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同时使用β-环糊精功能化纤维素从水中去除和逐步回收莠去津和 Pb(II):表征、吸附性能和机理探讨。

Simultaneously enhanced removal and stepwise recovery of atrazine and Pb(II) from water using β-cyclodextrin functionalized cellulose: Characterization, adsorptive performance and mechanism exploration.

机构信息

School of Resources and Environment, Northeast Agricultural University, Harbin, 150030, China.

College of Resource and Environment, Qingdao Engineering Research Center for Rural Environment, Qingdao Agricultural University, Qingdao, 266109, China.

出版信息

J Hazard Mater. 2020 Dec 5;400:123142. doi: 10.1016/j.jhazmat.2020.123142. Epub 2020 Jun 11.

DOI:10.1016/j.jhazmat.2020.123142
PMID:32593944
Abstract

Heavy metals and pesticides often coexist in contaminated water, while their potential competition behaviors make the adsorptive removal more challenging. Thus, decorating an adsorbent with independent functional sites could be a promising alternative to radically prevent the competitive process for improving the adsorption performance. Herein, β-cyclodextrin functionalized rice husk-based cellulose (β-CD@RH-C) was designed and applied for synchronous removal of atrazine and Pb(II). The characterization results supported the successful grafting of β-cyclodextrin onto the cellulose. The β-CD@RH-C presented a pH-dependent adsorption performance for Pb(II) with a theoretical monolayer adsorption capacity of 283.00 mg/g, while was mostly unrelated to pH for atrazine adsorption with a heterogeneous uptake of 162.21 mg/g in the mono-component system. Most importantly, the β-CD@RH-C could efficiently achieve simultaneous removal of atrazine and Pb(II) via avoiding their competitive behaviors, which was due to the different adsorption mechanisms for atrazine (i.e. host-guest interaction) and Pb(II) (i.e. complexation and electrostatic interaction). Moreover, the adsorbed atrazine and Pb(II) could be sequentially desorbed with slight decrease in the adsorption performance of β-CD@RH-C even after four cycles in the atrazine-Pb(II) multi-component system. All these results suggested β-CD@RH-C to be a tailored adsorbent with high-performance elimination of co-existing heavy metals and organic pollutants in water.

摘要

重金属和农药经常共存于受污染的水中,而它们潜在的竞争行为使得吸附去除变得更加具有挑战性。因此,在吸附剂上修饰独立的功能位点可能是一种很有前途的替代方法,可以从根本上防止竞争过程,从而提高吸附性能。在此,设计并应用β-环糊精功能化稻壳基纤维素(β-CD@RH-C)同步去除莠去津和 Pb(II)。表征结果支持β-环糊精成功接枝到纤维素上。β-CD@RH-C 对 Pb(II)具有 pH 依赖性吸附性能,理论单层吸附容量为 283.00 mg/g,而在单一组分体系中,对莠去津的吸附与 pH 基本无关,非均相吸附量为 162.21 mg/g。最重要的是,β-CD@RH-C 可以通过避免它们的竞争行为来有效地实现莠去津和 Pb(II)的同步去除,这是由于莠去津(即主客体相互作用)和 Pb(II)(即络合和静电相互作用)的吸附机制不同。此外,在莠去津-Pb(II)多组分体系中即使经过四个循环,吸附的莠去津和 Pb(II)也可以用稍微降低β-CD@RH-C 的吸附性能来依次解吸。所有这些结果表明,β-CD@RH-C 是一种具有高性能的定制吸附剂,可以有效地去除水中共存的重金属和有机污染物。

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