Activated carbon adsorption for mitigating the harmful effects of antibiotics on the biological activated sludge: Effect on heterotrophic kinetics through respirometry

呼吸测定法 活性污泥 废水 污水处理 异养 生物反应器 环境化学 生物降解 流出物 生物量(生态学) 活性炭 溶解有机碳 化学 营养物 有机质 环境工程 吸附 环境科学 生物 细菌 生态学 生物化学 有机化学 遗传学
作者
Eva Dı́az,Laura García‐Menéndez,Juan Carlos Leyva‐Díaz,Salvador Ordóñez
出处
期刊:Water Environment Research [Wiley]
卷期号:96 (8)
标识
DOI:10.1002/wer.11086
摘要

Abstract Conventional wastewater treatment plants (WWTPs) are not designed for the abatement of antibiotics, and their effluents are one of the main entry ways of these emerging contaminants to the aquatic environment, causing major concern due to their toxicity, persistence, and bioaccumulation. When wastewater containing antibiotics enters the bioreactor, they can impact microbial communities of the activated sludge, affecting biodegradation processes of organic matter and nutrients. There is scarce information about the effect of activated carbon on the activated sludge within the bioreactor in presence of antibiotics. In light of this, the effect of representative antibiotics, ciprofloxacin (CIP), nalidixic acid (NAL), and erythromycin (ERY), on the performance of a conventional activated sludge of a WWTP was analyzed by respirometry with and without activated carbon. NAL and ERY negatively affected the net heterotrophic biomass growth rate ( r′ x,H ), with reduction percentages of 26%–90% and 31%–81%, respectively. The addition of activated carbon mitigated this effect, especially for ERY, with increments of even 8% in the r′ x,H for the hybrid process when working with 5 ppm of ERY and 80 ppm of activated carbon compared with the value in the absence of antibiotic and activated carbon. This effect was attributed to the enhanced retention of ERY, in comparison to NAL, on the surface of the activated carbon, probably due to its higher molecular size and affinity towards the activated carbon (log K ow = 3.06). This effect was more marked at low sludge retention times (below 8 days). Practitioner points Ciprofloxacin (CIP), nalidixic acid (NAL), and erythromycin (ERY) were studied. NAL and ERY exerted negative impact on heterotrophic growth rate. Effect of antibiotics on microorganisms in the presence of activated carbon was studied. Activated carbon was mainly relevant for ERY due to its adsorption retention. Enhancement by activated carbon was more significant at low sludge retention times.
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