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  • Elementa: Science of the Anthropocene - University of California Press
    Elementa: Science of the Anthropocene Elementa: Science of the Anthropocene is a trans-disciplinary, open-access journal committed to the facilitation of collaborative, peer-reviewed research
  • About | Elementa: Science of the Anthropocene | University of . . .
    About Focus and Scope An open access scientific journal, Elementa: Science of the Anthropocene publishes original research reporting on new knowledge of the Earth’s physical, chemical, and biological systems; interactions between human and natural systems; and steps that can be taken to mitigate and adapt to global change
  • Projected sea level rise in Thailand: Regional effects of climate . . .
    Sea level rise (SLR) is expected to increase globally with a warming climate Solar radiation modification (SRM) has the potential to slow SLR by temporarily reducing anthropogenic warming This study compares observed sea level data along Thailand’s coasts with outputs from 3 global climate models (GCMs) in the Geoengineering Model Intercomparison Project Phase 6: CNRM-ESM2-1, IPSL-CM6A-LR
  • The emerging picture of a diverse deep Arctic Ocean seafloor: From . . .
    Interest in the deep Arctic Ocean is rapidly increasing from governments, policy makers, industry, researchers, and conservation groups, accentuated by the growing accessibility of this remote region by surface vessel traffic In this review, our goal is to provide an updated taxonomic inventory of benthic taxa known to occur in the deep Arctic Ocean and relate this inventory to habitat
  • Global distribution and trends of tropospheric ozone: An observation . . .
    Abstract Tropospheric ozone plays a major role in Earth’s atmospheric chemistry processes and also acts as an air pollutant and greenhouse gas Due to its short lifetime, and dependence on sunlight and precursor emissions from natural and anthropogenic sources, tropospheric ozone’s abundance is highly variable in space and time on seasonal, interannual and decadal time-scales Recent, and
  • Can coastal and marine carbon dioxide removal help to close the . . .
    In this Policy Bridge, we present the key issues regarding the safety, efficacy, funding, and governance of coastal and marine systems in support of climate change mitigation Novel insights into the likely potential of these systems for use in mitigating excess carbon dioxide emissions are presented There may be potential for coastal blue carbon and marine carbon dioxide removal (mCDR
  • Implementation of marine CO2 removal for climate mitigation: The . . .
    Achieving net zero CO2 emissions requires gigatonne-scale atmospheric CO2 removal (CDR) to balance residual emissions that are extremely difficult to eliminate Marine CDR (mCDR) methods are seen increasingly as potentially important additions to a global portfolio of climate policy actions The most widely considered mCDR methods are coastal blue carbon and seaweed farming that primarily
  • Lifetimes and timescales of tropospheric ozone | Elementa: Science of . . .
    The lifetime of tropospheric O3 is difficult to quantify because we model O3 as a secondary pollutant, without direct emissions For other reactive greenhouse gases like CH4 and N2O, we readily model lifetimes and timescales that include chemical feedbacks based on direct emissions Here, we devise a set of artificial experiments with a chemistry-transport model where O3 is directly emitted
  • Still Arctic?—The changing Barents Sea | Elementa: Science of the . . .
    The Barents Sea is one of the Polar regions where current climate and ecosystem change is most pronounced Here we review the current state of knowledge of the physical, chemical and biological systems in the Barents Sea Physical conditions in this area are characterized by large seasonal contrasts between partial sea-ice cover in winter and spring versus predominantly open water in summer
  • Overview of the MOSAiC expedition: Physical oceanography | Elementa . . .
    Arctic Ocean properties and processes are highly relevant to the regional and global coupled climate system, yet still scarcely observed, especially in winter Team OCEAN conducted a full year of physical oceanography observations as part of the Multidisciplinary drifting Observatory for the Study of the Arctic Climate (MOSAiC), a drift with the Arctic sea ice from October 2019 to September





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