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Toru Hirawake

Datos Biográficos

ID9035329
NOMBREToru Hirawake
NOMBRESToru
APELLIDOHirawake
FIRMAHIRAWAKE T
AFILIACIONESThe Graduate University for Advanced Studies, SOKENDAI
ORCID0000-0003-0274-6642
VERIFICADOSí
TOTAL DE OBRAS3
TOTAL DE CITAS0
TOTAL COMO AUTOR3
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2021
AÑO MÁS RECIENTE DE PUBLICACIÓN2025
ÍNDICE H0
  • 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…

  • Status of ocean observations in the Indian Sector of the Southern Ocean

    Open Access•Svenja Halfter, Luke Brokensha et al.•ARTICLE•Elementa Science of the…•2025

    One of the largest sectors of the Southern Ocean is the Indian Sector, which plays an important role in regulating the Earth’s climate and supports a diverse ecosystem. To understand how climate change impacts the environment in this sector, ocean observations are collected via various platforms, including conventional ship-based technologies, autonomous instruments (e.g., animal-borne sensors, autonomous underwater vehicles, and profiling floats…

  • An estimation of the quantitative impacts of copepod grazing on an under sea-ice spring phytoplankton bloom in western Baffin Bay, Canadian Arctic

    Open Access•Makoto Sampei, Louis Fortier et al.•ARTICLE•Elementa Science of the…•2021

    This study aimed to quantify the impact of copepod grazing on the productivity of phytoplankton during an under sea-ice spring phytoplankton bloom (USPB) in western Baffin Bay. To quantify positive and/or negative impacts of copepod grazing on primary production and the interaction between copepod grazing and phytoplankton species, we sampled seawater and zooplankton under the landfast sea ice every 2–3 days between May 24 and July 10, 2016. Samp…

Sin obras prominentes en esta página.

  • An estimation of the quantitative impacts of copepod grazing on an under sea-ice spring phytoplankton bloom in western Baffin Bay, Canadian Arctic

    Open Access•Makoto Sampei, Louis Fortier et al.•ARTICLE•Elementa Science of the…•2021

    This study aimed to quantify the impact of copepod grazing on the productivity of phytoplankton during an under sea-ice spring phytoplankton bloom (USPB) in western Baffin Bay. To quantify positive and/or negative impacts of copepod grazing on primary production and the interaction between copepod grazing and phytoplankton species, we sampled seawater and zooplankton under the landfast sea ice every 2–3 days between May 24 and July 10, 2016. Samp…

  • 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…

  • Status of ocean observations in the Indian Sector of the Southern Ocean

    Open Access•Svenja Halfter, Luke Brokensha et al.•ARTICLE•Elementa Science of the…•2025

    One of the largest sectors of the Southern Ocean is the Indian Sector, which plays an important role in regulating the Earth’s climate and supports a diverse ecosystem. To understand how climate change impacts the environment in this sector, ocean observations are collected via various platforms, including conventional ship-based technologies, autonomous instruments (e.g., animal-borne sensors, autonomous underwater vehicles, and profiling floats…

Arctic and Antarctic ice dynamics (3 obras) · Geology (3 obras) · Oceanography (3 obras) · Climatology (2 obras) · Environmental Science (2 obras) · Geography (2 obras) · Methane Hydrates and Related Phenomena (2 obras) · Animal science (1 obras) · Bay (1 obras) · Biology (1 obras)

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