4.7 Article

Powdered activated carbon doping improves the mechanical and adsorption properties of cementitious microfiltration membrane

期刊

CHEMOSPHERE
卷 287, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2021.132260

关键词

Carbon-cementitious microfiltration membrane; Mechanical strength; Membrane adsorption; Pore size distribution; Size effect

资金

  1. National Key Research and Devel-opment Program of China [2019YFD1100104]
  2. National Natural Science Foundation of China [52000047]
  3. Jiangsu Provincial Key Laboratory of Environmental Science and Engineering [Zd1902]
  4. Open Project of State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology [ES201606]

向作者/读者索取更多资源

A novel carbon-cementitious microfiltration membrane (CCM) was fabricated to enhance the mechanical strength and stability of cementitious membrane (CM) during practical uses. The CCM exhibited better adsorption properties than CM in water treatment process, specifically for benzophenone-4, nitrobenzene, and p-chloronitrobenzene. These results expand the application scope of microfiltration membranes.
Cementitious membrane (CM) is a promising microfiltration membrane with low cost for raw materials and low energy consumption of non-sintering fabrication process. A novel carbon-cementitious microfiltration membrane (CCM) was fabricated with powdered activated carbon (PAC) as an additive based on CM, to solve the low mechanical strength of CM during multiple practical uses. While maintaining adequate pure water flux and porosity, the mechanical strength of the membrane was greatly improved to ensure the stability of the membrane in the filtration process. The bending strength of the CCM was 2-3 times higher than that of CM. 10 wt% CCM has the smallest critical pore size and optimal permeability, which was chosen to be the optimal PAC doping ratio. The X-ray diffraction and FT-IR results indicated that the addition of PAC did not change the mineral composition of cement hydration products, and the appropriate amount of PAC acted as a nucleation site and accelerated hydration. The effect of size effect on bending strength was more obvious with the decrease of membrane thickness. In the membrane adsorption experiments of benzophenone-4, nitrobenzene andp-chloronitrobenzene, the CCM exhibited prominent adsorption properties than CM. These results broaden the application scope of microfiltration membranes in water treatment process.

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