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The experimental design of the modeling of removal process was carried out and results were obtained according to CCD matrix (Table 1).
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On this basis, the model of removal distribution is built for each polishing path, a suitable path spacing algorithm further obtained by the same scallop height, and an effective planning algorithm of tool location is proposed.
This study demonstrates that proper numerical modeling of CT removal through SVE can be achieved using equilibrium evaporation of NAPL if detailed fine-scale knowledge of the CT distribution and physical heterogeneity is incorporated into the model.
We used three layered feed-forward back propagation neural network (4:5:1) for modeling of COD removal (Fig. 2).
Model outputs of removal volume, clean-up duration and cost yield useful information for response and recovery planning purposes.
Sensitivity of the computer model to removal of different features.
The results showed a good fit with the proposed statistical model for removal of o-cresol (R2 = 0.9387) for biosorption and (R2 = 0.9980) for biosorptive foam separation.
In order to develop an effective and accurate design model for removal of dye, adsorption kinetics and equilibrium data are essential basic requirements.
Open image in new window Figure 5 Pseudo-second-order kinetic model for removal of lead ions by MWCNTs (a) and MWCNT-COOH surfaces (b).
The physical model of particle removal by laser-induced surface wave was established to predict the removal area and the processing conditions of laser cleaning.
A simplified mathematical model of the removal process was developed.
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