Detlef Stolten
Biographic Data
| ID | 7991979 |
|---|---|
| NAME | Detlef Stolten |
| GIVEN NAMES | Detlef |
| FAMILY NAME | Stolten |
| SIGNATURE | STOLTEN D |
| AFFILIATIONS | Forschungszentrum Jülich |
| ORCID | 0000-0002-1671-3262 |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2020 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 0 |
Critical iridium demands arising from global expansion of proton exchange membrane electrolysis
Proton exchange membrane electrolysis (PEMEL) is a key technology for producing green hydrogen, but its scalability is limited by the use of scarce materials, particularly iridium. Iridium oxide, the preferred anode catalyst in PEMEL, offers exceptional stability but is produced only as a by-product of platinum mining, with annual output around 7.5 tons. This study estimates future iridium demand for PEMEL under various global deployment scenario…
Criteria for effective site selection of direct air capture and storage projects
Criteria for effective site selection of direct air capture and storage projects, Harzendorf, Freia, Markus, Till, Ross, Andrew, Valencia Cotera, Rodrigo, Baust, Constanze, Vögele, Stefan, Taraborrelli, Domenico, Zapp, Petra, Karydis, Vlassis A, Bowyer, Paul, Stolten, Detlef
Historic drivers of onshore wind power siting and inevitable future trade-offs
The required acceleration of onshore wind deployment requires the consideration of both economic and social criteria. With a spatially explicit analysis of the validated European turbine stock, we show that historical siting focused on cost-effectiveness of turbines and minimization of local disamenities, resulting in substantial regional inequalities. A multi-criteria turbine allocation approach demonstrates in 180 different scenarios that stron…
Combining the worlds of energy systems and material flow analysis
Recent studies focusing on greenhouse gas emission reduction strategies indicate that material recycling has a significant impact on energy consumption and greenhouse gas emissions. The question arises how these effects can be quantified. Material recycling is not at all or insufficiently considered in energy system models, which are used today to derive climate gas mitigation strategies. To better assess and quantify the effects one option would…
Thermodynamic and ecological preselection of synthetic fuel intermediates from biogas at farm sites
No prominent works on this page.
Thermodynamic and ecological preselection of synthetic fuel intermediates from biogas at farm sites
Combining the worlds of energy systems and material flow analysis
Recent studies focusing on greenhouse gas emission reduction strategies indicate that material recycling has a significant impact on energy consumption and greenhouse gas emissions. The question arises how these effects can be quantified. Material recycling is not at all or insufficiently considered in energy system models, which are used today to derive climate gas mitigation strategies. To better assess and quantify the effects one option would…
Historic drivers of onshore wind power siting and inevitable future trade-offs
The required acceleration of onshore wind deployment requires the consideration of both economic and social criteria. With a spatially explicit analysis of the validated European turbine stock, we show that historical siting focused on cost-effectiveness of turbines and minimization of local disamenities, resulting in substantial regional inequalities. A multi-criteria turbine allocation approach demonstrates in 180 different scenarios that stron…
Criteria for effective site selection of direct air capture and storage projects
Criteria for effective site selection of direct air capture and storage projects, Harzendorf, Freia, Markus, Till, Ross, Andrew, Valencia Cotera, Rodrigo, Baust, Constanze, Vögele, Stefan, Taraborrelli, Domenico, Zapp, Petra, Karydis, Vlassis A, Bowyer, Paul, Stolten, Detlef
Critical iridium demands arising from global expansion of proton exchange membrane electrolysis
Proton exchange membrane electrolysis (PEMEL) is a key technology for producing green hydrogen, but its scalability is limited by the use of scarce materials, particularly iridium. Iridium oxide, the preferred anode catalyst in PEMEL, offers exceptional stability but is produced only as a by-product of platinum mining, with annual output around 7.5 tons. This study estimates future iridium demand for PEMEL under various global deployment scenario…
Computer Science (4 works) · Environmental Science (4 works) · Economics (3 works) · Environmental economics (3 works) · Engineering (2 works) · Extraction and Separation Processes (2 works) · Software deployment (2 works) · Biochemical engineering (1 works) · Biofuel (1 works) · Biogas (1 works)