Emily A Ury
Biographic Data
| ID | 6927667 |
|---|---|
| NAME | Emily A Ury |
| GIVEN NAMES | Emily A |
| FAMILY NAME | Ury |
| SIGNATURE | URY E A |
| AFFILIATIONS | Environmental Defense Fund |
| ORCID | 0000-0002-1459-655X |
| VERIFIED | Yes |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2018 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 0 |
Evaluating temporal trade-offs in climate effects from carbon dioxide removal strategies across different metrics: A case study on wetland restoration
Strategies to remove carbon dioxide from the atmosphere, known as carbon dioxide removal (CDR), are being pursued given the urgency of climate change. However, CDR measures may unintentionally increase emissions of other climate forcers. If emissions of potent short-lived climate forcers (like methane) are increased, the CDR mechanism could potentially worsen climate change in the near-term despite benefiting the climate in the long-term. This te…
Addressing methane emission feedbacks from global wetlands
Earth-system feedback loops that exacerbate climate warming cause concern for both climate accounting and progress towards meeting international climate agreements. Methane emissions from wetlands are on the rise owing to climate change—a large and difficult-to-abate source of greenhouse gas that may be considered indirectly anthropogenic. Here we illustrate the power of emissions reduction from any sector for slowing the progress of earth-system…
Source or sink? Meta-analysis reveals diverging controls of phosphorus retention and release in restored and constructed wetlands
Wetland restoration is a popular nutrient management strategy for improving water quality in agricultural catchments. However, a wetland’s ability to retain phosphorus is highly variable and wetlands can sometimes be a source of phosphorus to downstream ecosystems. Here, we used a meta-analysis approach to explore the source and sink capacity of 139 wetlands for both total phosphorus (TP) and the more bioavailable form, phosphate (PO 4 3− ), at s…
Evaluating the effects of land-use change and future climate change on vulnerability of coastal landscapes to saltwater intrusion
The exposure of freshwater-dependent coastal ecosystems to saltwater is a present-day impact of climate and land-use changes in many coastal regions, with the potential to harm freshwater and terrestrial biota, alter biogeochemical cycles and reduce agricultural yields. Land-use activities associated with artificial drainage infrastructure (canals, ditches, and drains) could exacerbate saltwater exposure. However, studies assessing the effects of…
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Evaluating the effects of land-use change and future climate change on vulnerability of coastal landscapes to saltwater intrusion
The exposure of freshwater-dependent coastal ecosystems to saltwater is a present-day impact of climate and land-use changes in many coastal regions, with the potential to harm freshwater and terrestrial biota, alter biogeochemical cycles and reduce agricultural yields. Land-use activities associated with artificial drainage infrastructure (canals, ditches, and drains) could exacerbate saltwater exposure. However, studies assessing the effects of…
Source or sink? Meta-analysis reveals diverging controls of phosphorus retention and release in restored and constructed wetlands
Wetland restoration is a popular nutrient management strategy for improving water quality in agricultural catchments. However, a wetland’s ability to retain phosphorus is highly variable and wetlands can sometimes be a source of phosphorus to downstream ecosystems. Here, we used a meta-analysis approach to explore the source and sink capacity of 139 wetlands for both total phosphorus (TP) and the more bioavailable form, phosphate (PO 4 3− ), at s…
Evaluating temporal trade-offs in climate effects from carbon dioxide removal strategies across different metrics: A case study on wetland restoration
Strategies to remove carbon dioxide from the atmosphere, known as carbon dioxide removal (CDR), are being pursued given the urgency of climate change. However, CDR measures may unintentionally increase emissions of other climate forcers. If emissions of potent short-lived climate forcers (like methane) are increased, the CDR mechanism could potentially worsen climate change in the near-term despite benefiting the climate in the long-term. This te…
Addressing methane emission feedbacks from global wetlands
Earth-system feedback loops that exacerbate climate warming cause concern for both climate accounting and progress towards meeting international climate agreements. Methane emissions from wetlands are on the rise owing to climate change—a large and difficult-to-abate source of greenhouse gas that may be considered indirectly anthropogenic. Here we illustrate the power of emissions reduction from any sector for slowing the progress of earth-system…
Ecology (4 works) · Environmental Science (4 works) · Geology (4 works) · Wetland (4 works) · Peatlands and Wetlands Ecology (3 works) · Biology (2 works) · Climate change (2 works) · Aquifer (1 works) · Atmospheric and Environmental Gas Dynamics (1 works) · Atmospheric methane (1 works)