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Exact(6)
Maximum conversion is found to be at the refluxing temperature with 100% selectivity to the monoalkylated product.
The principal parameter which limits the maximum conversion is the concentration of functional groups in the medium.
The maximum conversion is obtained at amount of catalyst of 1.5%, methanol/oil molar ratio of 6.75, reaction temperature of 65 °C and reaction time of 5 h.
The search for an effective temperature region for obtaining maximum conversion is an essential part of the heterogeneous reaction study and in this purpose, the reaction was performed at 300, 350, 400, 450 and 470 °C.
Though a sorption coefficient of the reaction product lower than that of the reactant may leads to a conversion enhancement higher than that one obtained when the reaction product diffusion coefficient is higher than that of the reactant, the contact time value for the maximum conversion is much higher in the first case.
Illustrations of the simulation are presented along with results which indicate that a maximum conversion is attained and that the reactivity of the pendant functional group varies greatly over the course of the reaction due to the heterogeneity that appears during the polymerization.
Similar(54)
The maximum conversion was obtained at temperature near 90°C.
Maximum conversion was 72.3%, at the optimal conditions of 62.5 °C, 0.27 g enzyme, and 249 min.
Its NO maximum conversion was up to around 60% in the gas hourly space velocity of 60 kh−1.
It is seen from Figure 6 that maximum conversion was achieved with a cell mass concentration of 200 kg/m3 and decreased thereafter (Additional file 1: Figure 9 of Supporting Information).
The optimal conditions to achieve maximum gasoline selectivity in maximum conversion are pressure = 9.40 bar, temperature = 392 °C, WHSV = 1 h− 1 and particle size = 994 nm.
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