Björn Frostell
Biographic Data
| ID | 6280006 |
|---|---|
| NAME | Björn Frostell |
| GIVEN NAMES | Björn |
| FAMILY NAME | Frostell |
| SIGNATURE | FROSTELL B |
| AFFILIATIONS | KTH Royal Institute of Technology |
| VERIFIED | No |
| TOTAL WORKS | 8 |
| TOTAL CITATIONS | 68 |
| AUTHOR COUNT | 8 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2007 |
| LATEST PUBLICATION YEAR | 2020 |
| H-INDEX | 4 |
A new physical accounting model for material flows in urban systems with application to the Stockholm Royal Seaport District
Sustainable urbanization requires streamlining of resource management in urban systems which in turn requires understanding of urban metabolism (UM). Even though various methods have been applied for UM analysis, to date there is no standardized method for comprehensive accounting of material flows in urban systems. Moreover, the accounting of material flows is rarely implemented with a bottom‐up approach that can provide a thorough analysis of U…
Life cycle assessment of recirculating aquaculture systems
Recirculating aquaculture systems (RAS) are an alternative technology to tackle the major environmental challenges associated with conventional cage culture systems. In order to systematically assess the environmental performance of RAS farming, it is important to take the whole life cycle into account so as to avoid ad hoc and suboptimal environmental measures. So far, the application of life cycle assessment (LCA) in aquaculture, especially to …
Measuring the Environmental Footprint of Leather Processing Technologies
The selection of materials and manufacturing processes often determines most of the environmental impact that a product will have during its life cycle. In directing consumption toward products with the least impact on the environment, measuring and comparing material alternatives with site‐specific data is a fundamental prerequisite. Within the apparel and footwear industry, some famous brands have recently been basing their advertising on the c…
Towards Addressing Unintended Environmental Consequences
Efforts to decouple environmental impacts and resource consumption have been confounded by interactions and feedback between technical-economic, environmental and social aspects not considered prior to implementing improvement actions. This paper presents a planning framework that connects material flows and the socio-economic drivers that result in changes in these flows, in order to reduce conflicts between localized gains and global losses. Th…
Evaluating low-carbon city initiatives from the DPSIR framework perspective
Analysis of sustainable urban development approaches in China
Protein efficiency per unit energy and per unit greenhouse gas emissions
Social sustainability and social acceptance in technology assessment
Protein efficiency per unit energy and per unit greenhouse gas emissions
Analysis of sustainable urban development approaches in China
Social sustainability and social acceptance in technology assessment
Evaluating low-carbon city initiatives from the DPSIR framework perspective
Towards Addressing Unintended Environmental Consequences
Efforts to decouple environmental impacts and resource consumption have been confounded by interactions and feedback between technical-economic, environmental and social aspects not considered prior to implementing improvement actions. This paper presents a planning framework that connects material flows and the socio-economic drivers that result in changes in these flows, in order to reduce conflicts between localized gains and global losses. Th…
Social sustainability and social acceptance in technology assessment
Protein efficiency per unit energy and per unit greenhouse gas emissions
Analysis of sustainable urban development approaches in China
Towards Addressing Unintended Environmental Consequences
Efforts to decouple environmental impacts and resource consumption have been confounded by interactions and feedback between technical-economic, environmental and social aspects not considered prior to implementing improvement actions. This paper presents a planning framework that connects material flows and the socio-economic drivers that result in changes in these flows, in order to reduce conflicts between localized gains and global losses. Th…
Evaluating low-carbon city initiatives from the DPSIR framework perspective
Measuring the Environmental Footprint of Leather Processing Technologies
The selection of materials and manufacturing processes often determines most of the environmental impact that a product will have during its life cycle. In directing consumption toward products with the least impact on the environment, measuring and comparing material alternatives with site‐specific data is a fundamental prerequisite. Within the apparel and footwear industry, some famous brands have recently been basing their advertising on the c…
Life cycle assessment of recirculating aquaculture systems
Recirculating aquaculture systems (RAS) are an alternative technology to tackle the major environmental challenges associated with conventional cage culture systems. In order to systematically assess the environmental performance of RAS farming, it is important to take the whole life cycle into account so as to avoid ad hoc and suboptimal environmental measures. So far, the application of life cycle assessment (LCA) in aquaculture, especially to …
A new physical accounting model for material flows in urban systems with application to the Stockholm Royal Seaport District
Sustainable urbanization requires streamlining of resource management in urban systems which in turn requires understanding of urban metabolism (UM). Even though various methods have been applied for UM analysis, to date there is no standardized method for comprehensive accounting of material flows in urban systems. Moreover, the accounting of material flows is rarely implemented with a bottom‐up approach that can provide a thorough analysis of U…
Economics (7 works) · Business (6 works) · Environmental economics (5 works) · Environmental Science (5 works) · Environmental resource management (4 works) · Sustainability (4 works) · Computer Science (3 works) · Ecology (3 works) · Engineering (3 works) · Environmental Education and Sustainability (3 works)