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Acute impact of Hg2+, Cu2+, and Ag+ on the formation of biopolymers and nitrogenous soluble microbiological products in activated sludge for wastewater treatment

Authors :
Menghan Guo
Xiaopeng Qiu
Yanchun Ke
Tong Liu
Min Zhong
Xin Cao
Zan Kong
Linjie Wu
Xing Zheng
Chanyu Yang
Zi Wang
Baozhu Pan
Source :
Environmental Pollution. 267:115388
Publication Year :
2020
Publisher :
Elsevier BV, 2020.

Abstract

In the present work, acute impact of heavy metals on activated sludge was investigated, specifically the release of biopolymers and nitrogenous soluble microbiological products (N-SMP) that significantly impact tertiary effluent quality. Based on the previously reported studies, Hg2+ and Ag+ were selected as representative “non-essential” heavy metals, while Cu2+ was selected as the “essential” heavy metal. Stress tests show that under the present experimental conditions, adding a higher concentration of heavy metals to the activated sludge increases the concentration of biopolymers and SMP in the supernatant; N-SMP increased more significantly than carbonaceous products, implying a greater risk of formation of toxic nitrogenous disinfection by-products or membrane fouling in relevant tertiary treatment processes. The severity of the release of SMP into the supernatant depended on the heavy metal, with an order of Hg2+ > Ag+ > Cu2+ (“non-essential” > “essential”) under identical molar concentrations. The mass balance of typical organics (e.g., biopolymers) in SMP and extracellular polymeric substances (EPS) in activated sludge was analyzed, and a negative correlation between the organics in the SMP and tightly bound EPS was observed, implying that a significant fraction of the SMP could be quickly released from the tightly bound EPS under heavy metal shock conditions and could be related to cell response or damage.

Details

ISSN :
02697491
Volume :
267
Database :
OpenAIRE
Journal :
Environmental Pollution
Accession number :
edsair.doi...........cf77bd33556b9b5bba426b9004430368
Full Text :
https://doi.org/10.1016/j.envpol.2020.115388