Evaluation of the potentials of humic acid removal in water by gas phase surface discharge plasma

Degradation of humic acid (HA), a predominant type of natural organic matter in ground water and surface waters, was conducted using a gas phase surface discharge plasma system. HA standard and two surface waters (Wetland, and Weihe River) were selected as the targets. The experimental results showe...

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Veröffentlicht in:Water research (Oxford) 2016-02, Vol.89, p.28-38
Hauptverfasser: Wang, Tiecheng, Qu, Guangzhou, Ren, Jingyu, Yan, Qiuhe, Sun, Qiuhong, Liang, Dongli, Hu, Shibin
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Sprache:eng
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Zusammenfassung:Degradation of humic acid (HA), a predominant type of natural organic matter in ground water and surface waters, was conducted using a gas phase surface discharge plasma system. HA standard and two surface waters (Wetland, and Weihe River) were selected as the targets. The experimental results showed that about 90.9% of standard HA was smoothly removed within 40 min's discharge plasma treatment at discharge voltage 23.0 kV, and the removal process fitted the first-order kinetic model. Roles of some active species in HA removal were studied by evaluating the effects of solution pH and OH radical scavenger; and the results presented that O3 and OH radical played significant roles in HA removal. Scanning electron microscope (SEM) and FTIR analysis showed that HA surface topography and molecular structure were changed during discharge plasma process. The mineralization of HA was analyzed by UV–Vis spectrum, dissolved organic carbon (DOC), specific UV absorbance (SUVA), UV absorption ratios, and excitation-emission matrix (EEM) fluorescence. The formation of disinfection by-products during HA sample chlorination was also identified, and CHCl3 was detected as the main disinfection by-product, but discharge plasma treatment could suppress its formation to a certain extent. In addition, approximately 82.3% and 67.9% of UV254 were removed for the Weihe River water and the Wetland water after 40 min of discharge plasma treatment. [Display omitted] •Surface discharge plasma is proposed to remove HA from natural water.•HA removal efficacy under various experimental conditions is evaluated.•Roles of active species in HA removal are discussed.•HA surface topography, structure and mineralization are analyzed after treatment.•Formation of disinfection by-products during HA chlorination is identified.
ISSN:0043-1354
1879-2448
DOI:10.1016/j.watres.2015.11.039