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Electrochemical regeneration of a graphite adsorbent loaded with Acid Violet 17 in a spouted bed reactor

机译:喷射床反应器中负载有酸性紫17的石墨吸附剂的电化学再生

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摘要

A novel spouted bed reactor is evaluated for water treatment by an adsorption and electrochemical regeneration process. The adsorbent is a bisulphate graphite intercalation compound with low specific surface area but high electrical conductivity, suitable for adsorption of contaminants and simultaneous electrochemical regeneration within a single unit. The effects of current density and liquid flow rate on Acid Violet 17 removal were investigated. The hydrodynamic behavior of the liquid spouted bed reactor was characterized by a flow regime map. A four-parameter model has been developed to describe the adsorption and electrochemical regeneration process in the liquid spouted bed reactor. It was found that the experimental data of dye removal agrees well with the modelled simulations.
机译:通过吸附和电化学再生工艺对新型喷头床反应器的水处理进行了评估。吸附剂是一种比硫酸盐石墨插层化合物,具有较低的比表面积但具有较高的电导率,适用于在单个单元内吸附污染物和同时进行电化学再生。研究了电流密度和液体流速对酸性紫17去除的影响。液体喷射床反应器的流体力学行为由流态图表征。已经开发了四参数模型来描述液体喷射床反应器中的吸附和电化学再生过程。发现染料去除的实验数据与模型模拟吻合得很好。

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