纳米复合材料
吸附
磷酸盐
机制(生物学)
化学工程
材料科学
化学
复合材料
有机化学
认识论
哲学
工程类
作者
Yifei Wang,Wen Zhao,Ziyuan Qi,Li Zhang,Yanan Zhang,Haiou Huang,Yongzhen Peng
标识
DOI:10.1016/j.cej.2020.124992
摘要
In this study, [email protected] nanocomposite has been designed throughout in-situ growth of zeolitic imidazolate framework-8 (ZIF8) polyhedron on hydroxylated multi-walled carbon nanotube (MWCNT). In detail, three types of nanocomposites harvesting different nanostructures are obtained by varying the dosages of MWCNTs. Such nanocomposites are assessed as phosphate adsorbents via batch experiments to determine the adsorption capacity, reusability and stability. Among the three types of composites, the [email protected] affords the maximum phosphate adsorption capacity of 203.0 mg g−1, which is 0.7–3.7 times higher than those of the other adsorbents at the same adsorption conditions. Experimental characterizations in combination with theoretical calculations reveal that the outstanding performance of [email protected] is mainly attributed to the enhanced Zn-O-P interaction and hydrogen bonding. In addition, high phosphate removal performance was observed in the real wastewater (residual effluent Conc. = 0.0–0.45 mg L−1) with initial concentrations of 0.63 mg L−1-6.32 mg L−1, which satisfied the A-level standard of phosphate effluent in China (0.5 mg L−1). This work offers a versatile solution to tailor the adsorption affinity of emerging metal-organic-frameworks (MOFs) toward phosphorous-based pollutants.
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