Rohit Vijay, Ph.D.

Affiliations: 
2007 Department of Chemical Engineering University of Delaware, Newark, DE, United States 
Area:
Chemical Engineering
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"Rohit Vijay"

Parents

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Jochen A. Lauterbach grad student 2007 University of Delaware
 (Discovery and mechanistic investigation of nitrogen oxides traps and ammonia decomposition catalysts using high-throughput experimentation.)
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Publications

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Kumaran P, Mohanamurugan S, Shankar P, et al. (2015) Experimental Analysis of Different Packed Bed Catalysts for Lean NOx Traps (LNT) Applied Mechanics and Materials. 787: 677-681
Vijay R, Sakurai H, Snively CM, et al. (2009) Mechanistic investigation of co containing NOx traps Topics in Catalysis. 52: 1388-1399
Pyrz W, Vijay R, Binz J, et al. (2008) Characterization of K-promoted Ru catalysts for ammonia decomposition discovered using high-throughput experimentation Topics in Catalysis. 50: 180-191
D'Addio E, Dellamorte JC, Vijay R, et al. (2008) Reverse micelle synthesis of bimetallic catalysts Aiche 100 - 2008 Aiche Annual Meeting, Conference Proceedings
Dellamorte JC, Vijay R, Snively CM, et al. (2007) High-throughput reactor system with individual temperature control for the investigation of monolith catalysts Review of Scientific Instruments. 78
Vijay R, Lauterbach J. (2007) Chapter 11 Design of experiments combined with high-throughput experimentation for the optimization of DeNOx catalysts Studies in Surface Science and Catalysis. 171: 325-359
Hendershot RJ, Vijay R, Snively CM, et al. (2007) Response surface study of the performance of lean NOx storage catalysts as a function of reaction conditions and catalyst composition Applied Catalysis B: Environmental. 70: 160-171
Vijay R, Snively C, Lauterbach J. (2007) In situ Ft-IR spectroscopy of co-containing NOx traps 2007 Aiche Annual Meeting
Vijay R, Snively CM, Lauterbach J. (2006) Performance of Co-containing NOx storage and reduction catalysts as a function of cycling condition Journal of Catalysis. 243: 368-375
Hendershot RJ, Vijay R, Snively CM, et al. (2006) High-throughput study of the performance of NOx storage and reduction catalysts as a function of cycling conditions and catalyst composition Chemical Engineering Journal. 118: 3907-3916
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