4.7 Article

Trace organic contaminants abatement by permanganate/bisulfite pretreatment coupled with conventional water treatment processes: Lab and pilot-scale tests

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 401, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jhazmal.2020.123380

Keywords

Permanganate; Bisulfite; Trace organic contaminants; Pretreatment; Real water

Funding

  1. National Natural Science Foundation of China [21976133, 21876129]
  2. National Water Pollution Control and Treatment Science and Technology Major Project [2017ZX07201-005]
  3. Taishan Scholars Program of Shandong Province [tsqn201909019]

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The study investigated the abatement of TrOCs in real waters using the PM/BS process and evaluated its feasibility as a pretreatment process. The results showed that the removal efficiency of TrOCs was influenced by the concentration of dissolved organic matter and halide ions. The PM/BS process showed advantages and could be combined with traditional water treatment processes.
Bisulfite-activated permanganate (PM/BS) process has proven to be a promising method for trace organic contaminants (TrOCs) abatement. However, to our knowledge, most previous studies on PM/BS process were limited in synthetic water at lab-scale. Hence, the performance of TrOCs abatement by PM/BS process was investigated in real waters in this study, and for the first time, its feasibility as a pretreatment process was evaluated at pilot-scale. The lab-scale results indicated that almost all tested TrOCs could be completely removed from pure water, while their removal efficiencies varied widely from 20 % to 90 % in real waters. Correlation analysis suggested that TrOCs abatement decreased linearly with increasing concentration of dissolved organic matter (DOM) and halide ions in real waters. The TrOCs with electron-donating groups were more likely to be decomposed in PM/BS process. The PM/BS pretreatment produced MnO2 and decreased the aromatic signal of the DOM, which enhanced the removal of DOM during subsequent coagulation-sedimentation processes. Comparing with ozonation, chlorination, and permanganate processes, PM/BS process showed some advantages in terms of TrOCs abatement and operating costs. Furthermore, the pilot-scale experiment confirmed that PM/BS process combined with traditional water treatment processes could achieve excellent TrOCs abatement (greater than 84%).

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