Catalysts Deactivation, Poisoning and Regeneration
Materialtyp:
ArtikelUtgivningsinformation: MDPI - Multidisciplinary Digital Publishing Institute 2019Beskrivning: 1 electronic resource (254 p.)Innehållstyp: - text
- computer
- online resource
- 9783039215461
- 9783039215478
- Technology, Engineering, Agriculture, Industrial processes
- Technology: general issues
- CO2 reforming
- CPO reactor
- Co-Zn
- Cu
- DeNOx
- H-Beta
- Liquefied natural gas
- Low-temperature catalyst
- MW incinerator
- NH3-SCR
- NO removal
- NOx reduction by C3H8
- Ni-catalyst
- Rh
- Rh catalysts
- SEM
- SO2 poisoning
- SO3
- SSZ-13
- Selective Catalytic Reduction (SCR)
- TEM
- TiO2 catalysts
- V2O5–WO3
- aluminum sulfate
- ammonium sulfates
- barium carbonate
- biogas
- catalyst
- catalyst deactivation
- catalyst durability
- catalytic methane combustion
- coke deposition
- copper
- cyclic operation
- deactivation
- deactivation by coking
- deactivation mechanism
- diesel
- dry reforming of methane
- effect of flow rate
- exhaust gas
- homogeneous catalysis
- hydrogenation
- in situ regeneration
- iso-octane
- natural gas
- nickel catalysts
- nitrogen oxides
- nitrous oxide
- octanal
- octanol
- over-reduction
- oxygen storage capacity
- oxysulfate
- oxysulfide
- palladium sulfate
- phase stabilization
- phthalic anhydride
- physico-chemical characterization
- poisoning
- regeneration
- sodium ions
- sulfur deactivation
- sulfur poisoning
- sulfur-containing sodium salts
- syngas
- tetragonal zirconia
- thermal stability
- unusu
Open Access Unrestricted online access star
Catalyst lifetime represents one of the most crucial economic aspects in industrial catalytic processes, due to costly shutdowns, catalyst replacements, and proper disposal of spent materials. Not surprisingly, there is considerable motivation to understand and treat catalyst deactivation, poisoning, and regeneration, which causes this research topic to continue to grow. The complexity of catalyst poisoning obviously increases along with the increasing use of biomass/waste-derived/residual feedstocks and with requirements for cleaner and novel sustainable processes. This book collects 15 research papers providing insights into several scientific and technical aspects of catalyst poisoning and deactivation, proposing more tolerant catalyst formulations, and exploring possible regeneration strategies.
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eng
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