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Microfluidic synthesis of high-performance monodispersed chitosan microparticles for methyl orange adsorption

机译:高性能单分散壳聚糖微粒的微流体合成用于甲基橙吸附

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摘要

High-performance monodispersed chitosan microparticles for methyl orange (MO) adsorption were synthesized on a microfluidic platform coupled with a cross-linking approach. Batch adsorption experiments were carried out to evaluate the capacity and kinetics of the as-prepared microparticles on the adsorption of MO. Due to the advantage of microfluidics that all the manipulations and operations are related to independent droplets, the prepared microparticles are controlled to within a narrow size distribution (CV = 1.86%) while exhibiting uniform high performance (adsorption capacity = 182 mg g(-1)). Adsorption experiments were carried out under various design and operation conditions. It is found that the adsorption isotherm was well described by the Langmuir model and the adsorption kinetics followed a pseudo-second-order kinetic model. The high performance together with biodegradable feature and low-cost raw material give the microfluidic-synthesized chitosan microparticles a promising potential for future dye effluent treatment.
机译:在微流体平台上结合交联方法合成了用于甲基橙(MO)吸附的高性能单分散壳聚糖微粒。进行分批吸附实验以评估所制备的微粒对MO的吸附能力和动力学。由于微流控技术的优势,即所有操作和操作均与独立的液滴相关,因此所制备的微粒被控制在狭窄的尺寸分布内(CV = 1.86%),同时表现出均一的高性能(吸附容量= 182 mg g(-1) ))。吸附实验是在各种设计和操作条件下进行的。发现吸附等温线由Langmuir模型很好地描述,并且吸附动力学遵循伪二级动力学模型。高性能以及可生物降解的特性和低成本的原料,使微流合成的壳聚糖微粒在未来的染料废水处理中具有广阔的前景。

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