Interdisciplinary Research Academy, Zhejiang Shuren University, Hangzhou, 310021, PR China.
College of Environment, Zhejiang University of Technology, Hangzhou, 310032, PR China.
Chemosphere. 2021 Oct;281:130718. doi: 10.1016/j.chemosphere.2021.130718. Epub 2021 May 14.
Multi walled carbon nanotubes (MWCNTs) have attracted more and more attention as adsorbents due to their excellent adsorption properties. By loading metal particles on MWCNTs, the chemical reduction ability of adsorbed pollutants could be provided, so as to achieve the purpose of adsorption and degradation of pollutants. Therefore, the removal process of NO-N by Fe-Pd-FeO/MWCNTs was studied, including rapid adsorption of initial pollutants, gradual reduction of intermediate products and re-adsorption of final products. The results showed that Fe-Pd-FeO/MWCNTs completely removed NO-N within 2 h, 39% and 25% of which were converted into NO-N and NH-N. The adsorption efficiency, kinetics, capacity and adsorption energy all followed the order of NH-N > NO-N > NO-N. With the recoverability and reusability of Fe-Pd-FeO/MWCNTs having been confirmed in 5 consecutive cycles, the removal rate of NO-N still reached 43%. It has been shown that MWCNTs prolonged the reducing power for NO-N, due to avoiding the aggregation of metal particles. The rapid adsorption of initial pollutants, effective stepwise reduction and convenient recovery processes were of great value for the rehabilitation of polluted water.
多壁碳纳米管 (MWCNTs) 由于其优异的吸附性能而越来越受到关注,可用作吸附剂。通过在 MWCNTs 上负载金属颗粒,可以提供吸附污染物的化学还原能力,从而达到吸附和降解污染物的目的。因此,研究了 Fe-Pd-FeO/MWCNTs 对 NO-N 的去除过程,包括初始污染物的快速吸附、中间产物的逐步还原和最终产物的再吸附。结果表明,Fe-Pd-FeO/MWCNTs 在 2 h 内完全去除了 NO-N,其中 39%和 25%分别转化为 NO-N 和 NH-N。吸附效率、动力学、容量和吸附能均遵循 NH-N>NO-N>NO-N 的顺序。在经过 5 次连续循环后,已经证实了 Fe-Pd-FeO/MWCNTs 的可回收性和再利用性,NO-N 的去除率仍达到 43%。结果表明,MWCNTs 延长了对 NO-N 的还原能力,从而避免了金属颗粒的聚集。初始污染物的快速吸附、有效的分步还原和方便的回收过程对于受污染水的修复具有重要意义。