most abundant freshwater contaminants on earth. Stormflows episodically transport sediment to reservoirs, estuaries and
in coastal waters where coral reefs are located. The sediment and associated contaminants such as pesticides, herbicides, and
fertilizers, degrade water quality and are harmful to aquatic organisms in these areas. Improved understanding of the
processes and rates of fluvial sediment transport in natural and anthropogenically disturbed settings enhances management of
natural resources and aids in the establishment of standards for acceptable sediment concentrations. Four USGS WEBB (Water,
Energy, and Biogeochemical Budgets) study watersheds in Puerto Rico (18$\deg$ latitude) were paired to compare and contrast
the effects of land use and bedrock geology on suspended-sediment yield. Sediment concentration, calculated as sediment yield
normalized to runoff, was more than three times greater in two watersheds in secondary forest and pasture compared to
sediment concentration in watersheds in primary forest. The influence of lithology was comparable: sediment concentration in
intrusive-bedrock (quartz diorite and granodiorite) watersheds was more than three times higher than sediment concentration
in volcaniclastic-bedrock (volcanic sandstone, mudstone, and breccia) watersheds. These contrasts highlight the well-known
effect of land use on sediment concentration and yield but also demonstrate the strong control of bedrock geology. Most
importantly, the high sediment yields in the watersheds that were converted to pasture and secondary forest, even after 60
years of forest reestablishment, provide a glimpse into the future of tropical watersheds elsewhere that are now undergoing
deforestation. Erosion rates observed in agriculturally-developed watersheds are substantial in regard to reservoir storage.
Public water supply for the city of San Juan (population 1.6 million) is largely derived from surface-water storage. The
principal San Juan reservoir lost approximately 60 percent of its storage capacity from siltation in the 40 years following
impoundment in 1954. The reduced storage capacity resulted in severe water rationing for San Juan during several droughts
during the past decade.
DE: 1803 Anthropogenic effects
DE: 1815 Erosion and sedimentation
DE: 1824 Geomorphology (1625)
DE: 1871 Surface water quality
DE: 1884 Water supply
SC: Hydrology [H]
MN: 2003 Fall Meeting