Advances in responses of microalgal-bacterial symbiosis to emerging pollutants in wastewater

Yang Bai, Bin Ji
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Abstract

Nowadays, emerging pollutants are widely used and exist in wastewater, such as antibiotics, heavy metals, nanoparticle and microplastic. As a green alternative for wastewater treatment, microalgal-bacterial symbiosis has been aware of owning multiple merits of low energy consumption and little greenhouse gas emission. Thus, the responses of microalgal-bacterial symbiosis to emerging pollutants in wastewater treatment have become a hotspot in recent years. In this review paper, the removal performance of microalgal-bacterial symbiosis on organics, nitrogen and phosphorus in wastewater containing emerging pollutants has been summarized. The adaptation mechanisms of microalgal-bacterial symbiosis to emerging pollutants have been analyzed. It is found that antibiotics usually have hormesis effects on microalgal-bacterial symbiosis, and that microalgal-bacterial symbiosis appears to show more capacity to remove tetracycline and sulfamethoxazole, rather than oxytetracycline and enrofloxacin. Generally, microalgal-bacterial symbiosis can adapt to heavy metals at a concentration of less than 1 mg/L, but its capabilities to remove contaminants can be significantly affected at 10 mg/L heavy metals. Further research should focus on the influence of mixed emerging pollutants on microalgal-bacterial symbiosis, and the feasibility of using selected emerging pollutants (e.g., antibiotics) as a carbon source for microalgal-bacterial symbiosis should also be explored. This review is expected to deepen our understandings on emerging pollutants removal from wastewater by microalgal-bacterial symbiosis.

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微藻-细菌共生对废水中新出现的污染物的反应研究进展
如今,抗生素、重金属、纳米颗粒和微塑料等新兴污染物在废水中广泛使用和存在。作为废水处理的绿色替代品,微藻-细菌共生被认为具有能耗低、温室气体排放少等多重优点。因此,微藻-细菌共生对废水处理中新出现的污染物的响应成为近年来的热点。本文综述了微藻-细菌共生对含新兴污染物废水中有机物、氮和磷的去除性能。本文分析了微藻-细菌共生对新兴污染物的适应机制。研究发现,抗生素通常会对微藻-细菌共生产生激素效应,微藻-细菌共生似乎更有能力去除四环素和磺胺甲噁唑,而不是土霉素和恩诺沙星。一般来说,微藻-细菌共生能适应浓度低于 1 毫克/升的重金属,但当重金属浓度达到 10 毫克/升时,其去除污染物的能力就会受到明显影响。进一步的研究应关注混合的新兴污染物对微藻-细菌共生的影响,同时也应探讨将选定的新兴污染物(如抗生素)作为微藻-细菌共生的碳源的可行性。本综述有望加深我们对利用微藻-细菌共生去除废水中新出现的污染物的理解。
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