Matches in SemOpenAlex for { <https://semopenalex.org/work/W2783196753> ?p ?o ?g. }
- W2783196753 endingPage "15" @default.
- W2783196753 startingPage "7" @default.
- W2783196753 abstract "In this study, the impact of diclofenac (DCF), an antiinflammatory drug being extensively used in human health care and veterinary treatment, on the production of volatile fatty acids (VFAs) from anaerobic fermentation of waste activated sludge (WAS) was investigated for the first time. Experimental results showed that when DCF concentration increased from 2.5 to 25 mg/kg total suspended solid (TSS), the maximum production of VFAs increased from 599 to 1113 mg COD/L, but further increase of DCF to 47.5 mg/kg TSS decreased VFAs yield to 896 mg COD/L. The mechanism investigation revealed that DCF had no effect on the hydrolysis process, promoted the process of acidogenesis, acetogenesis, and homoacetogenesis, but severely inhibited methanogenesis, leading to the accumulation of VFAs. Microbial community analysis showed that the addition of DCF could promote the relative abundance of VFAs (especially acetic acid) producers, which was well consistent with the results obtained above." @default.
- W2783196753 created "2018-01-26" @default.
- W2783196753 creator A5001724045 @default.
- W2783196753 creator A5017344729 @default.
- W2783196753 creator A5029494298 @default.
- W2783196753 creator A5034039321 @default.
- W2783196753 creator A5056974200 @default.
- W2783196753 creator A5060435467 @default.
- W2783196753 creator A5065816776 @default.
- W2783196753 creator A5084461414 @default.
- W2783196753 creator A5086559201 @default.
- W2783196753 date "2018-04-01" @default.
- W2783196753 modified "2023-10-15" @default.
- W2783196753 title "Effect of diclofenac on the production of volatile fatty acids from anaerobic fermentation of waste activated sludge" @default.
- W2783196753 cites W1205753683 @default.
- W2783196753 cites W1424908877 @default.
- W2783196753 cites W1506760845 @default.
- W2783196753 cites W1775749144 @default.
- W2783196753 cites W1968316487 @default.
- W2783196753 cites W1979242963 @default.
- W2783196753 cites W1979585036 @default.
- W2783196753 cites W1989438040 @default.
- W2783196753 cites W1990459164 @default.
- W2783196753 cites W1990826595 @default.
- W2783196753 cites W1998104430 @default.
- W2783196753 cites W2003823035 @default.
- W2783196753 cites W2009983762 @default.
- W2783196753 cites W2028403095 @default.
- W2783196753 cites W2032272536 @default.
- W2783196753 cites W2036574651 @default.
- W2783196753 cites W2047765394 @default.
- W2783196753 cites W2066571281 @default.
- W2783196753 cites W2069841698 @default.
- W2783196753 cites W2073586811 @default.
- W2783196753 cites W2073847280 @default.
- W2783196753 cites W2079486886 @default.
- W2783196753 cites W2092844266 @default.
- W2783196753 cites W2121635440 @default.
- W2783196753 cites W2130198234 @default.
- W2783196753 cites W2152040203 @default.
- W2783196753 cites W2167612008 @default.
- W2783196753 cites W2204569947 @default.
- W2783196753 cites W2303279140 @default.
- W2783196753 cites W2322628901 @default.
- W2783196753 cites W2335005880 @default.
- W2783196753 cites W2340945709 @default.
- W2783196753 cites W2410069075 @default.
- W2783196753 cites W2491969567 @default.
- W2783196753 cites W2515090466 @default.
- W2783196753 cites W2565717611 @default.
- W2783196753 cites W2589547025 @default.
- W2783196753 cites W2592176988 @default.
- W2783196753 cites W2606578740 @default.
- W2783196753 cites W2640730323 @default.
- W2783196753 cites W2726143505 @default.
- W2783196753 cites W2734607176 @default.
- W2783196753 cites W2738764035 @default.
- W2783196753 cites W2763506943 @default.
- W2783196753 cites W2770909246 @default.
- W2783196753 cites W2773810793 @default.
- W2783196753 cites W790425391 @default.
- W2783196753 doi "https://doi.org/10.1016/j.biortech.2018.01.059" @default.
- W2783196753 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29413941" @default.
- W2783196753 hasPublicationYear "2018" @default.
- W2783196753 type Work @default.
- W2783196753 sameAs 2783196753 @default.
- W2783196753 citedByCount "76" @default.
- W2783196753 countsByYear W27831967532018 @default.
- W2783196753 countsByYear W27831967532019 @default.
- W2783196753 countsByYear W27831967532020 @default.
- W2783196753 countsByYear W27831967532021 @default.
- W2783196753 countsByYear W27831967532022 @default.
- W2783196753 countsByYear W27831967532023 @default.
- W2783196753 crossrefType "journal-article" @default.
- W2783196753 hasAuthorship W2783196753A5001724045 @default.
- W2783196753 hasAuthorship W2783196753A5017344729 @default.
- W2783196753 hasAuthorship W2783196753A5029494298 @default.
- W2783196753 hasAuthorship W2783196753A5034039321 @default.
- W2783196753 hasAuthorship W2783196753A5056974200 @default.
- W2783196753 hasAuthorship W2783196753A5060435467 @default.
- W2783196753 hasAuthorship W2783196753A5065816776 @default.
- W2783196753 hasAuthorship W2783196753A5084461414 @default.
- W2783196753 hasAuthorship W2783196753A5086559201 @default.
- W2783196753 hasBestOaLocation W27831967532 @default.
- W2783196753 hasConcept C100544194 @default.
- W2783196753 hasConcept C127413603 @default.
- W2783196753 hasConcept C178790620 @default.
- W2783196753 hasConcept C185592680 @default.
- W2783196753 hasConcept C201879378 @default.
- W2783196753 hasConcept C2776673659 @default.
- W2783196753 hasConcept C2777730692 @default.
- W2783196753 hasConcept C2778589620 @default.
- W2783196753 hasConcept C2779826273 @default.
- W2783196753 hasConcept C31903555 @default.
- W2783196753 hasConcept C38626664 @default.
- W2783196753 hasConcept C42407357 @default.
- W2783196753 hasConcept C499616599 @default.
- W2783196753 hasConcept C5140985 @default.