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the allylic compound. Results and discussion The XRD pattern of Ti-SBA-15 catalyst was the same as in literature [ 10 , 17 ]. Fig. 1 presents the XRD pattern of the obtained Ti-SBA material. Fig. 1

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appears in the hydrogen region in the cathodic and anodic branches. The influence of surface functional groups of the carbon support on palladium dispersion and catalytic activity in hydrogen oxidation was also assessed [ 19 ]. However, the literature data

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carbons [ 24 – 26 ], resin [ 27 – 29 ], showed the best catalytic characteristics. The mechanism of these systems has not been explained unequivocally yet. The one which is the most frequently discussed in the literature is the bifunctional mechanism

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formulas describe the esterification with n -nonyl alcohol and n -undecyl alcohol. Kinetic data concerning the synthesis of phthalates have not been found in literature. There are kinetic investigations of Skrzypek et al. [ 3 , 4 ] on the esterification

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allyl alcohol is 47 mol% and the conversion of hydrogen peroxide is 94 mol%. The experiments at the molar ratios of AA/H 2 O 2 < 1 were not conducted, because according to the literature data [ 14 ], the excess of H 2 O 2 in the post-reaction solution

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reverse water gas shift (RWGS: reaction 4 ) also occurs simultaneously. Therefore, reactions 1 and 4 make the total reaction system of methanol synthesis. The literature suggests two possible reaction pathways for CH 3 OH synthesis from CO 2

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derivative rather than the acridinone derivative. The kinetic data are presented in Table 1 . The dependence of the absorbance with time is first order with respect to [TCA] ( Fig. 1 ). The oxidation process is known in the literature to proceed

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degradation [ 16 ]. The literature reports the influence of solution pH, temperature and concentration of meropenem, ertapenem and biapenem on the formation of their degradation of products [ 6 , 7 , 18 ]. In this study, the selectivity of this method for

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