Sulfidated nanoscale zero-valent iron dispersed in dendritic mesoporous silica nanospheres for degrading tetrabromobisphenol A

被引:15
|
作者
Li, Hui [1 ]
Si, Ruofan [1 ]
Wang, Wenbing [1 ]
Huang, Yuan [1 ]
Xiang, Minghui [1 ]
Wang, Chen [1 ,2 ]
Chen, Shuai [3 ]
Cao, Wei [1 ]
Lu, Zhen [1 ]
Huang, Maofang [1 ]
机构
[1] Shanghai Univ, Sch Environm & Chem Engn, Inst Environm Pollut & Hlth, Shanghai 200444, Peoples R China
[2] East China Univ Sci & Technol, Sch Resources & Environm Engn, State Environm Protect Key Lab Environm Risk Asse, Shanghai 200237, Peoples R China
[3] Shanghai Polytech Univ, Sch Environm & Mat Engn, Shanghai 201209, Peoples R China
基金
中国国家自然科学基金;
关键词
Sulfidated nanoscale zero-valent iron; Dendritic mesoporous silica nanospheres; Degradation; Tetrabromobisphenol A; Groundwater; ZEROVALENT IRON; WATER-TREATMENT; REMOVAL; NANOPARTICLES; DEGRADATION; PARTICLES; NZVI; DECHLORINATION; BIOCHAR; TBBPA;
D O I
10.1016/j.colsurfa.2021.126586
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Sulfidated nanoscale zero-valent iron (S-NZVI) has attracted significant attention in pollutant remediation due to its higher electron selectivity than NZVI. However, the agglomeration behavior of S-NZVI particle limits its practical application. In this study, S-NZVI was synthesized and dispersed in dendritic mesoporous silica nanospheres (S-NZVI/DMSN) to remove tetrabromobisphenol A (TBBPA) in groundwater. The structural characterization and degradation results illustrated that the dendritic pores of DMSN not only improved the dispersion of S-NZVI particles, but also enhanced the accessibility of pollutants to S-NZVI. The specific surface area of the S-NZVI/DMSN reached 136.2 m2 g-1, which was 2.68 times larger than that of S-NZVI (50.8 m2 g-1). At a S/Fe molar ratio of 0.1 and Si/Fe mass ratio of 1.0, the TBBPA degradation efficiency by S-NZVI/DMSN reached 91.4%, which exceeded that of S-NZVI (66.3%), and the degradation rate constants (0.078 L (mg h)-1) was 2.86 times higher than that of S-NZVI (0.027 L (mg h)-1). The S-NZVI/DMSN could remain high TBBPA degradation performance (76.3%) after even five cyclic degradations. Approximately 70.5% of S-NZVI/DMSN and 1% of S-NZVI successfully passed through the sand column. The much better sustained reactivity and transportability of S-NZVI/DMSN indicated that it could penetrate soil aquifers and degrade TBBPA in groundwater.
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页数:12
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