首页> 外文期刊>Journal of Environmental Engineering >Surface characteristics of sorptive-filtration storm water media. II: Higher specific gravity (rho(s)> 1.0) oxide-coated fixed media
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Surface characteristics of sorptive-filtration storm water media. II: Higher specific gravity (rho(s)> 1.0) oxide-coated fixed media

机译:吸附过滤雨水介质的表面特征。 II:更高的比重(rho(s)> 1.0)氧化物涂层固定介质

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Most current control strategies for storm water treatment utilize fixed or filter-bed media with specific gravity (rho (s)) greater than 1.0. In contrast to Part I, Part II focuses on such higher density (rho (s) > 1.0) manganese-oxide-coated media that can be used in combined unit operations and processes for in-situ treatment of storm water. Methods were developed to coat manganese oxides onto sand and cementitious media for storm water treatment. With respect to manganese, coatings of ramsdellite produced a point of zero charge (PZC) of 5.2, while mixtures of birnessite and cryptomelane produced a PZC of 2.6 Manganese oxide increased the specific surface area (SSA) of sand and cementitious media. Manganese-oxide-coated sand (MOCS) produced a larger SSA (2.48-m(2)/g), as compared with birnessite-coated media (BCM) (1.51 m(2)/g), while the two have a similar surface charge (PZC = 6.4). Manganese-oxide-coated cementitious media (MOCM) produced a significantly larger SSA (19.49 m(2)/g), as compared with coated sand, and SEM analyses indicated the surface contained manganese oxide and calcite of thickness 10-30 mum. Based on the results, coated cementitious media provided surface characteristics that can significantly enhance filtration and adsorption of heavy metal in storm water, in comparison to sand. [References: 17]
机译:当前用于雨水处理的大多数控制策略都使用比重(rho)大于1.0的固定或滤床介质。与第I部分相反,第II部分重点介绍了这种密度较高(rho(s)> 1.0)的氧化锰涂层介质,该介质可用于组合单元操作和原位处理雨水的过程。开发了将锰氧化物涂覆在沙子和水泥质介质上用于雨水处理的方法。关于锰,斜方锰矿的涂层产​​生的零电荷点(PZC)为5.2,而水钠锰矿和隐锰烷的混合物产生的PZC为2.6锰氧化物增加了沙子和胶凝介质的比表面积(SSA)。与水钠锰矿涂层介质(BCM)(1.51 m(2)/ g)相比,氧化锰涂层的砂(MOCS)产生更大的SSA(2.48-m(2)/ g),而两者具有相似的表面电荷(PZC = 6.4)。与涂层砂相比,氧化锰涂层胶凝介质(MOCM)产生的SSA明显更大(19.49 m(2)/ g),并且SEM分析表明表面含有氧化锰和方解石,厚度为10-30微米。根据结果​​,与沙子相比,涂覆的胶结介质提供的表面特性可以显着增强雨水中重金属的过滤和吸附。 [参考:17]

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