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Daniele De Maria

Datos Biográficos

ID4456881
NOMBREDaniele De Maria
NOMBRESDaniele
APELLIDODe Maria
FIRMADE MARIA D
ORCID0000-0002-7336-1734
VERIFICADOSí
TOTAL DE OBRAS2
TOTAL DE CITAS1
TOTAL COMO AUTOR2
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2024
AÑO MÁS RECIENTE DE PUBLICACIÓN2025
ÍNDICE H1
  • Towards online ramped oxidation (ORO)-AMS for thermal dissection and serial radiocarbon analysis of complex organic matter

    Open Access•Marco A Bolandini, Daniele De Maria et al.•ARTICLE•Radiocarbon•2025

    By constraining organic carbon (OC) turnover times and ages, radiocarbon ( 14 C) analysis has become a crucial tool to study the global carbon cycle. However, commonly used “bulk” measurements yield average turnover times, masking age variability within complex OC mixtures. One method to unravel intra-sample age distributions is ramped oxidation, in which OC is oxidized with the aid of oxygen at increasing temperatures. The resulting CO 2 is coll…

  • Lea—a Novel Low Energy Accelerator for 14 C Dating

    Open Access•Urs Ramsperger, Daniele De Maria et al.•ARTICLE•Radiocarbon•2024•Citada por: 1•Referencias: 14

    A newly developed compact AMS, LEA (Low Energy Accelerator), is tested and compared with a state-of-the-art AMS system MICADAS (Mini Carbon Dating System), which has a precision performance of better than 1‰ for modern 14 C. The main difference between these two systems is the acceleration voltage, which has been reduced from 200 kV with the MICADAS system to 50 kV with the LEA system. In order to execute the final performance tests, exactly same…

  • Lea—a Novel Low Energy Accelerator for 14 C Dating

    Open Access•Urs Ramsperger, Daniele De Maria et al.•ARTICLE•Radiocarbon•2024•Citada por: 1•Referencias: 14

    A newly developed compact AMS, LEA (Low Energy Accelerator), is tested and compared with a state-of-the-art AMS system MICADAS (Mini Carbon Dating System), which has a precision performance of better than 1‰ for modern 14 C. The main difference between these two systems is the acceleration voltage, which has been reduced from 200 kV with the MICADAS system to 50 kV with the LEA system. In order to execute the final performance tests, exactly same…

  • Lea—a Novel Low Energy Accelerator for 14 C Dating

    Open Access•Urs Ramsperger, Daniele De Maria et al.•ARTICLE•Radiocarbon•2024•Citada por: 1•Referencias: 14

    A newly developed compact AMS, LEA (Low Energy Accelerator), is tested and compared with a state-of-the-art AMS system MICADAS (Mini Carbon Dating System), which has a precision performance of better than 1‰ for modern 14 C. The main difference between these two systems is the acceleration voltage, which has been reduced from 200 kV with the MICADAS system to 50 kV with the LEA system. In order to execute the final performance tests, exactly same…

  • Towards online ramped oxidation (ORO)-AMS for thermal dissection and serial radiocarbon analysis of complex organic matter

    Open Access•Marco A Bolandini, Daniele De Maria et al.•ARTICLE•Radiocarbon•2025

    By constraining organic carbon (OC) turnover times and ages, radiocarbon ( 14 C) analysis has become a crucial tool to study the global carbon cycle. However, commonly used “bulk” measurements yield average turnover times, masking age variability within complex OC mixtures. One method to unravel intra-sample age distributions is ramped oxidation, in which OC is oxidized with the aid of oxygen at increasing temperatures. The resulting CO 2 is coll…

Accelerator mass spectrometry (2 obras) · Geology (2 obras) · Paleontology (2 obras) · Radiocarbon dating (2 obras) · Acceleration (1 obras) · Acceleration voltage (1 obras) · Algorithm (1 obras) · Atomic physics (1 obras) · Carbon fibers (1 obras) · Chemistry (1 obras)

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