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Behavior of Ti-6Al-4 V surfaces after exposure to water disinfected with ionic silver

机译:暴露于离子银消毒的水中的Ti-6Al-4 V表面的行为

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摘要

It is well documented that ionic silver prevents microbial proliferation in water systems, e.g., tanks and piping, reducing health risks and degradation of potable water quality. However, ionic silver interacts with wetted surfaces resulting in depletion of silver ions from water. This study investigates the loss of silver from water when in contact with titanium alloy Ti-6Al-4 V. Use of ionic silver in Ti-6Al-4 V water tanks is one of the options under consideration by National Aeronautics and Space Administration's (NASA) for disinfection of potable water in future long term missions. The present tests resemble real conditions during storage in water tanks regarding the ratio of wetted surface area to liquid volume, silver ions concentration in water as well as temperature and light conditions. In all examined cases, silver ions vanish completely from the water and at the same time traces of vanadium and aluminium mitigate from the solid surface to the water. Extensive SEM and high resolution XPS analyses demonstrate that silver is present on the Ti-6Al-4 V surface in its oxidized form (Ag+ and Ag+++). This could be explained either by the mechanism of galvanic deposition of metallic silver and its subsequent transformation to oxides or by an ion-exchange mechanism whereby silver ions are chemisorbed at negatively charged Ti-O-sites present on the surface of the Ti alloy. All present findings underline the potential risk of not achieving potable water quality standards when water is stored in Ti-6Al-4 V tanks. (C) 2017 Elsevier B.V. All rights reserved.
机译:众所周知,离子银可防止微生物在水系统(例如水箱和管道系统)中扩散,从而降低健康风险并降低饮用水质量。但是,离子银与湿润的表面相互作用,导致水中的银离子耗竭。这项研究调查了与钛合金Ti-6Al-4 V接触时银从水中的损失。在Ti-6Al-4 V水箱中使用离子银是美国航空航天局(NASA)正在考虑的选择之一),以在将来的长期任务中对饮用水进行消毒。关于润湿表面积与液体体积之比,水中银离子浓度以及温度和光照条件,本测试类似于在水箱中存储期间的实际条件。在所有检查过的情况下,银离子均会从水中完全消失,同时,痕量的钒和铝会从固体表面释放到水中。大量的SEM和高分辨率XPS分析表明,银以氧化形式(Ag +和Ag +++)存在于Ti-6Al-4 V表面。这可以通过金属银的电沉积机理及其随后转变成氧化物的机理来解释,也可以通过离子交换机理来解释,其中银离子被化学吸附在Ti合金表面上带负电的Ti-O位置上。现有的所有发现都强调了将水存储在Ti-6Al-4 V储罐中时可能达不到饮用水水质标准的潜在风险。 (C)2017 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Applied Surface Science》 |2018年第ptaa期|763-770|共8页
  • 作者单位

    Aristotle Univ Thessaloniki, Dept Chem, Thessaloniki 54124, Greece;

    Aristotle Univ Thessaloniki, Dept Civil Engn, Thessaloniki 54124, Greece;

    Aristotle Univ Thessaloniki, Dept Civil Engn, Thessaloniki 54124, Greece;

    Aristotle Univ Thessaloniki, Dept Phys, Thessaloniki 54124, Greece;

    ESA ESTEC, POB 299, NL-2200 AG Noordwijk, Netherlands;

    Aristotle Univ Thessaloniki, Dept Civil Engn, Thessaloniki 54124, Greece;

    Aristotle Univ Thessaloniki, Dept Chem, Thessaloniki 54124, Greece;

    Aristotle Univ Thessaloniki, Dept Chem, Thessaloniki 54124, Greece;

    Aristotle Univ Thessaloniki, Dept Chem, Thessaloniki 54124, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Silver deposition; Potable water; International space station; Ti-6Al-4 V;

    机译:银沉积;饮用水;国际空间站;Ti-6Al-4 V;
  • 入库时间 2022-08-18 03:04:38

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