id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
cet-370	Tungatarova, S.A.; Zheksenbaeva, Z.T.; Baizhumanova, T.S.; Grigoriyeva, V.P.; Sarsenova, R.O.	Heat Generation in the Catalytic Combustion of Light Hydrocarbons 	2017	6	.pdf	application/pdf	3758	94	42	Thus, the study of influence of process parameters on degree of CH4 conversion on the most thermally stable 7.5 % MnREEAEE catalyst supported on 2 % Ce/θ-Al2O3 has shown that contact provides 90 - 92 % oxidation by varying the O2 concentration from 2.0 % to 20.0 %, CH4 - from 0.5 % to 4.0 % at space velocity 10×103 h-1 at temperature of 973 K. Figure 1: Influence of the concentration of CH4 (a) and O2 (b) on degree of CH4 conversion to CO2 on the MnREEAEE/2 % Ce/θ-Al2O3 at GHSV = 10×103 h-1 (1 – 973 K, 2 – 923 K, 3 - 873 K 3.3 Oxidation 0.5 % propane-butane in air at GHSV = 10×103 h-1 on the MnREEAEE and MnREEAEE (0.1 % Pt) catalysts Investigation of the oxidation of 0.5 % C3H8 - C4H10 mixture (C3H8 – 87 %, C4H10 – 13 %) was carried out by varying the temperature and concentration of hydrocarbons and O2 at 10×103 h-1 on MnREEAEE/2 % Ce/θ- Al2O3 at promotion of catalyst by Pt before and after heating for 25 h in air at 1,373 K. The study of influence of technological parameters of the CH4 and C3H8 - C4H10 combustion on 7.5 % MnREEAEE catalyst supported on 2 % Ce/θ-Al2O3 showed that the catalyst provides 98 – 100 % oxidation at 973 K and O2 concentration variation from 2 to 20 %, CH4 - from 0.2 to 4.0 % at GHSV = 10×103 h-1.	cache/cet-370.pdf	txt/cet-370.txt
