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Selective copper extraction by multi-modified mesoporous silica material, SBA-15

机译:通过多改性介孔二氧化硅材料SBA-15选择性萃取铜

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Selective copper (Cu) recovery fromwastewater mitigates environmental pollution and is economically valuable. Mesoporous silica adsorbents, SBA-15, with amine-grafting (SBA-15-NH2) and manganese loading along with amine-grafting (Mn-SBA-15-NH2) were fabricated using KMnO4 and 3-aminopropyltriethoxysilane. The characteristics of the synthesized adsorbents were evaluated in detail in terms of its crystal structure peaks, surface area and pore size distribution, transmission electron microscope and X-ray photoelectron spectroscopy. The results established the 2.08mmol/g of Cu adsorption capacity onMn-SBA-15-NH2. Furthermore, in a mixed heavy metal solution, high selective Cu adsorption capacity on Mn-SBA-15-NH2 (2.01mmol/g) was achieved while maintaining 96% adsorption amount as that of a single Cu solution. Comparatively, Cu adsorption on SBA-15-NH2 decreased by half due to high competition with other heavy metals. Optimal Cu adsorption occurred at pH 5. This pH condition enabled grafted amine group inMn-SBA-15-NH2 to form strong chelating bonds with Cu, avoiding protonation of amine group (below pH 5) as well as precipitation (above pH 5). The adsorption equilibrium well fitted to Langmuir and Freundlich isotherm models, while kinetic results were represented by models of linear driving force approximation (LDFA) and pore diffusion model (PDM). High regeneration and reuse capacity of Mn-SBA-15-NH2 were well established by its capacity to maintain 90% adsorption capacity in a multiple adsorption-desorption cycle. Cu was selectively extracted from Mn-SBA-15-NH2 with an acid solution. (C) 2019 Elsevier B.V. All rights reserved.
机译:从废水中选择性回收铜(Cu)可减轻环境污染,并且具有经济价值。使用KMnO4和3-氨基丙基三乙氧基硅烷制造了带胺接枝的中孔二氧化硅吸附剂SBA-15(SBA-15-NH2)和带有胺接枝的锰负载(Mn-SBA-15-NH2)。通过晶体结构峰,表面积和孔径分布,透射电子显微镜和X射线光电子能谱对合成吸附剂的特性进行了详细评估。结果建立了在Mn-SBA-15-NH2上2.08mmol / g的Cu吸附能力。此外,在混合重金属溶液中,在保持Mn-SBA-15-NH 2(2.01mmol / g)的高选择性Cu吸附容量的同时,保持了单一Cu溶液的96%吸附量。相比之下,由于与其他重金属的激烈竞争,SBA-15-NH2上的铜吸附量减少了一半。在pH 5时发生最佳的Cu吸附。此pH条件使Mn-SBA-15-NH2中的接枝胺基与Cu形成牢固的螯合键,避免了胺基的质子化(pH 5以下)和沉淀(pH 5以上)。吸附平衡非常适合Langmuir和Freundlich等温模型,而动力学结果则由线性驱动力逼近模型(LDFA)和孔扩散模型(PDM)表示。 Mn-SBA-15-NH2具有很高的再生和再利用能力,因为它在多个吸附-解吸循环中可保持90%的吸附能力。用酸溶液从Mn-SBA-15-NH 2中选择性地提取Cu。 (C)2019 Elsevier B.V.保留所有权利。

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