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Hydrogen Production Technologies
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Hydrogen has been an important feedstock for various industries, and its global market is already valued at hundreds of billions of dollars per year. It is also playing additional roles as a clean alternative energy carrier for power generation and as a crucial feedstock in the bioeconomy. This Special Issue “Hydrogen Production Technologies” highlights different thermochemical, electrochemical, and biological technologies such as high- and low-temperature electrolyzers, microchannel reactors, sorption-enhanced reactors, multi-tubular solar reactors, and anaerobic digestors. It also covers other aspects ranging from reactor design, hydrogen storage, and process analysis of different alternatives.

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Keywords

  • algae
  • alkaline electrolysis
  • anaerobic digestion
  • biogas
  • Biohydrogen
  • ceria
  • ceria-zirconia
  • CFD
  • compact reactor
  • computational fluid dynamics
  • CuO
  • economic viability
  • energy assessment
  • Energy Storage
  • Environmental Efficiency
  • ethanol steam reforming
  • gasification
  • History of engineering & technology
  • hydrogen energy
  • hydrogen production
  • hydrogen production processes
  • kinetic models
  • micro-channel reactor
  • Microwave
  • Model
  • multi- walled carbon nanotube
  • multi-criteria analysis
  • multi-functional material
  • n/a
  • Nanoparticles
  • oxygen carrier
  • pretreatment
  • process modeling
  • proton battery
  • pyrolytic oil hydro-processing
  • sintering additive
  • solar reactor
  • solar receiver
  • solid oxide electrolysis cells
  • solid-state hydrogen storage
  • sorption-enhanced water–gas shift
  • Stainless Steel
  • steam electrolysis
  • Sustainable Energy
  • Syngas
  • Technology, engineering, agriculture
  • Technology: general issues
  • thermal energy
  • thermochemical cycles
  • titanium nitride
  • unitized regenerative fuel cell
  • water gas shift
  • water splitting

Links

DOI: 10.3390/books978-3-03943-668-2

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