A new ceramic microfiltration membrane based on olive seeds: development and characterization

Mourad Addich, Abdelillah Fatni, Siham Bouzrour, Gomathi Thandapani, Noureddine El Baraka, Abdellatif Laknifli
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Abstract

The development of low-cost methods for wastewater treatment and the separation of oil-in-water emulsions is of considerable significance. Recently, natural material-based, inexpensive membranes have become a hot area of research. In this work, natural olive seeds were used to develop a novel ceramic membrane support. With the oil filtration process in place, the choice was reached to utilize the olive kernels’ beneficial qualities best. The process involved blending plastic paste with water and organic ingredients, followed by extruding the resulting paste into a porous tubular. After firing at 200 °C/2 h, the membrane's water permeability and porosity were 1,852 L/h m2 bar and 45%, respectively, and its average pore width varied from 2 to 15 μm. The efficiency of the microfiltration membrane in separating oil-in-water emulsions was assessed using two test solutions containing oil concentrations of 500 and 1,000 mg/L. Under a transmembrane pressure of 1 bar, the membrane exhibited exceptional permeate flux exceeding 200 L/m2 h, along with a high oil rejection rate of over 96% across all feed concentrations.
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基于橄榄籽的新型陶瓷微滤膜:开发与表征
开发用于废水处理和水包油乳液分离的低成本方法意义重大。最近,基于天然材料的廉价膜已成为研究的热点领域。在这项工作中,利用天然橄榄籽开发了一种新型陶瓷膜支撑材料。在油过滤过程中,选择了最能利用橄榄果核的有益品质。该工艺包括将塑料糊状物与水和有机成分混合,然后将得到的糊状物挤压成多孔管状。在 200 °C/2 h 煅烧后,膜的透水性和孔隙率分别为 1,852 L/h m2 bar 和 45%,平均孔隙宽度为 2 至 15 μm。微滤膜分离水包油型乳状液的效率是通过两种含油浓度分别为 500 毫克/升和 1,000 毫克/升的测试溶液来评估的。在 1 巴的跨膜压力下,膜的渗透通量超过了 200 升/平方米小时,在所有进料浓度下的油排斥率均超过 96%。
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