Comparison of the Fe 2+ /H 2 O 2 and Fe 2+ /PMS systems in simulated sludge: Removal of PAHs, migration of elements and formation of chlorination by-products.

JOURNAL OF HAZARDOUS MATERIALS(2020)

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Abstract
In this study, polycyclic aromatic hydrocarbons (PAHs) at practical concentrations in the simulated sludge treated by the Fe2+/H2O2 and Fe2+/peroxymonosulfate (PMS) systems were evaluated in terms of the PAHs (phenanthrene, anthracene, fluoranthene) removal, element migration, Cl- effect, and chlorination by-product formation. The results indicated that according to the removal rate of PAHs, the optimal dosage of the Fe2+/PMS system (Sigma PAHs removal rate was 64.66 +/- 2.82 %) was 1/30 of that for the Fe2+/H2O2 system (Sigma PAHs removal rate was 78.63 +/- 0.38 %). The elemental contents in the simulated sludge were mainly affected by the extent of advanced oxidation and the amount of generated iron flocs. By studying the PAHs removal, free chlorine formation, total organochlorine content, and PAHs products in Fe2+/H2O2/Cl- and Fe2+/PMS/Cl- systems, it was found that chlorine radicals (center dot Cl) had high reactivity with phenanthrene and fluoranthene, whereas dichloride anion radicals (Cl-2(center dot-)) exhibited the opposite behavior. Furthermore, PAHs were oxidized by center dot Cl and hydroxyl radical in the Fe2+/H2O2/Cl- system, whereas PAHs and their products were chlorinated by free chlorine and center dot Cl in the Fe2+/PMS/Cl- system to six chlorinated by-products such as Cl-PAHs (9-Cl-phenanthrene, 2-Cl-anthracene, 9,10-Cl-2-anthracene, 3-Cl-fluoranthene). These results provide some useful suggestions for the safe advanced oxidation process treatment of textile dyeing sludge.
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Key words
Textile dyeing sludge,Advanced oxidation process,Element migration,Polycyclic aromatic hydrocarbons (PAHs),Chlorination by-product
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