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Details of Award

NERC Reference : NE/S00257X/1

Sea Salt Aerosol above Arctic Sea Ice - sources, processes and climate impacts (SSAASI-CLIM)

Grant Award

Principal Investigator:
Dr MM Frey, NERC British Antarctic Survey, Science Programmes
Co-Investigator:
Dr T Lachlan-Cope, NERC British Antarctic Survey, Science Programmes
Co-Investigator:
Dr A Kirchgaessner, NERC British Antarctic Survey, Science Programmes
Co-Investigator:
Dr LJ Clarke, Manchester Metropolitan University, School of Science and the Environment
Co-Investigator:
Dr A Jones, NERC British Antarctic Survey, Science Programmes
Co-Investigator:
Dr X Yang, NERC British Antarctic Survey, Science Programmes
Science Area:
Atmospheric
Marine
Terrestrial
Overall Classification:
Unknown
ENRIs:
Environmental Risks and Hazards
Global Change
Science Topics:
Ocean - Atmosphere Interact.
Sea ice
Snow
Radiative Processes & Effects
Ice nucleation
Aerosols
Cloud formation
Tropospheric Processes
Atmospheric ice
Water In The Atmosphere
Abstract:
Sea salt aerosol (SSA) may influence regional climate directly through scattering of radiation or indirectly via its role as cloud-forming particles. While it is well known that SSA can be cloud condensation nuclei (CCN) forming cloud droplets, it has been shown only recently that SSA can also be a source of ice nucleating particles (INP) forming ice crystals, depending on its chemical composition and surface shape. Arctic clouds are poorly represented in climate models, which is partly due to a lack of understanding of source and nucleating capability of natural aerosol in the high Arctic. Aerosol models for example do currently not capture aerosol maxima in the Arctic winter/spring observed at high latitudes. Recent field campaigns provide first evidence of a hypothesized source of SSA from salty blowing snow (BSn) above sea ice. During storms salty snow gets lofted into the air and undergoes sublimation to generate SSA. Additional but minor SSA sea ice sources are frost flowers and open leads. The impact on radiation and clouds of SSA from this new source of SSA above sea ice is not known. However, a quantitative understanding of natural aerosol processes and climate interactions is needed to provide a baseline against which to assess anthropogenic pollution reaching the Arctic and evaluate the success of mitigation measures. We therefore propose to determine the SSA source, fate and potential impact on Arctic climate associated with blowing snow above sea ice and other sea ice sources. To do this we seek funding to participate in the year-long Multidisciplinary drifting Observatory for the Study of Arctic Climate (MOSAiC) to observe aerosol processes in the central Arctic ocean throughout all seasons. Proposed measurements on the sea ice and on-board "FS Polarstern" include particle size and concentration (sub-micron to snow particle size), INP concentrations, and a range of chemical properties using aerosol filters. Sampling of snow on sea ice, brine, frost flowers will constrain the local source of SSA. Tethered balloon launches will yield information on the fate of particles formed near the sea ice surface as they get lofted to heights where clouds may form.
Period of Award:
1 Jan 2019 - 30 Sep 2022
Value:
£403,415
Authorised funds only
NERC Reference:
NE/S00257X/1
Grant Stage:
Completed
Scheme:
Directed (RP) - NR1
Grant Status:
Closed
Programme:
MOSAiC

This grant award has a total value of £403,415  

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FDAB - Financial Details (Award breakdown by headings)

DI - Other CostsIndirect - Indirect CostsDA - InvestigatorsDI - EquipmentDI - StaffDA - Estate CostsDA - Other Directly AllocatedDI - T&S
£69,667£109,770£105,030£51,350£24,069£32,377£178£10,976

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