Stefan Bringezu
Biographic Data
| ID | 6314043 |
|---|---|
| NAME | Stefan Bringezu |
| GIVEN NAMES | Stefan |
| FAMILY NAME | Bringezu |
| SIGNATURE | BRINGEZU S |
| VERIFIED | No |
| TOTAL WORKS | 10 |
| TOTAL CITATIONS | 27 |
| AUTHOR COUNT | 10 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2003 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 3 |
Quantifying overconsumption: Deriving safe and equitable benchmarks to evaluate the environmental footprints of Germany's bioeconomy
The transition to a sustainable bioeconomy joins socio-economic and environmental goals. Getting there requires monitoring national consumption levels in relation to sustainability metrics. While substituting biomass for fossil and mineral resources can lead to win-wins, there is also a risk that if done the wrong way, impacts could accumulate at a global scale to push planetary systems beyond their boundaries and exacerbate vulnerability and inj…
Das Weltbudget: Sichere und faire Ressourcennutzung als globale Überlebensstrategie
European Timber Consumption: Developing a Method to Account for Timber Flows and the EU's Global Forest Footprint
Toward a systemic monitoring of the European bioeconomy: Gaps, needs and the integration of sustainability indicators and targets for global land use
On the mechanism and effects of innovation: Search for safety and independence of resource constraints expands the safe operating range
The land footprint of the EU bioeconomy: Monitoring tools, gaps and needs
The physical dimension of international trade, part 2: Indirect global resource flows between 1962 and 2005
Beyond biofuels: Assessing global land use for domestic consumption of biomass
International comparison of resource use and its relation to economic growth
Rationale for and Interpretation of Economy‐Wide Materials Flow Analysis and Derived Indicators
Economy‐wide material flow analysis (MFA) and derived indicators have been developed to monitor and assess the metabolic performance of economies, that is, with respect to the internal economic flows and the exchange of materials with the environment and with other economies. Indicators such as direct material input (DMI) and direct material consumption (DMC) measure material use related to either production or consumption. Domestic hidden flows …
The land footprint of the EU bioeconomy: Monitoring tools, gaps and needs
Beyond biofuels: Assessing global land use for domestic consumption of biomass
Toward a systemic monitoring of the European bioeconomy: Gaps, needs and the integration of sustainability indicators and targets for global land use
Rationale for and Interpretation of Economy‐Wide Materials Flow Analysis and Derived Indicators
Economy‐wide material flow analysis (MFA) and derived indicators have been developed to monitor and assess the metabolic performance of economies, that is, with respect to the internal economic flows and the exchange of materials with the environment and with other economies. Indicators such as direct material input (DMI) and direct material consumption (DMC) measure material use related to either production or consumption. Domestic hidden flows …
International comparison of resource use and its relation to economic growth
The physical dimension of international trade, part 2: Indirect global resource flows between 1962 and 2005
Beyond biofuels: Assessing global land use for domestic consumption of biomass
On the mechanism and effects of innovation: Search for safety and independence of resource constraints expands the safe operating range
The land footprint of the EU bioeconomy: Monitoring tools, gaps and needs
Toward a systemic monitoring of the European bioeconomy: Gaps, needs and the integration of sustainability indicators and targets for global land use
European Timber Consumption: Developing a Method to Account for Timber Flows and the EU's Global Forest Footprint
Das Weltbudget: Sichere und faire Ressourcennutzung als globale Überlebensstrategie
Quantifying overconsumption: Deriving safe and equitable benchmarks to evaluate the environmental footprints of Germany's bioeconomy
The transition to a sustainable bioeconomy joins socio-economic and environmental goals. Getting there requires monitoring national consumption levels in relation to sustainability metrics. While substituting biomass for fossil and mineral resources can lead to win-wins, there is also a risk that if done the wrong way, impacts could accumulate at a global scale to push planetary systems beyond their boundaries and exacerbate vulnerability and inj…
Economics (7 works) · Environmental Impact and Sustainability (7 works) · Natural resource economics (6 works) · Business (5 works) · Ecology (5 works) · Environmental Science (5 works) · Sustainability (5 works) · Bioeconomy and Sustainability Development (4 works) · Engineering (4 works) · Environmental economics (4 works)