Saltar al contenido principal

ETHNOS_APP

Inicio • Búsqueda • Revistas • Lista 0

Virginia I Rich

Datos Biográficos

ID7998312
NOMBREVirginia I Rich
NOMBRESVirginia I
APELLIDORich
FIRMARICH V I
AFILIACIONESThe Ohio State University
ORCID0000-0003-0558-102X
VERIFICADOSí
TOTAL DE OBRAS2
TOTAL DE CITAS0
TOTAL COMO AUTOR2
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2024
AÑO MÁS RECIENTE DE PUBLICACIÓN2025
ÍNDICE H0
  • Unraveling the depth-dependent causal dynamics of methanogenesis and methanotrophy in a high-latitude fen peatland

    Open Access•Shuai Yang, Jinyun Tang et al.•ARTICLE•Environmental Research Letters•2025

    The dynamics of methane (CH 4 ) cycling in high-latitude peatlands through different pathways of methanogenesis and methanotrophy are still poorly understood due to the spatiotemporal complexity of microbial activities and biogeochemical processes. Additionally, long-term in situ measurements within soil columns are limited and associated with large uncertainties in microbial substrates (e.g. dissolved organic carbon, acetate, hydrogen). To bette…

  • Soil incubation methods lead to large differences in inferred methane production temperature sensitivity

    Open Access•Zhen Li, R F Grant et al.•ARTICLE•Environmental Research Letters•2024

    Quantifying the temperature sensitivity of methane (CH 4 ) production is crucial for predicting how wetland ecosystems will respond to climate warming. Typically, the temperature sensitivity (often quantified as a Q 10 value) is derived from laboratory incubation studies and then used in biogeochemical models. However, studies report wide variation in incubation-inferred Q 10 values, with a large portion of this variation remaining unexplained. H…

Sin obras prominentes en esta página.

  • Soil incubation methods lead to large differences in inferred methane production temperature sensitivity

    Open Access•Zhen Li, R F Grant et al.•ARTICLE•Environmental Research Letters•2024

    Quantifying the temperature sensitivity of methane (CH 4 ) production is crucial for predicting how wetland ecosystems will respond to climate warming. Typically, the temperature sensitivity (often quantified as a Q 10 value) is derived from laboratory incubation studies and then used in biogeochemical models. However, studies report wide variation in incubation-inferred Q 10 values, with a large portion of this variation remaining unexplained. H…

  • Unraveling the depth-dependent causal dynamics of methanogenesis and methanotrophy in a high-latitude fen peatland

    Open Access•Shuai Yang, Jinyun Tang et al.•ARTICLE•Environmental Research Letters•2025

    The dynamics of methane (CH 4 ) cycling in high-latitude peatlands through different pathways of methanogenesis and methanotrophy are still poorly understood due to the spatiotemporal complexity of microbial activities and biogeochemical processes. Additionally, long-term in situ measurements within soil columns are limited and associated with large uncertainties in microbial substrates (e.g. dissolved organic carbon, acetate, hydrogen). To bette…

Biogeochemical cycle (2 obras) · Biology (2 obras) · Biomass (ecology (2 obras) · Chemistry (2 obras) · Ecology (2 obras) · Ecosystem (2 obras) · Environmental Chemistry (2 obras) · Environmental Science (2 obras) · Peatlands and Wetlands Ecology (2 obras) · Substrate (aquarium (2 obras)

Ethnos_APP • Proyecto Open Source • Licencia MIT • Frontend v2.0.0 • Privacidad y Cookies • Documentación de la API: api.ethnos.app/docs • Código de la API: GitHub • DOI: 10.5281/zenodo.17049435 • Código del Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae