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Reducing the pollutant load of olive mill wastewater by photocatalytic membranes and monitoring the process using both tyrosinase biosensor and COD test

机译:通过光催化膜减少橄榄厂废水的污染物负荷并使用酪氨酸酶生物传感器和COD测试监测过程

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摘要

Photocatalytic technique had already been employed in the treatment of olive mill wastewater (OMW) using the photocatalysis in suspension. The coupling of photocatalytic and membrane techniques should result in a very powerful process bringing great innovation to OMW depollution. Despite the potential advantages using these hybrid photoreactors, research on the combined use of photocatalysis and membranes has so far not been sufficiently developed. The present paper describes a study to assess the photocatalytic efficacy of a new ceramic membrane containing titanium dioxide, irradiated by UV light, used to abate the pollutant load of OMW. Good results were obtained (more than 90% of the phenol content was removed and the COD decrease was of the order of 46–51% in 24 h) particularly using the ceramic membrane compared with those offered by analogous catalytic membranes made of metallic or polymeric materials.
机译:使用悬浮液中的光催化技术,光催化技术已用于处理橄榄磨废水(OMW)。光催化技术和膜技术的结合将导致一个非常强大的过程,为OMW污染带来巨大的创新。尽管使用这些混合光反应器具有潜在的优势,但迄今为止,有关光催化和膜结合使用的研究还不够充分。本文描述了一项研究,以评估一种新型的含二氧化钛的陶瓷膜的光催化效能,该膜被紫外线照射,用于减轻OMW的污染物负荷。与使用金属或聚合物制成的类似催化膜相比,使用陶瓷膜可获得更好的效果(在24小时内去除了90%以上的苯酚,COD降低了46-51%左右)。材料。

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