73 results on '"Hales, Burke"'
Search Results
2. Quantifying the combined impacts of anthropogenic CO2 emissions and watershed alteration on estuary acidification at biologically-relevant time scales: a case study from Tillamook Bay, OR, USA
3. Physical and Biological Controls on the Annual CO2 Cycle in Agua Hedionda Lagoon, Carlsbad, CA
4. The Importance of Subsurface Productivity in the Pacific Arctic Gateway as Revealed by High-resolution Biogeochemical Surveys
5. Role of Technology in Ocean Acidification: Monitoring, Water-Quality Impairments, CO 2 Mitigation, and Machine Learning
6. Climate mitigation averts corrosive acidification in the upper ocean
7. Coastal Ocean Data Analysis Product in North America (CODAP-NA) – an internally consistent data product for discrete inorganic carbon, oxygen, and nutrients on the North American ocean margins
8. Coastal Ocean Data Analysis Product in North America (CODAP-NA) – An internally consistent data product for discrete inorganic carbon, oxygen, and nutrients on the U.S. North American ocean margins
9. High-Resolution Carbonate System Dynamics of Netarts Bay, OR From 2014 to 2019
10. The dynamic ocean acidification manipulation experimental system: Separating carbonate variables and simulating natural variability in laboratory flow‐through experiments
11. Better Regional Ocean Observing Through Cross-National Cooperation: A Case Study From the Northeast Pacific
12. Autonomous seawater <i>p</i>CO<sub>2</sub> and pH time series from 40 surface buoys and the emergence of anthropogenic trends
13. Marine CO2 Patterns in the Northern Salish Sea
14. Autonomous seawater pCO2 and pH time series from 40 surface buoys and the emergence of anthropogenic trends
15. Seagrass habitat metabolism increases short-term extremes and long-term offset of CO 2 under future ocean acidification
16. Mechanisms to Explain the Elemental Composition of the Initial Aragonite Shell of Larval Oysters
17. Ocean acidification stress index for shellfish (OASIS): Linking Pacific oyster larval survival and exposure to variable carbonate chemistry regimes
18. Chemical and biological impacts of ocean acidification along the west coast of North America
19. The Carbonate Chemistry of the “Fattening Line,” Willapa Bay, 2011–2014
20. Slow shell building, a possible trait for resistance to the effects of acute ocean acidification
21. Water quality criteria for an acidifying ocean: Challenges and opportunities for improvement
22. Calcium carbonate saturation state: on myths and this or that stories
23. Ocean Acidification Has Multiple Modes of Action on Bivalve Larvae
24. Failure to bloom: Intense upwelling results in negligible phytoplankton response and prolonged CO2 outgassing over the Oregon shelf
25. Interpretation and design of ocean acidification experiments in upwelling systems in the context of carbonate chemistry co-variation with temperature and oxygen
26. Saturation-state sensitivity of marine bivalve larvae to ocean acidification
27. Physicochemical and biological controls on primary and net community production across northeast Pacific seascapes
28. Extensive CO2 emissions from shallow coastal waters during passage of Hurricane Irene (August 2011) over the Mid‐Atlantic Coast of the U.S.A
29. Hierarchical and dynamic seascapes: A quantitative framework for scaling pelagic biogeochemistry and ecology
30. Aragonite saturation state dynamics in a coastal upwelling zone
31. A developmental and energetic basis linking larval oyster shell formation to acidification sensitivity
32. pCO2 distributions and air–water CO2 fluxes in the Columbia River estuary
33. The Changing Carbon Cycle in the Southern Ocean
34. Global calcite cycling constrained by sediment preservation controls
35. Satellite-based prediction of pCO2 in coastal waters of the eastern North Pacific
36. Sea-air CO2 fluxes in the western Canadian coastal ocean
37. Air‐water CO2 fluxes in the microtidal Neuse River Estuary, North Carolina
38. The Pacific oyster, Crassostrea gigas , shows negative correlation to naturally elevated carbon dioxide levels: Implications for near-term ocean acidification effects
39. Mesoscale biogeochemical responses to iron fertilization in the upper layers of the Southern Ocean Iron Experiment areas
40. Ocean deoxygenation: Past, present, and future
41. Southern Ocean Gas Exchange Experiment: Setting the stage
42. Seasonal cycle of surface oceanpCO2on the Oregon shelf
43. Design and application of a semi-automated filtration system to study the distribution of particulate organic carbon in the water column of a coastal upwelling system
44. OCEAN ACIDIFICATION IN THE CALIFORNIA CURRENT SYSTEM
45. Corrigendum to “Climatological mean and decadal change in surface ocean pCO2, and net sea–air CO2 flux over the global oceans” [Deep Sea Res. II 56 (2009) 554–577]
46. Cross-shelf circulation and phytoplankton distribution at the summertime New England shelfbreak front
47. High-resolution surveys of the biogeochemistry of the New England shelfbreak front during Summer, 2002
48. Erratum to: “Degradation of phytoplankton-derived organic matter: Implications for carbon and nitrogen biogeochemistry in coastal ecosystems” [Estuar. Coast. Shelf Sci. 77 (2008) 422–432]
49. Turbulent supply of nutrients to phytoplankton at the New England shelf break front
50. Climatological mean and decadal change in surface ocean pCO2, and net sea–air CO2 flux over the global oceans
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