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Controllable preparation of porous hollow carbon sphere@ZIF-8: Novel core-shell nanomaterial for Pb2+ adsorption

机译:多孔中空碳球的可控制备ZIF-8:新型核 - 壳纳米材料用于PB2 +吸附

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摘要

A novel core-shell nanophere based on porous hollow carbon spheres (PHCS) and ZIF-8 was successfully prepared by a simple hydrothermal method. The PHCS as a supporter could effectively inhibit the aggregation of ZIF-8 nanoparticles and increased its dispersibility. Results indicated that the obtained PHCS-15@ZIF-8 nanophere with porous structure, high specific surface area (1140 m(2) g(-1)) and numerous oxygen-containing functional groups exhibited an excellent sorption capability for Pb2+. The maximum adsorption capacity of PHCS15@ZIF-8 for Pb2+ reached up to 462.9 mg g(-1), higher than the pure ZIF-8 (310.5 mg g(-1)). The adsorption data better followed with Freundlich isotherm and pseudo-second-order model. The effects of PHCS content, initial concentration, solution pH and competing ions on the sorption performance were discussed in detail. The possible sorption mechanism was also systematically analyzed by zeta potential, FT-IR, AAS and XPS studies. In addition, desorption and regeneration studies showed that PHCS-15@ZIF-8 still remained over 90% removal efficiency after five cycles.
机译:通过简单的水热法制备基于多孔中空碳球(PHCS)和ZIF-8的新型核 - 壳纳米粒。作为支撑件的PHC可以有效地抑制ZIF-8纳米颗粒的聚集并增加其分散性。结果表明,具有多孔结构,高比表面积(1140M(2)G(-1))和许多含氧官能团的所得PHCS-15 ZIF-8纳米烯型表现出优异的PB2 +的光吸附能力。 PB2 +的PHCS15 ZIF-8的最大吸附容量达到高达462.9mg G(-1),高于纯ZIF-8(310.5mg(-1))。吸附数据更好地跟随Freundlich等温线和伪二阶模型。详细讨论了PHCS含量,初始浓度,溶液pH和竞争离子对吸附性能的影响。通过Zeta电位,FT-IR,AAS和XPS研究还系统地分析了可能的吸附机理。此外,解吸和再生研究表明,PHCS-15 ZIF-8在五个循环后仍保持超过90%的去除效率。

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