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Comparison of ceramic and polymeric ultrafiltration membranes for treating wastewater from metalworking industry

机译:陶瓷和聚合物超滤膜处理金属加工废水的比较

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摘要

Oily wastewater is one of the major pollutants that occur in the metal industry and is very harmful to the environment, especially to aquatic life. All conventional methods such as dissolved air flotation, coagulation, adsorption, used during oily wastewater treatment have their advantages but none is as effective as membrane technology, which offers many possibilities regarding the applications of different materials, modules and pressures. The aim of this study was a comparison between the ceramic and polymeric membrane modules for model solutions (1%, 2% and 4% solutions of hydraulic fluid Ultra Safe 620 in acidic and alkaline mediums). The model solution was filtered on a laboratory scale by using two plants equipped with ceramic (Al2O3/ZrO2) and polymeric (PVC) membrane modules. The best result was obtained when using ceramic membranes where reversible membrane fouling was mainly presented, whilst in the case of polymeric membranes the irreversible membrane fouling was dominant. The physico-chemical analyses were performed by measuring pH, conductivity, turbidity, particle size and zeta potential, chemical oxygen demand, and lipophilic substances. Regarding substances' removals, the ceramic membranes were more efficient compared to the polymeric ones.
机译:含油废水是金属工业中的主要污染物之一,对环境,特别是对水生生物非常有害。在含油废水处理过程中使用的所有常规方法(例如,溶气气浮,凝聚,吸附)均具有优势,但没有一个比膜技术有效,因为膜技术为不同材料,组件和压力的应用提供了许多可能性。这项研究的目的是比较用于模型溶液的陶瓷膜组件和聚合物膜组件(液压液Ultra Safe 620在酸性和碱性介质中的1%,2%和4%溶液)。通过使用配备有陶瓷(Al2O3 / ZrO2)和聚合物(PVC)膜组件的两个工厂在实验室规模上过滤模型溶液。当使用主要表现为可逆膜结垢的陶瓷膜时,可获得最佳结果,而在聚合物膜的情况下,不可逆膜结垢占主导。通过测量pH,电导率,浊度,粒度和ζ电位,化学需氧量和亲脂性物质进行理化分析。关于物质的去除,陶瓷膜比聚合物膜更有效。

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