Reactive Calcination Route for Synthesis of Highly Active NiCo2O4 Catalyst for Abatement of Cold-Start CO–HC Emissions from LPG Vehicles

Reactive Calcination Route for Synthesis of Highly Active NiCo2O4 Catalyst for Abatement of... (GHG: N O, СО , СН ), responsible for the problem Keywords NiCo O spinel Catalyst · Reactive 2 2 4 2 4 of global warming and climate change. The NiCo O calcination · CO-LPG oxidation · LPG vehicle emissions 2 4 catalyst plays a very important role in this  direction by decomposing N O and utilizing СО in dry reforming 2 4 2 of СН to yield hydrogen or synthesis gas, which are a 1 Introduction valuable feedstock for the production of ultraclean fuels [24–28]. Reactions of environmental significance com- Nickel cobaltite, NiCo O is one of the promising mixed- prise complete oxidation of CO and hydrocarbons (HCs) 2 4 metal oxides in the family of cobaltite materials which has over nickel cobaltite catalyst for purification of vehicular a spinel structure of general formula, AB O . It is a low exhaust pollutants [1, 2, 19]. Further, dry reforming of 2 4 cost material having tremendous potential for many tech- hydrocarbons utilises CO and as a result, the associated nological applications, ranging from heterogeneous catalyst reduction in overall plant GHG emission is an incentive [1–4] and chemical sensor [5–7] to electro-catalyst [8–12] for employing this route in syngas production [29, 30]. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Catalysis Letters Springer Journals

Reactive Calcination Route for Synthesis of Highly Active NiCo2O4 Catalyst for Abatement of Cold-Start CO–HC Emissions from LPG Vehicles

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Publisher
Springer US
Copyright
Copyright © 2017 by Springer Science+Business Media, LLC
Subject
Chemistry; Catalysis; Industrial Chemistry/Chemical Engineering; Organometallic Chemistry; Physical Chemistry
ISSN
1011-372X
eISSN
1572-879X
D.O.I.
10.1007/s10562-017-2141-2
Publisher site
See Article on Publisher Site

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