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The maximum removal rate of carbon is 93.20 ± 0.05%.
It maintained this maximum removal rate over a period, and then decreased sharply thereafter.
The highest nitrate removal rate coincided with maximum removal rate of NA and was 3164.7 mg L−1 h−1.
The maximum removal rate occurred at biosorbent dose 0.1 g, biosorbent size 0.250 mm, initial concentration 100 mg/l, temperature 30 °C and contact time 240 min.
The apparent half-saturation constant (Km) and maximum removal rate (Jmax) were 43.8 mg L−1 and 4.11 g m−2 d−1 for these sediments.
In particular, Monod kinetics enables the identification of an absolute maximum removal rate which is necessary to prevent undersizing in design.
Similar(47)
The maximum removal rates have been observed at an acidic pH.
Maximum removal rates for synthetic and industrial effluents of 83% and 92.1% were obtained.
The removal efficiencies of atrazine (ATZ), chemical oxygen demand (COD), phosphorus (PO43--P) and nitrogen (NOx) in optimum condition was more than 95%, 99 %, 98 and 97%and97 the maximum removal rates were 9.5 × 10−3, 99.231, 11.773 and 7.762 mg/L-day, respectively.
The removal efficiency for NH4+-N, NO3−-N and PO43−-P reached as high as 95%, 53% and 89%, whereas the maximum removal rates were 3.41 mg/L-day, 0.20 mg/L-day and 0.8 mg/L-day, respectively.
With the initial nitrogen concentration of 100 mg L−1 h−1, ammonium, nitrate and nitrite removal efficiencies were 81%, 99.9% and 92.8%, while the corresponding maximum removal rates reached as high as 11.6, 15.1 and 11.2 mg L−1 h−1 respectively.
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