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Synthesis of calcium carbonate–loaded mesoporous SBA-15 nanocomposites for removal of phosphate from solution

Yaoyu Tang, Hao Wang, Wu Sun,Dapeng Li,Zhengying Wu, Yifei Feng,Nan Xu

Environmental science and pollution research international(2023)

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摘要
Removal of phosphate from water is very crucial for protecting the ecological environment since massive phosphorus fertilizers have been widely used and caused serious water deterioration. Thus, we fabricated a series of calcium carbonate–loaded mesoporous SBA-15 nanocomposites with different Ca:Si molar ratio (CaAS- x ) as phosphorus adsorbents via a simple wet-impregnation method. The multiply approaches including X-ray diffraction (XRD), N 2 physisorption, thermogravimetric mass spectrometry (TG-MS), X-ray photoelectron spectroscopy (XPS), and Fourier transform infrared (FT-IR) were used to characterize the structure, morphology, and composition of mesoporous CaAS- x nanocomposites. The phosphate adsorption efficiency of the CaAS- x nanocomposites was studied through adsorption and desorption batch tests. Results showed that the increases of Ca:Si molar ratio ( r Ca:Si) improved the phosphate removal capacity of CaAS nanocomposites, especially CaAS with the optimum synthesis molar ratio of Ca:Si as 0.55 showed the high adsorption capacity of 92.0 mg·g −1 to high concentration of phosphate (> 200 mg·L -1 ). Note that the CaAS-0.55 had a fast exponentially increased adsorption capacity with increasing the phosphate concentration and correspondingly showed a much faster phosphate removal rate than pristine CaCO 3 . Apparently, mesoporous structure of SBA-15 contributed to high disperse of CaCO 3 nanoparticles leading to the monolayer chemical adsorption complexation formation of phosphate calcium (i.e., =SPO 4 Ca, =CaHPO 4 – , and =CaPO 4 Ca 0 ). Therefore, mesoporous CaAS-0.55 nanocomposite is an environmental-friendly adsorbent for effective removal of high concentration of phosphate in neutral contaminated wastewater.
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关键词
Calcium carbonate,SBA-15 nanocomposites,Phosphate,Adsorption,Removal
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