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Microfiltration-adsorption hybrid system in organics removal from water

机译:微滤-吸附混合系统从水中去除有机物

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A series of experiments was conducted with a Millipore fiat plate microfiltration module modified to incorporate in-line powdered activated carbon (PAC) addition. In-line PAC was mixed continuously through a spiral mixing device for a predetermined time prior entering a membrane unit. The results showed that this system is excellent in removing fulvic acid (FA). This system provides to sufficient contact time for PAC to adsorb organics compared to the system with in-line adsorbent addition. More than 85% of FA was removed from water containing 8 mg/l of FA. To achieve this following conditions were used:.(i) a velocity gradient G (mixing intensity) of 160.4s(-1); (ii) a hydraulic residence time (mixing time) of 4 minutes; (iii) a PAC dose of 260 mg/l; and (iv) membrane pore size of 0.22 mu m. In case of low FA concentration (e.g. 1.2 mg/l) in water, the removal efficiency was almost 100%. The removal efficiency also increased with the increase of mixing intensity and mixing time. The permeate flux slightly improved when a membrane of pore size 0.22 mu m was used with shorter hydraulic residence time and lower PAC concentration. This paper presents a mathematical model developed based on surface diffusion. The model successfully predicted the performance of this hybrid system. [References: 19]
机译:用密理博(Millipore)平板微滤模块进行了一系列实验,该模块经过改进,可以加入在线粉末状活性炭(PAC)添加。在进入膜单元之前,将直列PAC通过螺旋混合装置连续混合预定时间。结果表明,该系统在去除黄腐酸(FA)方面表现出色。与添加在线吸附剂的系统相比,该系统为PAC吸附有机物提供了足够的接触时间。从含有8 mg / l FA的水中除去了超过85%的FA。为了达到这一目的,使用了以下条件:(i)速度梯度G(混合强度)为160.4s(-1); (ii)水力停留时间(混合时间)为4分钟; (iii)PAC剂量为260 mg / l; (iv)膜孔径为0.22μm。如果水中的FA浓度较低(例如1.2 mg / l),则去除效率几乎为100%。去除效率也随着混合强度和混合时间的增加而增加。当使用孔径为0.22μm的膜且水力停留时间较短且PAC浓度较低时,渗透通量会略有改善。本文提出了基于表面扩散开发的数学模型。该模型成功预测了此混合系统的性能。 [参考:19]

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