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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 highest NO conversion was achieved by a Ba/CeMn system.
In contrast, over 95% of the hydroxyl group conversion was achieved when BA was used.
The best performance 59% conversion was achieved for an initial 500 ppm after 240 reaction minutes.
In the reaction conditions applied, 100% of phenol conversion was achieved.
Experimental results show that direct thermal to electrical energy conversion was achieved in a gas-fired heating furnace system.
Nearly complete coal conversion was achieved using composite iron oxide particles as the oxygen carriers without any flow problems.
Essentially quantitative conversion was achieved with extremely few residual volatiles, as indicated by evolved gas FTIR and solid state NMR.
However, 99.9% conversion was achieved after about 3 h and toxicity decreased to 98.5% under both inert and air atmospheres.
About 100% CO conversion was achieved at 235 °C, whereas the conversion for HC reached 77.8% at 245 °C.
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