Zobrazeno 1 - 10
of 16
pro vyhledávání: '"Rakesh Batchu"'
Autor:
William E. Windes, Rakesh Batchu, Rebecca Fushimi, Eric J. Dufek, Zongtang Fang, Zachary J. Thompson
Publikováno v:
Carbon. 182:781-790
Quantification of oxidation kinetics is essential to develop graphitic materials for diverse applications: from refractories found in gas-cooled nuclear reactors to catalysts needed for chemical manufacturing. Using well-defined highly oriented pyrol
Autor:
Adam Yonge, Gabriel S. Gusmão, Rakesh Batchu, M. Ross Kunz, Zongtang Fang, Rebecca Fushimi, Andrew J. Medford
Publikováno v:
AIChE Journal. 68
Autor:
Yixiao Wang, Bingwen Wang, Sagar Sourav, Rakesh Batchu, Zongtang Fang, M. Ross Kunz, Gregory Yablonsky, Eranda Nikolla, Rebecca Fushimi
Publikováno v:
Catalysis Today. 417:113739
Autor:
M. Ross Kunz, Adam Yonge, Xiaolong He, Rakesh Batchu, Zongtang Fang, Yixiao Wang, Gregory S. Yablonsky, Andrew J. Medford, Rebecca R. Fushimi
Publikováno v:
Catalysis Today. 417:113650
Autor:
Marie-Françoise Reyniers, Konstantinos Alexopoulos, Guy B. Marin, Hilde Poelman, Rakesh Batchu, Vladimir Galvita, T.S. Glazneva
Publikováno v:
Catalysis Today. 355:822-831
Ethanol dehydration to ethene via direct and ether mediated paths is mechanistically investigated via transient experiments in a Temporal analysis of products, TAP-3E reactor over a temperature range of 473–573 K in Knudsen regime conditions. Pulse
Autor:
Rakesh Batchu, Vladimir Galvita, Guy Marin, Lukas Buelens, Christophe Detavernier, Hilde Poelman, Stavros-Alexandros Theofanidis
Publikováno v:
Applied Catalysis B: Environmental. 239:502-512
Catalyst deactivation due to carbon deposition is a major issue in all reforming technologies. Because of the significant economic cost of catalyst replacement, catalyst regeneration is increasingly attracting attention. The regeneration mechanism of
Autor:
Rebecca Fushimi, Tobin Issac, M. Ross Kunz, Adam Yonge, Zongtang Fang, Rakesh Batchu, Andrew J. Medford
An open-source, Python-based Temporal Analysis of Products (TAP) reactor simulation and processing program is introduced. TAPsolver utilizes algorithmic differentiation for the calculation of highly accurate derivatives, which are used to perform sen
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::b7c64a7e537b9016ef1b12e61282f752
http://arxiv.org/abs/2008.13584
http://arxiv.org/abs/2008.13584
Autor:
Andrew J. Medford, Gregory S. Yablonsky, Denis Constales, Rebecca Fushimi, Zongtang Fang, Rakesh Batchu, Adam Yonge, M. Ross Kunz
Publikováno v:
Chemical Engineering Journal. 420:129610
Understanding the set of elementary steps and kinetics in each reaction is extremely valuable to make informed decisions about creating the next generation of catalytic materials. With structural and mechanistic complexities of industrial catalysts,
Autor:
Kristof Van der Borght, Konstantinos Alexopoulos, Marie-Françoise Reyniers, Rakesh Batchu, Guy Marin, Vladimir Galvita, Hilde Poelman
Publikováno v:
Applied Catalysis A: General. 538:207-220
Insight in ethene to hydrocarbon transformation over a H-ZSM-5 catalyst was obtained by means of temporal analysis of products (TAP) in the temperature range 598–698 K with pulses of higher olefins, dienes, cyclodienes and aromatics. Pulses of prop
Autor:
Gregory S. Yablonsky, Rakesh Batchu, Yixiao Wang, James Pittman, Denis Constales, M. Ross Kunz, Rebecca Fushimi, Zongtang Fang
Publikováno v:
Chemical Engineering Journal. 402:125985
Detailed kinetic data is an essential component of process and catalyst development. Transient experiments can provide abundant kinetic information describing the evolution of the reaction rate with respect to the gas concentration, but require more