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. 2021 Aug 8;39(8):835–844. [Article in Chinese] doi: 10.3724/SP.J.1123.2021.02035

表5.

磁固相萃取技术在水体中双酚类化合物前处理中的应用

Sorbent Analytes Samples Measurement Recoveries/% Ref.
Fe3O4@PDA BPF, BPA, BPB, BPAP tap/pond water HPLC 92.00-105.0 [68]
C-NH2@Fe3O4 BPA, BPAF, TBBPA tap/slush/waste water HPLC-MS/MS 86.10-110.0 [67]
Fe3O4/GO BPA waste water HPLC 77.60-89.60 [69]
Fe3O4-OA/CQDs BPA, BPAF, TBBPA lake/waste water FTIR 94.50-101.3 [66]
CMMPs BPA, BPB, BPAF, BPF tap/river water UHPLC 85.40-104.0 [65]
HDTMA-ZSM-5/Fe2O3 BPA, BPAP, BPAF, BPP tap/river/waste water HPLC 83.00-108.0 [64]
MCGC BPA, BPF waste water HPLC-FLD 90.20-97.70 [71]
MGO-DDA BPA lake/waste water HPLC 74.90-93.10 [72]

Fe3O4@PDA: polydopamine coated magnetic Fe3O4 composite material; C-NH2@Fe3O4: aminosilanized magnetic carbon; Fe3O4/GO: magnetic Fe3O4 graphene oxide; Fe3O4-OA/CQDs: carbon quantum dots/oleic acid-coated Fe3O4 composites; CMMPs: Core-shell carbon decorated magnetic microspheres; HDTMA-ZSM-5/Fe2O3: hexadecyltrimethylammonium-zeolite/iron oxide magnetic composite; MCGC: Fe3O4@SiO2/chitosan/graphene oxide/β-cyclodextrin; MGO-DDA: dodecylamine modified magnetic graphene oxide nanomaterials.