Colloidal silica removal in coagulation processes for wastewater reuse in a high-tech industrial park

Author:

Chuang S.H.1,Chang T.C.2,Ouyang C.F.3,Leu J.M.1

Affiliation:

1. Department of Environmental Engineering and Management, Chaoyang University of Technology, Wufeng, Taichung, County 413, Chinese Taiwan

2. Institute of Environmental Planning and Management, National Taipei University of Technology, Taipei, 106, Chinese Taiwan

3. Institute of Environmental Engineering, National Central University, Chungli, 320, Chinese Taiwan

Abstract

Four experiments of coagulation and flocculation were conducted to investigate the characteristics of colloidal silica removal in a high-tech industrial wastewater treatment plant for reclamation and reuse of the effluent. Experimental results illustrated that poly-aluminium chloride (PACl) showed higher performances on colloidal silica removal than alum. Interestingly, the two coagulants demonstrated the same capacity on silica removal. The specific silica removal capacity was approximately 0.135 mg SiO2/mg Al2O3 when the dosage of coagulants was in the range 30–150 mg/L Al2O3. In addition, the silica was reduced significantly at the condition of pH above 8. Experimental data implied that precipitation of aluminium flocs was the major mechanism for colloid silica removal in PACl and alum coagulation, besides, charge adsorption was also important for improving removal efficiency. Moreover, the addition of polyacrylic acid (PAA) as a flocculant could slightly advance silica removal in the PACl coagulation. The combined PACl/PAA/flocs coagulation was effective for the removal of colloidal silica, soluble COD, and turbidity and also suitable as a pretreatment unit in wastewater reclamation and reuse processes.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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