首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Microwave-assisted one pot synthesis of beta-cyclodextrin modified biochar for concurrent removal of Pb(II) and bisphenol a in water
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Microwave-assisted one pot synthesis of beta-cyclodextrin modified biochar for concurrent removal of Pb(II) and bisphenol a in water

机译:微波辅助β-环糊精改性BioChar的一种合成,用于同时去除Pb(II)和水中的双酚A.

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摘要

Herein, beta-cyclodextrin (beta-CD) functionalized rice husk-derived biochar (BC) was conveniently and fast syn-thesized via microwave (MW)-assisted one pot process, and employed for simultaneous elimination of bisphenol A (BPA) and plumbum (Pb). Profiting by microwave irradiation, the surface modification was implemented in 15 min and the prepared BCMW-beta-CD presented an excellent adsorption performance with a heterogeneous adsorption capacity of 209.20 mg/g for BPA and a theoretical monolayer uptake of 240.13 mg/g for Pb(II) in the mono-component system. Furthermore, the BCMW-beta-CD could simultaneously achieve efficient cleanup of BPA and Pb(II) through avoiding the competitive behaviors between them, which were due to the different adsorption mechanisms for Pb(II) (i.e. electrostatic attraction and complexation) and BPA (i.e. host-guest supramolecular and pi-pi interactions). Moreover, the adsorbed BPA and Pb(II) could be sequentially desorbed with mild decrease in the adsorption performance of BCMW-beta-CD even after five cycles in the Pb(II)-BPA multi-component system.
机译:在此,β-环糊精(β-CD)官能化水稻壳衍生的生物炭(BC)通过微波(MW)甲基罐方法方便,快速地同步,并用于同时消除双酚A(BPA)和铅(PB)。通过微波辐射利用,表面改性在15分钟内实施,制备的BCMW-β-CD具有出色的吸附性能,其具有209.20mg / g的非均相吸附容量,BPA为240.13mg / g的理论单层摄取为240.13mg / g (ii)在单组分系统中。此外,BCMW-β-CD可以通过避免它们之间的竞争性行为同时实现BPA和PB(II)的有效清理,这是由于PB(II)的不同吸附机制(即静电吸引力和络合)和BPA (即宿主 - 客户超分子和PI-PI相互作用)。此外,即使在PB(II)-BPA多组分系统中的五个循环之后,吸附的BPA和Pb(II)也可以依次下降,甚至于BCMW-β-Cd的吸附性能的温和降低。

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