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Humic acid as a fouling agent in filtration

机译:腐殖酸在过滤中作为污垢剂

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Humic acid is a degradation product of lignin, carbohydrate and protein. It is contained in soils and therefore it is often present in surface waters in small amounts, which vary with the seasons. Besides giving the waters a yellowish to brownish color, the humic acid can also cause fouling problems in filtration of surface waters. In the present study humic acid was studied in different types of filtration processes because it seemed to be a problem at many mill sites using humic acid containing process waters. Humic acid was studied as a model substance in pressure and membrane filtration at different low concentrations. In the pressure filtration experiments it was added to a copper concentrate, containing as much iron and sulfur as copper. In membrane filtration it was filtered together with iron chloride. Also means to measure humic acid were investigated. In pressure filtration either capillary disc filters made of aluminum and silica oxides or filters made of different types of woven cloth were used. In membrane filtration the experiments were made with organic nano- and ultrafiltration membranes and with inorganic ultrafiltration membranes. The experiments were made on the laboratory scale. The humic acid could be analyzed using SEM-EDAX methods or with UV/VIS spectrophotometric methods. The studies showed that humic acid was most harmful in capillary pressure filtration. Even at small concentrations the filter was blocked and the cake did not form properly when added to the ore concentrates to be filtered. The flux decreased greatly with an addition of 10 ppm, and the filter was almost completely blocked when 100 ppm were added. In pressure filtration using cloth the harmful effect was not as remarkable. In membrane filtration humic acid did not disturb filtration as much as in pressure filtration even though it was used together with iron chloride. The effect of humic acid was a bit larger in ultrafiltration than in nanofiltration. The reason for the fouling tendency of humic acid seems to be its binding tendency to multivalent salts. The capillary filters used in pressure filtration are positively charged containing Al and Si. The humic acid is either not charged or somewhat negatively charged and probably forms chelates with the metals. It can be seen as a gel-like layer on the filter, which disturbs the formation of the cake and blocks the pores of the filter.
机译:腐殖酸是木质素,碳水化合物和蛋白质的降解产物。它包含在土壤中,因此通常以少量存在于地表水中,随季节而变化。腐殖酸除了使水呈淡黄至棕褐色外,还会在地表水过滤中引起结垢问题。在本研究中,对腐殖酸进行了不同类型的过滤过程研究,因为在许多使用腐殖酸的生产用水厂中,腐殖酸似乎是一个问题。研究了在不同低浓度下压力和膜过滤中作为模型物质的腐殖酸。在压力过滤实验中,将其添加到铜精矿中,其中铁和硫的含量与铜一样多。在膜过滤中,将其与氯化铁一起过滤。还研究了测量腐殖酸的方法。在压力过滤中,要么使用由铝和二氧化硅制成的毛细管盘式过滤器,要么使用由不同类型的机织织物制成的过滤器。在膜过滤中,实验是用有机纳米和超滤膜以及无机超滤膜进行的。实验是在实验室规模上进行的。腐殖酸可以使用SEM-EDAX方法或UV / VIS分光光度法进行分析。研究表明,腐殖酸在毛细管压力过滤中危害最大。即使在低浓度下,过滤器也被堵塞,当添加到要过滤的精矿中时,滤饼不能正确形成。添加10 ppm时,通量大大降低,添加100 ppm时,过滤器几乎完全堵塞。在使用布进行压力过滤时,有害作用并不明显。在膜过滤中,即使与氯化铁一起使用,腐殖酸也不会像在压力过滤中那样干扰过滤。在超滤过程中,腐殖酸的作用要比在纳滤过程中大。腐殖酸结垢趋势的原因似乎是其与多价盐的结合趋势。压力过滤中使用的毛细管过滤器带正电,含有Al和Si。腐殖酸不带电荷或带负电荷,可能与金属形成螯合物。可以将其视为过滤器上的凝胶状层,它会干扰滤饼的形成并阻塞过滤器的孔。

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