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Handbook of refinery desulfurization / Nour Shafĭk El-Gendy and James G. Speight.

By: Contributor(s): Material type: TextTextSeries: Chemical industriesPublisher: Boca Raton : CRC Press, 2016Edition: 1stDescription: 1 online resource : illustrations (black and white)Content type:
  • still image
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781466596726 (PDF ebook) :
Subject(s): Additional physical formats: Print version:: No titleDDC classification:
  • 665.53 23
Online resources:
Contents:
<P><STRONG>Desulfurization<BR></STRONG>Introduction<BR>Hydrodesulfurization<BR>Thermodynamic Aspects<BR>Kinetics of Hydrodesulfurization<BR>Sulfur Removal during Refining<BR>Macromolecular Concepts<BR>Sediment Formation and Fouling<BR>References<BR><BR><B>Feedstocks<BR></B>Introduction<BR>Natural Feedstocks<BR>Refinery-Produced Feedstocks<BR>Sulfur in Petroleum<BR>Sulfur Levels and Legislative Regulations<BR>References<BR><BR><B>Feedstock Evaluation<BR></B>Introduction<BR>Feedstock Evaluation<BR>Chromatographic Methods<BR>Molecular Weight<BR>Other Properties<BR>Use of the Data<BR>References<BR><BR><B>Desulfurization during Refining<BR></B>Introduction<BR>Refinery Configuration<BR>Dewatering and Desalting<BR>Distillation<BR>Thermal Processes<BR>Catalytic Cracking<BR>Hydroprocesses<BR>Deasphalting<BR>Feedstock Modification<BR>References<BR><BR><B>Upgrading Heavy Feedstocks<BR></B>Introduction<BR>Thermal Processes<BR>Catalytic Cracking Processes<BR>Solvent Processes<BR>Future<BR>References<BR><BR><B>Refining Chemistry<BR></B>Introduction<BR>Cracking<BR>Hydrogenation<BR>Isomerization<BR>Alkylation<BR>Polymerization<BR>Process Chemistry<BR>References<BR><BR><B>Influence of Feedstock<BR></B>Introduction<BR>Chemical Composition<BR>Physical Composition<BR>Feedstock Types<BR>Feedstock Composition<BR>Product Distribution<BR>Use of the Data<BR>References<BR><BR><B>Desulfurization Methods<BR></B>Introduction<BR>Methods for Sulfur Removal<BR>Molecular Imprinting Technology<BR>Future<BR>References<BR><BR><B>Biocatalytic Desulfurization<BR></B>Introduction<BR>Scale-Up of the Biodesulfurization Technique<BR>Nano-Biotechnology and Biodesulfurization<BR>Future<BR>References<BR><BR><B>Hydrodesulfurization<BR></B>Introduction<BR>Process Description<BR>Reactor Design<BR>Catalysts<BR>Catalyst Bed Plugging<BR>Catalyst Poisoning<BR>Process Variables<BR>References<BR><BR><B>Desulfurization Processes-Gases<BR></B>Introduction<BR>Gas Streams<BR>Water Removal<BR>Liquid Removal<BR>Nitrogen Removal<BR>Acid Gas Removal<BR>Enrichment<BR>Fractionation<BR>Claus Process<BR>References<BR><BR><B>Desulfurization Processes-Distillates<BR></B>Introduction<BR>Commercial Processes<BR>Gasoline and Diesel Fuel Polishing<BR>Biodesulfurization<BR>References<BR><BR><B>Desulfurization Processes-Heavy Feedstocks<BR></B>Introduction<BR>Process Options<BR>Catalysts<BR>References<BR><BR><B>Hydrogen Production and Management<BR></B>Introduction<BR>Feedstocks<BR>Process Chemistry<BR>Commercial Processes<BR>Catalysts<BR>Purification<BR>Hydrogen Management and Safety<BR>References<BR><BR><B>Conversion Factors</P></B>
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E-Resources Main Library E-Resources 665.53 EL37 (Browse shelf(Opens below)) Available E003723

Includes bibliographical references and index.

<P><STRONG>Desulfurization<BR></STRONG>Introduction<BR>Hydrodesulfurization<BR>Thermodynamic Aspects<BR>Kinetics of Hydrodesulfurization<BR>Sulfur Removal during Refining<BR>Macromolecular Concepts<BR>Sediment Formation and Fouling<BR>References<BR><BR><B>Feedstocks<BR></B>Introduction<BR>Natural Feedstocks<BR>Refinery-Produced Feedstocks<BR>Sulfur in Petroleum<BR>Sulfur Levels and Legislative Regulations<BR>References<BR><BR><B>Feedstock Evaluation<BR></B>Introduction<BR>Feedstock Evaluation<BR>Chromatographic Methods<BR>Molecular Weight<BR>Other Properties<BR>Use of the Data<BR>References<BR><BR><B>Desulfurization during Refining<BR></B>Introduction<BR>Refinery Configuration<BR>Dewatering and Desalting<BR>Distillation<BR>Thermal Processes<BR>Catalytic Cracking<BR>Hydroprocesses<BR>Deasphalting<BR>Feedstock Modification<BR>References<BR><BR><B>Upgrading Heavy Feedstocks<BR></B>Introduction<BR>Thermal Processes<BR>Catalytic Cracking Processes<BR>Solvent Processes<BR>Future<BR>References<BR><BR><B>Refining Chemistry<BR></B>Introduction<BR>Cracking<BR>Hydrogenation<BR>Isomerization<BR>Alkylation<BR>Polymerization<BR>Process Chemistry<BR>References<BR><BR><B>Influence of Feedstock<BR></B>Introduction<BR>Chemical Composition<BR>Physical Composition<BR>Feedstock Types<BR>Feedstock Composition<BR>Product Distribution<BR>Use of the Data<BR>References<BR><BR><B>Desulfurization Methods<BR></B>Introduction<BR>Methods for Sulfur Removal<BR>Molecular Imprinting Technology<BR>Future<BR>References<BR><BR><B>Biocatalytic Desulfurization<BR></B>Introduction<BR>Scale-Up of the Biodesulfurization Technique<BR>Nano-Biotechnology and Biodesulfurization<BR>Future<BR>References<BR><BR><B>Hydrodesulfurization<BR></B>Introduction<BR>Process Description<BR>Reactor Design<BR>Catalysts<BR>Catalyst Bed Plugging<BR>Catalyst Poisoning<BR>Process Variables<BR>References<BR><BR><B>Desulfurization Processes-Gases<BR></B>Introduction<BR>Gas Streams<BR>Water Removal<BR>Liquid Removal<BR>Nitrogen Removal<BR>Acid Gas Removal<BR>Enrichment<BR>Fractionation<BR>Claus Process<BR>References<BR><BR><B>Desulfurization Processes-Distillates<BR></B>Introduction<BR>Commercial Processes<BR>Gasoline and Diesel Fuel Polishing<BR>Biodesulfurization<BR>References<BR><BR><B>Desulfurization Processes-Heavy Feedstocks<BR></B>Introduction<BR>Process Options<BR>Catalysts<BR>References<BR><BR><B>Hydrogen Production and Management<BR></B>Introduction<BR>Feedstocks<BR>Process Chemistry<BR>Commercial Processes<BR>Catalysts<BR>Purification<BR>Hydrogen Management and Safety<BR>References<BR><BR><B>Conversion Factors</P></B>

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