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Biogeochemical Equation of State for the Sea-Air Interface
- Source :
- Atmosphere, Vol 10, Iss 5, p 230 (2019), Atmosphere, Volume 10, Issue 5
- Publication Year :
- 2019
- Publisher :
- MDPI AG, 2019.
-
Abstract
- We have recently argued that marine interfacial surface tension must have a distinctive biogeography because it is mediated by fresh surfactant macromolecules released locally through the food web. Here we begin the process of quantification for associated climate flux implications. A low dimensionality (planar) equation of state is invoked at the global scale as our main analysis tool. For the reader&rsquo<br />s convenience, fundamental surfactant physical chemistry principles are reviewed first, as they pertain to tangential forces that may alter oceanic eddy, ripple, and bubble fields. A model Prandtl (neutral) wind stress regime is defined for demonstration purposes. It is given the usual dependence on roughness, but then in turn on the tension reduction quantity known as surface pressure. This captures the main net influences of biology and detrital organics on global microlayer physics. Based on well-established surrogate species, tangent pressures are related to distributed ecodynamics as reflected by the current marine systems science knowledge base. Reductions to momentum and related heat-vapor exchange plus gas and salt transfer are estimated and placed on a coarse biogeographic grid. High primary production situations appear to strongly control all types of transfer, whether seasonally or regionally. Classic chemical oceanographic data on boundary state composition and behaviors are well reproduced, and there is a high degree of consistency with conventional micrometeorological wisdom. But although our initial best guesses are quite revealing, coordinated laboratory and field experiments will be required to confirm the broad hypotheses even partially. We note that if the concepts have large scale validity, they are super-Gaian. Biological control over key planetary climate-transfer modes may be accomplished through just a single rapidly renewed organic monolayer.
- Subjects :
- Atmospheric Science
Equation of state
010504 meteorology & atmospheric sciences
Prandtl number
ecogeography
Wind stress
Flux
02 engineering and technology
upper ocean eddies
lcsh:QC851-999
Environmental Science (miscellaneous)
Prandtl stress
Surface pressure
momentum-heat-gas-salt exchange
01 natural sciences
bubbles
Surface tension
symbols.namesake
capillaries
marine surface tension and pressure
0105 earth and related environmental sciences
Physics
Momentum (technical analysis)
Scale (chemistry)
Mechanics
021001 nanoscience & nanotechnology
proxy compounds
symbols
lcsh:Meteorology. Climatology
food web dynamics
interfacial equation of state
global monolayer
0210 nano-technology
surfactant macromolecules
Subjects
Details
- ISSN :
- 20734433
- Volume :
- 10
- Database :
- OpenAIRE
- Journal :
- Atmosphere
- Accession number :
- edsair.doi.dedup.....e1271fafed7e649414f8a8a83a3b07aa