Joseph Salisbury
| Joseph Salisbury |
Joseph Salisbury is a researcher at the University of New Hampshire whose work focuses on ocean and coastal carbon chemistry, satellite remote sensing of ocean color, and estuarine acidification.[1]
Research
Salisbury's published output spans 171 papers with a combined total of 11,095 citations and an h-index of 38, according to Semantic Scholar.[2] His research addresses topics including satellite-based estimation of ocean carbon and primary productivity, coastal and estuarine acidification, river chemistry data for regional ocean modeling, and best-practice standards for chemical oceanographic observations.[3]
Salisbury has received funding from the National Science Foundation. According to National Science Foundation award records, he was a recipient of two awards totaling $790,014.[4] These included "Collaborative Research: Organic Alkalinity: Impacts of the [OTHER] Alkalinity on Estuary and Coastal Ocean Chemistry," awarded $642,631 through the University of New Hampshire beginning January 12, 2017, and "Collaborative Research: Mechanisms Supporting Persistence of a Key Plankton Species During Climate Change on the Northwest Atlantic Continental Shelf," awarded $147,383 through the University of New Hampshire beginning March 2, 2015.[5]
Selected publications
- "Ocean carbon from space: Current status and priorities for the next decade" (2023), Earth-Science Reviews[6]
- "Dominant timescales of variability in global satellite chlorophyll and SST revealed with a MOving Standard deviation Saturation (MOSS) approach" (2023), Remote Sensing of Environment[7]
- "RC4USCoast: a river chemistry dataset for regional ocean model applications in the US East Coast, Gulf of Mexico, and US West Coast" (2023), Earth System Science Data[8]
- "Best Practice Data Standards for Discrete Chemical Oceanographic Observations" (2022), Frontiers in Marine Science[9]
- "Estimates of diurnal and daily net primary productivity using the Geostationary Ocean Color Imager (GOCI) data" (2022), Remote Sensing of Environment[10]
- "Controls on buffering and coastal acidification in a temperate estuary" (2022), Limnology and Oceanography[11]
- "Net ecosystem dissolution and respiration dominate metabolic rates at two western Atlantic reef sites" (2022), Limnology and Oceanography[12]
- "RC4USCoast: A river chemistry dataset for regional ocean model applications in the U.S. East, Gulf of Mexico, and West Coasts" (2022)[13]
- "High-Frequency Concurrent Measurements in Watershed and Impaired Estuary Reveal Coupled DOC and Decoupled Nitrate Dynamics" (2021), Estuaries and Coasts[14]
- "Integrating Coastal Earth System Science across Marine, Terrestrial, & Atmospheric Boundaries: The Interdisciplinary Science Potential of the GEO-CAPE Ocean Color Sensor" (2021)[15]
External links
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ National Science Foundation award database
- ↑ National Science Foundation award database
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury
- ↑ Semantic Scholar author profile for Joseph Salisbury