Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4415805 | Chemosphere | 2006 | 11 Pages |
Abstract
A kinetic model with intrinsic reaction kinetics and a simplified model with apparent reaction kinetics for denitrification in upflow sludge bed (USB) reactors were proposed. USB-reactor performance data with and without sludge wasting were also obtained for model verification. An independent batch study showed that the apparent kinetic constants kâ² did not differ from the intrinsic k but the apparent Ksâ² was significantly larger than the intrinsic Ks suggesting that the intra-granule mass transfer resistance can be modeled by changes in Ks. Calculations of the overall effectiveness factor, Thiele modulus, and Biot number combined with parametric sensitivity analysis showed that the influence of internal mass transfer resistance on the overall nitrate removal rate in USB reactors is more significant than the external mass transfer resistance. The simulated residual nitrate concentrations using the simplified model were in good agreement with the experimental data; the simulated results using the simplified model were also close to those using the kinetic model. Accordingly, the simplified model adequately described the overall nitrate removal rate and can be used for process design.
Related Topics
Life Sciences
Environmental Science
Environmental Chemistry
Authors
Wen-Huei Ting, Ju-Sheng Huang,