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- W4281617337 endingPage "121364" @default.
- W4281617337 startingPage "121364" @default.
- W4281617337 abstract "The effective removal of persistent organic pollutants such as polychlorinated dibenzo-p-dioxins and dibenzofurans (PCDD/Fs) is highly desired due to their severe harm to environment and human health. This review focuses on the state of the art of eliminating PCDD/Fs precursors, e.g., chlorobenzene or 1,2-dichlorobenzene by adsorption with carbon-based material, metal–organic frameworks, macromolecule organic resin, zeolites, or silica, as well as by catalytic oxidation with noble metals including Pt, Pd, Ru, and transition metal oxides such as MnOX, CeOX, VOX, FeOX. Furthermore, a critical review on the influence of functional groups, pore structures, adsorbates types on adsorption performance of the adsorbents, as well as the effect of intrinsic properties including surface active oxygen or oxygen vacancy, Lewis or Brønsted acid and the extrinsic factors such as heavy metal, H2O, SO2 on oxidation activity, Cl-resistant stability of the catalysts are proposed. We also provide a brief introduction on the effect of acid sites, oxygen vacancies, and heavy metal on the synergistic removal of NOX and chlorinated aromatics. The future perspective and challenge with respect to developing highly effective adsorbents, cost-effective catalysts, and dual-functional adsorbent-catalysts, together with the superior catalysts for the simultaneous removal of chlorinated aromatics with NOX are discussed." @default.
- W4281617337 created "2022-06-13" @default.
- W4281617337 creator A5009755528 @default.
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- W4281617337 creator A5034631079 @default.
- W4281617337 creator A5051578642 @default.
- W4281617337 creator A5090717104 @default.
- W4281617337 date "2022-09-01" @default.
- W4281617337 modified "2023-10-14" @default.
- W4281617337 title "The recent progress on gaseous chlorinated aromatics removal for environmental applications" @default.
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