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Dopamine functionalized tannic-acid-templated mesoporous silica nanoparticles as a new sorbent for the efficient removal of Cu2+ from aqueous solution

机译:多巴胺官能化的单宁酸模板介孔二氧化硅纳米颗粒作为一种新型吸附剂可有效去除水溶液中的Cu2 +

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摘要

A simple, environmentally friendly and cost-effective nonsurfactant template method was used to synthesize tannic-acid-templated mesoporous silica nanoparticles (TMSNs), and then dopamine functionalized TMSNs (Dop-TMSNs) which was synthesized by a facile and biomimetic coating strategy, was developed as a new sorbent for the removal of Cu2+ from aqueous solution. The Dop-TMSNs were thoroughly characterized by SEM, TEM, BET, FT-IR and TGA, and the effects of contact time, initial pH, K+ and Na+ concentrations, co-existing polyvalent metal ions and adsorption-desorption cycle times on the sorption capacity of Dop-TMSNs were studied. It was demonstrated that the maximum adsorption capacity of Cu2+ by Dop-TMSNs was 58.7 mg/g at pH 5.5, and the sorption reached equilibrium within 180 min. Moreover, the K+ and Na+ concentrations had a very slight influence on the sorption process and the adsorption capacity of the Dop-TMSNs still remained 89.2% after recycling for four times. All the results indicated that the Dop-TMSNs could be utilized as an excellent sorbent for the sequestration of Cu2+.
机译:使用一种简单,环保且具有成本效益的非表面活性剂模板方法来合成鞣酸模板的介孔二氧化硅纳米粒子(TMSN),然后通过简便且仿生的涂层策略合成多巴胺官能化的TMSN(Dop-TMSN)。开发了一种用于从水溶液中去除Cu 2 + 的新型吸附剂。通过SEM,TEM,BET,FT-IR和TGA以及接触时间,初始pH,K + 和Na + 浓度对Dop-TMSN进行了彻底的表征。 ,研究了共存的多价金属离子和吸附-解吸循环时间对Dop-TMSNs吸附能力的影响。结果表明,在pH 5.5下,Dop-TMSNs对Cu 2 + 的最大吸附量为58.7 mg / g,在180 min内达到平衡。此外,K + 和Na + 的浓度对吸附过程影响很小,回收四次后,Dop-TMSNs的吸附能力仍保持89.2%。 。所有结果表明,Dop-TMSNs可以作为螯合Cu 2 + 的优良吸附剂。

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