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Degradation of bromamine acid by nanoscale zero-valent iron (nZVI) supported on sepiolite

机译:海泡石上负载的纳米级零价铁(nZVI)降解溴胺酸

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摘要

Sepiolite, a natural nano-material, was chosen as a carrier to prepare supported nanoscale zero-valent iron (nZVI). The effects of preparation conditions, including mass ratio of nZVI and activated sepiolite and preparation pH value, on properties of the supported nZVI were investigated. The results showed that the optimal mass ratio of nzvl and sepiolite was 1.12:1 and the optimal pH value was 7. The supported nZVI was characterized by X-ray diffraction (XRD), transmission-electron microscope (TEM) and energy dispersive spectrometer (EDS), and furthermore an analogy model of the supported nZVI was set up. Compared with the nZVI itself, the supported nZVI was more stable in air and possessed better water dispersibility, which were beneficial for the degradation of bromamine acid aqueous solution, The degradation characteristics, such as effects of supported nzVl dosage, initial concentration and initial pH value of the solution on the decolorization efficiency were also investigated. The results showed that in an acidic environment the supported nZVI with a dosage of 2g/L showed high activity in the degradation of bromamine acid with an initial concentration of 1,000 mg/L, and the degree of decolorization could reach up to 98%.
机译:选择一种天然的纳米材料海泡石作为载体,以制备负载型纳米级零价铁(nZVI)。研究了nZVI与活化海泡石的质量比,pH值等制备条件对负载型nZVI性能的影响。结果表明,nzvl和海泡石的最佳质量比为1.12:1,最佳pH值为7。负载的nZVI用X射线衍射(XRD),透射电子显微镜(TEM)和能量分散光谱仪( EDS),并建立了受支持的nZVI的类比模型。与nZVI本身相比,负载型nZVI在空气中更稳定,具有更好的水分散性,有利于溴胺酸水溶液的降解。降解特性如负载的nzVl剂量,初始浓度和初始pH值的影响还研究了溶液的脱色效率。结果表明,在酸性环境中,负载量为2g / L的nZVI在初始浓度为1000 mg / L时对溴胺酸的降解表现出较高的活性,脱色度可达98%。

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