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Furthermore, the proposed catalyst design enables CNT synthesis at a temperatures as low as 350 °C.
The present contribution considered the performance of the proposed catalyst deactivation model (Azarpour and Zahedi, 2012).
The influence of operating pH on the catalytic activity of the proposed catalyst is investigated.
These features allow the proposed catalyst configuration to apply to various small-scale power, heat generation and propulsion systems.
These benefits of the proposed catalyst configuration can be applied in the design of a small-scale power/heating generator.
In addition to adhesion force, researchers have also proposed catalyst particle size [34, 55] and substrate porosity [23] as key factors affecting the growth modes.
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The data showed an efficient remediation of the phenol-laden water, indicating the potential scale-up of the proposed CWAO catalyst and impellor cum catalyst holder-assembly in this study.
These new catalysts are compared to our very recently proposed unsubstituted catalyst compound: bis[2- 1-isoquinolinyl-κN phenyl-κC](2,2,6,6-tetramethyl-3,5-heptanedionato-κO3,κO5)-iridium (III) (Ir_a).
More importantly, the proposed FeTPPc/Gr catalyst towards the ORR outperforms the commercial Pt/C catalyst in terms of higher diffusion-limiting current, more positive onset potential and half-wave potential, better stability and tolerance to methanol crossover.
In the literature basic materials has been proposed as catalyst for the reaction but the real number of tested catalysts is very small and few preparation parameters have been taken into account.
A control strategy is proposed for catalyst regeneration in a novel dehydrogenation process designed to be operated in a cyclic production regeneration mode.
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