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The optimal operation conditions in terms of anisole conversion were achieved at 150 °C and equimolar anisole/acetic anhydride mixture.
The best results (88% selectivity toward HA at ca. 10% PG conversion) were achieved over MIL-101 using acetonitrile as solvent.
All in all, selectivities to crotyl alcohol of ca. 62% at 16% conversion were obtained for more active systems ZrO2-200 and ZrO2-250 in the liquid phase whereas values above 85% at 50% conversion were achieved on MgO solids in the gas-phase.
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In this method 94% yield and 98% conversion is achieved.
The highest yield to xylenes and long-term stability of conversion is achieved with zeolite BEA.
The A/D conversion is achieved by using nonlinear Kerr effect in the cavities.
The model predicted that the maximum methane conversion was achieved via La0.996Ba0.004Ni0.6Cu0.4O3 (Tca = 700 °C).
The best result – 80.5% conversion – was achieved with the highest temperature, molar ratio and enzyme concentration.
The efficient power conversion is achieved with reduced voltage stress across the semiconductor devices.
Steady profiles of 99.99% H2 production and nearly 100% syngas conversion are achieved.
Provided that complete conversion is achieved, highest reactor temperature is achieved with the highest switch time.
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CEO of Professional Science Editing for Scientists @ prosciediting.com