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首页> 外文期刊>The Science of the Total Environment >Slurry photocatalytic membrane reactor technology for removal of pharmaceutical compounds from wastewater: Towards cytostatic drug elimination
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Slurry photocatalytic membrane reactor technology for removal of pharmaceutical compounds from wastewater: Towards cytostatic drug elimination

机译:用于从废水中去除药物化合物的浆料光催化膜反应器技术:趋于消除细胞抑制药物

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摘要

The potential of photocatalytic membrane reactors (PMR) to degrade cytostatic drugs is presented in this work as an emerging technology for wastewater treatment Cytostatic drugs are pharmaceutical compounds (PhCs) commonly used in cancer treatment Such compounds and their metabolites, as well as their degraded by-products have genotoxic and mutagenic effects. A major challenge of cytostatic removal stands in the fact that most drugs are delivered to ambulant patients leading to diluted concentration in the municipal waste. Therefore safe strategies should be developed in order to collect and degrade the micro-pollutants using appropriate treatment technologies. Degradation of cytostatic compounds can be achieved with different conventional processes such as chemical oxidation, photolysis or photocatalysis but the treatment performances obtained are lower than the ones observed with slurry PMRs. Therefore the reasons why slurry PMRs may be considered as the next generation technology will be discussed in this work together with the limitations related to the mechanical abrasion of polymeric and ceramic membranes, catalyst suspension and interferences with the water matrix. Furthermore key recommendations are presented in order to develop a renewable energy powered water treatment based on long lifetime materials.
机译:作为一种新兴的废水处理技术,这项工作介绍了光催化膜反应器(PMR)降解细胞抑制药物的潜力。细胞抑制药物是通常用于癌症治疗的药物化合物(PhCs)。此类化合物及其代谢产物以及它们的降解-产品具有遗传毒性和诱变作用。去除细胞抑制剂的主要挑战在于以下事实:大多数药物被递送到可移动的患者,导致市政废物中的浓度降低。因此,应该制定安全的策略,以便使用适当的处理技术来收集和降解微量污染物。可以通过不同的常规方法(例如化学氧化,光解或光催化)实现抑制细胞生长的化合物的降解,但是获得的处理性能低于浆液PMR所观察到的。因此,本文将讨论浆液PMR被视为下一代技术的原因,以及与聚合物和陶瓷膜的机械磨损,催化剂悬浮以及对水基质的干扰有关的限制。此外,提出了关键建议,以便开发基于长寿命材料的可再生能源动力水处理。

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