4.7 Article

Quaternary ammonium compounds promoted anoxic sludge granulation and altered propagation risk of intracellular and extracellular antibiotic resistance genes

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 445, Issue -, Pages -

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ELSEVIER
DOI: 10.1016/j.jhazmat.2022.130464

Keywords

Quaternary ammonium compounds; Denitrification system; Sludge granulation; Bacterial community structure; Intracellular and extracellular antibiotic resistance genes

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Surfactants can affect sludge morphology and disinfectants are connected to antibiotic resistance genes (ARGs). Therefore, further investigation is needed to understand the impact of long-term exposure to quaternary ammonium compounds (QACs) on activated sludge and ARGs. This study examined the effects of different QACs on denitrification and observed an inhibitory effect ranking of DADMAC C12 > BAC C12 > ATMAC C12. DADMAC C12 also promoted the formation of granular sludge and the proliferation of extracellular ARGs.
Surfactants could influence sludge morphology and disinfectants were linked to antibiotic resistance genes (ARGs). Thus, the response of activated sludge and ARGs to long-term quaternary ammonium compounds (QACs) exposure required further investigation, which is a popular surfactant and disinfectant. Here, three sequencing batch reactors were fed with 5 mg/L most frequently detected QACs (dodecyl trimethyl ammonium chloride (ATMAC C12), dodecyl benzyl dimethyl ammonium chloride (BAC C12) and didodecyl dimethyl ammonium chloride (DADMAC C12)) for 180 d. The long-term inhibitory effect on denitrification ranked: DADMAC C12 > BAC C12 > ATMAC C12. Besides, obvious granular sludge promoted by the increase of alpha-Helix/(8-Sheet + Random coil) appeared in DADMAC C12 system. Moreover, intracellular ARGs increased when denitrification systems encountered QACs acutely but decreased in systems chronically exposed to QACs. Although replication and repair metabolism in ATMAC C12 system was higher, ATMAC C12 significantly promoted proliferation of extracellular ARGs. It was noteworthy that the propagation risk of extracellular ARGs in sludge increased significantly during sludge granulation process, and intracellular sul2 genes in sludge and water both increased with the granular diameter in DADMAC C12 system. The universal utilization of QACs may enhance antibiotic resistance of bacteria in wastewater treatment plants, deserving more attention.

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