Lund Group Publications

Single-step Flame Aerosol Synthesis of Active and Stable Nanocatalysts for the Dry Reforming of Methane” - M. M. Mohammadi, C. Shah, S. K. Dhandapani, J. Chen, S. R. Abraham, W. Sullivan, R. D. Buchner, E. A. Kyriakidou, H. Lin, C. R. F. Lund and M. T. Swihart

A Career in Catalysis: James A. Dumesic” - C. R. F. Lund, B. Tatarchuk, N. Cardona-Martinez, J. M. Hill, M. A. Sanchez-Castillo, G. W. Huber, Y. Roman-Leshkov, D. Simonetti, Y. Pagan-Torres, T. J. Schwartz and A. H. Motagamwala

Low-Temperature Ammonia Decomposition Catalysts for Hydrogen Generation” - S. Mukherjee, S. V. Devaguptapu, Y. He, C. R. F. Lund and G. Wu

Glucose Formate Conversion in Gamma-Valerolactone” - J. Heltzel and C. R. F. Lund

Reactivity of Levulinic Acid during Aqueous, Acid-Catalyzed HMF Hydration” - S. Karwa, V. M. Gajiwala, J. Heltzel, S. K. R. Patil and C. R. F. Lund

Online Simulator Use in the Preparing of Chemical Engineers” - R. K. Yerrick, C. R. F. Lund and Y. Lee

Comparison of Structural Features of Humins Formed Catalytically from Glucose, Fructose and 5-Hydroxymethylfurfuraldehyde” - S. K. R. Patil, J. Heltzel and C. R. F. Lund

Exploring Simulator Use in the Preparation of Chemical Engineers” - R. K. Yerrick, C. R. F. Lund, and Y. Lee

Formation and Growth of Humins via Aldol Addition and Condensation during Acid-Catalyzed Conversion of HMF” - S. Patil and C. R. F. Lund

A Rate Expression for Water-Gas Shift over a Gold/Ferrochrome Catalyst” - G. N. Vajani, S. L. Ng and C. R. F. Lund

Copper Promotion of High Temperature Shift” - J. S. Coleman, M. Zhang, R. M. Van Natter and C. R. F. Lund

A DFT Study of the Effect of Copper Promotion upon Iron Oxide Surface Species” - R. M. Van Natter, J. S. Coleman and C. R. F. Lund

DFT Models for Active Sites on High Temperature Water-Gas Shift Catalysts” - R. M. Van Natter, J. S. Coleman and C. R. F. Lund

Effects of Zeolite Channel Walls and Cation Migration on N2O Decomposition Energies in Fe/ZSM-5” - C. R. F. Lund

The Effect of NO upon N2O Decomposition over Fe/ZSM-5 with Low Iron Loading” - C. Sang, B. H. Kim and C. R. F. Lund

A Computational Study of Aluminum Chloride Activation for Toluene Chlorination” - S. R. Spencer, M. Zhang and C. R. F. Lund

Assessing High-Temperature Water-Gas Shift Membrane Reactors” - D. Ma and C. R. F. Lund

An Experimental and Computational Study of Solvent Effects in Toluene Chlorination” - M. Zhang and C. R. F. Lund

Issues Involved in Using MCSCF to Investigate Catalytic Sites Involving Transition Metals” - B. H. Kim and C. R. F. Lund

Hydrogen storage in a ligned carbon nanotubes” - Y. Chen, D. T. Shaw, X. D. Bai, E. G. Wang, C. R. F. Lund, W. M. Lu, and D. D. L. Chung

Zeolite-Catalyzed Chlorination of Toluene by Sulfuryl Chloride: Activity, Selectivity and Deactivation of NaKL Zeolite” - M. C. Hausladen, R. C. Cyganovich, H. Y. Huang, and C. R. F. Lund

Zeolite-Catalyzed Chlorination of Toluene by Sulfuryl Chloride: Activity, Selectivity and Deactivation of ZSM-5” - C.-C. Chang, M. J. Burger, G. M. Faitar, and C. R. F. Lund

Possible Role of Nitrite/Nitrate Redox Cycles in N2O Decomposition and Light-Off over Fe-ZSM-5” - C. Sang and C. R. F. Lund

Isothermal “Light-Off” during Catalytic N2O Decomposition over Fe/ZSM-5” - C. Sang and C. R. F. Lund

Zeolite-Catalyzed Chlorination of Toluene by Sulfuryl Chloride: Activity, Selectivity and Deactivation of NaX and NaY Zeolites” - M. C. Hausladen and C. R. F. Lund

Preliminary Assessment of Membrane Reactors as a Means to Improve the Selectivity of Methylamine Synthesis” - C. Sang, C.-C. Chang and C. R. F. Lund

The Effect of a Membrane Reactor upon Catalyst Deactivation during Hydrodechlorination of Dichloroethane” - C.-C. Chang, C. M. Reo, and C. R. F. Lund

Zeolite-Catalyzed Chlorination of Toluene by Sulfuryl Chloride: The Effect of Zeolite Drying” - M. C. Hausladen, B. W. Satterley, M. J. Burger, and C. R. F. Lund

Zeolite-Catalyzed Chlorination of Toluene by Sulfuryl Chloride: The Role of Sulfuryl Chloride Decomposition in Chlorination” - B. W. Satterley, M. C. Hausladen, and C. R. F. Lund

Defining Conditions Where the Use of Porous Membrane Reactors Can be Justified Solely on the Basis of Improved Yield” - C. M. Reo, L. A. Bernstein, and C. R. F. Lund

Cocurrent Membrane Reactors Versus PFRs for Shifting Dehydrogenation Equilibrium” - C. M. Reo, L. A. Bernstein, and C. R. F. Lund

The Effect of Adding Co to MoS2/Al2O3 upon the Kinetics of Water-Gas Shift” - C. R. F. Lund

A Batch Membrane Reactor for Laboratory Studies” - L. A. Bernstein, C. M. Reo, and C. R. F. Lund

The Microkinetics of Water-Gas Shift over Sulfided Mo/Al2O3 Catalysts” - C. R. F. Lund

CESL: The Chemical Engineering Simulation Laboratory” - D. A. Kofke, M. Grosso, S. Gollapudi, and C. R. F. Lund

Permeation Through Kapton® Polyimide at Elevated Temperatures” - M. Hausladen, K. A. Oship, and C. R. F. Lund

The Role of Chlorine in Induction Periods During the Oxidation of Methane over Pd/SiO2” - S. S. Peri and C. R. F. Lund

Membrane Reactors for Catalytic Series and Series-Parallel Reactions” - L. A. Bernstein and C. R. F. Lund

Hydrodenitrogenation-Selective Catalysts I. Fe Promoted Mo/W Sulfides” - T. C. Ho, A. J. Jacobson, R. R. Chianelli, and C. R. F. Lund

Improving Selectivity During Methane Partial Oxidation by Use of a Membrane Reactor” - C. R. F. Lund; “Letter to the Editor” - C. R. F. Lund

Use of a Membrane Reactor to Improve Selectivity to Intermediate Products in Consecutive Catalytic Reactions” - S. Agarwalla and C. R. F. Lund

A Model for the Catalytic Growth of Carbon Filaments” - P. Chitrapu, C. R. F. Lund and J. A.Tsamopoulos

The Synthesis and Cracking Behavior of Zeolite-Amorphous Silica-Alumina Composites Prepared Using Gels with High Alumina and Low Organic Template Content” - P. Yarlagadda, C. R. F. Lund, and E. Ruckenstein

The Dependence of Catalytic Carbon Filament Growth Kinetics Upon Gas Phase Carbon Activity” - S. A. Safvi, E. C. Bianchini, and C. R. F. Lund

Carbon Gasification by Group VIII Metal Catalysts” - M. E. Vincett, J. A. Tsamopoulos, and C. R. F. Lund

Different Activities and Selectivities of Silica-Alumina Catalysts Synthesized in Aqueous and Alcohol Solvents” - P. Yarlagadda, C. R. F. Lund, and E. Ruckenstein

Oligomerization of Ethene and Propene over Composite Zeolite atalysts” - P. Yarlagadda, C. R. F. Lund, and E. Ruckenstein

Solubility and Diffusivity of Carbon in Metals” - R. T. Yang, P. G. Goethal, J. M. Schwartz, and C. R. F. Lund

Solid State Diffusion During Carbon Gasification and Filament Growth” - C. R. F. Lund and R. T. Yang

Conversion of Methanol to Hydrocarbons over Silica-Alumina: Selective Formation of Lower Olefins” - P. Yarlagadda, C. R. F. Lund and E. Ruckenstein

Kinetic Implications of Mechanisms Proposed for Catalytic Carbon Filament Growth” - E. C. Bianchini, and C. R. F. Lund

Further Studies of the Formation of Filamentous Carbon from the Interaction of Supported Iron Particles with Acetylene” - R. T. K. Baker, J. J. Chludzinski, Jr. and C. R. F. Lund

Staged Carbon Gasification with Nickel Catalysts” - C. R. F. Lund

The Effect of Crystal Structure upon the Activity of Iron in Steam Gasification” - C. R. F. Lund, R. D. Sherwood and R. T. K. Baker

Nickel Catalyst Deactivation in the Steam-Carbon Reaction” - C. R. F. Lund

A Comparison of the Catalytic Influence of Nickel and Copper-Nickel Alloys on the Graphite-Steam Reaction” - R. T. K. Baker, N. S. Dudash, C. R. F. Lund and J. J. Chludzinski, Jr.

Platinum, Barium, and Platinum-Barium Catalyzed Gasification of Graphite in Steam and Carbon Dioxide” - C. R. F. Lund, J. J. Chludzinski, Jr. and R. T. K. Baker

Catalytic Gasification of Graphite by Barium in Steam, Carbon Dioxide, Oxygen, and Hydrogen” - R. T. K. Baker, C. R. F. Lund and J. J. Chludzinski, Jr.

A Study of the Nickel-Titanium Oxide Interaction” - A. J. Simoens, R. T. K. Baker, D. J. Dwyer, C. R. F. Lund and R. J. Madon

Poisoning of the Platinum-Catalyzed Oxidation and Hydrogenation of Graphite by the Addition of CCl4” - R. T. K. Baker, C. R. F. Lund and J. A. Dumesic

Strong Oxide-Oxide Interactions in Silica-Supported Magnetite Catalysts: IV. Catalytic Consequences of the Interaction in Water-Gas Shift” - C. R. F. Lund and J. A. Dumesic

Strong Oxide-Oxide Interactions in Silica-Supported Magnetite Catalysts: II. The Core/Shell Nature of the Interaction” - C. R. F. Lund and J. A. Dumesic

Strong Oxide-Oxide Interactions in Silica-Supported Magnetite Catalysts: III. Water-Induced Migration of Silica on Geometrically Designed Catalysts” - C. R. F. Lund and J. A. Dumesic

Strong Oxide-Oxide Interactions in Silica-Supported Magnetite Catalysts: I. X-ray Diffraction and Mössbauer Spectroscopy Evidence for Interaction” - C. R. F. Lund and J. A. Dumesic

Magnetite Surface Area Titration Using Nitric Oxide, II. Pretreatment Effects and Silica-Supported Samples” - J. E. Kubsh, C. R. F. Lund and J. A. Dumesic

Magnetite Surface Area Titration Using Nitric Oxide” - C. R. F. Lund, J. J. Schorfheide and J. A. Dumesic