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首页> 外文期刊>Journal of environmental sciences >Stabilization of Fe~0 nanoparticles with silica fume for enhanced transport and remediation of hexavalent chromium in water and soil
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Stabilization of Fe~0 nanoparticles with silica fume for enhanced transport and remediation of hexavalent chromium in water and soil

机译:硅粉对Fe〜0纳米颗粒的稳定作用,以增强水和土壤中六价铬的运输和修复

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Effective in situ remediation of Cr(VI) in groundwater requires the successful delivery of reactive iron particles to the subsurface. Fe~0 nanoparticles (20-110 nm diameter) supported on silica fume were synthesized by borohydride reduction of an aqueous iron salt in the presence of a support material. The experimental result showed that attachment of Fe~0 nanoparticles on the commercial available sub-micrometer silica fume prevented them from aggregation while maintaining the particle reactivity. When the Fe~0 concentration was 0.4 g/L, 88.00% of 40 mg/L Cr(VI) was removed by silica fume-supported Fe~0 nanoparticles (SF-Fe~0) in 120 min, 22.55% higher than unsupported Fe~0. Furthermore, transport experiments confirmed that almost all unsupported Fe~0 was retained, whereas 51.50% and 38.29% of SF-Fe~0 were eluted from the vertical and horizontal sand column, respectively. Additionally, the effect of solution ionic strength on the transport ability of SF-Fe~0 was evaluated. The result showed that increase in the salt concentration led to a decrease in the mobility and also the divalent ion Ca~(2+) had a greater effect than that of monovalent ion Na~+.
机译:有效地原位修复地下水中的Cr(VI)要求将反应性铁颗粒成功地输送到地下。负载在硅粉上的Fe〜0纳米粒子(直径20-110 nm)是通过在载体材料存在下硼氢化还原铁盐水溶液而合成的。实验结果表明,Fe〜0纳米颗粒附着在市售的亚微米硅粉上可防止其聚集,同时保持颗粒的反应活性。当Fe〜0浓度为0.4 g / L时,硅粉负载的Fe〜0纳米粒子(SF-Fe〜0)在120分钟内去除了88.00%的40 mg / L Cr(VI),比未负载的高22.55%。铁〜0此外,运输实验证实,几乎所有未支撑的Fe〜0均被保留,而SF-Fe〜0的51.50%和38.29%分别从垂直和水平砂柱上洗脱。另外,评估了溶液离子强度对SF-Fe〜0迁移能力的影响。结果表明,盐浓度的增加导致迁移率的降低,并且二价离子Ca〜(2+)的作用大于一价离子Na〜+。

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