Open Access
Table 3
Activation energies in literature.
Author | , mol·l−1 | Temperature, °C | Ratio X | External diffusion fraction, | Activation energy in 103 J·mol−1 | |
---|---|---|---|---|---|---|
[15] | 2–5 | 30–95 | 0.994 | 61.9 ± 5.5 | ||
14 | 65–85 | 8.3–21 | ||||
[9] | 0.3–25 | 30–95 | 0.976 | 67 | ||
[20] | 4.5–8 | 60–95 | 0.972 | 50 ± 4 | ||
[19] | 9 | 30–70 | 0.996 | 50–54 | ||
90–boiling | 8–13 | |||||
[11] | 4–8 | 70–90 | 0.996 | Non-catalyzed reaction, 79.5 ± 6.7 | ||
Catalyzed reaction, 36.8 ± 2.9 | ||||||
[16] | 4–8 | 90–110 (microwave heating) | 0.997 | 73.2 ± 1.8 | ||
[21] | 8 | 90–110 (classic heating) | 0.997 | 50 | ||
90–110 (microwave heating) | 51 | |||||
[22] | 2 | 90–110 (classic heating) | 0.994 | 31.1 | ||
90–110 (microwave heating) | 77.4 | |||||
[8] | 5–8 | 30–40 (thermoelectric device) | 1.000 | 30.0 | ||
40–50 (thermoelectric device) | 77.0 | |||||
50–70 (continuous cell) | 131.2 | |||||
70–90 (continuous cell) | 12.6 | |||||
[17] | 2 | 40–90 | 1.000 | 15 ± 1 |
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