4.7 Article

Bismuth impregnated biochar for efficient estrone degradation: The synergistic effect between biochar and Bi/Bi2O3 for a high photocatalytic performance

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 384, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2019.121258

关键词

Persistent free radicals; Bismuth; Biochar; Photocatalytic degradation; Estrone

资金

  1. National Natural Science Foundation of China [41825021, 31772396, 21876097]
  2. UCAS Joint PhD Training Program
  3. Scientific Research and Service Platform Fund of Henan Province [2016151]
  4. Fund of Scientific and Technological Innovation Team of Water Ecological Security for Water Source Region of Mid-line of South-to-North Diversion Project of Henan Province
  5. University of Cincinnati through a UNESCO
  6. Herman Schneider Professorship in the College of Engineering and Applied Sciences

向作者/读者索取更多资源

An innovative advanced oxidation process was successfully developed to photocatalytic-degradation of estrone through the synergistic effect of biochar and Bi/Bi2O3 in bismuth-containing photocatalytic biochar (BiPB). The highest reaction rate constant (k(obs)) of estrone degradation by BiPB was 0.045 min(-1) under the conditions of initial concentration of estrone =10.4 mu mol L-1, [BiPB] =1 g L-1, pH = 7.0. The k(obs) was almost tenfold and more than 20 times than that of biochar without bismuth impregnation and pristine Bi/Bi2O3, respectively. The best photocatalytic performance of BiPB composites for the degradation of estrone was primarily attributed to generation of center dot OH radicals. Impregnation of bismuth helped control the concentration of persistent free radicals (PFRs) and develop a hierarchical porous structure of biochar. The presence of biochar facilitated pre-concentration estrone on BiPB and improved the separation and transfer efficiency of charge carriers. The synergistic effect between biochar and Bi/Bi2O3 contributed to the generation of center dot OH radicals for estrone degradation under neutral pH conditions. The transformation pathway of estrone was also proposed based on the measured transformation products in the presence of BiPB. The high efficiency of BiPB composites indicated that this easily-obtained material was promising for estrone-wastewater treatment applications as a low-cost composite photocatalyst.

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