Naoko Tokuchi
Biographic Data
| ID | 227178 |
|---|---|
| NAME | Naoko Tokuchi |
| GIVEN NAMES | Naoko |
| FAMILY NAME | Tokuchi |
| SIGNATURE | TOKUCHI N |
| AFFILIATIONS | Kyoto University |
| ORCID | 0000-0001-5508-5951 |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 1 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2004 |
| LATEST PUBLICATION YEAR | 2021 |
| H-INDEX | 1 |
The Influences of Traditional Shifting Cultivation on Soil Properties and Vegetation in the Bago Mountains, Myanmar
Consequence of altered nitrogen cycles in the coupled human and ecological system under changing climate: The need for long-term and site-based research
Seasonal Patterns of Nitrate Discharge from Forested Catchments: Information Derived from Japanese Case Studies
In recent decades, the seasonal variation of NO3− discharge from forest ecosystems has been increasingly used by ecologists and hydrologists as a diagnostic indicator of the nutrient status of ecosystems. Major factors controlling the seasonal patterns of stream NO3− concentrations include seasonal variations in (i) nutrient demands of the ecosystem, (ii) solute transport capability of the hydrological condition, and (iii) in-stream nutrient usag…
Soil Functional Responses to Excess Nitrogen Inputs at Global Scale
There is little evidence that nitrogen (N) cycling in the highly weathered, low-phosphorus (P), acidic soils found in Southern Hemisphere continents will differ greatly from that in North America and Europe. Evidence from the ‘south’ shows: the similarity in forms and temporal patterns in losses of N from different land uses; that the C:N ratios of the forest floor/litter layer from different continents are strongly predictive of a range of proce…
Soil Functional Responses to Excess Nitrogen Inputs at Global Scale
There is little evidence that nitrogen (N) cycling in the highly weathered, low-phosphorus (P), acidic soils found in Southern Hemisphere continents will differ greatly from that in North America and Europe. Evidence from the 'south' shows: the similarity in forms and temporal patterns in losses of N from different land uses; that the C:N ratios of the forest floor/litter layer from different continents are strongly predictive of a range of proce…
Soil Functional Responses to Excess Nitrogen Inputs at Global Scale
There is little evidence that nitrogen (N) cycling in the highly weathered, low-phosphorus (P), acidic soils found in Southern Hemisphere continents will differ greatly from that in North America and Europe. Evidence from the ‘south’ shows: the similarity in forms and temporal patterns in losses of N from different land uses; that the C:N ratios of the forest floor/litter layer from different continents are strongly predictive of a range of proce…
Soil Functional Responses to Excess Nitrogen Inputs at Global Scale
There is little evidence that nitrogen (N) cycling in the highly weathered, low-phosphorus (P), acidic soils found in Southern Hemisphere continents will differ greatly from that in North America and Europe. Evidence from the 'south' shows: the similarity in forms and temporal patterns in losses of N from different land uses; that the C:N ratios of the forest floor/litter layer from different continents are strongly predictive of a range of proce…
Seasonal Patterns of Nitrate Discharge from Forested Catchments: Information Derived from Japanese Case Studies
In recent decades, the seasonal variation of NO3− discharge from forest ecosystems has been increasingly used by ecologists and hydrologists as a diagnostic indicator of the nutrient status of ecosystems. Major factors controlling the seasonal patterns of stream NO3− concentrations include seasonal variations in (i) nutrient demands of the ecosystem, (ii) solute transport capability of the hydrological condition, and (iii) in-stream nutrient usag…
Consequence of altered nitrogen cycles in the coupled human and ecological system under changing climate: The need for long-term and site-based research
The Influences of Traditional Shifting Cultivation on Soil Properties and Vegetation in the Bago Mountains, Myanmar
Environmental Science (5 works) · Biology (4 works) · Geography (4 works) · Peatlands and Wetlands Ecology (4 works) · Soil and Water Nutrient Dynamics (4 works) · Biogeochemical cycle (3 works) · Ecology (3 works) · Ecology (3 works) · Ecosystem (3 works) · Nitrogen (3 works)