Turnitin
降AI改写
早检测系统
早降重系统
Turnitin-UK版
万方检测-期刊版
维普编辑部版
Grammarly检测
Paperpass检测
checkpass检测
PaperYY检测
[HTML][HTML] Evolution paths from gray to turquoise hydrogen via catalytic steam methane reforming: Current challenges and future developments
Fossil fuel depletion, global warming, climate change, and steep hikes in the price of fuel are
driving scientists to investigate commercial and environmentally friendly energy carriers like …
driving scientists to investigate commercial and environmentally friendly energy carriers like …
Review of hydrogen production using chemical-loo** technology
M Luo, Y Yi, S Wang, Z Wang, M Du, J Pan… - … and Sustainable Energy …, 2018 - Elsevier
Hydrogen is an attractive energy carrier due to its potentially high energy efficiency and low
generation of pollutants, which can be used for transportation and stationary power …
generation of pollutants, which can be used for transportation and stationary power …
[HTML][HTML] Techno-economic assessment of blue and green ammonia as energy carriers in a low-carbon future
Ammonia is an industrial chemical and the basic building block for the fertilizer industry.
Lately, attention has shifted towards using ammonia as a carbon-free energy vector, due to …
Lately, attention has shifted towards using ammonia as a carbon-free energy vector, due to …
[HTML][HTML] Blue, green, and turquoise pathways for minimizing hydrogen production costs from steam methane reforming with CO2 capture
Rising climate change ambitions require large-scale clean hydrogen production in the near
term.“Blue” hydrogen from conventional steam methane reforming (SMR) with pre …
term.“Blue” hydrogen from conventional steam methane reforming (SMR) with pre …
A review of chemical loo** reforming technologies for hydrogen production: recent advances and future challenges
Faced with increasingly serious energy and global warming, it is critical to put forward an
alternative non-carbonaceous fuel. In this regard, hydrogen appears as the ultimate clean …
alternative non-carbonaceous fuel. In this regard, hydrogen appears as the ultimate clean …
[HTML][HTML] Development of stable oxygen carrier materials for chemical loo** processes—a review
Y De Vos, M Jacobs, P Van Der Voort, I Van Driessche… - Catalysts, 2020 - mdpi.com
This review aims to give more understanding of the selection and development of oxygen
carrier materials for chemical loo**. Chemical loo**, a rising star in chemical …
carrier materials for chemical loo**. Chemical loo**, a rising star in chemical …
Hydrogen production and reduction of Ni-based oxygen carriers during chemical loo** steam reforming of ethanol in a fixed-bed reactor
Hydrogen production and reduction of Ni-based oxygen carriers (OCs) during chemical
loo** steam reforming (CLSR) of ethanol were studied in a fixed-bed reactor using four …
loo** steam reforming (CLSR) of ethanol were studied in a fixed-bed reactor using four …
[HTML][HTML] Efficient hydrogen production with CO2 capture using gas switching reforming
Hydrogen is a promising carbon-neutral energy carrier for a future decarbonized energy
sector. This work presents process simulation studies of the gas switching reforming (GSR) …
sector. This work presents process simulation studies of the gas switching reforming (GSR) …
[HTML][HTML] Carbon-negative hydrogen: Exploring the techno-economic potential of biomass co-gasification with CO2 capture
The hydrogen economy is receiving increasing attention as a complement to electrification
in the global energy transition. Clean hydrogen production is often viewed as a competition …
in the global energy transition. Clean hydrogen production is often viewed as a competition …
Chemical loo** dry reforming of methane with hydrogen generation on Fe2O3/Al2O3 oxygen carrier
M Zhu, Y Song, S Chen, M Li, L Zhang… - Chemical Engineering …, 2019 - Elsevier
A chemical loo** dry reforming process for co-production of hydrogen and syngas was
proposed. This process contains four different stages, ie reduction, dry reforming, steam …
proposed. This process contains four different stages, ie reduction, dry reforming, steam …