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Daiki Nomura

Datos Biográficos

ID9034992
NOMBREDaiki Nomura
NOMBRESDaiki
APELLIDONomura
FIRMANOMURA D
AFILIACIONESHokkaido University
ORCID0000-0003-3047-4023
VERIFICADOSí
TOTAL DE OBRAS19
TOTAL DE CITAS0
TOTAL COMO AUTOR19
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2015
AÑO MÁS RECIENTE DE PUBLICACIÓN2026
ÍNDICE H0
  • Effects of glacial melting on carbonate chemistry and primary production in coastal waters off Mertz Glacier, East Antarctica

    Open Access•Nana Samori, Daiki Nomura et al.•ARTICLE•Elementa Science of the…•2026

    Because the partial pressure of carbon dioxide (pCO2) at the ocean surface is the main determinant of the air–sea CO2 flux, understanding what causes pCO2 to vary is important to the issue of carbon sequestration. The strength of the CO2 flux is strongly influenced by wind speed and, in polar regions, the presence of sea ice which affects gas exchange efficiency. In this study, oceanographic measurements were made near the Mertz Glacier at 140–15…

  • The biogenic sulfur cycle in the coupled ocean–sea ice–atmosphere system

    Open Access•Sakiko Ishino, Megan D Willis et al.•ARTICLE•Elementa Science of the…•2026

    Polar oceans and sea-ice regions are global hot spots for the production of biogenic volatile methylated sulfur (VMS) compounds: dimethyl sulfide (DMS) and methanethiol (MeSH). VMS compounds make important contributions to atmospheric particle formation and cloud property modulation, especially when polar atmospheres are pristine. As a result, the polar biogenic sulfur cycle may induce significant climate feedback in response to ongoing sea ice d…

  • Algal enrichment process for newly formed sea ice in the Dalton polynya off East Antarctica during the late summer–early autumn

    Open Access•Keigo D Takahashi, Masato Ito et al.•ARTICLE•Elementa Science of the…•2025

    Newly formed sea ice can incorporate considerable amounts of organic matter including phytoplankton during its freezing and growth. This initial incorporation influences the standing stocks of ice algae, a fundamental component of high-latitude marine ecosystems. Physical incorporation via the accretion of frazil ice, instead of congelation growth, is considered to incorporate particles efficiently. However, for thin ice (<0.20 m thickness), info…

  • A novel probe to sample dissolved and particulate matter in sea ice at high vertical resolution

    Open Access•Matthew Corkill, Takenobu Toyota et al.•ARTICLE•Elementa Science of the…•2025

    Sea ice can be interspersed vertically with both permeable and impermeable layers. These features can be smaller than a few centimetres but are important for understanding biogeochemical cycles in sea ice. Traditionally, sea-ice samples are collected by drilling into the ice with a rotating core barrel with a cutting head. Ice cores are extracted and then cut into sections that are melted to collect the variable of interest. Drawbacks to this met…

  • Zooplankton grazing increases atmospheric primary aerosol production in the high Arctic

    Open Access•Manuel Dall’Osto, Katrin Schmidt et al.•ARTICLE•Elementa Science of the…•2025

    The rapidly changing Arctic has led to evolving natural aerosol emissions, which have strong feedback effects on its climate system. Sea spray aerosol (SSA) particles are a main source of aerosols; they influence cloud formation and cloud properties. Ocean microbiota potentially have an impact on SSA production and flux, but our understanding of the mechanisms is still limited. The potential impact of ocean microbiota on SSA fluxes is still a mat…

  • Melt pond CO2 dynamics and fluxes with the atmosphere in the central Arctic Ocean during the summer-to-autumn transition

    Open Access•Masaki Yoshimura, Daiki Nomura et al.•ARTICLE•Elementa Science of the…•2025

    Melt ponds are a common feature of the Arctic sea-ice environment during summer, and they play an important role in the exchange of heat and water vapor between the ocean and the atmosphere. We report the results of a time-series study of the CO2 dynamics within melt ponds (and nearby lead) and related fluxes with the atmosphere during the summer-to-autumn transition in the central Arctic Ocean during the Multidisciplinary drifting Observatory fo…

  • Overview of the MosaiC expedition

    Open Access•Allison A Fong, Clara J M Hoppe et al.•ARTICLE•Elementa Science of the…•2024

    The international and interdisciplinary sea-ice drift expedition “The Multidisciplinary drifting Observatory for the Study of Arctic Climate” (MOSAiC) was conducted from October 2019 to September 2020. The aim of MOSAiC was to study the interconnected physical, chemical, and biological characteristics and processes from the atmosphere to the deep sea of the central Arctic system. The ecosystem team addressed current knowledge gaps and explored un…

  • Characteristics of late summer Arctic brash sea ice and its melting effect on the surface-water biogeochemistry of the Chukchi Shelf and Canada Basin

    Open Access•Ryota Akino, Daiki Nomura et al.•ARTICLE•Elementa Science of the…•2024

    To understand the impact of the melting of late summer Arctic brash ice on the surface waters of the Chukchi Sea, we collected sea-ice samples during 2021. Floating sea ice was collected by a wire mesh pallet cage from the side of the R/V Mirai. We measured physical and biogeochemical parameters such as salinity, oxygen stable isotopic ratios, turbidity, and concentrations of chlorophyll-a and nutrients. The samples of brash ice were multiyear ic…

  • Isotopic signatures of snow, sea ice, and surface seawater in the central Arctic Ocean during the MosaiC expedition

    Open Access•Moein Mellat, Camilla F Brunello et al.•ARTICLE•Elementa Science of the…•2024

    The Arctic Ocean is an exceptional environment where hydrosphere, cryosphere, and atmosphere are closely interconnected. Changes in sea-ice extent and thickness affect ocean currents, as well as moisture and heat exchange with the atmosphere. Energy and water fluxes impact the formation and melting of sea ice and snow cover. Here, we present a comprehensive statistical analysis of the stable water isotopes of various hydrological components in th…

  • An analysis of air-sea gas exchange for the entire MosaiC Arctic drift

    Open Access•Brice Loose, Ilker Fer et al.•ARTICLE•Elementa Science of the…•2024

    Sea ice cover influences the generation of surface ocean turbulence in ways that sometimes enhance, but mostly inhibit air-water gas exchange. Inhibition happens as ice cover reduces wind fetch, enhancement occurs when haline convection or sea ice drift creates additional surface turbulence. We used the bulk turbulence relationships within the Wave Age Gas Transfer model to estimate air-sea gas transfer velocity (kWAGT), based on sea ice cover an…

  • Polar oceans and sea ice in a changing climate

    Open Access•Megan D Willis, Delphine Lannuzel et al.•ARTICLE•Elementa Science of the…•2023

    Polar oceans and sea ice cover 15% of the Earth’s ocean surface, and the environment is changing rapidly at both poles. Improving knowledge on the interactions between the atmospheric and oceanic realms in the polar regions, a Surface Ocean–Lower Atmosphere Study (SOLAS) project key focus, is essential to understanding the Earth system in the context of climate change. However, our ability to monitor the pace and magnitude of changes in the polar…

  • Thin and transient meltwater layers and false bottoms in the Arctic sea ice pack—Recent insights on these historically overlooked features

    Open Access•Madison M Smith, Hélène Angot et al.•ARTICLE•Elementa Science of the…•2023

    The rapid melt of snow and sea ice during the Arctic summer provides a significant source of low-salinity meltwater to the surface ocean on the local scale. The accumulation of this meltwater on, under, and around sea ice floes can result in relatively thin meltwater layers in the upper ocean. Due to the small-scale nature of these upper-ocean features, typically on the order of 1 m thick or less, they are rarely detected by standard methods, but…

  • Meltwater layer dynamics in a central Arctic lead

    Open Access•Daiki Nomura, Yusuke Kawaguchi et al.•ARTICLE•Elementa Science of the…•2023

    Leads play an important role in the exchange of heat, gases, vapour, and particles between seawater and the atmosphere in ice-covered polar oceans. In summer, these processes can be modified significantly by the formation of a meltwater layer at the surface, yet we know little about the dynamics of meltwater layer formation and persistence. During the drift campaign of the Multidisciplinary drifting Observatory for the Study of Arctic Climate (MO…

  • First results of the Ariel L-band radiometer on the MosaiC Arctic Expedition during the late summer and autumn period

    Open Access•Carolina Gabarró, Pau Fabregat et al.•ARTICLE•Elementa Science of the…•2022

    Arctic sea ice is changing rapidly. Its retreat significantly impacts Arctic heat fluxes, ocean currents, and ecology, warranting the continuous monitoring and tracking of changes to sea ice extent and thickness. L-band (1.4 GHz) microwave radiometry can measure sea ice thickness for thin ice ≤1 m, depending on salinity and temperature. The sensitivity to thin ice makes L-band measurements complementary to radar altimetry which can measure the th…

  • Climate change impacts on sea-ice ecosystems and associated ecosystem services

    Open Access•Nadja Steiner, Nadja S Steiner et al.•ARTICLE•Elementa Science of the…•2021

    A rigorous synthesis of the sea-ice ecosystem and linked ecosystem services highlights that the sea-ice ecosystem supports all 4 ecosystem service categories, that sea-ice ecosystems meet the criteria for ecologically or biologically significant marine areas, that global emissions driving climate change are directly linked to the demise of sea-ice ecosystems and its ecosystem services, and that the sea-ice ecosystem deserves specific attention in…

  • The future of Arctic sea-ice biogeochemistry and ice-associated ecosystems

    Open Access•Delphine Lannuzel, Letizia Tedesco et al.•ARTICLE•Nature Climate Change•2020

  • Fostering multidisciplinary research on interactions between chemistry, biology, and physics within the coupled cryosphere-atmosphere system

    Open Access•Jennie L Thomas, Jennie Thomas et al.•ARTICLE•Elementa Science of the…•2019

    The cryosphere, which comprises a large portion of Earth’s surface, is rapidly changing as a consequence of global climate change. Ice, snow, and frozen ground in the polar and alpine regions of the planet are known to directly impact atmospheric composition, which for example is observed in the large influence of ice and snow on polar boundary layer chemistry. Atmospheric inputs to the cryosphere, including aerosols, nutrients, and contaminants,…

  • Macro-nutrient concentrations in Antarctic pack ice

    Open Access•Francois Fripiat, Klaus M Meiners et al.•ARTICLE•Elementa Science of the…•2017

    Antarctic pack ice is inhabited by a diverse and active microbial community reliant on nutrients for growth. Seeking patterns and overlooked processes, we performed a large-scale compilation of macro-nutrient data (hereafter termed nutrients) in Antarctic pack ice (306 ice-cores collected from 19 research cruises). Dissolved inorganic nitrogen and silicic acid concentrations change with time, as expected from a seasonally productive ecosystem. In…

  • Methods for biogeochemical studies of sea ice

    Open Access•Lisa A Miller, Francois Fripiat et al.•ARTICLE•Elementa Science of the…•2015

    Over the past two decades, with recognition that the ocean’s sea-ice cover is neither insensitive to climate change nor a barrier to light and matter, research in sea-ice biogeochemistry has accelerated significantly, bringing together a multi-disciplinary community from a variety of fields. This disciplinary diversity has contributed a wide range of methodological techniques and approaches to sea-ice studies, complicating comparisons of the resu…

Sin obras prominentes en esta página.

  • Methods for biogeochemical studies of sea ice

    Open Access•Lisa A Miller, Francois Fripiat et al.•ARTICLE•Elementa Science of the…•2015

    Over the past two decades, with recognition that the ocean’s sea-ice cover is neither insensitive to climate change nor a barrier to light and matter, research in sea-ice biogeochemistry has accelerated significantly, bringing together a multi-disciplinary community from a variety of fields. This disciplinary diversity has contributed a wide range of methodological techniques and approaches to sea-ice studies, complicating comparisons of the resu…

  • Macro-nutrient concentrations in Antarctic pack ice

    Open Access•Francois Fripiat, Klaus M Meiners et al.•ARTICLE•Elementa Science of the…•2017

    Antarctic pack ice is inhabited by a diverse and active microbial community reliant on nutrients for growth. Seeking patterns and overlooked processes, we performed a large-scale compilation of macro-nutrient data (hereafter termed nutrients) in Antarctic pack ice (306 ice-cores collected from 19 research cruises). Dissolved inorganic nitrogen and silicic acid concentrations change with time, as expected from a seasonally productive ecosystem. In…

  • Fostering multidisciplinary research on interactions between chemistry, biology, and physics within the coupled cryosphere-atmosphere system

    Open Access•Jennie L Thomas, Jennie Thomas et al.•ARTICLE•Elementa Science of the…•2019

    The cryosphere, which comprises a large portion of Earth’s surface, is rapidly changing as a consequence of global climate change. Ice, snow, and frozen ground in the polar and alpine regions of the planet are known to directly impact atmospheric composition, which for example is observed in the large influence of ice and snow on polar boundary layer chemistry. Atmospheric inputs to the cryosphere, including aerosols, nutrients, and contaminants,…

  • The future of Arctic sea-ice biogeochemistry and ice-associated ecosystems

    Open Access•Delphine Lannuzel, Letizia Tedesco et al.•ARTICLE•Nature Climate Change•2020

  • Climate change impacts on sea-ice ecosystems and associated ecosystem services

    Open Access•Nadja Steiner, Nadja S Steiner et al.•ARTICLE•Elementa Science of the…•2021

    A rigorous synthesis of the sea-ice ecosystem and linked ecosystem services highlights that the sea-ice ecosystem supports all 4 ecosystem service categories, that sea-ice ecosystems meet the criteria for ecologically or biologically significant marine areas, that global emissions driving climate change are directly linked to the demise of sea-ice ecosystems and its ecosystem services, and that the sea-ice ecosystem deserves specific attention in…

  • First results of the Ariel L-band radiometer on the MosaiC Arctic Expedition during the late summer and autumn period

    Open Access•Carolina Gabarró, Pau Fabregat et al.•ARTICLE•Elementa Science of the…•2022

    Arctic sea ice is changing rapidly. Its retreat significantly impacts Arctic heat fluxes, ocean currents, and ecology, warranting the continuous monitoring and tracking of changes to sea ice extent and thickness. L-band (1.4 GHz) microwave radiometry can measure sea ice thickness for thin ice ≤1 m, depending on salinity and temperature. The sensitivity to thin ice makes L-band measurements complementary to radar altimetry which can measure the th…

  • Polar oceans and sea ice in a changing climate

    Open Access•Megan D Willis, Delphine Lannuzel et al.•ARTICLE•Elementa Science of the…•2023

    Polar oceans and sea ice cover 15% of the Earth’s ocean surface, and the environment is changing rapidly at both poles. Improving knowledge on the interactions between the atmospheric and oceanic realms in the polar regions, a Surface Ocean–Lower Atmosphere Study (SOLAS) project key focus, is essential to understanding the Earth system in the context of climate change. However, our ability to monitor the pace and magnitude of changes in the polar…

  • Thin and transient meltwater layers and false bottoms in the Arctic sea ice pack—Recent insights on these historically overlooked features

    Open Access•Madison M Smith, Hélène Angot et al.•ARTICLE•Elementa Science of the…•2023

    The rapid melt of snow and sea ice during the Arctic summer provides a significant source of low-salinity meltwater to the surface ocean on the local scale. The accumulation of this meltwater on, under, and around sea ice floes can result in relatively thin meltwater layers in the upper ocean. Due to the small-scale nature of these upper-ocean features, typically on the order of 1 m thick or less, they are rarely detected by standard methods, but…

  • Meltwater layer dynamics in a central Arctic lead

    Open Access•Daiki Nomura, Yusuke Kawaguchi et al.•ARTICLE•Elementa Science of the…•2023

    Leads play an important role in the exchange of heat, gases, vapour, and particles between seawater and the atmosphere in ice-covered polar oceans. In summer, these processes can be modified significantly by the formation of a meltwater layer at the surface, yet we know little about the dynamics of meltwater layer formation and persistence. During the drift campaign of the Multidisciplinary drifting Observatory for the Study of Arctic Climate (MO…

  • Overview of the MosaiC expedition

    Open Access•Allison A Fong, Clara J M Hoppe et al.•ARTICLE•Elementa Science of the…•2024

    The international and interdisciplinary sea-ice drift expedition “The Multidisciplinary drifting Observatory for the Study of Arctic Climate” (MOSAiC) was conducted from October 2019 to September 2020. The aim of MOSAiC was to study the interconnected physical, chemical, and biological characteristics and processes from the atmosphere to the deep sea of the central Arctic system. The ecosystem team addressed current knowledge gaps and explored un…

  • Characteristics of late summer Arctic brash sea ice and its melting effect on the surface-water biogeochemistry of the Chukchi Shelf and Canada Basin

    Open Access•Ryota Akino, Daiki Nomura et al.•ARTICLE•Elementa Science of the…•2024

    To understand the impact of the melting of late summer Arctic brash ice on the surface waters of the Chukchi Sea, we collected sea-ice samples during 2021. Floating sea ice was collected by a wire mesh pallet cage from the side of the R/V Mirai. We measured physical and biogeochemical parameters such as salinity, oxygen stable isotopic ratios, turbidity, and concentrations of chlorophyll-a and nutrients. The samples of brash ice were multiyear ic…

  • Isotopic signatures of snow, sea ice, and surface seawater in the central Arctic Ocean during the MosaiC expedition

    Open Access•Moein Mellat, Camilla F Brunello et al.•ARTICLE•Elementa Science of the…•2024

    The Arctic Ocean is an exceptional environment where hydrosphere, cryosphere, and atmosphere are closely interconnected. Changes in sea-ice extent and thickness affect ocean currents, as well as moisture and heat exchange with the atmosphere. Energy and water fluxes impact the formation and melting of sea ice and snow cover. Here, we present a comprehensive statistical analysis of the stable water isotopes of various hydrological components in th…

  • An analysis of air-sea gas exchange for the entire MosaiC Arctic drift

    Open Access•Brice Loose, Ilker Fer et al.•ARTICLE•Elementa Science of the…•2024

    Sea ice cover influences the generation of surface ocean turbulence in ways that sometimes enhance, but mostly inhibit air-water gas exchange. Inhibition happens as ice cover reduces wind fetch, enhancement occurs when haline convection or sea ice drift creates additional surface turbulence. We used the bulk turbulence relationships within the Wave Age Gas Transfer model to estimate air-sea gas transfer velocity (kWAGT), based on sea ice cover an…

  • Algal enrichment process for newly formed sea ice in the Dalton polynya off East Antarctica during the late summer–early autumn

    Open Access•Keigo D Takahashi, Masato Ito et al.•ARTICLE•Elementa Science of the…•2025

    Newly formed sea ice can incorporate considerable amounts of organic matter including phytoplankton during its freezing and growth. This initial incorporation influences the standing stocks of ice algae, a fundamental component of high-latitude marine ecosystems. Physical incorporation via the accretion of frazil ice, instead of congelation growth, is considered to incorporate particles efficiently. However, for thin ice (<0.20 m thickness), info…

  • A novel probe to sample dissolved and particulate matter in sea ice at high vertical resolution

    Open Access•Matthew Corkill, Takenobu Toyota et al.•ARTICLE•Elementa Science of the…•2025

    Sea ice can be interspersed vertically with both permeable and impermeable layers. These features can be smaller than a few centimetres but are important for understanding biogeochemical cycles in sea ice. Traditionally, sea-ice samples are collected by drilling into the ice with a rotating core barrel with a cutting head. Ice cores are extracted and then cut into sections that are melted to collect the variable of interest. Drawbacks to this met…

  • Zooplankton grazing increases atmospheric primary aerosol production in the high Arctic

    Open Access•Manuel Dall’Osto, Katrin Schmidt et al.•ARTICLE•Elementa Science of the…•2025

    The rapidly changing Arctic has led to evolving natural aerosol emissions, which have strong feedback effects on its climate system. Sea spray aerosol (SSA) particles are a main source of aerosols; they influence cloud formation and cloud properties. Ocean microbiota potentially have an impact on SSA production and flux, but our understanding of the mechanisms is still limited. The potential impact of ocean microbiota on SSA fluxes is still a mat…

  • Melt pond CO2 dynamics and fluxes with the atmosphere in the central Arctic Ocean during the summer-to-autumn transition

    Open Access•Masaki Yoshimura, Daiki Nomura et al.•ARTICLE•Elementa Science of the…•2025

    Melt ponds are a common feature of the Arctic sea-ice environment during summer, and they play an important role in the exchange of heat and water vapor between the ocean and the atmosphere. We report the results of a time-series study of the CO2 dynamics within melt ponds (and nearby lead) and related fluxes with the atmosphere during the summer-to-autumn transition in the central Arctic Ocean during the Multidisciplinary drifting Observatory fo…

  • Effects of glacial melting on carbonate chemistry and primary production in coastal waters off Mertz Glacier, East Antarctica

    Open Access•Nana Samori, Daiki Nomura et al.•ARTICLE•Elementa Science of the…•2026

    Because the partial pressure of carbon dioxide (pCO2) at the ocean surface is the main determinant of the air–sea CO2 flux, understanding what causes pCO2 to vary is important to the issue of carbon sequestration. The strength of the CO2 flux is strongly influenced by wind speed and, in polar regions, the presence of sea ice which affects gas exchange efficiency. In this study, oceanographic measurements were made near the Mertz Glacier at 140–15…

  • The biogenic sulfur cycle in the coupled ocean–sea ice–atmosphere system

    Open Access•Sakiko Ishino, Megan D Willis et al.•ARTICLE•Elementa Science of the…•2026

    Polar oceans and sea-ice regions are global hot spots for the production of biogenic volatile methylated sulfur (VMS) compounds: dimethyl sulfide (DMS) and methanethiol (MeSH). VMS compounds make important contributions to atmospheric particle formation and cloud property modulation, especially when polar atmospheres are pristine. As a result, the polar biogenic sulfur cycle may induce significant climate feedback in response to ongoing sea ice d…

Arctic and Antarctic ice dynamics (18 obras) · Sea ice (18 obras) · Environmental Science (15 obras) · Geology (15 obras) · Oceanography (15 obras) · Arctic (9 obras) · Methane Hydrates and Related Phenomena (9 obras) · Climatology (8 obras) · Arctic ice pack (7 obras) · Cryosphere (6 obras)

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