Handbook of Spent Hydroprocessing Catalysts

Handbook of Spent Hydroprocessing Catalysts

Furimsky, Edward; Marafi, Meena; Stanislaus, Anthony

Elsevier Science & Technology

01/2017

468

Mole

Inglês

9780444638816

15 a 20 dias

970

Descrição não disponível.
1. Introduction 2. Developments in Petroleum Refining 3. Hydroprocessing Technology 4. Catalyst Deactivation 5. Regeneration 6. Rejuvenation 7. Cascading 8. New Catalysts From Spent Catalysts 9. Environmental Applications of Spent Hydroprocessing Catalysts 10. Valuable Materials From Spent Hydroprocessing Catalysts 11. Metal Reclamation From Spent Hydroprocessing Catalysts 12. Spent Unconventional Hydroprocessing Catalysts 13. Environmental and Safety Aspects of Spent Hydroprocessing Catalysts 14. Markets and Price Trends for Metals in Spent Hydroprocessing Catalysts 15. Future Perspectives
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Abrasives; Alloys; Bifunctional catalysts; Bioleaching; Bricks; Catalyst activity; Catalysts for slurry bed; Ceramics; Classification of solid waste; Coke formation; Coke removal; Coke; Commercial processes; Commercial regeneration processes; Construction materials; Conventional metals; Deactivation kinetics and modeling; Deactivation; Development and properties of catalysts; Developments in petroleum refining; Disposal in landfills; Economic assessment; Environment and safety of refining; Environment and safety; Environmental and safety regulations; Gas purification sorbents; Guard bed trap; Hazardous solid wastes; High severityi?1/2Low severity; Hydrocracking; Hydroprocessing feeds; Hydroprocessing reactors and systems; Hydroprocessing; Leaching with inorganic agents; Leaching with organic agents; Metal reclamation; Metals deposition; Metals separation; Modeling of regeneration; New catalysts from spent catalysts; Noble metals; Organic and inorganic leaching agents; Oxidative desulfurization; Oxidative regeneration; Petroleum refinery; Petroleum; Platinum group metals; Poisoning and inhibition of catalysts; Precious metal-containing catalysts; Reductive regeneration; Refractories; Regeneration and rejuvenation; Rejuvenation kinetics; Rejuvenation modeling; Rejuvenation plant design; Selective catalytic reduction; Spent catalyst deactivation; Spent catalyst recycling by regeneration and rejuvenation; Spent catalyst reprocessing; Spent catalyst; Spent catalysts; Spent hydroprocessing catalysts; Synthetic aggregates; Unconventional catalysts; Waste water treatment agents; World crude oil supply