Matches in SemOpenAlex for { <https://semopenalex.org/work/W4308365564> ?p ?o ?g. }
- W4308365564 endingPage "159795" @default.
- W4308365564 startingPage "159795" @default.
- W4308365564 abstract "We synthesized an MFeCoB0.4CNx% (MOF-Fe/Co nanosheets/boron-doped g-C3N4) composite catalyst for enhancing the concurrent photocatalytic-persulfate activation (CPPA) system and achieved efficient degradation of antibiotics. The role of MOF-Fe/Co is to activate persulfate, while boron-doped g-C3N4 can generate photogenerated electrons for the reduction of Co3+/Fe3+ to enhance the regeneration of the active center. The rate constant for Tetracycline degradation by the CPPA system was 4.74 and 7.54 times higher than the photocatalytic and persulfate-activated systems, respectively. This composite was shown to be practical and economically viable for antibiotic degradation. The degradation behavior was explored based on experiments, and molecular orbitals and Fukui functions were obtained by density functional theory calculations. Mechanisms were investigated using reactive oxygen species trapping studies and electron spin resonance, and the process was explained in terms of the charge population and electron density difference of MOF-Fe/Co nanosheets. The CPPA system is an ecologically benign technology for removing antibiotic-related risks to the environment and human health." @default.
- W4308365564 created "2022-11-11" @default.
- W4308365564 creator A5002058484 @default.
- W4308365564 creator A5046513977 @default.
- W4308365564 creator A5046597133 @default.
- W4308365564 creator A5052488776 @default.
- W4308365564 creator A5057664433 @default.
- W4308365564 creator A5075583788 @default.
- W4308365564 creator A5076632947 @default.
- W4308365564 creator A5079883557 @default.
- W4308365564 date "2023-02-01" @default.
- W4308365564 modified "2023-10-03" @default.
- W4308365564 title "MOFFeCo/B-CN composites achieve efficient degradation of antibiotics in a non-homogeneous concurrent photocatalytic-persulfate activation system" @default.
- W4308365564 cites W2020821230 @default.
- W4308365564 cites W2120888201 @default.
- W4308365564 cites W2254684565 @default.
- W4308365564 cites W2372721341 @default.
- W4308365564 cites W2401906193 @default.
- W4308365564 cites W2513767843 @default.
- W4308365564 cites W2555033260 @default.
- W4308365564 cites W2761153200 @default.
- W4308365564 cites W2762513398 @default.
- W4308365564 cites W2767541945 @default.
- W4308365564 cites W2770865048 @default.
- W4308365564 cites W2781765495 @default.
- W4308365564 cites W2789593134 @default.
- W4308365564 cites W2794114051 @default.
- W4308365564 cites W2794303694 @default.
- W4308365564 cites W2806141337 @default.
- W4308365564 cites W2889527838 @default.
- W4308365564 cites W2922211844 @default.
- W4308365564 cites W2962451011 @default.
- W4308365564 cites W2975687440 @default.
- W4308365564 cites W2986005380 @default.
- W4308365564 cites W2991269037 @default.
- W4308365564 cites W3004627636 @default.
- W4308365564 cites W3030436816 @default.
- W4308365564 cites W3045267067 @default.
- W4308365564 cites W3081037528 @default.
- W4308365564 cites W3083459935 @default.
- W4308365564 cites W3084403606 @default.
- W4308365564 cites W3085477930 @default.
- W4308365564 cites W3089462623 @default.
- W4308365564 cites W3089784127 @default.
- W4308365564 cites W3092291475 @default.
- W4308365564 cites W3095545334 @default.
- W4308365564 cites W3097471217 @default.
- W4308365564 cites W3105639591 @default.
- W4308365564 cites W3107693036 @default.
- W4308365564 cites W3111452760 @default.
- W4308365564 cites W3114602027 @default.
- W4308365564 cites W3115606917 @default.
- W4308365564 cites W3118714997 @default.
- W4308365564 cites W3119242903 @default.
- W4308365564 cites W3120052171 @default.
- W4308365564 cites W3133090516 @default.
- W4308365564 cites W3133624754 @default.
- W4308365564 cites W3133842607 @default.
- W4308365564 cites W3134609302 @default.
- W4308365564 cites W3138481604 @default.
- W4308365564 cites W3150420718 @default.
- W4308365564 cites W3153212919 @default.
- W4308365564 cites W3153480860 @default.
- W4308365564 cites W3159158733 @default.
- W4308365564 cites W3164483191 @default.
- W4308365564 cites W3167261340 @default.
- W4308365564 cites W3168549870 @default.
- W4308365564 cites W3176562886 @default.
- W4308365564 cites W3197495593 @default.
- W4308365564 cites W3198831733 @default.
- W4308365564 cites W3202450603 @default.
- W4308365564 cites W3204285738 @default.
- W4308365564 cites W4211152862 @default.
- W4308365564 doi "https://doi.org/10.1016/j.scitotenv.2022.159795" @default.
- W4308365564 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/36336040" @default.
- W4308365564 hasPublicationYear "2023" @default.
- W4308365564 type Work @default.
- W4308365564 citedByCount "10" @default.
- W4308365564 countsByYear W43083655642023 @default.
- W4308365564 crossrefType "journal-article" @default.
- W4308365564 hasAuthorship W4308365564A5002058484 @default.
- W4308365564 hasAuthorship W4308365564A5046513977 @default.
- W4308365564 hasAuthorship W4308365564A5046597133 @default.
- W4308365564 hasAuthorship W4308365564A5052488776 @default.
- W4308365564 hasAuthorship W4308365564A5057664433 @default.
- W4308365564 hasAuthorship W4308365564A5075583788 @default.
- W4308365564 hasAuthorship W4308365564A5076632947 @default.
- W4308365564 hasAuthorship W4308365564A5079883557 @default.
- W4308365564 hasConcept C121332964 @default.
- W4308365564 hasConcept C127413603 @default.
- W4308365564 hasConcept C144024400 @default.
- W4308365564 hasConcept C147597530 @default.
- W4308365564 hasConcept C148898269 @default.
- W4308365564 hasConcept C149923435 @default.
- W4308365564 hasConcept C152365726 @default.
- W4308365564 hasConcept C161790260 @default.
- W4308365564 hasConcept C178790620 @default.
- W4308365564 hasConcept C185592680 @default.