2017
DOI: 10.3390/su9050847
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Adoption and Use of Low-Carbon Technologies: Lessons from 100 Finnish Pilot Studies, Field Experiments and Demonstrations

Abstract: Abstract:Experimentation is critical for the deployment of low-carbon technologies. New solutions need to be selected and adapted to their contexts of use, and users need to learn new skills. Society as a whole needs to create new modes of production, consumption and governance. We investigated how local pilot projects, demonstrations and trials of low-carbon technologies promote learning in Finnish society, where the government has made a commitment to a culture of experimentation. We drew on a database of 10… Show more

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Cited by 33 publications
(49 citation statements)
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References 39 publications
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“…The lab setting allows students and researchers to experience new types of learning situated in and related to the respective socio-spatial context of the lab. This resonates with the analyses of learning presented by Heiskanen et al (2017), who distinguish the techno-scientific, cognitive type of learning and, in contrast, the situated type of learning. While the first refers to learning opportunities such as testing an innovations' functionality and market demand as well as improving solutions in its application context, the latter understands learning as 'emergent, involving opportunities to participate in the practices of the community' (p. 3).…”
Section: Ull and Learning For Sustainability Transitionssupporting
confidence: 76%
See 1 more Smart Citation
“…The lab setting allows students and researchers to experience new types of learning situated in and related to the respective socio-spatial context of the lab. This resonates with the analyses of learning presented by Heiskanen et al (2017), who distinguish the techno-scientific, cognitive type of learning and, in contrast, the situated type of learning. While the first refers to learning opportunities such as testing an innovations' functionality and market demand as well as improving solutions in its application context, the latter understands learning as 'emergent, involving opportunities to participate in the practices of the community' (p. 3).…”
Section: Ull and Learning For Sustainability Transitionssupporting
confidence: 76%
“…Across these bodies of literature, there are a few commonly recognized characteristics of embedding. Heiskanen et al (2017) refer to the deployment of outcomes of experimentation as a form of embedding, defining it as 'processes of combining and adapting technologies, integrating them into existing structures, as well as processes of giving these technologies meaning' (p. 2). According to their conceptualization for the embedding of experimental solutions, learning is a mediating process catalyzing knowledge creation and 'adapting new technologies to existing regulations and infrastructures' (p. 3).…”
Section: Theorymentioning
confidence: 99%
“…With a view to learning, these insights have been further distilled in the recent literature on experimentation as a mode of governance for addressing complex (urban) sustainability challenges (Evans et al, 2016;Sengers et al, 2016;Ansell and Bartenberger, 2016;Heiskanen et al, 2017). It examines more specifically how different forms of experimentation and the interactions they imply are generative of different types of learning outcomes, and regarding the achievable depth of learning, in particular.…”
Section: Conceptualising Governance Learningmentioning
confidence: 99%
“…Pilot projects often remain standalone learning sites where little knowledge travels beyond the project and the involved participants. This means that many projects bring little change to the broader systems they intend to transform (Heiskanen et al 2017). Naber et al (2017) and Frantzeskaki et al (2017) provide useful starting points for contemplating how movement beyond individual trials might, and do, unfold.…”
Section: How Pilots Scale Up: An Examplementioning
confidence: 99%