College of Environmental Science and Engineering, Hunan University, Changsha 410082, China; Key Laboratory of Environmental Biology and Pollution Control, Hunan University, Ministry of Education, Changsha 410082, China.
College of Environmental Science and Engineering, Hunan University, Changsha 410082, China; Key Laboratory of Environmental Biology and Pollution Control, Hunan University, Ministry of Education, Changsha 410082, China.
J Hazard Mater. 2017 Feb 5;323(Pt B):602-610. doi: 10.1016/j.jhazmat.2016.08.052. Epub 2016 Aug 22.
In this work, Pd/Pt supported on N-doped activated carbon fiber (Pd/Pt-NACF) was employed as the electrode for electrocatalytic degradation of perchlorate through adsorption/electroreduction process. Perchlorate in solution was firstly adsorbed on Pd/Pt-NACF and then reduced to non-toxic chloride by the catalytic function of Pd/Pt at a constant current (20mA). Compared with Pd/Pt-ACF, the adsorption capacity and electrocatalytic degradation efficiency of Pd/Pt-NACF for perchlorate increased 161% and 28%, respectively. Obviously, positively charged N-functional groups on NACF surface enhanced the adsorption capacity of Pd/Pt-NACF, and the dissociation of hydrogen to atomic H* by the Pd/Pt nanostructures on the cathode might drastically promote the electrocatalytic reduction of perchlorate. The role of atomic H* in the electroreduction process was identified by tertiary butanol inhibition test. Meanwhile, the perchlorate degradation performance was not substantially lower after three successive adsorption/electrocatalytic degradation experiments, demonstrating the electrochemical reusability and stability of the as-prepared electrode. These results showed that Pd/Pt-NACF was effective for electrocatalytic degradation of perchlorate and had great potential in perchlorate removal from water.
在这项工作中,负载在氮掺杂活性炭纤维(Pd/Pt-NACF)上的 Pd/Pt 被用作电极,通过吸附/电化学还原过程来电催化降解高氯酸盐。溶液中的高氯酸盐首先被 Pd/Pt-NACF 吸附,然后在恒定电流(20mA)下通过 Pd/Pt 的催化作用被还原为无毒的氯离子。与 Pd/Pt-ACF 相比,Pd/Pt-NACF 对高氯酸盐的吸附容量和电催化降解效率分别提高了 161%和 28%。显然,NACF 表面带正电荷的 N 官能团增强了 Pd/Pt-NACF 的吸附能力,而阴极上的 Pd/Pt 纳米结构将氢离解为原子 H可能会极大地促进高氯酸盐的电催化还原。通过叔丁醇抑制试验确定了原子 H在电还原过程中的作用。同时,在连续三次吸附/电催化降解实验后,高氯酸盐的降解性能并没有明显降低,这表明所制备的电极具有电化学可重复使用性和稳定性。这些结果表明,Pd/Pt-NACF 可有效电催化降解高氯酸盐,在水中去除高氯酸盐方面具有很大的潜力。