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In situ synthesis of hierarchical structured cotton fibers/MnO2 composites: a versatile and recyclable device for wastewater treatment

机译:分层结构化棉纤维/ MnO 2 复合材料的原位合成:一种多功能的可回收废水处理装置

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To improve the feasibility of MnO2 nanoparticles for applications in wastewater treatment, cotton fibers–MnO2 hierarchical composites (C-MHCs) were fabricated via a new and efficient two-step strategy. The as-prepared C-MHCs were characterized by FTIR, XPS, XRD, SEM and TEM analyses, and the results show that the C-MHCs possess hierarchical structure with a monolayer coverage of MnO2 nanoparticles on the cotton fiber surfaces. The batch adsorption experiments were executed as a function of pH value, contact time and initial concentration. Adsorption behavior followed the pseudo-second-order model (R2 > 0.99) and Langmuir isotherm, with Langmuir maximum adsorption capacity of 68.3, 174.2, 109.4 and 247.0 mg g?1 for Cu2+, Pb2+, CR and MB, respectively. The regeneration experiments show that more than 85% of the initial adsorption amount was retained at the 5th sequential adsorption–desorption cycle. Considering the simple and facile fabrication process, all-round adsorption feasibility and high-efficiency regeneration performance, the C-MHCs are believed to be a versatile and renewable candidate for wastewater treatment.
机译:为了提高MnO 2 纳米颗粒用于废水处理的可行性,棉纤维–MnO 2 分层复合材料( C-MHCs)是通过一种新的有效的两步策略来制造的。通过FTIR,XPS,XRD,SEM和TEM分析对所制备的C-MHC进行了表征,结果表明,C-MHC具有层次结构,单层覆盖MnO 2 棉纤维表面上的纳米颗粒。分批吸附实验作为pH值,接触时间和初始浓度的函数进行。吸附行为遵循伪二级模型( R 2 2 + ,Pb 2 +,109.4和247.0 mg g ?1 ,CR和MB。再生实验表明,在第5个 顺序吸附-解吸循环中,保留了超过85%的初始吸附量。考虑到简单,容易的制造工艺,全面的吸附可行性和高效的再生性能,C-MHC被认为是用于废水处理的通用且可再生的候选产品。

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