4.7 Article

Efficient removal of emerging organic contaminants via photo-Fenton process over micron-sized Fe-MOF sheet

期刊

CHEMICAL ENGINEERING JOURNAL
卷 429, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2021.132495

关键词

Micron-sized MOF sheet; Photo-Fenton; Toxicity; Water treatment; Mechanism

资金

  1. National Natural Science Foundation of China [51878023, 22176012]
  2. Beijing Natural Science Foundation [8202016]
  3. Great Wall Scholars Training Program Project of Beijing Municipality Universities [CITTCD20180323]
  4. Beijing Talent Project [2020A27]
  5. Fundamental Research Funds for Beijing University of Civil Engineering and Architecture [X20147/X20141/X20135/X20146]

向作者/读者索取更多资源

A 2D micron-sized MOF sheet, BUC-21(Fe), was successfully synthesized and used in efficiently removing chloroquine phosphate (CQ) through the photon-Fenton process. X-ray absorption fine structure (XAFS) was used to detect the oxidation state and content of iron in the material.
A 2D micron-sized MOF sheet, namely BUC-21(Fe), was synthesized hydrothermally from FeSO4.7H2O, 1,3dibenzyl-2-imidazolidone-4,5-dicarboxylic acid (H2L) and 4,4 '-bipyridine (bpy), which exhibited efficient removal of chloroquine phosphate (CQ) as emerging organic pollutant model via photon-Fenton process at pH = 5.0. The generated .OH concentration was 242.5 mu mol L-1 with H2O2 consumption efficiency of 83.2%. The hydroxyl radical (.OH) was the primary reactive specie at the whole process, whereas superoxide radical (.O2- ) could boost the Fenton-like reaction at neutral pH. The oxidation state and content of iron in BUC-21(Fe) was detected by X-ray absorption fine structure (XAFS), in which 62% and 45% Fe2+ could be observed in the fresh sample and the used sample after photo-Fenton reaction. The CQ removal efficiency decreased from 100% to 68.3% when Fe sites were locked by phosphate, directly confirming the important role of Fe in the photo-Fenton reaction. The mechanism was proposed with the help of electrochemistry and density functional theory (DFT) calculation, which revealed that the photoinduced election was excited from oxygen atoms to Fe ions. The CQ was degraded into small molecules with low toxicity, and the degradation pathway was proposed. BUC-21(Fe) was water stable and showed excellent performance for photo-Fenton degradation of various organic contaminants (sulfamethoxazole (SMX) and bisphenol A (BPA)).

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