首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Metal-promoted titania photocatalysis for destruction of nitrates and organics from aqueous environments
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Metal-promoted titania photocatalysis for destruction of nitrates and organics from aqueous environments

机译:金属促进的二氧化钛光催化分析,用于破坏水环境中的硝酸盐和有机物

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This review article provides an overview of activities in the rapidly developing field of water purification via photocatalytic methods and focuses on the removal of nitrate ions with simultaneous removal of the hole scavenger. Many of the issues associated with provision of potable water in the developing world may be resolved by the use of simple physical methodologies such as filtration. However, many of the issues associated with water purity in the developed world involve complex, stable molecules present at low concentrations that are nonetheless capable of producing toxic effects in plants and animals and that require more demanding removal technologies. Photocatalytic methods can be operated remotely and often show minimal production of undesired side products. Titania alone shows limitations, not only in terms of the slow rate of photoreduction of nitrate but also in terms of selectivity and the need to employ radiation in the UV region due to the magnitude of the band gap. Key challenges may be defined as: reducing the band gap/increasing absorption in the visible region, enhancing the adsorption capacity/access to the surface sites and reducing the rate of hole/electron recombination. The present article will focus on the use of titania-based materials that involve metal cocatalysts for nitrate reduction.
机译:本综述文章概述了通过光催化方法快速发展的水净化领域的活动,并专注于去除硝酸根离子,同时去除孔清除剂。可以通过使用诸如过滤等简单的物理方法来解决与发展世界中的饮用水相关的许多问题。然而,与发达世界中的水纯度相关的许多问题涉及以低浓度存在的复杂,稳定的分子,这些分子仍然能够在植物和动物中产生毒性作用,并且需要更苛刻的去除技术。光催化方法可以远程操作,并且通常显示出最小的不希望的侧面产品的产生。单独的二氧化钛显示局限性,不仅就硝酸盐的慢速速率而言而且在选择性方面,并且由于带隙的幅度而在UV区域中采用辐射的需要。关键挑战可以定义为:减少可见区域中的带隙/增加吸收,增强了对表面位点的吸附容量/接入并降低了孔/电子复合的速率。本文将重点关注使用基于二氧化钛的材料,该材料涉及金属助催化剂进行硝酸盐还原。

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