Rapid oxidation and immobilization of arsenic by contact glow discharge plasma in acidic solution.

Abstract:

:Arsenic is a priority pollutant in aquatic ecosystem and therefore the remediation of arsenic-bearing wastewater is an important environmental issue. This study unprecedentedly reported simultaneous oxidation of As(III) and immobilization of arsenic can be achieved using contact glow discharge process (CGDP). CGDP with thinner anodic wire and higher energy input were beneficial for higher As(V) production efficiency. Adding Fe(II) in CGDP system significantly enhanced the oxidation rate of As(III) due to the generations of additional OH and Fe(IV) species, accompanied with which arsenic can be simultaneously immobilized in one process. Arsenic immobilization can be favorably obtained at solution pH in the range of 4.0-6.0 and Fe(II) concentration from 250 to 1000 μM. The presence of organics (i.e., oxalic acid, ethanol and phenol) retarded the arsenic immobilization by scavenging OH or complexing Fe(III) in aqueous solution. On the basis of these results, a mechanism was proposed that the formed ionic As(V) rapidly coprecipitated with Fe(III) ions or was adsorbed on the ferric oxyhydroxides with the formation of amorphous ferric arsenate-bearing ferric oxyhydroxides. This CGDP-Fenton system was of great interest for engineered systems concerned with the remediation of arsenic containing wastewater.

journal_name

Chemosphere

journal_title

Chemosphere

authors

Jiang B,Hu P,Zheng X,Zheng J,Tan M,Wu M,Xue Q

doi

10.1016/j.chemosphere.2014.12.056

subject

Has Abstract

pub_date

2015-04-01 00:00:00

pages

220-6

eissn

0045-6535

issn

1879-1298

pii

S0045-6535(14)01498-2

journal_volume

125

pub_type

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