Area of research
Soil Science · Ecology
Research interest
Research interests include Soil Carbon and Nitrogen Dynamics, Peatlands and Wetlands Ecology, Climate change and permafrost, and Microbial Community Ecology and Physiology.
Beyond bulk: Density fractions explain heterogeneity in global soil carbon abundance and persistence
Persistence of soil organic carbon caused by functional complexity
An open-source database for the synthesis of soil radiocarbon data: International Soil Radiocarbon Database (ISRaD) version 1.0
Changing perspectives on terrestrial nitrogen cycling: The importance of weathering and evolved resource‐use traits for understanding ecosystem responses to global change
Beyond clay: towards an improved set of variables for predicting soil organic matter content
Multiple models and experiments underscore large uncertainty in soil carbon dynamics
Improving understanding of soil organic matter dynamics by triangulating theories, measurements, and models
Effects of altered dry season length and plant inputs on soluble soil carbon
Biotic versus Abiotic Controls on Bioavailable Soil Organic Carbon
Linking NO and N2O emission pulses with the mobilization of mineral and organic N upon rewetting dry soils
Agglomeration Determines Effects of Carbonaceous Nanomaterials on Soybean Nodulation, Dinitrogen Fixation Potential, and Growth in Soil
Cooperation of earthworm and arbuscular mycorrhizae enhanced plant N uptake by balancing absorption and supply of ammonia
Assessing Nitrogen-Saturation in a Seasonally Dry Chaparral Watershed: Limitations of Traditional Indicators of N-Saturation
Five reasons to use bacteria when assessing manufactured nanomaterial environmental hazards and fates
Sinks for nitrogen inputs in terrestrial ecosystems: a meta‐analysis of <sup>15</sup> N tracer field studies
Does E. Vaginatum Take up Organic N?
Collaborative Research: Controls over C sequestration: physiology vs. physics
DISSERTATION RESEARCH: Exploring the Impacts of Long-Term Warming on Arctic Soils: Linking Microbial Communities with Seasonal Biogeochemical Dynamics.
Collaborative Research:The Changing Seasonality of Tundra Nutrient Cycling: Implications for Ecosystem and Arctic System Functioning
Collaborative Research: Environmental changes alter the carbon cycle of high Arctic ecosystems: Shifts in the ages and sources of CO2 and DOC.
Collaborative Research: MSB: Microbial control of litter decay at the cellulose-lignin interface
COLLABORATIVE RESEARCH: Spatial and Temporal Influences of thermokarst features on Surface Processes in Arctic Landscapes
IPY: Microbial winter survival physiology: a driver on microbial community composition and carbon cycling
Dry Season Biogeochemistry of California Ecosystems
The Bugs of Winter: Microbial Control of Soil Biogeochemistry During the Arctic Cold Season
Sedgwick Reserve Infrastructure Development
An Isotope Ratio Mass Spectrometer System for Ecological Research
Linking Resource and Stress Gradients to Microbial Community Composition and Function through the Soil Profile of a California Annual Grassland at the Sedgwick Reserve
Winter C-Flux in Arctic Ecosystems Under Changing Climate: Effects of Soil Carbon and Active Layer Dynamics
Collaborative Research: Interactions Between Plant Chemicals and Microbial Communities through Forest Succession in the Alaskan Taiga
Dynamics of Biologically Available C and N Across the Tundra Landscape
Interactions Between Plant Chemicals and Microbial Communities Through Forest Succession in the Alaskan Taiga