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Membrane for water reuse: effect of pre-coagulation on fouling and selectivity

机译:回水膜:预混凝对结垢和选择性的影响

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Membrane filtration is adequate for producing disinfected clear water suitable for various kinds of applications. However, fouling of membranes is the main limitation. This study has focused on the ability of flocculation to remove from wastewater the organic colloids which play an important role in the fouling phenomena. First, flocculation was optimized for high-efficiency removal of suspended solids and organic material, and then, at a selected ferric chloride dose and pH, was used as a first step before filtration on membranes ranging from UF (50 KDa) to NF. This resulted in an improvement of the filtration flux. Fouling increased when high molecular weight cut-off (MWCO) membranes were used. The fouling mechanism seems to be blocking, by internal clogging and cake formation becoming preponderant with time. pH 5.5 (charge neutralization zone) provided better removal and lower fouling intensity than pH 7.8 (sweep coagulation zone). Ultrafiltration of 4 KDa at acidic pH 5.5 and 150 mg/L ferric chloride could reduce DOC by 70
机译:膜过滤足以产生适合各种应用的消毒清水。然而,膜的结垢是主要的限制。这项研究的重点是絮凝从废水中去除在结垢现象中起重要作用的有机胶体的能力。首先,对絮凝进行了优化,以高效去除悬浮的固体和有机物质,然后,在选定的三氯化铁剂量和pH值下,将其用作第一步,然后在从UF(50 KDa)到NF的膜上过滤。这导致过滤通量的改善。当使用高分子量截留(MWCO)膜时,结垢增加。随着时间的流逝,内部堵塞和结块的形成成为主要的结垢机制。 pH 5.5(电荷中和区)比pH 7.8(清扫凝结区)具有更好的去除效果和更低的结垢强度。在酸性pH 5.5和150 mg / L氯化铁下超滤4 KDa可使DOC减少70

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