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Maxi Castrillejo

Biographic Data

ID4456858
NAMEMaxi Castrillejo
GIVEN NAMESMaxi
FAMILY NAMECastrillejo
SIGNATURECASTRILLEJO M
ORCID0000-0001-5149-2218
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS5
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2020
LATEST PUBLICATION YEAR2025
H-INDEX1
  • Radiocarbon measurements of dissolved inorganic carbon (DIC) in sediment porewater and seawater at AWI Micadas

    Open Access•Hendrik Grotheer, Jens S Hammes et al.•ARTICLE•Radiocarbon•2025

    Radiocarbon ( 14 C) measurements on dissolved inorganic carbon (DIC) are a powerful tool to trace water masses and carbon cycling in the ocean. Existing methodologies to determine the 14 C content of seawater DIC requires large volumes of sample (usually >100 mL) and specialized graphitization techniques to achieve the accuracy and precision needed for meaningful data interpretation. The advancement of the CO 2 gas ionization accelerator mass spe…

  • Comparability of Radiocarbon Measurements in Dissolved Inorganic Carbon of Seawater Produced at Eth-Zurich

    Open Access•Maxi Castrillejo, Roberta L Hansman et al.•ARTICLE•Radiocarbon•2024•Cited by: 1•References: 18

    Radiocarbon observations (Δ 14 C) in dissolved inorganic carbon (DIC) of seawater provide useful information about ocean carbon cycling and ocean circulation. To deliver high-quality observations, the Laboratory of Ion Beam Physics (LIP) at ETH-Zurich developed a new simplified method allowing the rapid analysis of radiocarbon in DIC of small seawater samples, which is continually assessed by following internal quality controls. However, a compar…

  • High Precision 14 C Analysis in Small Seawater Samples

    Open Access•Núria Casacuberta, Maxi Castrillejo et al.•ARTICLE•Radiocarbon•2020•Cited by: 4•References: 20

    A new method to extract CO 2 in seawater samples for the determination of F 14 C has been developed in the Laboratory of Ion Beam Physics at ETH Zurich. The setup consists of an automated sampler designed to extract dissolved inorganic carbon (DIC) from 7 samples in a row, by flushing the seawater with He gas to extract CO 2 . The fully automated method is controlled via a LabVIEW program that runs through all consecutive steps: catalyst precondi…

  • High Precision 14 C Analysis in Small Seawater Samples

    Open Access•Núria Casacuberta, Maxi Castrillejo et al.•ARTICLE•Radiocarbon•2020•Cited by: 4•References: 20

    A new method to extract CO 2 in seawater samples for the determination of F 14 C has been developed in the Laboratory of Ion Beam Physics at ETH Zurich. The setup consists of an automated sampler designed to extract dissolved inorganic carbon (DIC) from 7 samples in a row, by flushing the seawater with He gas to extract CO 2 . The fully automated method is controlled via a LabVIEW program that runs through all consecutive steps: catalyst precondi…

  • Comparability of Radiocarbon Measurements in Dissolved Inorganic Carbon of Seawater Produced at Eth-Zurich

    Open Access•Maxi Castrillejo, Roberta L Hansman et al.•ARTICLE•Radiocarbon•2024•Cited by: 1•References: 18

    Radiocarbon observations (Δ 14 C) in dissolved inorganic carbon (DIC) of seawater provide useful information about ocean carbon cycling and ocean circulation. To deliver high-quality observations, the Laboratory of Ion Beam Physics (LIP) at ETH-Zurich developed a new simplified method allowing the rapid analysis of radiocarbon in DIC of small seawater samples, which is continually assessed by following internal quality controls. However, a compar…

  • High Precision 14 C Analysis in Small Seawater Samples

    Open Access•Núria Casacuberta, Maxi Castrillejo et al.•ARTICLE•Radiocarbon•2020•Cited by: 4•References: 20

    A new method to extract CO 2 in seawater samples for the determination of F 14 C has been developed in the Laboratory of Ion Beam Physics at ETH Zurich. The setup consists of an automated sampler designed to extract dissolved inorganic carbon (DIC) from 7 samples in a row, by flushing the seawater with He gas to extract CO 2 . The fully automated method is controlled via a LabVIEW program that runs through all consecutive steps: catalyst precondi…

  • Comparability of Radiocarbon Measurements in Dissolved Inorganic Carbon of Seawater Produced at Eth-Zurich

    Open Access•Maxi Castrillejo, Roberta L Hansman et al.•ARTICLE•Radiocarbon•2024•Cited by: 1•References: 18

    Radiocarbon observations (Δ 14 C) in dissolved inorganic carbon (DIC) of seawater provide useful information about ocean carbon cycling and ocean circulation. To deliver high-quality observations, the Laboratory of Ion Beam Physics (LIP) at ETH-Zurich developed a new simplified method allowing the rapid analysis of radiocarbon in DIC of small seawater samples, which is continually assessed by following internal quality controls. However, a compar…

  • Radiocarbon measurements of dissolved inorganic carbon (DIC) in sediment porewater and seawater at AWI Micadas

    Open Access•Hendrik Grotheer, Jens S Hammes et al.•ARTICLE•Radiocarbon•2025

    Radiocarbon ( 14 C) measurements on dissolved inorganic carbon (DIC) are a powerful tool to trace water masses and carbon cycling in the ocean. Existing methodologies to determine the 14 C content of seawater DIC requires large volumes of sample (usually >100 mL) and specialized graphitization techniques to achieve the accuracy and precision needed for meaningful data interpretation. The advancement of the CO 2 gas ionization accelerator mass spe…

Carbon fibers (3 works) · Chemistry (3 works) · Environmental Chemistry (3 works) · Environmental Science (3 works) · Geology (3 works) · Isotope Analysis in Ecology (3 works) · Oceanography (3 works) · Seawater (3 works) · Dissolved organic carbon (2 works) · Geology and Paleoclimatology Research (2 works)

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