Reprint

Commemorative Issue in Honor of Professor Emeritus Calvin H. Bartholomew in Anticipation of His 75th Birthday

Edited by
January 2019
148 pages
  • ISBN978-3-03897-531-1 (Paperback)
  • ISBN978-3-03897-532-8 (PDF)

This book is a reprint of the Special Issue Commemorative Issue in Honor of Professor Emeritus Calvin H. Bartholomew in Anticipation of His 75th Birthday that was published in

Chemistry & Materials Science
Engineering
Summary

This book recognizes the career of Professor Emeritus Calvin H. Bartholomew, who celebrated his 75th birthday in 2018, and his contributions to the science and engineering of heterogeneous catalysis, a field which improves daily life in countless, but often unrecognized ways.  Dr. Bartholomew is an eminent researcher, an outstanding educator, mentor, and friend.  The nine chapters comprising the book were written by former students, collaborators, colleagues, and respected peers.  Chapters cover supported iron Fischer–-Tropsch catalysts, a spectroscopic study of iron-based water gas shift catalysts, nickel catalysts both for (dry) methane reforming with associated carbon deactivation and carbon dioxide methanation, a methanol steam reforming catalyst, cobalt oxide on niobia catalysts for environmental applications, palladium catalysts supported on titania for hydrogen peroxide synthesis, methane combustion catalyst stability, and chiral catalyst deactivation.  In summary, this book covers much of the breadth and points to the depth of Professor Bartholomew’s illustrious career.  We thank him for his kind example and honor him for his lasting contributions.

Format
  • Paperback
License
© 2019 by the authors; CC BY-NC-ND license
Keywords
cobalt on Nb2O5 catalyst; CO and propane oxidation; promoting effects of Nb2O5; methanol steam reforming (MSR); yttrium stabilized zirconia (YSZ); Na doping; DRIFTS; methoxy; formate; methanation; PtG; SNG; Ni/Al2O3; dry reforming of methane; carbon dioxide; nickel; MgO-Al2O3 solid solution; direct synthesis of H2O2; mesoporous anatase/TiO2(B) whisker; carbon modification; palladium; H2O2 desorption; isothermal microcalorimetry; asymmetric hydrogenation; deactivation; Ru complexes; kinetic modeling; methane total oxidation; methane slip; methane removal; carbon dioxide; combustion; iron water gas shift catalysts; extent of reduction; UV-visible spectroscopy; XANES; Fischer–Tropsch synthesis; supported iron catalyst; silica-stabilized alumina; support pretreatment temperature; iron carbide; Calvin H. Bartholomew; heterogeneous catalyst deactivation; Fischer-Tropsch