Steam reforming of natural gas is the dominant process for large–scale hydrogen production. The process is characterized by high energy requirements and high carbon …
Among the available techniques for hydrogen production, the sorption enhanced steam reforming (SESR) is an emerging technology consisting in the integration of reforming …
X Zhu, K Li, L Neal, F Li - Acs Catalysis, 2018 - ACS Publications
With highly tunable composition, structure, and chemical-physical properties, perovskite oxides represent a large family of mixed-oxide materials that finds many energy-and …
A nearly complete decarbonisation of the power sector is essential to meet the European Union target for greenhouse gas emissions reduction. Carbon capture and storage …
A Di Giuliano, S Capone, M Anatone… - Industrial & …, 2022 - ACS Publications
Climate change has driven attention toward promoting sustainable policies and processes to contain global warming below+ 1.5° C. Negative emission technologies (NET)─ …
S Ali, M Humayun, W Pi, Y Yuan, M Wang… - Journal of hazardous …, 2020 - Elsevier
In this work, a Z-scheme BiFeO 3-gC 3 N 4-WO 3 (BFO-CN-WO) photocatalyst has been synthesized via a wet chemical method and utilized in photocatalysis for hydrogen …
AM Kierzkowska, R Pacciani, CR Müller - ChemSusChem, 2013 - Wiley Online Library
The enormous anthropogenic emission of the greenhouse gas CO2 is most likely the main reason for climate change. Considering the continuing and indeed growing utilisation of …
Clean and carbon-free hydrogen production is expected to play a vital role in future global energy transitions. In this work, six process arrangements for sorption enhanced steam …
Deployment of fossil fuels to quench the energy demand of the world's rising population results in elevated levels of greenhouse gas (GHG) emissions, especially CO 2, which in …