B Ne
Biographic Data
| ID | 36232 |
|---|---|
| NAME | B Ne |
| GIVEN NAMES | B |
| FAMILY NAME | Ne |
| SIGNATURE | NE B |
| AFFILIATIONS | Lund University |
| ORCID | 0000-0002-8190-0363 |
| VERIFIED | Yes |
| TOTAL WORKS | 16 |
| TOTAL CITATIONS | 221 |
| AUTHOR COUNT | 16 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2007 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 6 |
Building capacity for sustainability transformations through transdisciplinary experimentation
In 2022, the Intergovernmental Panel on Climate Change (IPCC) established that global greenhouse gas emissions trajectories are not on track to limiting warming to less than 2 ° C above pre-industrial averages (IPCC 2022a). Given that broader progress towards ambitious climate change and sustainability goals remains incremental, a whole-of-society approach, including transformative innovation in the private sector, is required to trigger the nece…
Getting personal with collaborative sustainability experimentation
This paper provides reflections on transdisciplinary knowledge coproduction and experimentation processes from sustainability researcher perspectives. It centers on a 5-year period of collaborative research with small- and medium-sized enterprises in an Urban Living Lab in the Swedish craft beer sector. Nine reflections cover a variety of issues and potentials encountered during numerous interactions with societal partners, and are structured by …
Implementing the urban food–water–energy nexus through urban laboratories
The sustainability of complex resource systems, such as the food, water, and energy (FWE) nexus, is increasingly threatened by climate change impacts, expanding populations, urbanization, and economic instability. However, while research on the topic has burgeoned, studies focused on solution development and implementation, especially at the urban level, have lagged behind. Against this background, we review the urban FWE nexus literature. We foc…
Better balancing the social and natural dimensions in sustainability research
Healthy Indoor Environments
Indoor environments have a large impact on health and well-being, so it is important to understand what makes them healthy and sustainable. There is substantial knowledge on individual factors and their effects, though understanding how factors interact and what role occupants play in these interactions (both causative and receptive) is lacking. We aimed to: (i) explore interactions between factors and potential risks if these are not considered …
Finding an academic space
Reflexivity is arguably an important aspect of doing sustainability research. The inter-and transdisciplinary character of sustainability research, as well as its change-oriented agenda, require scholars to reflect on their role as researchers, their research focus and methodology, and its relation to academia and society. Using focus groups with 15 researchers at different stages in their academic career, we investigate three forms of reflexivit…
On the road to ‘research municipalities’
Transdisciplinary research and collaboration is widely acknowledged as a critical success factor for solution-oriented approaches that can tackle complex sustainability challenges, such as biodiversity loss, pollution, and climate-related hazards. In this context, city governments' engagement in transdisciplinarity is generally seen as a key condition for societal transformation towards sustainability. However, empirical evidence is rare. This pa…
Utilizing international networks for accelerating research and learning in transformational sustainability science
Factors of vulnerability
Collaboration for transformation
From complex systems analysis to transformational change
Establishing sustainability science in higher education institutions
Structuring problems in sustainability science
Structuring sustainability science
It is urgent in science and society to address climate change and other sustainability challenges such as biodiversity loss, deforestation, depletion of marine fish stocks, global ill-health, land degradation, land use change and water scarcity. Sustainability science (SS) is an attempt to bridge the natural and social sciences for seeking creative solutions to these complex challenges. In this article, we propose a research agenda that advances …
GIS proximity analysis and environmental assessment of sugar beet transport in Scania, Sweden
Despite a heightened focus on sustainable transport and the increased use of biofuels, few studies have assessed the effects of such changes on a wider range of parameters. The aim of this study was to assess sugar beet transport in Scania, Sweden to determine how a switch to improved European vehicle standards and biodiesel impacts not only CO 2 releases, but also the parameters of regional land use and air pollutants. The study estimated lorry …
Categorising tools for sustainability assessment
Structuring sustainability science
It is urgent in science and society to address climate change and other sustainability challenges such as biodiversity loss, deforestation, depletion of marine fish stocks, global ill-health, land degradation, land use change and water scarcity. Sustainability science (SS) is an attempt to bridge the natural and social sciences for seeking creative solutions to these complex challenges. In this article, we propose a research agenda that advances …
From complex systems analysis to transformational change
Establishing sustainability science in higher education institutions
Structuring problems in sustainability science
Utilizing international networks for accelerating research and learning in transformational sustainability science
Factors of vulnerability
Finding an academic space
Reflexivity is arguably an important aspect of doing sustainability research. The inter-and transdisciplinary character of sustainability research, as well as its change-oriented agenda, require scholars to reflect on their role as researchers, their research focus and methodology, and its relation to academia and society. Using focus groups with 15 researchers at different stages in their academic career, we investigate three forms of reflexivit…
Implementing the urban food–water–energy nexus through urban laboratories
The sustainability of complex resource systems, such as the food, water, and energy (FWE) nexus, is increasingly threatened by climate change impacts, expanding populations, urbanization, and economic instability. However, while research on the topic has burgeoned, studies focused on solution development and implementation, especially at the urban level, have lagged behind. Against this background, we review the urban FWE nexus literature. We foc…
On the road to ‘research municipalities’
Transdisciplinary research and collaboration is widely acknowledged as a critical success factor for solution-oriented approaches that can tackle complex sustainability challenges, such as biodiversity loss, pollution, and climate-related hazards. In this context, city governments' engagement in transdisciplinarity is generally seen as a key condition for societal transformation towards sustainability. However, empirical evidence is rare. This pa…
Getting personal with collaborative sustainability experimentation
This paper provides reflections on transdisciplinary knowledge coproduction and experimentation processes from sustainability researcher perspectives. It centers on a 5-year period of collaborative research with small- and medium-sized enterprises in an Urban Living Lab in the Swedish craft beer sector. Nine reflections cover a variety of issues and potentials encountered during numerous interactions with societal partners, and are structured by …
Categorising tools for sustainability assessment
GIS proximity analysis and environmental assessment of sugar beet transport in Scania, Sweden
Despite a heightened focus on sustainable transport and the increased use of biofuels, few studies have assessed the effects of such changes on a wider range of parameters. The aim of this study was to assess sugar beet transport in Scania, Sweden to determine how a switch to improved European vehicle standards and biodiesel impacts not only CO 2 releases, but also the parameters of regional land use and air pollutants. The study estimated lorry …
Structuring problems in sustainability science
Structuring sustainability science
It is urgent in science and society to address climate change and other sustainability challenges such as biodiversity loss, deforestation, depletion of marine fish stocks, global ill-health, land degradation, land use change and water scarcity. Sustainability science (SS) is an attempt to bridge the natural and social sciences for seeking creative solutions to these complex challenges. In this article, we propose a research agenda that advances …
From complex systems analysis to transformational change
Establishing sustainability science in higher education institutions
Collaboration for transformation
Utilizing international networks for accelerating research and learning in transformational sustainability science
Factors of vulnerability
On the road to ‘research municipalities’
Transdisciplinary research and collaboration is widely acknowledged as a critical success factor for solution-oriented approaches that can tackle complex sustainability challenges, such as biodiversity loss, pollution, and climate-related hazards. In this context, city governments' engagement in transdisciplinarity is generally seen as a key condition for societal transformation towards sustainability. However, empirical evidence is rare. This pa…
Healthy Indoor Environments
Indoor environments have a large impact on health and well-being, so it is important to understand what makes them healthy and sustainable. There is substantial knowledge on individual factors and their effects, though understanding how factors interact and what role occupants play in these interactions (both causative and receptive) is lacking. We aimed to: (i) explore interactions between factors and potential risks if these are not considered …
Finding an academic space
Reflexivity is arguably an important aspect of doing sustainability research. The inter-and transdisciplinary character of sustainability research, as well as its change-oriented agenda, require scholars to reflect on their role as researchers, their research focus and methodology, and its relation to academia and society. Using focus groups with 15 researchers at different stages in their academic career, we investigate three forms of reflexivit…
Better balancing the social and natural dimensions in sustainability research
Implementing the urban food–water–energy nexus through urban laboratories
The sustainability of complex resource systems, such as the food, water, and energy (FWE) nexus, is increasingly threatened by climate change impacts, expanding populations, urbanization, and economic instability. However, while research on the topic has burgeoned, studies focused on solution development and implementation, especially at the urban level, have lagged behind. Against this background, we review the urban FWE nexus literature. We foc…
Getting personal with collaborative sustainability experimentation
This paper provides reflections on transdisciplinary knowledge coproduction and experimentation processes from sustainability researcher perspectives. It centers on a 5-year period of collaborative research with small- and medium-sized enterprises in an Urban Living Lab in the Swedish craft beer sector. Nine reflections cover a variety of issues and potentials encountered during numerous interactions with societal partners, and are structured by …
Building capacity for sustainability transformations through transdisciplinary experimentation
In 2022, the Intergovernmental Panel on Climate Change (IPCC) established that global greenhouse gas emissions trajectories are not on track to limiting warming to less than 2 ° C above pre-industrial averages (IPCC 2022a). Given that broader progress towards ambitious climate change and sustainability goals remains incremental, a whole-of-society approach, including transformative innovation in the private sector, is required to trigger the nece…
Political science (11 works) · Sustainability (11 works) · Ecology (9 works) · Sustainability and Climate Change Governance (9 works) · Engineering (8 works) · Environmental resource management (7 works) · Geography (7 works) · Sustainability science (7 works) · Business (6 works) · Computer Science (6 works)