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Hydrogen sulfide removal from sediment and water in box culverts/storm drains by iron-based granules

机译:铁基颗粒去除箱涵/雨水渠中沉积物和水中的硫化氢

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摘要

A renewable granular iron-based technology for hydrogen sulfide removal from sediment and water in box culverts and storm drains is discussed. Iron granules, including granular ferric hydroxide (GFH), granular ferric oxide (GFO) and rusted waste iron crusts (RWIC) embedded in the sediment phase removed aqueous hydrogen sulfide formed from sedimentary biological sulfate reduction. The exhausted iron granules were exposed to dissolved oxygen and this regeneration process recovered the sulfide removal capacities of the granules. The recovery is likely attributable to the oxidation of the ferrous iron precipitates film and the formation of new reactive ferric iron surface sites on the iron granules and sand particles. GFH and RWIC showed larger sulfide removal capacities in the sediment phase than GFO, likely due to the less ordered crystal structures on their surfaces. This study demonstrates that the iron granules are able to remove hydrogen sulfide from sediment and water in box culverts and storm drains and they have the potential to be regenerated and reused by contacting with dissolved oxygen.
机译:讨论了一种可再生的基于铁颗粒的技术,用于去除箱形涵洞和雨水渠中的沉积物和水中的硫化氢。包含在沉淀相中的铁颗粒,包括颗粒状氢氧化铁(GFH),颗粒状三氧化二铁(GFO)和生锈的废铁结皮(RWIC),去除了由沉积生物硫酸盐还原形成的硫化氢水溶液。将耗尽的铁颗粒暴露于溶解氧中,并且该再生过程恢复了颗粒的硫化物去除能力。回收可能归因于亚铁沉淀薄膜的氧化以及铁颗粒和沙粒上新的反应性三价铁表面部位的形成。 GFH和RWIC在沉积相中显示出比GFO更大的硫化物去除能力,这可能是由于它们表面上的晶体结构较不规则。这项研究表明,铁颗粒能够去除箱形涵洞和雨水渠中沉积物和水中的硫化氢,并且通过与溶解氧接触可以再生和再利用。

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