Department of Earth System Sciences, Yonsei University , 50 Yonsei-ro, Seodaemun-gu, Seoul 120-749, Republic of Korea.
Environ Sci Technol. 2014 Sep 16;48(18):10760-8. doi: 10.1021/es503018u. Epub 2014 Sep 2.
We examined the feasibility of Cr(OH)3(s) oxidation mediated by surface catalyzed Mn(II) oxidation under common groundwater pH conditions as a potential pathway of natural Cr(VI) contaminations. Dissolved Mn(II) (50 μM) was reacted with or without synthesized Cr(OH)3(s) (1.0 g/L) at pH 7.0-9.0 under oxic or anoxic conditions. Homogeneous Mn(II) oxidation by dissolved O2 was not observed at pH ≤ 8.0 for 50 days. At pH 9.0, by contrast, dissolved Mn(II) was completely removed within 8 days and precipitated as hausmannite. When Cr(OH)3(s) was present, this solid was oxidized and released substantial amounts of Cr(VI) as dissolved Mn(II) was added into the suspension at pH ≥ 8.0 under oxic conditions. Production of Cr(VI) was attributed to Cr(OH)3(s) oxidation by a newly formed Mn oxide via Mn(II) oxidation catalyzed on Cr(OH)3(s) surface. XANES results indicated that this surface-catalyzed Mn(II) oxidation produced a mixed valence Mn(III/IV) solid phase. Our results suggest that toxic Cr(VI) can be naturally produced via Cr(OH)3(s) oxidation coupled with the oxidation of dissolved Mn(II). In addition, this study evokes the potential environmental hazard of sparingly soluble Cr(OH)3(s), which has been considered the most common and a stable remediation product of Cr(VI) contamination.
我们研究了在常见地下水 pH 值条件下,表面催化 Mn(II)氧化介导的 Cr(OH)3(s)氧化作为自然 Cr(VI)污染的潜在途径的可行性。在 pH 值为 7.0-9.0 下,在有氧或缺氧条件下,将 50 μM 的溶解 Mn(II)与或不与 1.0 g/L 的合成 Cr(OH)3(s)反应。在 pH ≤ 8.0 下,50 天内没有观察到溶解 O2 对 Mn(II)的均匀氧化。相比之下,在 pH 9.0 下,在 8 天内完全去除了溶解的 Mn(II),并沉淀为水锰矿。当存在 Cr(OH)3(s)时,当在有氧条件下将溶解的 Mn(II)添加到悬浮液中时,该固体被氧化并释放出大量的 Cr(VI),因为 pH 值≥8.0。Cr(VI)的产生归因于通过 Mn(II)在 Cr(OH)3(s)表面上的氧化来氧化新形成的 Mn 氧化物。XANES 结果表明,这种表面催化的 Mn(II)氧化产生了一种混合价态 Mn(III/IV)固相。我们的结果表明,有毒的 Cr(VI)可以通过 Cr(OH)3(s)氧化与溶解 Mn(II)的氧化耦合自然产生。此外,这项研究引发了对难溶 Cr(OH)3(s)的潜在环境危害的关注,Cr(OH)3(s)一直被认为是 Cr(VI)污染的最常见和稳定的修复产物。