State Key Laboratory of Hollow Fiber Membrane Materials and Processes, Tianjin Polytechnic University, Tianjin, People's Republic of China.
Ecotoxicology. 2012 Aug;21(6):1753-60. doi: 10.1007/s10646-012-0950-z. Epub 2012 Jun 12.
Manganese (hydr)oxides (MnO(x)) is a powerful oxidant in the oxidation of As(III) in natural environment. Under some circumstances, Mn(II) can be oxidized to MnO(x) which in turn accelerates the oxidation of As(III). However, to the best of our knowledge, little is known regarding how Mn(II) affects the oxidation of both the dissolved and the adsorbed As(III) in aquatic environments. In this study, effects of abiotic oxidation of Mn(II) on the oxidation of As(III) were investigated. Kinetic results as well as TEM and XRD analyses confirmed the formation of amorphous MnO(x) after sorption of Mn(II) on hematite nano-particles under oxic conditions. Mn(II) was oxidized to Mn(III) and then to Mn(IV), and this process was dependent upon pH and Mn(II) concentrations. The newly formed MnO(x) played an important role in the further oxidation of the dissolved and the adsorbed As(III) on hematite, and the oxidation rate of As(III) increased with the rising Mn(II) concentrations. As the adsorbed As(III) was oxidized to As(V), a fraction of As(V) was released into the solution, which increased the mobility of As. The present study reveals that abiotic oxidation of Mn(II) affects the oxidation of As(III) in aquatic environment.
水锰(氢)氧化物(MnO(x))是天然环境中砷(III)氧化的强氧化剂。在某些情况下,Mn(II)可以被氧化为 MnO(x),而 MnO(x) 又可以加速 As(III)的氧化。然而,据我们所知,关于 Mn(II)如何影响水相环境中溶解态和吸附态 As(III)的氧化,人们知之甚少。本研究考察了 Mn(II)的非生物氧化对 As(III)氧化的影响。动力学结果以及 TEM 和 XRD 分析证实,在有氧条件下,Mn(II)在赤铁矿纳米颗粒上吸附后形成了无定形的 MnO(x)。Mn(II)被氧化为 Mn(III),然后氧化为 Mn(IV),这一过程取决于 pH 值和 Mn(II)浓度。新形成的 MnO(x)在赤铁矿上溶解态和吸附态 As(III)的进一步氧化中起着重要作用,并且随着 Mn(II)浓度的升高,As(III)的氧化速率增加。随着吸附态 As(III)被氧化为 As(V),一部分 As(V)被释放到溶液中,增加了 As 的迁移性。本研究揭示了 Mn(II)的非生物氧化会影响水相环境中 As(III)的氧化。