Luquillo Bibliography
Filters: Author is Silver, W. L. [Clear All Filters]
(1996). Introduction: disturbance and Caribbean ecosystems.
Biotropica. 28, 414-423.
(2012). Strong spatial variability in trace gasdynamics following experimental drought in a humid tropical forest.
Global Biogeochemical Cycles. 26, GB3005.
(2000). Global change effects on above-and belowground biodiversity in terrestrial ecosystems: interactions and impilications for ecosystem functioning.
BioScience. 50, 1089-1098.
(2012). Long-Term Research in the Luquillo Mountains: synthesis and foundations for the future.
(, Ed.).A Caribbean Forest Tapestry: The Multidimensional Nature of Disturbance and Response. 361-441. Abstract
(1996). Long-term responses of Caribbean ecosystems to disturbance.
Biotropica. 28, 414-614.
(1995). Dynamics of forest floor and soil organic matter accumulation in boreal, temperate, and tropical forests.
Advances in Soil Science. 62, 159-178.
(1995). Forest floor and soil organic matter contents and factors controlling their accumulation in boreal, temperate and tropical forests.
(, Ed.).Advances in Soil Science - Soil Management and Greenhouse Effect. CRC. 159-178.
(1993). Belowground responses a sindicators of environmental change.
Environmental and Experimental Botany. 33, 189-205.
(2003). Experimentally induced root mortallity increased nitrous oxide emisions from tropical forest soils.
Geophysical Research Letters. 30, 1141-1145.
(2006). Dynamics of fine root carbon in Amazonian tropical ecosystems.
Global Change Biology. 12, 217-229.
(2008). Plant and microbial controls on nitrogen retention and loss in a humid tropical forest.
Ecology. 89, 3030-3040.
(2009). A decade of ecosystem reorganization following multiple disturbances in a wet tropical forest..
Plant and Soil. 393, 197-212..
(2005). Oxygen effects on methane production and oxidation in humid tropical forest soils.
Global Change Biology. 11, 1283-1297.
(2008). Acetate competition between methanogenic archaea and Fe(III)-reducing bacteria in tropical rain forest soils.
Global Change Biology. 14, 413- 422.
(2006). Carbon isotope fractionation by methane-oxidizing bacteria in tropical rain forest soils.
Journal of Geophysical Research-Biogeosciences. 111(G02001), 1-8. Abstract
(2008). Suppression of methanogenesis by dissimilatory Fe(III)-reducing bacteria in tropical rain forest soils: implications for ecosystem methane flux.
Global Change Biology. 14, 413-422.
(2006). Effects of soil structure destruction on methane production and carbon partitioning between methanogenic pathways in tropical rain forest soils.
Journal of Geophysical Research-Biogeosciences III. 3(G01003), 1-8. Abstract
(1994). Is nutrient availability related to plant nutrient use in humid tropical forests?.
Oecologia. 336-343.
(1996). Biodiversity and biogeochemical cycling.
(, Ed.).Biodiversity and Ecosystem Processes in Tropical Forests. 49-67.
(In Press). Soil redox dynamics and biogeochemistry along a tropical elevation gradient.
Ecological Bulletins.
(2001). El Caribe.
(, Ed.).Bosques Neotropicales Montanos Nubosos. 155-181.
(2004). Carbon sequestration and plant community dynamics with reforestation of tropical pasture.
Ecological Applications. 14, 1115-1127.
(1999). Soil oxygen availability and biogeo chemistry along rainfall and topographic gradients in upland wet tropical forest soils.
Biogeochemistry. 44, 301-328.
(1996). At what temporal scales does disturbance affect below ground nutrient pools?.
Biotropica. 28(4a), 441-457.
(2005). Nitrogen cycling in tropical plantation forests: potential controls on nitrogen retention.
Ecological Applications. 15(5), 1604-1614.
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