School of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian 116034, China.
School of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian 116034, China.
J Colloid Interface Sci. 2022 Feb 15;608(Pt 3):2740-2751. doi: 10.1016/j.jcis.2021.11.007. Epub 2021 Nov 5.
Coupling membrane filtration with peroxymonosulfate (PMS) activation is promising to overcome the selectivity-permeability trade-off in membrane-based water treatment. However, the PMS catalytic efficiency of membrane still needs improvement to offset the insufficient reaction time during filtration process. Herein, an oxidized carbon nanotube intercalated nitrogen doped reduced graphene oxide (NRGO-OCNT) membrane with PMS activation function was firstly designed and prepared, which confined PMS activation in membrane interlayer for enhanced water treatment. The influence of confinement scale on membrane performance was studied through changing the OCNT intercalation ratio. Under the optimal confinement condition, the NRGO-OCNT membrane filtration integrated with PMS activation (MFPA) could realize 100% 4-chlorophenol removal at a high permeate flux of 290.2 L m h bar (retention time of only 0.36 s), whose performance was 2.8, 1.7 and 5.0 times higher than that of filtration alone, NRGO MFPA (excessive confinement) and NRGO-OCNT powder-based batch reaction (no confinement), respectively. Moreover, NRGO-OCNT MFPA preferentially removed smaller-sized organics which easily entered and diffused in confined interlayer. The outstanding performance of NRGO-OCNT MFPA was owing to the nanoconfinement effect in appropriate confined interspacing, where the mass transfer rate of reactants was greatly boosted for enhanced generation of SO and OH towards pollutant.
将膜过滤与过一硫酸盐 (PMS) 活化相耦合有望克服膜基水处理中的选择性-渗透性权衡。然而,为了弥补过滤过程中反应时间不足的问题,膜的 PMS 催化效率仍需提高。在此,首次设计并制备了具有 PMS 活化功能的氧化碳纳米管插层氮掺杂还原氧化石墨烯 (NRGO-OCNT) 膜,将 PMS 活化限制在膜夹层内以增强水处理性能。通过改变 OCNT 的插层比来研究限制尺度对膜性能的影响。在最佳限制条件下,过一硫酸盐活化强化膜过滤(MFPA)可实现 100%的 4-氯苯酚去除,同时具有 290.2 L m -1 h -1 bar -1的高通量(保留时间仅为 0.36 s),其性能分别比单独过滤、NRGO MFPA(过度限制)和 NRGO-OCNT 粉末批次反应(无限制)提高了 2.8、1.7 和 5.0 倍。此外,NRGO-OCNT MFPA 优先去除较小尺寸的有机物,这些有机物容易进入并扩散到受限的夹层中。NRGO-OCNT MFPA 的优异性能归因于适当受限间隔内的纳米限制效应,其中反应物的传质速率大大提高,从而增强了对污染物的 SO 和 OH 的生成。