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Preparation of composite activated carbon nanofibers (ACNFs) for adsorption of heavy metals

机译:吸附重金属的复合活性炭纳米纤维(ACNFs)的制备

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摘要

The objective of this study is to prepare a new and highly efficient nanomaterial for heavy metals adsorption. Owing to that, activated carbon nanofibers (ACNFs) from precursor polyacrylnitrile (PAN) and manganese oxide (MnO2) have been prepared via electrospinning process for removal of heavy metals (lead and cadmium) from aqueous solution. The PAN/MnO2-based ACNFs were characterized in term of its morphological changes, specific surface area and functional groups analysis using SEM, BET and FTIR analysis respectively. The results showed that the specific surface area (SSA) of the electrospun composite ACNFs was higher than the neat ACNFs which is 499m2/g as compared to 800m2/g. SEM analysis illustrated that composite ACNFs have more compact fibers with presence of MnO2 beads and smaller fiber diameter of 437.2 nm whereas neat ACNFs possessed more aligned nanofibers with average fiber diameter of 575.5 nm. From adsorption study, the removal of Pb (II) and Cd (II) using both ACNF/MnO2 and ACNFs were higher than the commercial GAC with the removal efficiency is 100% for Pb (II) and 97% for Cd (II). The high removal efficiency of ACNFs/MnO2 is attributed by its larger SSA, presence of functional groups that play role in adsorption process such as hyroxyl and carboxyl groups and the role of manganese oxide as adsorbent itself (Han,2006). This excellent adsorption performance of ACNFs exhibits the potential of this composite adsorbent to solve the environmental issue of heavy metal contamination.
机译:这项研究的目的是制备一种新型的高效重金属吸附纳米材料。因此,已经通过电纺丝工艺制备了由前体聚丙烯腈(PAN)和氧化锰(MnO2)制成的活性炭纳米纤维(ACNF),用于从水溶液中去除重金属(铅和镉)。分别基于PAN / MnO2的ACNFs的形态变化,比表面积和使用SEM,BET和FTIR分析进行官能团分析。结果表明,电纺复合ACNFs的比表面积(SSA)高于纯ACNFs,为499m2 / g,高于800m2 / g。 SEM分析表明,复合ACNFs具有更紧密的纤维,存在MnO2珠粒,较小的纤维直径为437.2nm,而纯净的ACNFs具有更多的排列的纳米纤维,平均纤维直径为575.5nm。从吸附研究来看,使用ACNF / MnO2和ACNFs去除Pb(II)和Cd(II)均比市售GAC高,Pb(II)和Cd(II)的去除效率分别为100%和97%。 ACNFs / MnO2的高去除效率归因于其较大的SSA,在吸附过程中起作用的官能团(如羟基和羧基)以及氧化锰本身作为吸附剂的作用(Han,2006)。 ACNF的这种出色的吸附性能展现了这种复合吸附剂解决重金属污染的环境问题的潜力。

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