The transition of energy intensive processing industries towards deep decarbonization: Characteristics and implications for future research

Publication date

2017-11

Authors

Wesseling, J.H.ORCID 0000-0003-4648-5640ISNI 0000000419544788
Lechtenböhmer, S.
Åhman, M.
Nilsson, L.J.
Worrell, E.ORCID 0000-0002-0199-9755ISNI 0000000033625470
Coenen, LarsISNI 000000041914248X

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Abstract Energy-intensive processing industries (EPIs) produce iron and steel, aluminum, chemicals, cement, glass, and paper and pulp and are responsible for a large share of global greenhouse gas emissions. To meet 2050 emission targets, an accelerated transition towards deep decarbonization is required in these industries. Insights from sociotechnical and innovation systems perspectives are needed to better understand how to steer and facilitate this transition process. The transitions literature has so far, however, not featured EPIs. This paper positions EPIs within the transitions literature by characterizing their sociotechnical and innovation systems in terms of industry structure, innovation strategies, networks, markets and governmental interventions. We subsequently explore how these characteristics may influence the transition to deep decarbonization and identify gaps in the literature from which we formulate an agenda for further transitions research on EPIs and consider policy implications. Furthering this research field would not only enrich discussions on policy for achieving deep decarbonization, but would also develop transitions theory since the distinctive EPI characteristics are likely to yield new patterns in transition dynamics.

Keywords

Energy intensive material, Innovation system, Socio-technical change, Low carbon technology, Low carbon innovation, Sustainability transition, Taverne

Citation

Wesseling, J H, Lechtenböhmer, S, Åhman, M, Nilsson, L J, Worrell, E & Coenen, L 2017, 'The transition of energy intensive processing industries towards deep decarbonization: Characteristics and implications for future research', Renewable and Sustainable Energy Reviews, vol. 79, pp. 1303-1313. https://doi.org/10.1016/j.rser.2017.05.156