Victoria Janes‐bassett
Biographic Data
| ID | 3600065 |
|---|---|
| NAME | Victoria Janes‐bassett |
| GIVEN NAMES | Victoria |
| FAMILY NAME | Janes‐bassett |
| SIGNATURE | BASSETT V J |
| AFFILIATIONS | Lancaster University |
| ORCID | 0000-0002-4882-6202 |
| VERIFIED | Yes |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 2 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2021 |
| LATEST PUBLICATION YEAR | 2022 |
| H-INDEX | 1 |
Terrestrial carbon sequestration under future climate, nutrient and land use change and management scenarios: A national-scale UK case study
Carbon sequestration (C seq ) in soils and plant biomass is viewed as an important means of mitigating climate change. Recent global assessments have estimated considerable potential for terrestrial C seq , but generally lack sensitivity to climate warming, nutrient limitations and perspective on local land use. These are important factors since higher temperatures can accelerate the decomposition of soil organic matter, nutrient availability aff…
Mapping regional impacts of agricultural expansion on terrestrial carbon storage
As a result of growing food demands, the area of land used globally for agriculture has rapidly increased over the last 300 years. Clearance of natural vegetation and conversion of land to agriculture is often associated with terrestrial carbon loss, from both vegetation and soil stores. Changes in terrestrial carbon storage has implications for food production, climate and water regulation. Quantifying these changes is therefore vital to underst…
Changes in carbon storage since the pre-industrial era: A national scale analysis
Carbon stores in the terrestrial biosphere globally represent over 50% of present-day organic carbon reservoirs and have significantly altered over the last three centuries owing to anthropogenic disturbances. Conversion of natural land to agricultural uses often results in a loss of soil carbon, whilst atmospheric deposition of pollutants such as nitrogen has increased carbon storage in both soil and biomass. Terrestrial carbon storage underpins…
Mapping regional impacts of agricultural expansion on terrestrial carbon storage
As a result of growing food demands, the area of land used globally for agriculture has rapidly increased over the last 300 years. Clearance of natural vegetation and conversion of land to agriculture is often associated with terrestrial carbon loss, from both vegetation and soil stores. Changes in terrestrial carbon storage has implications for food production, climate and water regulation. Quantifying these changes is therefore vital to underst…
Changes in carbon storage since the pre-industrial era: A national scale analysis
Carbon stores in the terrestrial biosphere globally represent over 50% of present-day organic carbon reservoirs and have significantly altered over the last three centuries owing to anthropogenic disturbances. Conversion of natural land to agricultural uses often results in a loss of soil carbon, whilst atmospheric deposition of pollutants such as nitrogen has increased carbon storage in both soil and biomass. Terrestrial carbon storage underpins…
Mapping regional impacts of agricultural expansion on terrestrial carbon storage
As a result of growing food demands, the area of land used globally for agriculture has rapidly increased over the last 300 years. Clearance of natural vegetation and conversion of land to agriculture is often associated with terrestrial carbon loss, from both vegetation and soil stores. Changes in terrestrial carbon storage has implications for food production, climate and water regulation. Quantifying these changes is therefore vital to underst…
Changes in carbon storage since the pre-industrial era: A national scale analysis
Carbon stores in the terrestrial biosphere globally represent over 50% of present-day organic carbon reservoirs and have significantly altered over the last three centuries owing to anthropogenic disturbances. Conversion of natural land to agricultural uses often results in a loss of soil carbon, whilst atmospheric deposition of pollutants such as nitrogen has increased carbon storage in both soil and biomass. Terrestrial carbon storage underpins…
Terrestrial carbon sequestration under future climate, nutrient and land use change and management scenarios: A national-scale UK case study
Carbon sequestration (C seq ) in soils and plant biomass is viewed as an important means of mitigating climate change. Recent global assessments have estimated considerable potential for terrestrial C seq , but generally lack sensitivity to climate warming, nutrient limitations and perspective on local land use. These are important factors since higher temperatures can accelerate the decomposition of soil organic matter, nutrient availability aff…
Arable land (3 works) · Carbon dioxide (3 works) · Carbon sequestration (3 works) · Ecology (3 works) · Environmental Science (3 works) · Peatlands and Wetlands Ecology (3 works) · Soil carbon (3 works) · Soil Carbon and Nitrogen Dynamics (3 works) · Soil Science (3 works) · Soil water (3 works)