首页> 外文期刊>Environmental Science: Nano >Formation of Fe(III)-As(V) complexes: effect on the solubility of ferric hydroxide precipitates and molecular structural identification
【24h】

Formation of Fe(III)-As(V) complexes: effect on the solubility of ferric hydroxide precipitates and molecular structural identification

机译:Fe(III)-As(v)复合物的形成:对氢氧化氢沉淀物的溶解性和分子结构鉴定的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Ferric iron (Fe(III)) and arsenate (As(V)) generally co-exist in natural waters. Also, Fe(III) chemicals are widely used for treatment of As(V) in water. This paper reported the existence of Fe(III)-As(V) complexes, which are molecular clusters containing only one iron atom with sizes of less than 1 nm, typically considered as soluble species. The formation of Fe(III)-As(V) complexes varies with the change of pH. Specifically, the soluble Fe(III)-As(V) complex formed at acidic conditions (pH <2) with a Fe : As mole ratio of 1 : 1. When the pH increased to 2-5, Fe(III) and As(V) formed precipitate rather than a soluble complex, which led to a reduced solubility of Fe(III) at pH 2-5. The soluble Fe(III)-As(V) complex again appeared at pH >5 with the Fe : As mole ratio of 1 : 2. DFT calculation identified that these soluble Fe(III)-As(V) complexes were in a monodentate configuration. The chloride was found to be coordinated with the Fe(III)-As(V) complexes, which improved their thermodynamic stability. The existence of these soluble complexes promoted the solubility of Fe(III) at neutral pH (i.e., total soluble Fe(III) increased to 0.73 mM (similar to 41 mg L-1) with an initial 0.1 M Fe(III)). The findings in this study shed new light on the understanding of the transport and fate of Fe(III) and As(V) in natural water systems, as well as the As(V) leaching from the sludge produced in the Fe(III)-based As(V) removal techniques.
机译:铁铁(Fe(III))和砷(AS(v))通常在天然水中共存。此外,Fe(III)化学品广泛用于治疗水中的(v)。本文报道了Fe(III)-As(V)复合物的存在,其是仅含有尺寸小于1nm的铁原子的分子簇,通常被认为是可溶性物种。 Fe(III)-As(v)复合物的形成随pH的变化而变化。具体地,在酸性条件(pH 2)中形成的可溶性Fe(III)-As(V)复合物,其用Fe:作为摩尔比为1:1。当pH增加到2-5,Fe(III)和作为(v)形成沉淀而不是可溶性复合物,其导致Fe(III)在pH 2-5下的溶解度降低。可溶性Fe(III)-As(v)复合物再次出现在pH> 5时用Fe:作为摩尔比为1:2。DFT计算鉴定出这些可溶性Fe(III)-As(v)复合物在单怡中配置。发现氯化物与Fe(III)-As(v)配合物配合,这改善了其热力学稳定性。这些可溶性复合物的存在促进了Fe(III)在中性pH(即,总可溶性Fe(III)升高至0.73mm(类似于41mg L-1),初始0.1M Fe(III))。本研究中的调查结果揭示了对自然水系统的Fe(iii)和As(v)的运输和命运的理解,以及从Fe(III)中产生的污泥的浸出(v)被基于(v)去除技术。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号