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Emma Hauser
Emma Hauser
INCyTE Postdoctoral Researcher, The University of Montana
Подтвержден адрес электронной почты в домене umt.edu
Название
Процитировано
Процитировано
Год
Loss of deep roots limits biogenic agents of soil development that are only partially restored by decades of forest regeneration
SA Billings, D Hirmas, PL Sullivan, CA Lehmeier, S Bagchi, K Min, ...
Elem Sci Anth 6, 34, 2018
602018
Persistent anthropogenic legacies structure depth dependence of regenerating rooting systems and their functions
E Hauser, DD Richter, D Markewitz, Z Brecheisen, SA Billings
Biogeochemistry 147, 259-275, 2020
142020
Connections and feedback: aquatic, plant, and soil microbiomes in heterogeneous and changing environments
WK Dodds, LH Zeglin, RJ Ramos, TG Platt, A Pandey, T Michaels, ...
BioScience 70 (7), 548-562, 2020
132020
Global‐Scale Shifts in Rooting Depths Due To Anthropocene Land Cover Changes Pose Unexamined Consequences for Critical Zone Functioning
E Hauser, PL Sullivan, AN Flores, D Hirmas, SA Billings
Earth's Future 10 (11), e2022EF002897, 2022
72022
Global-scale shifts in Anthropocene rooting depths pose unexamined consequences for critical zone functioning
H Emma, H Daniel
Authorea Preprints, 2022
32022
Illuminating pathways of forest nutrient provision: relative release from soil mineral and organic pools
E Hauser, SA Billings
AGU Fall Meeting Abstracts 2017, H23H-1771, 2017
32017
Controls on Greenhouse Gas Fluxes from Soils: Effects of Nitrogen Fertilizers
E Hauser
Web Accessibly initiative, available at: http://www. mbl. edu/ses/files/2012 …, 2003
22003
Aligning theoretical and empirical representations of soil carbon-to-nitrogen stoichiometry with process-based terrestrial biogeochemistry models
KS Rocci, CC Cleveland, BA Eastman, K Georgiou, AS Grandy, ...
Soil Biology and Biochemistry 189, 109272, 2024
12024
Flexible foliar stoichiometry reduces the magnitude of the global land carbon sink
E Hauser, WR Wieder, GB Bonan, CC Cleveland
Geophysical Research Letters 50 (21), e2023GL105493, 2023
12023
Anthropogenic Declines in Deep Roots Constrain Deep Soil Organic Carbon Forms and Fluxes
SA Billings, PL Sullivan, L Souza, E Hauser, T Loecke, K Lang, CW Rice, ...
AGU Fall Meeting Abstracts 2019, B34B-01, 2019
12019
Patterns and controls of wood C: N stoichiometry across temperate forests
E Hauser, RP Phillips, JT Maxwell, CC Cleveland
AGU23, 2023
2023
Throughout Earth’s mountainous terrain, forest productivity responses to aspect in the Anthropocene are migrating.
S Billings
AGU abstract, 2023
2023
Integrating decadal and century-scale root development with longer-term soil development to understand terrestrial nutrient cycling
E Hauser, J Chorover, CW Cook, D Markewitz, C Rasmussen, DD Richter, ...
Geoderma 435, 116520, 2023
2023
Response of foliar stoichiometry to rising CO2 could greatly reduce Earth's land C sink
E Hauser, WR Wieder, CC Cleveland
AGU Fall Meeting Abstracts 2022, GC25D-08, 2022
2022
Roots as Agents of Rapid Soil Structural Change in the Anthropocene
S Billings, P Sullivan, D Hirmas, A Guthrie, L Faria Tavares de Souza, ...
AGU Fall Meeting Abstracts 2021, EP43B-02, 2021
2021
When and where do top-down processes govern critical zone structure and feedback to influence climate?
P Sullivan, S Billings, D Hirmas, L Li, H Ajami, A Flores, K Singha, ...
AGU Fall Meeting Abstracts 2021, EP43B-07, 2021
2021
Adaptable economies: How plants maximize C for P exchange across soil conditions
E Hauser, D Markewitz, S Billings
AGU Fall Meeting Abstracts 2021, B32D-05, 2021
2021
Roots as Agents of Soil Change over Time and as Mediators of Humanity’s Imprint on Earth’s Critical Zone
E Hauser
University of Kansas, 2021
2021
Walker and Syers in the critical zone: Integrating successional dynamics and soil development
E Hauser, J Chorover, CW Cook, D Markewitz, C Rasmussen, ...
AGU Fall Meeting Abstracts 2020, B026-03, 2020
2020
Rooting Depths Change on a Global Scale in the Anthropocene
E Hauser, PL Sullivan, SA Billings
AGU Fall Meeting Abstracts 2019, B42D-01, 2019
2019
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