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Effect of DS Concentration on the PRO Performance Using a 5-Inch Scale Cellulose Triacetate-Based Hollow Fiber Membrane Module

机译:DS浓度对基于5英寸规模纤维素三乙酸酯的中空纤维膜组件的PRO性能的影响

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In this study, pressure-retarded osmosis (PRO) performance of a 5-inch scale cellulose triacetate (CTA)-based hollow fiber (HF) membrane module was evaluated under a wide range of operating conditions (0.0–6.0 MPa of applied pressure, 0.5–2.0 L/min feed solution (FS) inlet flow rate, 1.0–6.0 L/min DS inlet flow rate and 0.1–0.9 M draw solution (DS) concentration) by using a PRO/reverse osmosis (RO) hybrid system. The subsequent RO system for DS regeneration enabled the evaluation of the steady-stated module performance. In the case of pilot-scale module operation, since the DS dilution and the feed solution (FS) up-concentration had occurred and was not negligible, unlike the lab-scale experiment, PRO performance strongly depended on operating conditions such as inlet flow rates of both the DS and FS concentration. To compare the module performance with different configurations, we proposed a converted parameter in which a difference of the packing density between the spiral wound (SW) and the HF module was fairly considered. In the case of HF configuration, because of high packing density, volumetric-based performance was higher than that of SW module, that is, the required number of the module would be less than that of SW module in a full-scale PRO plant.
机译:在这项研究中,评估了5英寸规模的三乙酸纤维素(CTA)基中空纤维(HF)膜组件的耐压渗透(PRO)性能,该应用是在各种工作条件(施加压力0.0-6.0 MPa,通过使用PRO /反渗透(RO)混合系统,进料溶液(FS)入口流速为0.5–2.0 L / min,DS入口流速为1.0–6.0 L / min,进样溶液(DS)浓度为0.1–0.9 M)。随后的用于DS再生的RO系统使得能够评估稳态模块的性能。在中试规模模块操作的情况下,由于发生了DS稀释和进料溶液(FS)上浓缩,并且不能忽略不计,与实验室规模的实验不同,PRO的性能很大程度上取决于操作条件,例如入口流量DS和FS浓度。为了比较不同配置下的模块性能,我们提出了一个转换参数,其中充分考虑了螺旋缠绕(SW)和HF模块之间的堆积密度差异。在HF配置的情况下,由于包装密度高,基于体积的性能要比SW模块的性能高,也就是说,在全规模PRO工厂中,所需的模块数量将少于SW模块的数量。

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