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Maximum degradation rates for phenol were recorded at 30 °C.
Chi92 displays maximum degradation rates at the CBP21 concentration of 666.67 µM.
On the other hand, the maximum degradation rates were obtained by the isolates BG1, BG4 and PD6 with 8.04, 7.04 and 6.14 mg/l/d, respectively, after 2 days of incubation when MSM supplemented with 50 mg/l chlorpyrifos.
Since maximum degradation rates (vmax) and km values were higher for MTBE (vmax = 2.3 mg/l/d and km = 3.2 mg/l) than for TBA (vmax = 1.35 mg/l/d and km = 0.05 mg/l), TBA significantly accumulated as an intermediate by-product.
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The maximum degradation rate showed in conditions of US UV = 1 3 and US UV = 0 4.
With MM-kinetics a maximum degradation rate of kmax = 12 µg/L/d was determined.
For all air velocity the maximum degradation rate was obtained for loading rates of 40 g m−2 h−1.
The onset and the maximum degradation rate were also assessed at 5% for different Albemarle flame retardants for comparison reason.
According to Singh and Walker [1], maximum degradation rate of fenamiphos and chlorpyrifos by either a BEP consortium or Enterobacter sp. was observed at 35 °C.
An optimum in degradation temperature (corresponding to maximum degradation rate) of 105°C was observed for the entire range of polymer compositions (0 100% PCL) investigated.
The LLA-diester-diol copolymers are thermally stable up to at least 300 °C with the temperature of maximum degradation rate ranging from 380 to 410 °C.
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