首页> 外文期刊>Journal of Membrane Science >xA semi-continuous laboratory-scale polymer enhanced ultrafiltration process for the recovery of cadmium and lead from aqueous effluents
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xA semi-continuous laboratory-scale polymer enhanced ultrafiltration process for the recovery of cadmium and lead from aqueous effluents

机译:xA半连续实验室规模的聚合物增强超滤工艺,用于从水性废液中回收镉和铅

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摘要

A semi-continuous process of polymer enhanced ultrafiltration for removal of lead and cadmium has been elaborated. This operation mode would let a better coupling between industrial and laboratory-scale processes. Basically, it includes two stages: (1) metal retention, where we can obtain a permeate stream free of heavy metals; (2) polymer regeneration, where the polymer is regenerated in order to be reused in metal retention stage. In order to work in this way, a control system of permeate and feed stream flows has been installed in a batch laboratory-scale plant. In the first place, more suitable hydrodynamic operating parameters were obtained by ultrafiltration experiments. The influence of pH has been studied to fix the pH for metal retention and polymer regeneration experiments, and the operative polymer binding capacity has been determined to know the metal amount that can be treated. A mathematical model taking into account both conservation equations and competitive reactions which occur in the medium has been established. The development of this mathematical model (which is in good agreement with experimental data) enables to estimate design parameters to dimension pilot and industrial scale installations based on this process.
机译:已经详细阐述了聚合物增强超滤用于去除铅和镉的半连续过程。这种操作模式将使工业和实验室规模的过程之间更好地耦合。基本上,它包括两个阶段:(1)金属保留,我们可以获得不含重金属的渗透物流; (2)聚合物再生,其中聚合物再生后可在金属保留阶段再利用。为了以这种方式工作,已经在批量实验室规模的工厂中安装了渗透液和进料流的控制系统。首先,通过超滤实验获得了更合适的水动力操作参数。已经研究了pH的影响来固定pH以进行金属保留和聚合物再生实验,并且已经确定了有效的聚合物结合能力以知道可以处理的金属量。建立了同时考虑在介质中发生的守恒方程和竞争反应的数学模型。该数学模型的开发(与实验数据高度吻合)使得能够基于此过程来估计设计参数,以对试点和工业规模的装置进行尺寸估算。

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