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Algal-based removal strategies for hazardous contaminants from the environment - A review

机译:来自环境的危险污染物的基于藻类的去除策略 - 综述

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Owing to the controlled or uncontrolled industrial wastewater disposal, pharmaceutical-based hazardous emerging contaminants (ECs) can be found in the environment all over the world. With ever-increasing socioeconomic aspects and environmental awareness, people are now more concerns about the widespread occurrences of hazardous and persistent contaminants, around the globe. In this context, several studies have already shown that various types of emerging and/or re-emerging contaminants, regardless the source, type and concentration, are of supreme threat to the living system of flora and fauna. Recently, algae-based bioreactors have gained special research interest as a promising way to remove pharmaceuticals-based ECs from the wastewater either partially or completely. This paper covers the progress on the removal of selected pharmaceuticals using bioreactors. In laboratory scale studies, high removal percentages have been reached for most selected pharmaceuticals, but data on full-scale bioreactors is limited. In this paper, two types of bioreactors are discussed, i.e., (1) open pond and (2) bubble column photobioreactor, which are considered sustainable and an effective alternative to remove ECs. In these bioreactors, high removal percentages (90%) have been found for metoprolol, triclosan, and salicylic acid, moderate (50-90%) for carbamazepine and tramadol and very low (10%) for trimethoprim and ciprofloxacin by inoculating different microalgae. This technique may open new opportunities for the treatment of wastewater and reduce the environmental pollution that can have adverse effects on the ecosystem and human health. In summary, the present review focuses on the microalgae for wastewater remediation. An effort has also been made to describe the generalities of the photobioreactor. (c) 2019 Elsevier B.V. All rights reserved.
机译:由于受控或不受控制的工业废水处理,可以在世界各地的环境中找到药物危险的危险污染物(ECS)。随着社会经济方面和环境意识的永远,人们现在更加担心全球危险和持续污染物的广泛发生。在这种情况下,已经表明,几项研究已经表明,无论源,类型和浓度,各种类型的新兴和/或重新出现的污染物对Flora和动物群的生活系统至关重要。最近,基于藻类的生物反应器已经获得了特殊的研究兴趣,作为从废水部分或完全从废水中除去药物的ECS的有希望的方法。本文涵盖了使用生物反应器去除所选药物的进展。在实验室规模研究中,对于大多数选定的药物来说,已经达到了高除去百分比,但全尺寸生物反应器的数据有限。本文讨论了两种类型的生物反应器,即(1)开放池塘和(2)泡柱光生物反应器,其被认为是可持续的和替代的替代方案以除去EC。在这些生物反应器中,已发现高巯基,三氯烷和水杨酸,适度(50-90%)的高级去除率(> 90%),通过接种不同,对三甲双胍和环丙沙星非常低(<10%)微藻。这种技术可能为治疗废水开辟新的机会,减少对生态系统和人类健康产生不利影响的环境污染。总之,本综述重点介绍废水修复的微藻。还努力描述了光生物反应器的总体。 (c)2019 Elsevier B.v.保留所有权利。

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