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Selectivity of product reaches up to 94.4% with a 80.8% yield.
The selectivity towards the components on carbon-basis was calculated according to Selectivity of product i % = moles of product i moles CO in - moles CO out × 100.
Operating conditions affect the Fischer-Tropsch reaction and selectivity of product, while also depending on the catalyst composition and reactor type.
Selectivity values were calculated as the mole percentage of products obtained, excluding water; selectivity of product = (mol of product/total mol of H2 and carbon-containing products in the outlet) × 100.
When the primary reaction is the faster one, waste tends to accumulate in local A-rich regions and the selectivity of product to waste is strongly affected by the degree of chaos in the system.
The optimization problem is stated as to determine the optimal profiles of the electrode potential which maximize the selectivity of product B, in a given batch period and under specified constraints.
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As previously stated, this study focuses on determination a comprehensive model for the selectivity of products.
These models indicated the TR change has a significant effect on the selectivity of products.
Figure 9 The selectivity of products during a CO 2 conversion in CO 2 +4H 2 on amorphous alloy catalyst precursors [[5]].
The yield, current efficiency, and selectivity of products depended on electrolytic conditions, especially cathode material.
The selectivity of products in groups (S i %) was calculated by the Equation 2: S i % = ∑ A i ⋅ f i ∑ A j ⋅ f j × 100%% (2).
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