Yanxu Zhang
Biographic Data
| ID | 6015589 |
|---|---|
| NAME | Yanxu Zhang |
| GIVEN NAMES | Yanxu |
| FAMILY NAME | Zhang |
| SIGNATURE | ZHANG Y |
| AFFILIATIONS | Nanjing University |
| ORCID | 0000-0001-7770-3466 |
| VERIFIED | Yes |
| TOTAL WORKS | 10 |
| TOTAL CITATIONS | 3 |
| AUTHOR COUNT | 10 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2020 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 1 |
Global mercury emissions from wildfires are three times lower than existing estimates
Human exposure risk via algae-induced transfer of tritiated water in the marine food chain
The potential impacts of plastic on the marine carbon cycle
Ecological risk assessment of marine plastic pollution
Modeling atmospheric microplastic cycle by Geos-Chem
An updated global mercury budget from a coupled atmosphere-land-ocean model
The effectiveness of reducing the environmental level of mercury (Hg) by controlling anthropogenic emissions depends on the magnitude of re-emissions from the land and ocean, which requires a comprehensive understanding of its global biogeochemical cycle. Recent advances in atmospheric Hg redox chemistry, vegetation uptake, seawater Hg sources, and riverine discharges greatly challenge our understanding of the global Hg cycle, but the overall eff…
Effect of Coal Mining on Soil Microorganisms from Stipa krylovii Rhizosphere in Typical Grassland
The environmental changes caused by coal mining activities caused disturbances to the plant, soil, and microbial health in the mining area. Arbuscular mycorrhizal fungi (AMF) play an important role in the ecological restoration of mining areas. However, it is less understood how soil fungal communities with multiple functional groups respond to coal mining, and the quantitative impact and risk of mining disturbance. Therefore, in this study, the …
Global change effects on biogeochemical mercury cycling
Past and present anthropogenic mercury (Hg) release to ecosystems causes neurotoxicity and cardiovascular disease in humans with an estimated economic cost of $117 billion USD annually. Humans are primarily exposed to Hg via the consumption of contaminated freshwater and marine fish. The UNEP Minamata Convention on Hg aims to curb Hg release to the environment and is accompanied by global Hg monitoring efforts to track its success. The biogeochem…
Impacts of climate change on methylmercury formation and bioaccumulation in the 21st century ocean
Measuring the sustainable development implications of climate change mitigation
Synergies and trade-offs exist between climate mitigation actions and target indicators of the Sustainable Development Goals (SDGs). Some studies have assessed such relationships, but the degree of such interaction remains poorly understood. Here, we show the SDG implications associated with CO 2 emissions reductions. We developed ‘marginal SDG-emissions-reduction values (MSVs)’, which represent the marginal impacts on SDG indicators caused by a …
Human exposure risk via algae-induced transfer of tritiated water in the marine food chain
The potential impacts of plastic on the marine carbon cycle
Global change effects on biogeochemical mercury cycling
Past and present anthropogenic mercury (Hg) release to ecosystems causes neurotoxicity and cardiovascular disease in humans with an estimated economic cost of $117 billion USD annually. Humans are primarily exposed to Hg via the consumption of contaminated freshwater and marine fish. The UNEP Minamata Convention on Hg aims to curb Hg release to the environment and is accompanied by global Hg monitoring efforts to track its success. The biogeochem…
Measuring the sustainable development implications of climate change mitigation
Synergies and trade-offs exist between climate mitigation actions and target indicators of the Sustainable Development Goals (SDGs). Some studies have assessed such relationships, but the degree of such interaction remains poorly understood. Here, we show the SDG implications associated with CO 2 emissions reductions. We developed ‘marginal SDG-emissions-reduction values (MSVs)’, which represent the marginal impacts on SDG indicators caused by a …
Impacts of climate change on methylmercury formation and bioaccumulation in the 21st century ocean
Modeling atmospheric microplastic cycle by Geos-Chem
An updated global mercury budget from a coupled atmosphere-land-ocean model
The effectiveness of reducing the environmental level of mercury (Hg) by controlling anthropogenic emissions depends on the magnitude of re-emissions from the land and ocean, which requires a comprehensive understanding of its global biogeochemical cycle. Recent advances in atmospheric Hg redox chemistry, vegetation uptake, seawater Hg sources, and riverine discharges greatly challenge our understanding of the global Hg cycle, but the overall eff…
Effect of Coal Mining on Soil Microorganisms from Stipa krylovii Rhizosphere in Typical Grassland
The environmental changes caused by coal mining activities caused disturbances to the plant, soil, and microbial health in the mining area. Arbuscular mycorrhizal fungi (AMF) play an important role in the ecological restoration of mining areas. However, it is less understood how soil fungal communities with multiple functional groups respond to coal mining, and the quantitative impact and risk of mining disturbance. Therefore, in this study, the …
Global change effects on biogeochemical mercury cycling
Past and present anthropogenic mercury (Hg) release to ecosystems causes neurotoxicity and cardiovascular disease in humans with an estimated economic cost of $117 billion USD annually. Humans are primarily exposed to Hg via the consumption of contaminated freshwater and marine fish. The UNEP Minamata Convention on Hg aims to curb Hg release to the environment and is accompanied by global Hg monitoring efforts to track its success. The biogeochem…
Human exposure risk via algae-induced transfer of tritiated water in the marine food chain
The potential impacts of plastic on the marine carbon cycle
Ecological risk assessment of marine plastic pollution
Global mercury emissions from wildfires are three times lower than existing estimates
Environmental Science (7 works) · Ecology (6 works) · Biology (5 works) · Ecosystem (4 works) · Geography (4 works) · Mercury impact and mitigation studies (4 works) · Biogeochemical cycle (3 works) · Chemistry (3 works) · Climate change (3 works) · Environmental Chemistry (3 works)