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Temperature corresponding to maximum rate of degradation (TMax) and maximum rate of degradation for various nanocomposites are reported in Table 6.
The peak indicates the temperature (Tmax) at a maximum rate of degradation.
All polyesters exhibit a good thermal stability, exceeding 280 °C, with a maximum rate of degradation around 380 °C.
It has been experimental that the decolorization efficiency increases with increasing pH exhibiting a maximum rate of degradation at pH 11 and 9.
It has been observed that for RO4, the decolorization efficiency increases with increase in pH exhibiting maximum rate of degradation at pH 11.
Subsequently, C/N 30 yielded highest r m value (114.9425) concludes the maximum rate of degradation which might be due to regular aeration and optimal nutrients balance occurred.
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The maximum rates of degradation and corresponding temperatures for various nanocomposites are reported in Table 5.
The temperature of maximum rate of degradation,T Max, is marginally shifted by 3 and 8 °C for EVA-1F and EVA-4F, respectively.
The maximum rate of cyanide degradation was reported to be 700 mg L−1 by (Wu et al. 2014).
The FRQ degradation is given by the Michaelis rate function f d = v d (#FRQ/(K d + #FRQ)), where v d is the maximum rate of FRQ degradation and the Michaelis constant related to this process is K d.
Within the parameter space analysed here, the parameters v mB (maximum rate of Bmal1 mRNA degradation), v mC (maximum rate of Cry mRNA degradation) and v mP (maximum rate of Per mRNA degradation) had the highest correlation to the circadian clock state variables along the first three global NPLSR factors, both in the inverse and classical metamodelling.
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