Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, PR China.
Chemosphere. 2011 May;83(7):1020-7. doi: 10.1016/j.chemosphere.2011.01.066. Epub 2011 Feb 26.
Ferric and manganese binary oxide (FMBO) has been successfully used to remediate arsenic-polluted river, but there still lacks sufficient data to evaluate its effects on environments. The release behaviors of iron (Fe), manganese (Mn), and arsenic (As) in different E(h) ranges were investigated for As-bearing FMBO sediment after remediating As-polluted DaSha River by FMBO. Under high E(h) range (+550 to +400 mV), slight dissolution of Fe and Mn, which corresponded to 12.2% and 25.6%, and less than 5% of As release were observed in 336 h. Under lower E(h) range (+50 to -100 mV), elevated extent of the dissolution of Mn and Fe were observed, which corresponded to as high as 61.3% and 70.1%. Under such conditions, the dissolution rate of Mn was higher than that of Fe. Furthermore, from the established relationship of As release and the dissolution of Fe and Mn, the release of As seemed dominated by the dissolution of Fe. X-ray photoelectron spectroscopy (XPS) analysis demonstrated the release of Fe, Mn, As(III), and As(V) after sodium ascorbate-treatment, and the re-adsorption of As(V), as indicated from the increased binding energy of As 3d from 44.78 to 45.83 eV. Surface element composition analysis indicated significant decrease of Mn from 3.22% to 0.54%, slight increase of Fe from 12.45% to 13.67%, and elevated ratio of As from 0.11% to 0.32% accordingly. The main reactions of Fe and Mn dissolution and the pathways of As release under different E(h) ranges were also proposed.
铁锰二元氧化物(FMBO)已成功用于修复砷污染河流,但对于 FMBO 修复砷污染大沙河后,其对环境的影响仍缺乏足够的数据评估。本研究通过向含砷 FMBO 沉积物中施加不同的 Eh 值范围(+550 至+400 mV 和+50 至-100 mV),研究了 FMBO 修复砷污染河流后不同 Eh 值范围下铁(Fe)、锰(Mn)和砷(As)的释放行为。在高 Eh 值范围(+550 至+400 mV)下,336 h 内观察到 Fe 和 Mn 的轻微溶解,分别对应 12.2%和 25.6%,释放的 As 小于 5%。在较低 Eh 值范围(+50 至-100 mV)下,Mn 和 Fe 的溶解程度显著增加,分别高达 61.3%和 70.1%。在这种情况下,Mn 的溶解速率高于 Fe。此外,从建立的 As 释放与 Fe 和 Mn 溶解的关系来看,As 的释放似乎主要受 Fe 溶解的控制。X 射线光电子能谱(XPS)分析表明,经抗坏血酸钠处理后释放出 Fe、Mn、As(III)和 As(V),并通过 As 3d 结合能从 44.78 增加到 45.83 eV,表明 As(V)的重新吸附。表面元素组成分析表明,Mn 从 3.22%显著减少到 0.54%,Fe 从 12.45%轻微增加到 13.67%,As 相应地从 0.11%增加到 0.32%。还提出了不同 Eh 值范围下 Fe 和 Mn 溶解的主要反应和 As 释放途径。