作者
Wenli Yao,Mingzhe Li,Changduo Sun,Yanlong Liu,Mengling Ma,Fengjuan Chen,Lei Zhou,Yian Zheng
摘要
Removal of perfluorinated compounds (PFCs) from the environment is a major challenge due to their refractory, persistent and bioaccumulative properties. In this study, trace Co coupled via Co–P coordination and tourmaline (TM) doped g-C 3 N 4 was fabricated (marked as Co/TM/g-C 3 N 4 ) and used as the catalyst for activating peroxymonosulfate (PMS) to remove emerging PFOA under visible light irradiation. Several affecting parameters were systematically investigated, inlcuding Co/TM/g-C 3 N 4 dosage, PMS concentration, initial pH, as well as coexisting Cl − , HC O 3 − , H 2 P O 4 − , N O 3 − and humic acid . Under the conditions of 0.5 g/L Co/TM/g-C 3 N 4 , 2.5 g/L PMS and pH 3.0, the developed synergistic system had the ability for 81.11% removal of PFOA within 4 h, 67.64% removal after the fourth run, and also could be effectively applied in actual water bodies. During the degradation process , π-π*, N–C N and graphite N played the vital role, with the final defluorination rate of 31.12% at 4 h. Free radical quenching and quantitative analysis, as well as electron paramagnetic resonance was used to verify the free radical and non-free radical pathways for PFOA removal, with the findings that S O 4 • − (2.61 μM at 1 h), •OH (0.067 μM at 4 h), O 2 • − , h + , and O 1 2 were involved with possible time-dependent. By liquid chromatography-mass spectrometry analysis, the short-chain intermediates of C3–C7 were proposed and identified. From this study, trace Co coupled and TM doped g-C 3 N 4 demonstrated higher catalytic potential to activate PMS for visible-light synergistic PFOA removal, with the expectation of achieving a cleaner water environment for human beings. • Trace Co and tourmaline doped g-C 3 N 4 (marked as Co/TM/g-C 3 N 4 ) was fabricated. • Co/TM/g-C 3 N 4 activated PMS was developed for PFOA removal under visible light. • Synergistic PMS and visible light enhanced PFOA removal to 77.94% at pH 4.1. • SO 4 . •− , O 2 •− , •OH, h + and 1 O 2 were involved with possible time-dependent. • Co/TM/g-C 3 N 4 showed good reusability for potential practical application.