Jeffrey Dankwa Ampah
Biographic Data
| ID | 7927202 |
|---|---|
| NAME | Jeffrey Dankwa Ampah |
| GIVEN NAMES | Jeffrey Dankwa |
| FAMILY NAME | Ampah |
| SIGNATURE | AMPAH J D |
| AFFILIATIONS | Tianjin University |
| ORCID | 0000-0002-0985-151X |
| VERIFIED | Yes |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2022 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 0 |
Exploring net-zero emissions pathways for Africa across different timelines
Understanding how net-zero emissions timelines affect sustainable development is essential for climate planning in Africa. We apply the Global Change Analysis Model to explore the continent’s energy–land–water systems under four scenarios: a business-as-usual (BAU) and three net-zero scenarios targeting 2050 (NZ50), 2070 (NZ70), and 2100 (NZ100). Our analysis quantifies how the pace of decarbonization influences Africa’s interconnected energy, la…
Carbon dioxide removal and net zero emissions in Africa
As the remaining carbon budget for limiting warming to 1.5 °C rapidly diminishes, it is clear that, besides decarbonization, the world will need to remove 100–1000 GtCO 2 from the atmosphere by the end of the century. Yet, Africa, where many carbon removal schemes are planned, remains a ‘blindspot’ in existing studies. There is limited understanding of the trade-offs and synergies associated with carbon removal within Africa’s energy-land-water s…
Integrated AHP-Topsis under a Fuzzy Environment for the Selection of Waste-To-Energy Technologies in Ghana
Energy recovery from waste presents a promising alternative for several countries, including Ghana, which has struggled with unsustainable waste treatment methods and an inadequate power supply for several decades. The current study adopts a comprehensive multi-criteria decision-making approach for the selection of an optimal waste-to-energy (WtE) technology for implementation in Ghana. Four WtE technologies are evaluated against twelve selection…
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Integrated AHP-Topsis under a Fuzzy Environment for the Selection of Waste-To-Energy Technologies in Ghana
Energy recovery from waste presents a promising alternative for several countries, including Ghana, which has struggled with unsustainable waste treatment methods and an inadequate power supply for several decades. The current study adopts a comprehensive multi-criteria decision-making approach for the selection of an optimal waste-to-energy (WtE) technology for implementation in Ghana. Four WtE technologies are evaluated against twelve selection…
Carbon dioxide removal and net zero emissions in Africa
As the remaining carbon budget for limiting warming to 1.5 °C rapidly diminishes, it is clear that, besides decarbonization, the world will need to remove 100–1000 GtCO 2 from the atmosphere by the end of the century. Yet, Africa, where many carbon removal schemes are planned, remains a ‘blindspot’ in existing studies. There is limited understanding of the trade-offs and synergies associated with carbon removal within Africa’s energy-land-water s…
Exploring net-zero emissions pathways for Africa across different timelines
Understanding how net-zero emissions timelines affect sustainable development is essential for climate planning in Africa. We apply the Global Change Analysis Model to explore the continent’s energy–land–water systems under four scenarios: a business-as-usual (BAU) and three net-zero scenarios targeting 2050 (NZ50), 2070 (NZ70), and 2100 (NZ100). Our analysis quantifies how the pace of decarbonization influences Africa’s interconnected energy, la…
Bio-energy with carbon capture and storage (2 works) · Climate Change Policy and Economics (2 works) · Economics (2 works) · Energy and Environment Impacts (2 works) · Fossil fuel (2 works) · Greenhouse gas (2 works) · Waste management (2 works) · Analytic hierarchy process (1 works) · Biochar (1 works) · Business (1 works)