This study evaluated and optimized the removal of polyester microplastics (MPs) from water by electrocoagulation (EC), while developing a predictive model and estimating operating cost. Synthetic effluent containing polyester MPs (51–150 µm) was treated in a batch EC system using iron electrodes, direct current, magnetic stirring, and NaCl as a supporting electrolyte. A full factorial 2 5 design (32 runs) was first applied to assess the effects of pH, voltage, operation time, NaCl concentration, and initial MPs concentration. Subsequently, a Box–Behnken design (15 runs) was used to optimize the most influential variables. Screening experiments showed high removal efficiencies ranging from 80% to 100%, identifying MPs concentration, NaCl concentration, and operation time as the dominant factors. The regression model showed strong predictive performance, with R 2 = 0. 9852 and adjusted R 2 = 0. 9655. Under optimized conditions of 200 mg L -1 MPs, 363. 64 mg L -1 NaCl, and 18. 38 min, complete MPs removal was achieved, with an estimated operating cost of US0. 57 m -3. These results indicate that EC is an efficient and low-cost strategy for polyester MPs removal, although validation in real effluents remains necessary.
Valdiviezo-Gonzales et al. (Fri,) studied this question.