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学者姓名:高景峰

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Unignorable environmental risks: Insight into differential responses between biofilm and plastisphere in sulfur autotrophic denitrification system upon exposure to quaternary ammonium compounds SCIE
期刊论文 | 2025 , 487 | JOURNAL OF HAZARDOUS MATERIALS
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Abstract :

Concerns of quaternary ammonium compounds (QACs) and microplastics (MPs) as emerging containments accumulating in wastewater treatment plants (WWTPs) have attracted much attention. Plastisphere with distinctive microbial communities might also be the repository for pathogens and resistance genes (RGs). Thus, the effects of three representative QACs with different concentrations on biofilm and plastisphere were studied in sulfur autotrophic denitrification (SAD) system. Over 100 days, 1-5 mg/L QACs exerted few impacts on system stability, whereas 15 mg/L QACs seriously lowered the microbial activity and the inhibitory effects ranked: benzylalkyldimethylethyl ammonium compound > dialkyldimethyl ammonium compound > alkyltrimethyl ammonium compound. Dosing of QACs in SAD system not only altered the microbial community structure and assembly, but also induced higher levels of intracellular RGs and extracellular RGs in plastisphere than in biofilm. Although the free RGs abundances in water slightly lowered, they might also pose great ecological risks. Pathogens identified as the potential hosts of RGs were more prone to colocalizing in plastisphere. Mobile genetic elements directly contributed to the three-fraction RGs transmission in SAD system. This study offered new insights into the differential responses of biofilm and plastisphere under QACs stress and guided for the disinfectants and MPs pollution containment in WWTPs.

Keyword :

Microbial community dynamics Microbial community dynamics Quaternary ammonium compounds Quaternary ammonium compounds Resistance genes Resistance genes Plastisphere Plastisphere Sulfur autotrophic denitrification Sulfur autotrophic denitrification

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GB/T 7714 Wang, Yuxuan , Gao, Jingfeng , Wang, Zhiqi et al. Unignorable environmental risks: Insight into differential responses between biofilm and plastisphere in sulfur autotrophic denitrification system upon exposure to quaternary ammonium compounds [J]. | JOURNAL OF HAZARDOUS MATERIALS , 2025 , 487 .
MLA Wang, Yuxuan et al. "Unignorable environmental risks: Insight into differential responses between biofilm and plastisphere in sulfur autotrophic denitrification system upon exposure to quaternary ammonium compounds" . | JOURNAL OF HAZARDOUS MATERIALS 487 (2025) .
APA Wang, Yuxuan , Gao, Jingfeng , Wang, Zhiqi , Zhao, Yifan , Wang, Hanyi , Guo, Yi et al. Unignorable environmental risks: Insight into differential responses between biofilm and plastisphere in sulfur autotrophic denitrification system upon exposure to quaternary ammonium compounds . | JOURNAL OF HAZARDOUS MATERIALS , 2025 , 487 .
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Elucidating responses of anammox system to the single and combined short-term stress of benzethonium chloride and polyurethane microplastics: Performance, community structure and resistance genes SCIE
期刊论文 | 2025 , 505 | CHEMICAL ENGINEERING JOURNAL
WoS CC Cited Count: 1
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Benzethonium chloride (BZC) is a type of quaternary ammonium compounds (QACs), which could flow into the sewage and coexist with common microplastics (MPs), potentially causing short-term stress to wastewater treatment plants (WWTPs). This study carried out batch experiments to explore the responses of the anaerobic ammonium oxidation (anammox) system to single and combined short-term stress of different concentrations of BZC and polyurethane (PU) MPs. The single and combined short-term stress of high concentration BZC (5 mg/L) exhibited a notable inhibitory impact on the performance of the anammox system, and it also markedly decreased the abundance of anammox functional genes and anammox bacteria (AnAOB). Moreover, the shortterm stress of 5 mg/L BZC promoted the enrichment of resistance genes (RGs) in water and extracellular RGs in sludge, while the stress of PU MPs resulted in the proliferation of mobile genetic elements (MGEs) in sludge, thus increasing the risk of RGs transmission. This research focused on the short-term stress of BZC and PU MPs on the anammox system and brought new insights into the effects of BZC and PU MPs on the transmission patterns of RGs and their interactions with the microbial community.

Keyword :

Polyurethane microplastics Polyurethane microplastics Anammox Anammox Resistance genes Resistance genes Benzethonium chloride Benzethonium chloride

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GB/T 7714 Lu, Tianyi , Gao, Jingfeng , Zhao, Jingqiang et al. Elucidating responses of anammox system to the single and combined short-term stress of benzethonium chloride and polyurethane microplastics: Performance, community structure and resistance genes [J]. | CHEMICAL ENGINEERING JOURNAL , 2025 , 505 .
MLA Lu, Tianyi et al. "Elucidating responses of anammox system to the single and combined short-term stress of benzethonium chloride and polyurethane microplastics: Performance, community structure and resistance genes" . | CHEMICAL ENGINEERING JOURNAL 505 (2025) .
APA Lu, Tianyi , Gao, Jingfeng , Zhao, Jingqiang , Zhao, Yifan , Xu, Hongxin , Wang, Yuxuan et al. Elucidating responses of anammox system to the single and combined short-term stress of benzethonium chloride and polyurethane microplastics: Performance, community structure and resistance genes . | CHEMICAL ENGINEERING JOURNAL , 2025 , 505 .
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Natural pyrite and ascorbic acid co-enhance periodate activation for inactivation of antibiotic resistant bacteria and inhibition of resistance genes transmission: A green disinfection process dominated by singlet oxygen SCIE
期刊论文 | 2024 , 477 | JOURNAL OF HAZARDOUS MATERIALS
WoS CC Cited Count: 3
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Abstract :

The transmission of antibiotic resistance genes (ARGs) and the propagation of antibiotic resistant bacteria (ARB) threaten public health security and human health, and greener and more efficient disinfection technologies are expected to be discovered for wastewater treatment. In this study, natural pyrite and ascorbic acid (AA) were proposed as environmental-friendly activator and reductant for periodate (PI) activation to inactivate ARB. The disinfection treatment of PI/pyrite/AA system could inactivate 5.62 log ARB within 30 min, and the lower pH and higher PI and natural pyrite dosage could further boost the disinfection efficiency. The 1 O 2 and SO 4 center dot- were demonstrated to be crucial for the inactivation of ARB in PI/pyrite/AA system. The disinfection process destroyed the morphological structure of ARB, inducing oxidative stress and stimulating the antioxidant system. The PI/pyrite/AA system effectively reduced the intracellular and extracellular DNA concentration and ARGs abundance, inhibiting the propagation of ARGs. The presence of AA facilitated the activation of PI with natural pyrite and significantly increased the concentration of Fe2+ 2 + in solution. The reusability of natural pyrite, the safety of the disinfection by-products and the inhibition of ARB regeneration indicated the application potential of PI/pyrite/AA system in wastewater disinfection.

Keyword :

Antibiotic resistant bacteria Antibiotic resistant bacteria Ascorbic acid Ascorbic acid Antibiotic resistance genes Antibiotic resistance genes Natural pyrite Natural pyrite Periodate Periodate

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GB/T 7714 Chen, Hao , Gao, Jingfeng , Wang, Qian et al. Natural pyrite and ascorbic acid co-enhance periodate activation for inactivation of antibiotic resistant bacteria and inhibition of resistance genes transmission: A green disinfection process dominated by singlet oxygen [J]. | JOURNAL OF HAZARDOUS MATERIALS , 2024 , 477 .
MLA Chen, Hao et al. "Natural pyrite and ascorbic acid co-enhance periodate activation for inactivation of antibiotic resistant bacteria and inhibition of resistance genes transmission: A green disinfection process dominated by singlet oxygen" . | JOURNAL OF HAZARDOUS MATERIALS 477 (2024) .
APA Chen, Hao , Gao, Jingfeng , Wang, Qian , Liu, Ying , Fu, Xiaoyu , Guo, Yi et al. Natural pyrite and ascorbic acid co-enhance periodate activation for inactivation of antibiotic resistant bacteria and inhibition of resistance genes transmission: A green disinfection process dominated by singlet oxygen . | JOURNAL OF HAZARDOUS MATERIALS , 2024 , 477 .
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Whatever does not kill them makes them stronger: Using quaternary ammonia antimicrobials to alleviate the inhibition of ammonia oxidation under perfluorooctanoic acid stress SCIE
期刊论文 | 2024 , 263 | WATER RESEARCH
WoS CC Cited Count: 1
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Abstract :

Perfluorooctanoic acid (PFOA), benzalkyl dimethylammonium compounds (BAC) and antibiotic resistance genes (ARGs) have negative effects on biological sewage treatment. The performance of nitrification systems under stress of PFOA (0.1-5 mg/L) or/and BAC (0.2-10 mg/L) was explored during 84-day experiments using four sequencing batch reactors, in this study. Low (0.1 mg/L) concentration PFOA had a positive influence on ammonia removal, while medium and high (2 and 5 mg/L) concentrations PFOA caused severe inhibition. Meanwhile, PFOA stress resulted in the enrichment of ARGs in water (w-ARGs). BAC (0-10 mg/L) had no obvious influence on ammonia removal. However, BAC promoted the reduction of ARGs and the bacterial community was the main participator (48.07%) for the spread of ARGs. Interestingly, the joint stress of PFOA and BAC increased the ammonia-oxidizing bacteria (AOB) activity from 5.81 f 0.19 and 6.05 f 0.79 mg N/(g MLSS center dot h) to 7.09 f 0.87 and 7.23 f 0.29 mg N/(g MLSS center dot h) in medium and high concentrations, compared to single stress of PFOA, which was observed for the first time. BAC could reduce bioavailability of PFOA through competitive adsorption and decreasing sludge hydrophobicity by the lower beta-Sheet and alpha-Helix in tightly bound protein. Furthermore, the joint stress of PFOA and BAC was able to intensify the proliferation of w-ARGs and extracellular ARGs in sludge, and developed the most active horizontal gene transfer mediated by intl1 compared to single stress of PFOA or BAC. The batch tests verified the detoxification capacity of BAC on nitrification under 2.5 mg/L PFOA (48 h exposing), and the maximum alleviation of AOB activity was achieved at BAC and PFOA mass ratio of 2:1. In summary, BAC could be used to alleviate the inhibition of PFOA on ammonia oxidation, providing an efficient and sustainable approach in wastewater treatment.

Keyword :

Benzalkyl dimethylammonium compounds Benzalkyl dimethylammonium compounds Toxicity mitigation Toxicity mitigation Antibiotic resistance genes Antibiotic resistance genes Perfluorooctanoic acid Perfluorooctanoic acid

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GB/T 7714 Wang, Hanyi , Gao, Jingfeng , Ren, Hairong et al. Whatever does not kill them makes them stronger: Using quaternary ammonia antimicrobials to alleviate the inhibition of ammonia oxidation under perfluorooctanoic acid stress [J]. | WATER RESEARCH , 2024 , 263 .
MLA Wang, Hanyi et al. "Whatever does not kill them makes them stronger: Using quaternary ammonia antimicrobials to alleviate the inhibition of ammonia oxidation under perfluorooctanoic acid stress" . | WATER RESEARCH 263 (2024) .
APA Wang, Hanyi , Gao, Jingfeng , Ren, Hairong , Zhao, Yifan , Wang, Yuxuan , An, Jiawen et al. Whatever does not kill them makes them stronger: Using quaternary ammonia antimicrobials to alleviate the inhibition of ammonia oxidation under perfluorooctanoic acid stress . | WATER RESEARCH , 2024 , 263 .
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Quaternary ammonium compounds inhibited phosphorus removal performance and aggravated the spread of resistance genes in enhanced biological phosphorus removal systems SCIE
期刊论文 | 2024 , 502 | CHEMICAL ENGINEERING JOURNAL
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Abstract :

As a common surfactant, quaternary ammonium compounds (QACs) are often used as the main ingredient in disinfection products. Hence, the three most commonly used QACs were selected for this study, including alkyltrimethylammonium compounds (ATMACs), alkylbenzyldimethylammonium compounds (BACs) and dialkyldimethylammonium compounds (DADMACs). Typical QACs at low (0.2 mg/L), medium (1 mg/L) and high (5 mg/L) concentrations to the enhanced biological phosphorus removal (EBPR) systems were studied. The QACs exposure study was conducted for a total of 93 days using four sequential batch reactors. DADMAC-C12 had the greatest inhibitory effect on EBPR performance, followed by BAC-C12 and ATMAC-C12. On day 51, R1 (stimulated by ATMAC-C12) and R2 (stimulated by BAC-C12) recovered their EBPR performance, whereas the P removal efficiency of R3 (stimulated by DADMAC-C12) was still only 65.9 %. Furthermore, the dosage of both ATMAC-C12 and BAC-C12 promoted sludge granulation, whereas DADMAC-C12 caused slight breakdown of formed aerobic granular sludge. The median volumetric diameter in R3 initially increased to a maximum of 409.9 mu m and finally decreased to 352.6 mu m at the end of the operation. The stress of QACs resulted in an enrichment of pathogenic bacteria (e.g., Flavobacterium) and antibiotic resistant bacteria (e.g., Pseudomonas) in the systems. The abundance of Pseudomonas in R1 and R3 finally reached up to 9.40 % and 9.44 %, respectively. Additionally, QACs disrupted bacterial cell membranes and resulted in the release of intracellular resistent genes in sludge (si-RGs). Then, si-RGs converted to extracellular RGs in sludge and RGs in water. Zoogloea, Rhizobium, Turneriella and Aquimonas were the dominant potential hosts of RGs in EBPR systems dosed with QACs. This study can serve as an important reference for the control of RGs in EBPR processes.

Keyword :

Enhanced biological phosphorus removal Enhanced biological phosphorus removal Quaternary ammonium compounds Quaternary ammonium compounds Bacterial community structure Bacterial community structure Horizontal gene transfer Horizontal gene transfer Extracellular and intracellular antibiotic resistance genes Extracellular and intracellular antibiotic resistance genes

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GB/T 7714 An, Jiawen , Gao, Jingfeng , Zhao, Jingqiang et al. Quaternary ammonium compounds inhibited phosphorus removal performance and aggravated the spread of resistance genes in enhanced biological phosphorus removal systems [J]. | CHEMICAL ENGINEERING JOURNAL , 2024 , 502 .
MLA An, Jiawen et al. "Quaternary ammonium compounds inhibited phosphorus removal performance and aggravated the spread of resistance genes in enhanced biological phosphorus removal systems" . | CHEMICAL ENGINEERING JOURNAL 502 (2024) .
APA An, Jiawen , Gao, Jingfeng , Zhao, Jingqiang , Cui, Yingchao , Zeng, Liqin , Xu, Hongxin et al. Quaternary ammonium compounds inhibited phosphorus removal performance and aggravated the spread of resistance genes in enhanced biological phosphorus removal systems . | CHEMICAL ENGINEERING JOURNAL , 2024 , 502 .
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Insight into the responses of performance, bacterial community and three-fraction resistance genes to different quaternary ammonium compounds in nitrifying system under the stress of environmental ciprofloxacin SCIE
期刊论文 | 2024 , 496 | CHEMICAL ENGINEERING JOURNAL
WoS CC Cited Count: 3
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Abstract :

In recently years, an increasing number of quaternary ammonium compounds (QACs) enter waster wastewater treatment plants (WWTPs), and coexist with the environmental antibiotics in WWTPs. In this study, dodecyl trimethyl ammonium chloride (ATMAC-C12), dodecyl benzyl dimethyl ammonium chloride (BAC-C12) and didodecyl dimethyl ammonium chloride (DADMAC-C12) were added to nitrifying system treating sewage containing environmental concentration of ciprofloxacin (CIP) (0.2 mg/L), respectively, to explore the different responses of resistance genes (RGs) under the co-occurrence of different kinds of QACs and CIP in nitrifying system. Results showed that partial nitrification was achieved by QACs and CIP co-loading, and the cooccurrence of ATMAC-C12 and CIP had more serious inhibitory in the ammonia oxidation activity, functional genes, extracellular polymeric substances (EPS), and bacterial community structures than BAC-C12 and DADMAC-C12 in nitrifying system. Moreover, the co-occurrence of ATMAC-C12 and CIP stimulated the proliferation of more intracellular RGs in sludge (si-RGs), while more extracellular RGs in sludge (se-RGs) and RGs in water (w-RGs) were enriched under the co-occurrence of DADMAC-C12 and CIP. Mobile genetic elements (MGEs) cooperated with bacteria to alter the profiles of RGs. Partial least-squares path model further confirmed that MGEs had positive effects on the proliferation and transmission of si/se/w-RGs (2 = 0.647, 0.918 and 0.627), and EPS had a most important effect (2 = 1.163) on the w-RGs under the co-occurrence of QACs and CIP. Therefore, it should pay attentions to the consumptions of QACs, and avoid the proliferation and transmission of RGs caused by the co-occurrence of QACs and environmental antibiotics.

Keyword :

Environmental ciprofloxacin Environmental ciprofloxacin Nitrifying system Nitrifying system Three-fraction resistance genes Three-fraction resistance genes Quaternary ammonium compounds Quaternary ammonium compounds Co-occurrence Co-occurrence

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GB/T 7714 Xu, Hongxin , Gao, Jingfeng , Yuan, Yukun et al. Insight into the responses of performance, bacterial community and three-fraction resistance genes to different quaternary ammonium compounds in nitrifying system under the stress of environmental ciprofloxacin [J]. | CHEMICAL ENGINEERING JOURNAL , 2024 , 496 .
MLA Xu, Hongxin et al. "Insight into the responses of performance, bacterial community and three-fraction resistance genes to different quaternary ammonium compounds in nitrifying system under the stress of environmental ciprofloxacin" . | CHEMICAL ENGINEERING JOURNAL 496 (2024) .
APA Xu, Hongxin , Gao, Jingfeng , Yuan, Yukun , Zeng, Liqin , Wang, Yuxuan , Wang, Hanyi et al. Insight into the responses of performance, bacterial community and three-fraction resistance genes to different quaternary ammonium compounds in nitrifying system under the stress of environmental ciprofloxacin . | CHEMICAL ENGINEERING JOURNAL , 2024 , 496 .
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Chloroxylenol was the last straw for mixed disinfectants in inhibiting the activity of the heterotrophic/sulfur autotrophic denitrification systems: Performance, microbial community and different fractions of resistance genes SCIE
期刊论文 | 2024 , 498 | CHEMICAL ENGINEERING JOURNAL
WoS CC Cited Count: 1
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Abstract :

The effects of typical disinfectants chloroxylenol (PCMX) and benzethonium chloride (BEC) on heterotrophic/ sulfur autotrophic denitrification (HSAD) systems under single and mixed stress were studied. PCMX increased the system's denitrification activity, but BEC and mixed disinfectants, particularly mixed disinfectants, significantly reduced denitrification activity. PCMX elevated the content of extracellular polymeric substances (EPS) in HSAD system, and the structure of EPS was tight and stable. Whereas the other two systems had lower EPS content and looser structure, highlighting the greater damaging effects of BEC and mixed disinfectants. PCMX led to the enrichment of more than half of the resistance genes (RGs), while mixed disinfectants resulted in the fewest RGs enriched and the lowest correlations between bacteria and RGs of three systems. The transformation of extracellular qacE was induced by PCMX. BEC caused RGs to leak out of bacteria, and mixed disinfectants contributed to transformation and efflux of RGs. PCMX increased the abundance of Thiobacillus and Sulfurimonas. Thiobacillus was more abundant in low doses of BEC and mixed disinfectants, but it reduced at high concentrations, while the amount of Sulfurimonas continued to decrease. This study provided an insight into the effects of single and mixed disinfectants on HSAD systems, and guided future efforts to control disinfectants and RGs pollution in wastewater treatment.

Keyword :

Benzethonium chloride Benzethonium chloride Bacterial community structure Bacterial community structure Heterotrophic/sulfur autotrophic Heterotrophic/sulfur autotrophic Resistance genes Resistance genes Chloroxylenol Chloroxylenol denitrification denitrification

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GB/T 7714 Guo, Yi , Gao, Jingfeng , Yuan, Yukun et al. Chloroxylenol was the last straw for mixed disinfectants in inhibiting the activity of the heterotrophic/sulfur autotrophic denitrification systems: Performance, microbial community and different fractions of resistance genes [J]. | CHEMICAL ENGINEERING JOURNAL , 2024 , 498 .
MLA Guo, Yi et al. "Chloroxylenol was the last straw for mixed disinfectants in inhibiting the activity of the heterotrophic/sulfur autotrophic denitrification systems: Performance, microbial community and different fractions of resistance genes" . | CHEMICAL ENGINEERING JOURNAL 498 (2024) .
APA Guo, Yi , Gao, Jingfeng , Yuan, Yukun , Wang, Yuxuan , Wang, Hanyi . Chloroxylenol was the last straw for mixed disinfectants in inhibiting the activity of the heterotrophic/sulfur autotrophic denitrification systems: Performance, microbial community and different fractions of resistance genes . | CHEMICAL ENGINEERING JOURNAL , 2024 , 498 .
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Different acesulfame potassium fate and antibiotic resistance propagation pattern in nitrifying and denitrifying sludge systems SCIE
期刊论文 | 2023 , 856 | SCIENCE OF THE TOTAL ENVIRONMENT
WoS CC Cited Count: 2
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Acesulfame potassium (ACE-K) is a widely utilized sugar substitute with increasing demand, which is frequently de-tected in various environmental matrix due to recalcitrance. However, a general consensus on the contribution of ni-trifying and denitrifying process to ACE-K removal is lacking. Therefore, ACE-K removal, its effects on antibiotic resistant genes (ARGs) propagation and microbial community in nitrifying sequencing batch reactor (N-SBR) and denitrifying sequencing batch reactor (D-SBR) inoculated with the identical activated sludge were investigated. In this study, ACE-K can be eliminated in N-SBR with satisfying removal efficiency (96.76 +/- 8.33 %) after 13 d acclima-tion, while it remained persistent (average ACE-K removal efficiency of 2.24 +/- 1.86 %) in D-SBR during 84 d expo-sure. Moreover, ACE-K hardly affected the performances of these two types of reactors and had little impact on nitrifying and denitrifying functional genes. However, initial contact with ACE-K would increase ARGs abundance, network analysis showed functional bacteria in each reactor were possible ARGs hosts. Potential ACE-K degrading gen-era Chelatococcus, Bosea and Aquamicrobium were found in both reactors. LefSe analysis showed that Phyllobacteriaceae containing Aquamicrobium genus was a differentially enriched family in N-SBR. This research might provide a perspec-tive for better understanding factor affecting ACE-K fate in wastewater treatment process and its ecological risks.

Keyword :

Acesulfame potassium Acesulfame potassium Biodegradation Biodegradation Antibiotic resistance genes Antibiotic resistance genes Nitrifying and denitrifying sludge Nitrifying and denitrifying sludge

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GB/T 7714 Li, Ziqiao , Gao, Jingfeng , Zhao, Yifan et al. Different acesulfame potassium fate and antibiotic resistance propagation pattern in nitrifying and denitrifying sludge systems [J]. | SCIENCE OF THE TOTAL ENVIRONMENT , 2023 , 856 .
MLA Li, Ziqiao et al. "Different acesulfame potassium fate and antibiotic resistance propagation pattern in nitrifying and denitrifying sludge systems" . | SCIENCE OF THE TOTAL ENVIRONMENT 856 (2023) .
APA Li, Ziqiao , Gao, Jingfeng , Zhao, Yifan , Wang, Zhiqi , Cui, Yingchao , Li, Dingchang et al. Different acesulfame potassium fate and antibiotic resistance propagation pattern in nitrifying and denitrifying sludge systems . | SCIENCE OF THE TOTAL ENVIRONMENT , 2023 , 856 .
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Inhibition of Nitrospira and Nitrotoga by paracetamol achieved the rapid start-up and long-term stable operation of partial nitrification for low-strength ammonium wastewater SCIE
期刊论文 | 2023 , 454 | CHEMICAL ENGINEERING JOURNAL
WoS CC Cited Count: 10
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Achieving stable partial nitrification (PN) are the basic guarantee of anaerobic ammonia oxidation (anammox) process. However, there is no recognized feasible method for rapidly achieving stable PN in municipal wastewater, and further research is necessary. In this study, paracetamol was proved as an effective nitrite oxidation inhibitor through long-term experiment lasting 392 days in three systems (floc sludge, granular sludge, biofilm). PN of low-strength ammonium wastewater was rapidly achieved within 28 days and maintained for about 80 days after paracetamol dose, whereas PN recovered again within 10 days and sustained over 150 days under paracetamol dose combined with low dissolved oxygen strategy. The inhibition effect of paracetamol on NOB was almost not affected by biomass growth modes. QPCR and high-throughput sequencing showed that Nitrospira (Oligotype 1) was inhibited by paracetamol, and PICURSt2 analysis indicated its key enzyme NXR was significantly downregulated after paracetamol treatment, which were the key reasons of PN start-up in three systems. The emergence and adaptation of Nitrotoga was the main reason for the instability of PN. This study proved that paracetamol could be used as a novel nitrite oxidation inhibitor, and provided a possibility to achieve the mainstream PN and anammox for treating wastewater with low-strength ammonium.

Keyword :

Low-strength ammonium wastewater Low-strength ammonium wastewater Bacterial community structure Bacterial community structure Biomass growth mode Biomass growth mode Paracetamol Paracetamol Partial nitrification Partial nitrification

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GB/T 7714 Cui, Yingchao , Gao, Jingfeng , Wu, Zejie et al. Inhibition of Nitrospira and Nitrotoga by paracetamol achieved the rapid start-up and long-term stable operation of partial nitrification for low-strength ammonium wastewater [J]. | CHEMICAL ENGINEERING JOURNAL , 2023 , 454 .
MLA Cui, Yingchao et al. "Inhibition of Nitrospira and Nitrotoga by paracetamol achieved the rapid start-up and long-term stable operation of partial nitrification for low-strength ammonium wastewater" . | CHEMICAL ENGINEERING JOURNAL 454 (2023) .
APA Cui, Yingchao , Gao, Jingfeng , Wu, Zejie , Wang, Zhiqi , Zhao, Yifan , Guo, Yi . Inhibition of Nitrospira and Nitrotoga by paracetamol achieved the rapid start-up and long-term stable operation of partial nitrification for low-strength ammonium wastewater . | CHEMICAL ENGINEERING JOURNAL , 2023 , 454 .
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Partial S(0)-driven autotrophic denitrification process facilitated the quick natural enrichment of anammox bacteria at room temperature SCIE
期刊论文 | 2023 , 855 | SCIENCE OF THE TOTAL ENVIRONMENT
WoS CC Cited Count: 9
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Anaerobic ammonium oxidation (anammox) is well-known to be an environmental and promising biotechnology. However, the natural enrichment of anammox bacteria is still a challenging topic. In this study, partial S(0)-driven au-totrophic denitrification (PSAD) was developed to stably supply nitrite, and natural enrichment of anammox bacteria was rapidly realized in a single sequencing moving bed biofilm reactor at room temperature. With the initiation of PSAD, anammox bacteria spontaneously emerged within 12 days, and PSAD-anammox coupling system was realized successfully. And then, the influent concentration of ammonium continuously increased to the same concentration as the nitrate, and the mean total nitrogen removal efficiency reached 92.77 %, which was mainly contributed by anammox. Moreover, the coupling of PSAD and anammox reduced the risk of sulfate emissions. cDNA high throughput sequencing revealed that the relative abundance of Candidatus Brocadia and Thiobacillus reached 39.03 % and 13.48 % at the 88th day. Oligotyping analysis illustrated that GATTTAAT and GTCCCA were the dominant Ca. Brocadia and Thiobacillus oligotypes in PSAD-anammox coupling system, respectively. DNA-based stable isotope probing further deciphered that Thiobacillus was the actual performer of PSAD and supported the nitrite for anammox bacteria in PSAD-anammox coupling system. Overall, this work provided a new strategy to naturally enrich anammox bacteria.

Keyword :

Partial sulfur autotrophic denitrification Partial sulfur autotrophic denitrification cDNA high-throughput sequencing cDNA high-throughput sequencing Anaerobic ammonium oxidation Anaerobic ammonium oxidation Oligotypes Oligotypes DNA-based stable isotope probing DNA-based stable isotope probing

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GB/T 7714 Wang, Zhiqi , Gao, Jingfeng , Dai, Huihui et al. Partial S(0)-driven autotrophic denitrification process facilitated the quick natural enrichment of anammox bacteria at room temperature [J]. | SCIENCE OF THE TOTAL ENVIRONMENT , 2023 , 855 .
MLA Wang, Zhiqi et al. "Partial S(0)-driven autotrophic denitrification process facilitated the quick natural enrichment of anammox bacteria at room temperature" . | SCIENCE OF THE TOTAL ENVIRONMENT 855 (2023) .
APA Wang, Zhiqi , Gao, Jingfeng , Dai, Huihui , Yuan, Yukun , Zhao, Yifan , Li, Dingchang et al. Partial S(0)-driven autotrophic denitrification process facilitated the quick natural enrichment of anammox bacteria at room temperature . | SCIENCE OF THE TOTAL ENVIRONMENT , 2023 , 855 .
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