首页> 外文会议>Symposium on ferrates : Synthesis, properties, and applications in water and wastewater treatment >Aqueous Ferrate(V) and Ferrate(IV) in Alkaline Medium: Generation and Reactivity
【24h】

Aqueous Ferrate(V) and Ferrate(IV) in Alkaline Medium: Generation and Reactivity

机译:碱性介质中的含水铁酸盐(V)和甲酸酯(IV):产生和反应性

获取原文

摘要

This chapter reviews the generation of ferrate(V) and ferrate(IV) complexes in basic solutions. Ferrate(V) (Fe~VO_4~(3-) is easily produced by the one-electron reduction of the relatively stable Fe~(VI)O_4~(2-) ion. Comparatively, generation of a ferrate(IV) complex via one-electron oxidation of Fe(III) is rather difficult, due to the relative insolubility of Fe(III) hydroxides and the slow oxidation rate. This has resulted in limited studies of the reactivity of ferrate(IV). The most studied aquated ferrate(IV) complex is ferrate(IV)-pyrophosphate. The reactivity of ferrate(IV) and ferrate(V) complexes with inorganic and organic substrates in alkaline solution is presented. The reactions of ferrate(IV)-pyrophosphate complex with pyrophosphate complexes of divalent metal ions are likely occurring through inner-sphere electron transfer. Ferrate(V) reacts with substrates predominantly via a two-electron transfer process to Fe(III). The only known example of one-electron reduction of ferrate(V) is its reactivity with cyanide in which sequential reduction of Fe(V) to Fe(IV) to Fe(III) was demonstrated. The reaction of Fe(V) with cyanide thus provides an opportunity for selective and unambiguous production of quantitative amounts of Fe(IV) in aqueous media.
机译:本章评论在基本解决方案中的毛利(V)和渡口(IV)复合物的生成。通过相对稳定的Fe〜(vi)O_4〜(2-)离子的单电子减少,易于产生的铁乳液(V)(Fe〜VO_4〜(3-)。相互相比,发电(iv)复合物由于Fe(III)氢氧化物和缓慢氧化速率的相对不溶性,Fe(III)的单电子氧化是相当困难的。这导致了对叔酸酯(IV)的反应性的有限研究。最漂亮的水怒(iv)复合物是铁甲酸酯(iv) - 磷酸盐。提出了加氢磷酸酯(IV)和丙酸酯(V)复合物的碱性溶液中的无机和有机底物的反应性。加甲酸酯(IV)与焦磷酸酯复合物的反应可能发生二价金属离子,通过内球电子转移发生。加氢甲酸酯(V)主要通过双电子转移过程与Fe(III)主要反应。唯一已知的铁乳液(V)的电子减少的例子是其与氰化物的反应性,其中序列减少Fe(v)至Fe(IV)至Fe(III )被证明。因此,Fe(v)与氰化物的反应是在水性介质中选择性和明确地生产定量含量的Fe(IV)的机会。

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