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Self-assembly of immobilized titanate films with different layers for heavy metal ions removal from wastewater: Synthesis, modeling and mechanism

机译:固定化钛酸盐薄膜的自组装,具有不同层的重金属离子从废水中除去:合成,建模和机制

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摘要

In this work, a modified NAH method was developed to synthesize immobilized titanate films with different number of layers by conveniently changing hydrothermal duration. Stable trilayer titanate architectures were first obtained with the middle layer functioning as support for the splitting nanowires during synthesis. A series of characterization methods including SEM, XRD, XPS, TG, FTIR and BET analyses were used to evaluate the properties of these immobilized films. Based on a newly proposed area-based method, the performance of different synthesized films for simultaneous removal of Pb(II), Cu(II) and Cd(II) was systematically investigated and the results exhibited preferential and abundant adsorption of Pb(II) for all the immobilized materials. A multi-potential sorption (MPS) model which combined cation-exchanging and static adsorption was firstly established for modeling the sorption kinetics and the fitting results suggested that the proposed MPS model was precise and reliable. Furthermore, the monolayer adsorption model was utilized to fit the sorption isotherms, which revealed the orientation of adsorbates and endothermic physical interactions. The coordinating mechanisms were further confirmed with the receptor sites derived from deconvoluted XPS O is spectra as well as Na is spectra and the binding modes were clarified by FTIR and XPS. Finally, compared with traditional dispersive titanate powders, the synthesized titanate films were more convenient for separation and exhibited outstanding heavy metal elimination performance, which could be ascribed to the oriented titanate arrangement on the titanium foils. Overall, the low synthetic consumption, high sorption capacity, satisfying selectivity and convenient operation make the newly developed immobilized multilayer titanate films promising materials for the removal of heavy metal ions from wastewater.
机译:在这项工作中,开发了一种改性的NaH方法,通过方便地改变水热持续时间来合成具有不同数量的层的固定的钛酸薄膜。首先用中间层获得稳定的三层钛合金架构作为合成期间对分裂纳米线的支撑。使用包括SEM,XRD,XPS,TG,FTIR和BET分析的一系列表征方法来评估这些固定薄膜的性质。基于新提出的基于区域的方法,系统地研究了用于同时除去Pb(II),Cu(II)和Cd(II)的不同合成膜的性能,结果表现出优先和丰富的Pb(II)的吸附对于所有固定化材料。首先建立了组合阳离子交换和静态吸附的多潜能吸附(MPS)模型,用于对吸附动力学进行建模,拟议的MPS模型精确可靠。此外,使用单层吸附模型以适应吸附等温,揭示吸附剂的取向和吸热物理相互作用。通过衍生自解酚XPS O的受体位点进一步证实配位机制是光谱以及Na是光谱,并且通过FTIR和XPS阐明结合模式。最后,与传统的色散钛酸酯粉相比,合成的钛酸盐薄膜更方便分离,并表现出优异的重金属消除性能,这可以归因于钛箔上的定向钛合金布置。总体而言,合成消耗量低,吸附容量高,令人满意的选择性和操作方便,使新开发的固定化多层钛酸薄膜有希望从废水中除去重金属离子的材料。

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