2017
DOI: 10.1016/j.md.2017.08.001
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Characterization and activity of CuMnO x /γ-Al 2 O 3 catalyst for oxidation of carbon monoxide

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Cited by 44 publications
(13 citation statements)
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“…4 can also appear because they are very sensitive to the stoichiometry of reactant elements in their synthesis at the heating and cooling rates. The reason behind for increases the catalytic activity due to an improved specific surface area, lattice oxygen mobility and pore volume of the catalysts (Automobile and carbon monoxide, n.d.; Dey et al, 2017a;Dey et al, 2017b;Dey et al, 2017c;Dey et al, 2017d;Dey et al, 2018a;Dong et al, 2015;Dey et al, 2018b;Singh & Prasad, 2014;Solsona et al, 2004;Toyoshima et al, 2013;Goodman et al, 2007; (Cotton, 2013) 2009; Adeyemo et al, 2011;Teoh et al, 2015;Chen & Lin, 2015;Cominos et al, 2005;Snytnikov et al, 2003;Nehasil et al, 1996;Zhang et al, 2014;Hebben et al, 2010;Gao et al, 2013;Hulteberg et al, 2005;Wong et al, 2014;Dulaurent et al, 2000;Jung et al, 2007;Nishibayashi et al, 1997;Goerke et al, 2004;Brewster et al, 2014;Piccolo et al, 2016;Dey & Dhal, 2020a;Filot et al, 2011;Saadatjou et al, 2014;Song et al, 2004;Olveira et al, 2014).…”
Section: Characteristics and Structure Of Rhodium Nanocatalystsmentioning
confidence: 99%
See 1 more Smart Citation
“…4 can also appear because they are very sensitive to the stoichiometry of reactant elements in their synthesis at the heating and cooling rates. The reason behind for increases the catalytic activity due to an improved specific surface area, lattice oxygen mobility and pore volume of the catalysts (Automobile and carbon monoxide, n.d.; Dey et al, 2017a;Dey et al, 2017b;Dey et al, 2017c;Dey et al, 2017d;Dey et al, 2018a;Dong et al, 2015;Dey et al, 2018b;Singh & Prasad, 2014;Solsona et al, 2004;Toyoshima et al, 2013;Goodman et al, 2007; (Cotton, 2013) 2009; Adeyemo et al, 2011;Teoh et al, 2015;Chen & Lin, 2015;Cominos et al, 2005;Snytnikov et al, 2003;Nehasil et al, 1996;Zhang et al, 2014;Hebben et al, 2010;Gao et al, 2013;Hulteberg et al, 2005;Wong et al, 2014;Dulaurent et al, 2000;Jung et al, 2007;Nishibayashi et al, 1997;Goerke et al, 2004;Brewster et al, 2014;Piccolo et al, 2016;Dey & Dhal, 2020a;Filot et al, 2011;Saadatjou et al, 2014;Song et al, 2004;Olveira et al, 2014).…”
Section: Characteristics and Structure Of Rhodium Nanocatalystsmentioning
confidence: 99%
“…It is colorless, odorless, tasteless and nonirritating gas which makes very difficult for humans to detect. CO is emitted into the environment by incomplete combustion of carbon-containing compounds (Automobile and carbon monoxide, n.d.; Dey et al, 2017a). It combined with hemoglobin present in the blood cells and converted into carboxyhemoglobin; which reduces the oxygen carrying capacity of the human body (Dey et al, 2017b).…”
Section: Introductionmentioning
confidence: 99%
“…1,4,5 Compared to other methods (like water-gas shi reaction), this technique offers various benets of low cost, ease of implementation, and thorough removal of CO. 6 To complete the process of CO oxidation, preparing a highly active and stable catalyst is of vital importance. 7,8 Up to now, the potential catalysts for CO oxidation have been mainly concentrated on the noble metal (Ag, Au, Pt, etc. )/metal oxide (support) and metal oxide (active component)/metal oxide (support) (Co 3 O 4 /Al 2 O 3 , CuO/CeO 2 , etc.).…”
Section: Introductionmentioning
confidence: 99%
“…In the presence of catalyst, the rate of chemical reaction was increased; it acts like an agent that reduces the activation energy of the reactions. The transition metals, noble metals, and metal oxides are widely used as catalysts in a catalytic converter (Automobile and carbon monoxide n.d.; Dey et al 2017d).…”
Section: Introductionmentioning
confidence: 99%