Matches in SemOpenAlex for { <https://semopenalex.org/work/W3039393776> ?p ?o ?g. }
- W3039393776 endingPage "123337" @default.
- W3039393776 startingPage "123337" @default.
- W3039393776 abstract "Microplastics (MPs) has been widely detected in wastewater treatment plants. However, there is a lack of research on its influence on anaerobic ammonia oxidation (anammox) process. Therefore, the effects of polybutylene succinate (PBS) and polyvinyl chloride (PVC) MPs on the nitrogen removal performance, microbial community and metabolites of anammox sludge were investigated. Results showed that PBS and PVC MPs reduced the nitrite removal efficiency of the anammox sludge, and PVC1 (0.1 g/L PVC) group was the most significant at 19.2 %. Fourier transform infrared (FTIR) and X-ray photoelectron spectroscopy (XPS) spectra showed that PBS2 (0.5 g/L PBS) group increased the polysaccharide content in the anammox sludge. This may be because of the byproduct, which was produce during the biodegradation of PBS MPs, and decrease the agglomeration capacity of sludge, so as to increase the mass transfer. PBS2 group reduced the relative abundance of Methanosaeta (10.18 %) and the methane modules, and stimulated the anammox bacteria Ca. Brocadia (1.17 %) and the relative nitrogen metabolism modules. PVC2 group reduced the relative abundance of Ca. Brocadia (3.02 %), while was enriched Methanosaeta (2.1 %). Non-biodegradable PVC MPs was more harmful to anammox sludge, which would draw attention to the entry of PVC MPs into the anammox system." @default.
- W3039393776 created "2020-07-10" @default.
- W3039393776 creator A5005823022 @default.
- W3039393776 creator A5028200428 @default.
- W3039393776 creator A5030942972 @default.
- W3039393776 creator A5039514844 @default.
- W3039393776 creator A5047578093 @default.
- W3039393776 creator A5052676364 @default.
- W3039393776 creator A5060992351 @default.
- W3039393776 creator A5072038918 @default.
- W3039393776 creator A5082522564 @default.
- W3039393776 date "2021-01-01" @default.
- W3039393776 modified "2023-10-12" @default.
- W3039393776 title "Influence of biodegradable polybutylene succinate and non-biodegradable polyvinyl chloride microplastics on anammox sludge: Performance evaluation, suppression effect and metagenomic analysis" @default.
- W3039393776 cites W1983198336 @default.
- W3039393776 cites W2006786201 @default.
- W3039393776 cites W2007644780 @default.
- W3039393776 cites W2013156779 @default.
- W3039393776 cites W2030370883 @default.
- W3039393776 cites W2066791022 @default.
- W3039393776 cites W2089266669 @default.
- W3039393776 cites W2131271579 @default.
- W3039393776 cites W2146024349 @default.
- W3039393776 cites W2152210968 @default.
- W3039393776 cites W2153142029 @default.
- W3039393776 cites W2194289848 @default.
- W3039393776 cites W2255762950 @default.
- W3039393776 cites W2316920757 @default.
- W3039393776 cites W2346975780 @default.
- W3039393776 cites W2515718042 @default.
- W3039393776 cites W2588738188 @default.
- W3039393776 cites W2599992360 @default.
- W3039393776 cites W2615848726 @default.
- W3039393776 cites W2734533318 @default.
- W3039393776 cites W2766993958 @default.
- W3039393776 cites W2772909777 @default.
- W3039393776 cites W2789636613 @default.
- W3039393776 cites W2790552365 @default.
- W3039393776 cites W2795513997 @default.
- W3039393776 cites W2795558562 @default.
- W3039393776 cites W2800689024 @default.
- W3039393776 cites W2803552314 @default.
- W3039393776 cites W2806646530 @default.
- W3039393776 cites W2809659047 @default.
- W3039393776 cites W2861586174 @default.
- W3039393776 cites W2889254045 @default.
- W3039393776 cites W2889761934 @default.
- W3039393776 cites W2891094471 @default.
- W3039393776 cites W2897298355 @default.
- W3039393776 cites W2900231156 @default.
- W3039393776 cites W2904019104 @default.
- W3039393776 cites W2904315324 @default.
- W3039393776 cites W2905148389 @default.
- W3039393776 cites W2907773784 @default.
- W3039393776 cites W2926397572 @default.
- W3039393776 cites W2937567928 @default.
- W3039393776 cites W2947407743 @default.
- W3039393776 cites W2948369306 @default.
- W3039393776 cites W2949492136 @default.
- W3039393776 cites W2962918242 @default.
- W3039393776 cites W2970129981 @default.
- W3039393776 cites W2971897126 @default.
- W3039393776 cites W2978130384 @default.
- W3039393776 cites W2983364021 @default.
- W3039393776 cites W2989663455 @default.
- W3039393776 cites W2989773935 @default.
- W3039393776 cites W2990959789 @default.
- W3039393776 cites W2995977295 @default.
- W3039393776 cites W2996325557 @default.
- W3039393776 cites W2996479309 @default.
- W3039393776 cites W2999222617 @default.
- W3039393776 cites W2999804078 @default.
- W3039393776 cites W2999938639 @default.
- W3039393776 cites W2999971445 @default.
- W3039393776 cites W3010009203 @default.
- W3039393776 cites W3010257453 @default.
- W3039393776 cites W639459929 @default.
- W3039393776 doi "https://doi.org/10.1016/j.jhazmat.2020.123337" @default.
- W3039393776 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32659575" @default.
- W3039393776 hasPublicationYear "2021" @default.
- W3039393776 type Work @default.
- W3039393776 sameAs 3039393776 @default.
- W3039393776 citedByCount "40" @default.
- W3039393776 countsByYear W30393937762021 @default.
- W3039393776 countsByYear W30393937762022 @default.
- W3039393776 countsByYear W30393937762023 @default.
- W3039393776 crossrefType "journal-article" @default.
- W3039393776 hasAuthorship W3039393776A5005823022 @default.
- W3039393776 hasAuthorship W3039393776A5028200428 @default.
- W3039393776 hasAuthorship W3039393776A5030942972 @default.
- W3039393776 hasAuthorship W3039393776A5039514844 @default.
- W3039393776 hasAuthorship W3039393776A5047578093 @default.
- W3039393776 hasAuthorship W3039393776A5052676364 @default.
- W3039393776 hasAuthorship W3039393776A5060992351 @default.
- W3039393776 hasAuthorship W3039393776A5072038918 @default.
- W3039393776 hasAuthorship W3039393776A5082522564 @default.
- W3039393776 hasConcept C107872376 @default.
- W3039393776 hasConcept C127413603 @default.