Using renewable energy as an input, Power-to-X technologies have the potential to replace fossil fuels and chemicals with dense-energy carriers that are instead derived out of thin air. In this work, we put into context what the industrial-scale production of chemicals from ambient CO2 using CO2 electrolysis means in terms of future required operating conditions and the device and catalyst scales that will be needed for the technology to assume its role in our global energy system.Accepted Author ManuscriptChemE/Materials for Energy Conversion & StorageChemE/Transport Phenomen
Excessive CO2 emissions in the atmosphere from anthropogenic activity can be divided into point sour...
There is an urgent need to reduce carbon dioxide emissions from the burning of fossil fuels in the t...
The development of carbon dioxide sequestration and conversion technologies can help set up addition...
Using renewable energy as an input, Power-to-X technologies have the potential to replace fossil fue...
Electrocatalytic transformation of carbon dioxide (CO2) and water into chemical feedstocks offers th...
The transition towards carbon-neutral chemical production is challenging due to the fundamental reli...
Increasing level of atmospheric carbon dioxide (CO2) because of human activities is a serious threat...
CO2 is a valuable resource, life on Earth depends on it. Rather than wasting it to the atmosphere, o...
CO2 is a valuable resource, life on Earth depends on it. Rather than wasting it to the atmosphere, o...
CO2 is a valuable resource, life on Earth depends on it. Rather than wasting it to the atmosphere, o...
Excessive CO2 emissions in the atmosphere from anthropogenic activity can be divided into point sour...
Integrated water electrolysis is a core principle of new process configurations for decarbonized hea...
Integrated water electrolysis is a core principle of new process configurations for decarbonized hea...
Utilizing carbon dioxide (CO2) sequestered from large point sources to produce fuels and chemicals h...
Carbon capture and utilisation technologies for the separation and conversion of CO2 into chemical p...
Excessive CO2 emissions in the atmosphere from anthropogenic activity can be divided into point sour...
There is an urgent need to reduce carbon dioxide emissions from the burning of fossil fuels in the t...
The development of carbon dioxide sequestration and conversion technologies can help set up addition...
Using renewable energy as an input, Power-to-X technologies have the potential to replace fossil fue...
Electrocatalytic transformation of carbon dioxide (CO2) and water into chemical feedstocks offers th...
The transition towards carbon-neutral chemical production is challenging due to the fundamental reli...
Increasing level of atmospheric carbon dioxide (CO2) because of human activities is a serious threat...
CO2 is a valuable resource, life on Earth depends on it. Rather than wasting it to the atmosphere, o...
CO2 is a valuable resource, life on Earth depends on it. Rather than wasting it to the atmosphere, o...
CO2 is a valuable resource, life on Earth depends on it. Rather than wasting it to the atmosphere, o...
Excessive CO2 emissions in the atmosphere from anthropogenic activity can be divided into point sour...
Integrated water electrolysis is a core principle of new process configurations for decarbonized hea...
Integrated water electrolysis is a core principle of new process configurations for decarbonized hea...
Utilizing carbon dioxide (CO2) sequestered from large point sources to produce fuels and chemicals h...
Carbon capture and utilisation technologies for the separation and conversion of CO2 into chemical p...
Excessive CO2 emissions in the atmosphere from anthropogenic activity can be divided into point sour...
There is an urgent need to reduce carbon dioxide emissions from the burning of fossil fuels in the t...
The development of carbon dioxide sequestration and conversion technologies can help set up addition...