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Moreover, the reaction was conducted at a relatively low reaction temperature 200 °C.
These reaction steps present relatively low reaction barriers.
The results give guidelines for improving the process efficiency (i.e. high conversions and low reaction times).
The presence of O2 could further effectively improve the photocatalytic activity at the low reaction temperature.
The rotating arc provides a relatively low reaction temperature, achieving a high carbon balance.
Low biomass/water ratio resulted in achieving the maximum bio-oil yield at low reaction severity.
Carbon monoxide electrolysis has previously been reported to yield enhanced multi-carbon (C2+) Faradaic efficiencies of up to ~55%, but only at low reaction rates.
Although the polyol synthesis of Ag particles is known, the production of nanoparticles under very low reaction times remains important in this era of fast industrialization44,45.
Low reaction yields and the high cost of obtaining a single type of pure CD make γ-CD costly.
The relatively low reaction temperature could be attributed to in situ generation of uniform and spherical palladium nanoparticles (~ 5 nm).
The core aim was to explore the effect of low reaction pressure on the efficiency of Hg removal.
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