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Treatment of Tannery Wastewater with Vibratory Shear-Enhanced Processing Membrane Filtration

机译:振动剪切强化处理膜过滤处理制革废水

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The performance of a vibratory shear-enhanced process (VSEP) combined with an appropriate membrane unit for the treatment of simulated or industrial tannery wastewaters was investigated. The fundamental operational and pollution parameters were evaluated, i.e., the membrane type, the applied vibration amplitude, as well as the removal rates (%) of tannins, chemical oxygen demand (COD), N total , turbidity and color. Regarding the system’s treatment efficiency, specific emphasis was given towards the removal of organics (expressed as COD values), suspended solids (SS), conductivity (as an index of dissolved solids’ presence) and total nitrogen. The removal of organic matter in terms of COD exceeded 75% for all the examined cases. The quality of treated wastewater was affected not only by the membrane specific type (i.e., the respective pore diameters), but also by the applied vibration amplitude. Furthermore, an average 50% removal rate, regarding the aforementioned parameters, was observed both for the simulated and the industrial tannery wastewaters during the microfiltration (MF) experiments. That removal rate was further increased up to 85%, when ultrafiltration (UF) was applied, and up to 99% during the Reverse Osmosis (RO) experiments, considering the maximum applied vibration amplitude (31.75 mm).
机译:研究了振动剪切增强工艺(VSEP)与合适的膜单元相结合处理模拟或工业制革废水的性能。评估了基本的操作和污染参数,即膜的类型,施加的振动幅度以及单宁酸的去除率(%),化学需氧量(COD),总氮,浊度和颜色。关于系统的处理效率,重点是去除有机物(表示为COD值),悬浮固体(SS),电导率(表示存在的溶解固体)和总氮。在所有检查的案例中,以COD计的有机物去除率均超过75%。处理后的废水的质量不仅受到膜的特定类型(即各自的孔径)的影响,还受到施加的振动幅度的影响。此外,在微滤(MF)实验过程中,对于模拟废水和工业制革废水,均观察到上述参数的平均50%去除率。考虑到施加的最大振动幅度(31.75 mm),使用超滤(UF)时,去除率进一步提高到了85%,而在反渗透(RO)实验期间,去除率又提高到了99%。

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