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Ultrafiltration and nanofiltration in the pulp and paper industry using cross-rotational (CR) filters

机译:使用交叉旋转(CR)过滤器的纸浆和造纸工业中的超滤和纳滤

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Ultra- and nanofiltration with high shear CR-filters have been utilized for cleaning of clear filtrates and effluents from the pulp and paper industry. The aim was to find out how different nanofiltration membranes operate at high shear conditions. The filtration efficiency of the membranes was evaluated by measuring flux, retention and fouling at various recovery and pH conditions. High fluxes (~100 L/(m~2h)) for nanofiltration membranes were measured when circulation waters from the paper machine were filtered at neutral conditions. In the filtration of discharge of external activated sludge treatment plants we measured fluxes around 150 L/(m~2h) even at a concentration factor of 12. The best NF membranes removed over 80% of the organic carbon and of the conductivity and almost completely eliminated the color. With acidic waters fluxes and retentions were significantly lower. The NF270 membrane from Dow and the Desal-5 membranes from Osmonics had the highest flux and retention properties. However, the Desal-5 membrane lost its retention properties slowly, which restricts its use in the high shear CR-filter. CR-nanofiltration can be used in the pulp and paper industry without feed pre-treatment by ultrafiltration. This increases the attractiveness of high shear CR-nanofiltration.
机译:具有高剪切CR滤光器的超滤波已经用于清洁纸浆和造纸工业的透明滤液和流出物。目的是了解如何在高剪切条件下运行不同的纳滤膜。通过在各种回收和pH条件下测量助焊剂,保持和污垢来评估膜的过滤效率。当从造纸机的循环水中过滤在中性条件下时测量纳滤膜的高通量(〜100L /(M〜2H))。在过滤外部活化污泥处理厂的放电中,即使在12的浓度因子为12.在12的浓度因子中,我们测量的通量约为150升/(m〜2h)。最佳NF膜以超过80%的有机碳和电导率和几乎完全除去消除了颜色。酸性水助熔剂和保持率显着降低。来自陶氏的NF270膜和来自锇的脱脂膜具有最高的通量和保留性能。然而,脱果5膜缓慢地失去了其保留性质,这限制了其在高剪切Cr过滤器中的使用。 Cr-Nanofiltration可用于纸浆和造纸工业,无需通过超滤预处理。这增加了高剪切Cr-nanofiltration的吸引力。

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