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Stefan Lechtenböhmer

Biographic Data

ID4082609
NAMEStefan Lechtenböhmer
GIVEN NAMESStefan
FAMILY NAMELechtenböhmer
SIGNATURELECHTENBÖHMER S
AFFILIATIONSWuppertal Institute for Climate, Environment and Energy
ORCID0000-0001-5987-5416
VERIFIEDYes
TOTAL WORKS11
TOTAL CITATIONS18
AUTHOR COUNT11
EDITOR COUNT0
FIRST PUBLICATION YEAR2011
LATEST PUBLICATION YEAR2025
H-INDEX2
  • The heat is on

    Open Access•Jan Rosenow, Cordin Arpagaus et al.•ARTICLE•Energy Research & Social Science•2025•References: 11

    Industrial electrification is vital for achieving net-zero climate targets due to its dual benefits: decarbonising energy use and improving energy efficiency. While sectors like transportation and space heating have seen substantial policy-driven progress, industrial electrification is lagging behind, with so far minimal uptake in process heating. Barriers such as economic, technical, knowledge and infrastructural challenges hinder broader adopti…

  • The renewables pull effect

    Open Access•Sascha Samadi, Andreas Fischer et al.•ARTICLE•Energy Research & Social Science•2023•Cited by: 7•References: 3

    To combat climate change, it is anticipated that in the coming years countries around the world will adopt more stringent policies to reduce greenhouse gas emissions and increase the use of clean energy sources. These policies will also affect the industry sector, which means that industrial production is likely to progressively shift from CO2-emitting fossil fuel sources to renewable energy sources. As a result, a region's renewable energy resou…

  • Accelerating actions for leveraging a climate-neutral sustainable society

    Open Access•Mikiko Kainuma, Robert Gross et al.•ARTICLE•Sustainability Science•2023•Cited by: 1•References: 8

  • Risks and opportunities associated with decarbonising Rotterdam’s industrial cluster

    Open Access•Clemens Schneider, Stefan Lechtenböhmer et al.•ARTICLE•Environmental Innovation and…•2020•Cited by: 8•References: 19

    The Port of Rotterdam is an important industrial cluster, comprising mainly oil refining, chemical production and power generation. In 2016, the port's industry accounted for 19% of the Netherlands’ total CO2 emissions. The Port of Rotterdam Authority is aware that the cluster is heavily exposed to future decarbonisation policies, as most of its activities focus on trading, handling, converting and using fossil fuels. Based on a study for the Por…

  • A review of technology and policy deep decarbonization pathway options for making energy-intensive industry production consistent with the Paris Agreement

    Open Access•Chris Bataille, Max Åhman et al.•ARTICLE•Journal of Cleaner Production•2018

  • The transition of energy intensive processing industries towards deep decarbonization

    Open Access•Joeri Wesseling, J H Wesseling et al.•ARTICLE•Renewable and Sustainable Energy…•2017

    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 …

  • Achieving Long-term Transitions towards Full Decarbonisation

    Katharina Knoop, Stefan Lechtenböhmer et al.•ARTICLE•GAIA - Ecological Perspectives…•2016

    The transition towards full decarbonisation has reached the political agenda. In September 2016 in Wuppertal, scientists and politicians discussed ways to meet the climate targets

  • Dynamik der Energiewende erhalten und erweitern

    Thomas Schomerus, Erik G Hansen et al.•ARTICLE•GAIA - Ecological Perspectives…•2014

    Dass die Energiewende überall in den Regionen erhebliche Dynamiken und Innovationen hervorruft, hat einmal mehr das Leuphana Energieforum 2014 gezeigt. Trotz des politischen Gegenwinds bleiben die Bürgerenergieakteure extrem wichtig für die Akzeptanz der Energiewende und deren erfolgreiche Ausdehnung auf Wärmebereitstellung und Verkehr

  • Climate policies in a changing world context

    Jim Skea, Jean-Charles Hourcade et al.•ARTICLE•Climate Policy•2013

  • Blown by the wind. Replacing nuclear power in German electricity generation

    Open Access•Stefan Lechtenböhmer, Sascha Samadi•ARTICLE•Environmental Science & Policy•2012•Cited by: 2•References: 3

  • Energy Transition as Transdisciplinary Challenge Die Energiewende als transdisziplinäre Herausforderung

    Harald Heinrichs, Manfred Fischedick et al.•ARTICLE•GAIA - Ecological Perspectives…•2011

  • Risks and opportunities associated with decarbonising Rotterdam’s industrial cluster

    Open Access•Clemens Schneider, Stefan Lechtenböhmer et al.•ARTICLE•Environmental Innovation and…•2020•Cited by: 8•References: 19

    The Port of Rotterdam is an important industrial cluster, comprising mainly oil refining, chemical production and power generation. In 2016, the port's industry accounted for 19% of the Netherlands’ total CO2 emissions. The Port of Rotterdam Authority is aware that the cluster is heavily exposed to future decarbonisation policies, as most of its activities focus on trading, handling, converting and using fossil fuels. Based on a study for the Por…

  • The renewables pull effect

    Open Access•Sascha Samadi, Andreas Fischer et al.•ARTICLE•Energy Research & Social Science•2023•Cited by: 7•References: 3

    To combat climate change, it is anticipated that in the coming years countries around the world will adopt more stringent policies to reduce greenhouse gas emissions and increase the use of clean energy sources. These policies will also affect the industry sector, which means that industrial production is likely to progressively shift from CO2-emitting fossil fuel sources to renewable energy sources. As a result, a region's renewable energy resou…

  • Blown by the wind. Replacing nuclear power in German electricity generation

    Open Access•Stefan Lechtenböhmer, Sascha Samadi•ARTICLE•Environmental Science & Policy•2012•Cited by: 2•References: 3

  • Accelerating actions for leveraging a climate-neutral sustainable society

    Open Access•Mikiko Kainuma, Robert Gross et al.•ARTICLE•Sustainability Science•2023•Cited by: 1•References: 8

  • Energy Transition as Transdisciplinary Challenge Die Energiewende als transdisziplinäre Herausforderung

    Harald Heinrichs, Manfred Fischedick et al.•ARTICLE•GAIA - Ecological Perspectives…•2011

  • Blown by the wind. Replacing nuclear power in German electricity generation

    Open Access•Stefan Lechtenböhmer, Sascha Samadi•ARTICLE•Environmental Science & Policy•2012•Cited by: 2•References: 3

  • Climate policies in a changing world context

    Jim Skea, Jean-Charles Hourcade et al.•ARTICLE•Climate Policy•2013

  • Dynamik der Energiewende erhalten und erweitern

    Thomas Schomerus, Erik G Hansen et al.•ARTICLE•GAIA - Ecological Perspectives…•2014

    Dass die Energiewende überall in den Regionen erhebliche Dynamiken und Innovationen hervorruft, hat einmal mehr das Leuphana Energieforum 2014 gezeigt. Trotz des politischen Gegenwinds bleiben die Bürgerenergieakteure extrem wichtig für die Akzeptanz der Energiewende und deren erfolgreiche Ausdehnung auf Wärmebereitstellung und Verkehr

  • Achieving Long-term Transitions towards Full Decarbonisation

    Katharina Knoop, Stefan Lechtenböhmer et al.•ARTICLE•GAIA - Ecological Perspectives…•2016

    The transition towards full decarbonisation has reached the political agenda. In September 2016 in Wuppertal, scientists and politicians discussed ways to meet the climate targets

  • The transition of energy intensive processing industries towards deep decarbonization

    Open Access•Joeri Wesseling, J H Wesseling et al.•ARTICLE•Renewable and Sustainable Energy…•2017

    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 …

  • A review of technology and policy deep decarbonization pathway options for making energy-intensive industry production consistent with the Paris Agreement

    Open Access•Chris Bataille, Max Åhman et al.•ARTICLE•Journal of Cleaner Production•2018

  • Risks and opportunities associated with decarbonising Rotterdam’s industrial cluster

    Open Access•Clemens Schneider, Stefan Lechtenböhmer et al.•ARTICLE•Environmental Innovation and…•2020•Cited by: 8•References: 19

    The Port of Rotterdam is an important industrial cluster, comprising mainly oil refining, chemical production and power generation. In 2016, the port's industry accounted for 19% of the Netherlands’ total CO2 emissions. The Port of Rotterdam Authority is aware that the cluster is heavily exposed to future decarbonisation policies, as most of its activities focus on trading, handling, converting and using fossil fuels. Based on a study for the Por…

  • The renewables pull effect

    Open Access•Sascha Samadi, Andreas Fischer et al.•ARTICLE•Energy Research & Social Science•2023•Cited by: 7•References: 3

    To combat climate change, it is anticipated that in the coming years countries around the world will adopt more stringent policies to reduce greenhouse gas emissions and increase the use of clean energy sources. These policies will also affect the industry sector, which means that industrial production is likely to progressively shift from CO2-emitting fossil fuel sources to renewable energy sources. As a result, a region's renewable energy resou…

  • Accelerating actions for leveraging a climate-neutral sustainable society

    Open Access•Mikiko Kainuma, Robert Gross et al.•ARTICLE•Sustainability Science•2023•Cited by: 1•References: 8

  • The heat is on

    Open Access•Jan Rosenow, Cordin Arpagaus et al.•ARTICLE•Energy Research & Social Science•2025•References: 11

    Industrial electrification is vital for achieving net-zero climate targets due to its dual benefits: decarbonising energy use and improving energy efficiency. While sectors like transportation and space heating have seen substantial policy-driven progress, industrial electrification is lagging behind, with so far minimal uptake in process heating. Barriers such as economic, technical, knowledge and infrastructural challenges hinder broader adopti…

Business (7 works) · Climate Change Policy and Economics (6 works) · Economics (6 works) · Environmental Impact and Sustainability (6 works) · Engineering (5 works) · Natural resource economics (5 works) · Political science (5 works) · Energy transition (3 works) · Environmental economics (3 works) · Greenhouse gas (3 works)

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