118 results on '"Majeau-Bettez, Guillaume"'
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2. Parametrized regionalization of paper recycling life-cycle assessment
3. Optimization of the end‐of‐life tire repartition within the European treatment system to minimize its environmental impacts
4. Investigating the role of surface engineering in mitigating greenhouse gas emissions of energy technologies: An outlook towards 2100
5. Substitution modeling can coherently be used in attributional life cycle assessments.
6. Accounting matters: Revisiting claims of decoupling and genuine green growth in Nordic countries
7. What future for primary aluminium production in a decarbonizing economy?
8. 5 Life-cycle assessment and technology scale-up
9. Assessing scaling effects of circular economy strategies: A case study on plastic bottle closed-loop recycling in the USA PET market
10. How much sorting is required for a circular low carbon aluminum economy?
11. ECOPT 2 : An adaptable life cycle assessment model for the environmentally constrained optimization of prospective technology transitions
12. Sector‐specific scenarios for future stocks and flows of aluminum: An analysis based on shared socioeconomic pathways
13. Data innovation in industrial ecology
14. Regionalized climate footprints of battery electric vehicles in Europe
15. Corrigendum to “What future for primary aluminium production in a decarbonizing economy?” [Global Environ. Change 69 (2021) 102316]
16. ECOPT2: An adaptable life cycle assessment model for the environmentally constrained optimization of prospective technology transitions.
17. Correcting remaining truncations in hybrid life cycle assessment database compilation
18. Correcting remaining truncations in hybrid life cycle assessment database compilation.
19. Hybridization of complete PLCA and MRIO databases for a comprehensive product system coverage
20. Lifting the veil on the correction of double counting incidents in hybrid life cycle assessment
21. The Industrial Ecology Open Science Project
22. Nullius in Verba
23. Nullius in Verba: Advancing Data Transparency in Industrial Ecology
24. Coupling Input‐Output Tables with Macro‐Life Cycle Assessment to Assess Worldwide Impacts of Biofuels Transport Policies
25. LiSET: A Framework for Early‐Stage Life Cycle Screening of Emerging Technologies
26. Lifting the veil on the correction of double counting incidents in hybrid life cycle assessment.
27. LiSET: A Framework for Early‐Stage Life Cycle Screening of Emerging Technologies.
28. Balance issues in input–output analysis: A comment on physical inhomogeneity, aggregation bias, and coproduction
29. Environmental Screening of Electrode Materials for a Rechargeable Aluminum Battery with an AlCl3/EMIMCl Electrolyte
30. When do allocations and constructs respect material, energy, financial, and production balances in LCA and EEIO?
31. Coupling Input-Output Tables with Macro-Life Cycle Assessment to Assess Worldwide Impacts of Biofuels Transport Policies
32. Choice of Allocations and Constructs for Attributional or Consequential Life Cycle Assessment and Input-Output Analysis
33. Erratum: Corrigendum: Nanotechnology for environmentally sustainable electromobility
34. Nanotechnology for environmentally sustainable electromobility
35. Convergence of Industrial Ecology Methods for the Analysis of our Socio-economic Metabolism
36. Choice of Allocations and Constructs for Attributional or Consequential Life Cycle Assessment and Input‐Output Analysis.
37. Coupling Input‐Output Tables with Macro‐Life Cycle Assessment to Assess Worldwide Impacts of Biofuels Transport Policies.
38. Life Cycle Assessment of a Lithium-Ion Battery Vehicle Pack
39. On the financial balance of input–output constructs: revisiting an axiomatic evaluation
40. Toward a Practical Ontology for Socioeconomic Metabolism
41. A General System Structure and Accounting Framework for Socioeconomic Metabolism
42. Lifting Industrial Ecology Modeling to a New Level of Quality and Transparency: A Call for More Transparent Publications and a Collaborative Open Source Software Framework
43. Comment on “The significance of Li-ion batteries in electric vehicle life-cycle energy and emissions and recycling's role in its reduction” in Energy & Environmental Science
44. When Do Allocations and Constructs Respect Material, Energy, Financial, and Production Balances in LCA and EEIO?
45. Unified Theory of Allocations and Constructs in Life Cycle Assessment and Input‐Output Analysis
46. Toward a Practical Ontology for Socioeconomic Metabolism.
47. Life Cycle Assessment of a Lithium‐Ion Battery Vehicle Pack
48. When Do Allocations and Constructs Respect Material, Energy, Financial, and Production Balances in LCA and EEIO?
49. Comparative Environmental Life Cycle Assessment of Conventional and Electric Vehicles
50. Evaluation of Process- and Input–Output-based Life Cycle Inventory Data with Regard to Truncation and Aggregation Issues
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