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Non-equilibrium sorption modeling for boron removal from geothermal water using sorption-microfiltration hybrid method

机译:吸附-微滤混合法从地热水中除硼的非平衡吸附模型

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摘要

In this study, the boron removal performance of a hybrid system composed of ground ion exchange resin particles coupled with a microfiltration separation unit was investigated. A non-equilibrium sorption modeling approach was introduced so as to understand the contributions of mass transfer resistances on the effluent stream concentration profiles, as well as on the resin loading scheme of this sorption-microfiltration hybrid system. This modeling approach allowed us to suggest new system operations and/or scale-up processes of sorption-microfiltration hybrid systems. In this study, the highly porous crosslinked boron selective chelating resins Diaion CRB02 and Dowex XUS 43594.00 containing N-methyl-glucamine group were used. Geothermal water that has high levels of boron was fed into the stirred cell element of the microfiltration system. Kinetic behaviour of boron selective resins for boron removal from geothermal water by the microfiltration system was evaluated to investigate the effects of resin particle size, resin concentration, and permeate flow rate.
机译:在这项研究中,研究了由磨碎的离子交换树脂颗粒与微滤分离单元组成的混合系统的除硼性能。引入了一种非平衡吸附建模方法,以了解传质阻力对流出物流浓度分布以及此吸附-微滤混合系统的树脂负载方案的影响。这种建模方法使我们能够提出新的系统操作和/或吸附微滤混合系统的放大过程。在这项研究中,使用了具有N-甲基-葡糖胺基团的高度多孔的交联硼选择性螯合树脂Diaion CRB02和Dowex XUS 43594.00。硼含量高的地热水被送入微滤系统的搅拌池中。对通过微滤系统从地热水中除硼的硼选择性树脂的动力学行为进行了评估,以研究树脂粒径,树脂浓度和渗透流量的影响。

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