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首页> 外文期刊>Chemical engineering journal >Influence of particle size of zero-valent iron and dissolved silica on the reactivity of activated persulfate for degradation of acid orange 7
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Influence of particle size of zero-valent iron and dissolved silica on the reactivity of activated persulfate for degradation of acid orange 7

机译:零价铁和溶解二氧化硅的粒径对活化过硫酸盐降解酸性橙7的反应性的影响

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The environmental impact caused by azo dyes such as acid orange 7 (AO7) is currently a major concern, mainly due to their toxicity, potential carcinogenic nature and difficult degradation. This research described the heterogeneous reactions of persulfate with milli-ZVI (1 mm), micro-ZVI (150 μm) and nano-ZVI (50 nm) under various experimental conditions. The results demonstrated that the combination of persulfate with ZVI was efficient in promoting the degradation of AO7 with the pseudo first-order and second-order kinetics reaction, and different ZVI types exhibited respective level of ability to activate persulfate to degrade acid orange 7, which was ranged as nano-ZVI > micro-ZVI > milli-ZVI. However, the presence of dissolved SiO2 decreased the AO7 degradation ratio and prolonged the persulfate half-life. The iron corrosion products coating on the ZVI after reaction was comprised of α-Fe2O3, Fe3O4 and α-FeO-OH with some Fe8O8(OH)6SO4, which was identified by Raman spectroscopy, X-ray diffraction (XRD) and Fourier transform infrared (FTIR). With the presence of SiO2, surface complexes of ≡FeH3SiO4 or ≡FeH2SiO_4~- for binding of silicates were formed. These observations indicated that the dissolved SiO2 in the ZVI activated persulfate system affected the corrosion of iron, altered the surface area with the adsorption of SiO2, and appeared to influence the decomposition of persulfate and AO7.
机译:目前,由偶氮染料如酸性橙7(AO7)引起的环境影响是一个主要问题,主要是由于它们的毒性,潜在的致癌性和难降解性。这项研究描述了过硫酸盐与毫-ZVI(1 mm),微型-ZVI(150μm)和纳米-ZVI(50 nm)在各种实验条件下的异质反应。结果表明,过硫酸盐和ZVI的组合可以有效地促进AO7的降解,具有拟一级动力学和二级动力学反应,并且不同的ZVI类型分别具有激活过硫酸盐降解酸性橙7的能力。范围为纳米ZVI>微型ZVI>毫ZVI。但是,溶解的SiO2的存在降低了AO7的降解率并延长了过硫酸盐的半衰期。反应后ZVI上的铁腐蚀产物涂层由α-Fe2O3,Fe3O4和α-FeO​​-OH以及一些Fe8O8(OH)6SO4组成,通过拉曼光谱,X射线衍射(XRD)和傅里叶变换红外光谱鉴定(FTIR)。在SiO2存在的情况下,形成用于结合硅酸盐的SiOFeH3SiO4或≡FeH2SiO_4-的表面配合物。这些观察结果表明,ZVI活化的过硫酸盐体系中溶解的SiO2影响了铁的腐蚀,随着SiO2的吸附改变了表面积,并似乎影响了过硫酸盐和AO7的分解。

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