Virginia I Rich
Datos Biográficos
| ID | 7998312 |
|---|---|
| NOMBRE | Virginia I Rich |
| NOMBRES | Virginia I |
| APELLIDO | Rich |
| FIRMA | RICH V I |
| AFILIACIONES | The Ohio State University |
| ORCID | 0000-0003-0558-102X |
| VERIFICADO | Sí |
| TOTAL DE OBRAS | 2 |
| TOTAL DE CITAS | 0 |
| TOTAL COMO AUTOR | 2 |
| TOTAL COMO EDITOR | 0 |
| PRIMER AÑO DE PUBLICACIÓN | 2024 |
| AÑO MÁS RECIENTE DE PUBLICACIÓN | 2025 |
| ÍNDICE H | 0 |
Unraveling the depth-dependent causal dynamics of methanogenesis and methanotrophy in a high-latitude fen peatland
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
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
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
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)