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通过芬顿试剂调理同时削弱抗生素抗性基因并改善污水污泥的脱水性能:污泥预酸化的关键作用。

Simultaneously attenuating antibiotic resistance genes and improving the dewaterability of sewage sludge by conditioning with Fenton's reagent: the pivotal role of sludge pre-acidification.

机构信息

Department of Environmental Engineering, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing, 210095, China.

Jiangsu Collaborative Innovation Center for Solid Organic Waste Resource Utilization, Nanjing, 210095, China.

出版信息

Environ Sci Pollut Res Int. 2021 Mar;28(11):13300-13311. doi: 10.1007/s11356-020-11562-w. Epub 2020 Nov 11.

Abstract

Fenton conditioning processes have been recently employed to improve the dewaterability of sewage sludge. However, it remains unclear whether the conditioning with Fenton's reagent would simultaneously attenuate antibiotic resistance genes (ARGs) in sludge and improve sludge dewaterability. It was found in the present study that sludge pre-acidification played a pivotal role in simultaneously removing ARGs and improving sludge dewaterability by conditioning with Fenton's reagent. When the sewage sludge was pre-acidified to pH = 3.0 and was then conditioned using Fenton's reagent, the absolute abundances of the total ARGs and the total mobile genic elements (MGEs) in conditioned sludge were reduced by 1.85-2.10 and 2.84-3.12 log units, respectively. Additionally, sludge capillary suction time (CST) and specific resistance to filtration (SRF) were drastically reduced, and the moisture content (MC) in dewatered sludge cake was reduced to only 60.61-69.95%. Such effective attenuation of ARGs and MGEs in conditioned sludge led to their removal in both the dewatered sludge cakes and dewatering filtrate. However, only the improvement of sludge dewaterability was attained by sludge conditioning with Fenton's reagent but without sludge pre-acidification. During the conditioning treatment, the removal of loosely bound extracellular polymeric substance (EPS) and tightly bound EPS in conditioned sludge contributed to the improvement of sludge dewaterability, and the damage of sludge microbial cells was highly correlated with the attenuation of antibiotic resistance. Thus, sludge pre-acidification combined with conditioning using Fenton's reagent can be employed to simultaneously attenuate the antibiotic resistance in sewage sludge and improve sludge dewaterability.

摘要

芬顿调理过程最近被用于改善污水污泥的脱水性能。然而,用芬顿试剂调理是否会同时削弱污泥中的抗生素抗性基因(ARGs)并改善污泥的脱水性能仍不清楚。本研究发现,污泥预酸化在通过芬顿试剂调理同时去除 ARGs 和改善污泥脱水性能方面起着关键作用。当污水污泥预酸化至 pH=3.0 并用芬顿试剂调理时,调理污泥中总 ARGs 和总可移动遗传元件(MGEs)的绝对丰度分别降低了 1.85-2.10 和 2.84-3.12 个对数单位。此外,污泥毛细吸水时间(CST)和过滤比阻(SRF)急剧降低,脱水污泥饼中的水分含量(MC)降低至仅 60.61-69.95%。调理污泥中如此有效地衰减 ARGs 和 MGEs 导致它们在脱水污泥饼和脱水滤液中都被去除。然而,仅通过未经污泥预酸化的芬顿试剂调理污泥就可以改善污泥的脱水性能。在调理处理过程中,调理污泥中松散结合的胞外聚合物(EPS)和紧密结合的 EPS 的去除有助于改善污泥的脱水性能,而污泥微生物细胞的损伤与抗生素抗性的衰减高度相关。因此,污泥预酸化与芬顿试剂调理相结合可用于同时削弱污水污泥中的抗生素抗性并改善污泥的脱水性能。

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