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Environmental Friendly Catalysts for Energy and Pollution Control Applications

Environmental Friendly Catalysts for Energy and Pollution Control Applications

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Catalysts are widely used in a great variety of technologies, providing remarkable efficiency in order to address sustainable energy production, climate change challenges, and to reduce industrial emissions. In the framework of the Environmental Catalysis section promoted by the Catalysts Editorial Office, this Special Issue, entitled “Environmental Friendly Catalysts for Energy and Pollution Control Applications”, comprises novel studies representing the state-of-the-art research for efficient energy generation and industrial emission control based on new environmentally friendly catalyst materials (EFCs). In particular, in this Special Issue (SI), different kinds of catalysts are presented for catalytic solutions, including the reduction of NOx emissions (new zeolite catalyst modified with Pt), the elimination of volatile organic compounds (Co3O4@SiO2 and acidic surface transformed natural zeolite) and the removal of SO2 emissions (through adsorption processes with sodium citrate). Moreover, novel biocatalysts for bioanodes and new functional nanostructured catalysts based on metal–organic framework (MOFs) for different applications are also included. Additionally, articles compiled in this SI are also focused on the improvement of catalytic processes. Thus, selected processes based on activated carbons (modified with titanium dioxide) and optimized Fenton processes for the removal of aqueous organic pollutants or for the inactivation of bacteria are also presented.

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Keywords

  • Absorption
  • activated carbon
  • Ad/Ox
  • adsorption
  • anaerobic
  • BaQD
  • biocatalyst
  • Biomass
  • carbamazepine
  • Carbon Dioxide
  • catalytic ozonation
  • characterizations
  • CO oxidation
  • Co3O4
  • composites
  • continuous flow
  • core–shell structures
  • cyanide
  • degradation
  • E. coli K12
  • Environmental Catalysis
  • Environmental science, engineering & technology
  • exoelectrogen
  • FCC
  • ferric coordination complex
  • Fisher-Tropsch
  • fixed-bed reactor
  • fluid catalytic cracking
  • granular activated carbon
  • Heterogeneous catalysis
  • Hybridization
  • hydrogenation
  • Lewis and Brønsted acid sites
  • metal–organic frameworks
  • methylene blue
  • microenvironment
  • natural zeolite
  • NOx emission
  • optimization
  • organic wastewater
  • oxidation
  • Pareto chart
  • Pd-based promoter
  • perturbation graph
  • phenol
  • photo-Fenton
  • photocatalysis
  • porous electrode
  • preparation method
  • Pt-based promoter
  • reaction mechanism
  • recalcitrant compounds
  • refinery compliance
  • SO2
  • sodium citrate
  • sodium humate
  • spherical polymer templates
  • Technology, engineering, agriculture
  • Technology: general issues
  • three-phase modelling
  • titanium dioxide
  • toluene
  • turbidity
  • volatile organic compounds
  • wastewater treatment

Links

DOI: 10.3390/books978-3-0365-4311-6

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