Matches in SemOpenAlex for { <https://semopenalex.org/work/W4285679311> ?p ?o ?g. }
- W4285679311 endingPage "129611" @default.
- W4285679311 startingPage "129611" @default.
- W4285679311 abstract "The disinfection of pathogenic microorganisms in water treatment by peracetic acid (PAA)-based advanced oxidation processes (AOPs) has been gaining increasing concern. In this work, the inactivation mechanism, influencing factors and regrowth of two pathogenic Aspergillus species in the system of CuO-activated PAA were studied for the first time. The k values of A. niger and A. flavus inactivated by PAA/CuO system were 3.9 and 2.1-fold higher than those inactivated by PAA alone. PAA concentration and CuO dose were positively correlated with the inactivation efficiency, while humic acid and pH were negatively correlated. The main active species that contributed to the inactivation of fungal spores in PAA/CuO system were •OH, CH3C(O)OO• and 1O2. PAA/CuO system had more intense oxidative stimulation and more serious damage to fungal spores according to the analysis of cell membrane integrity and intracellular ROS levels. In addition, the PAA/CuO system was less impacted by the water matrix and kept a good inactivation efficiency in real water samples. The regrowth potential of fungal spores after disinfection was also reduced in PAA/CuO system so as to avoid the risk of biological regrowth. This study provides a feasible PAA-based advanced oxidation method for activating PAA and inactivating fungal spores." @default.
- W4285679311 created "2022-07-17" @default.
- W4285679311 creator A5028719243 @default.
- W4285679311 creator A5032789446 @default.
- W4285679311 creator A5051363890 @default.
- W4285679311 creator A5062736047 @default.
- W4285679311 creator A5062886387 @default.
- W4285679311 creator A5069598830 @default.
- W4285679311 creator A5084694747 @default.
- W4285679311 creator A5085538549 @default.
- W4285679311 date "2022-10-01" @default.
- W4285679311 modified "2023-10-13" @default.
- W4285679311 title "Inactivation of fungal spores in water by CuO-activated peracetic acid: Kinetics, mechanism and regrowth" @default.
- W4285679311 cites W1159561502 @default.
- W4285679311 cites W1926950498 @default.
- W4285679311 cites W1967574988 @default.
- W4285679311 cites W1970170782 @default.
- W4285679311 cites W1974315733 @default.
- W4285679311 cites W1978357799 @default.
- W4285679311 cites W1981166602 @default.
- W4285679311 cites W1993919897 @default.
- W4285679311 cites W1994402399 @default.
- W4285679311 cites W1998230766 @default.
- W4285679311 cites W2005644208 @default.
- W4285679311 cites W2007646437 @default.
- W4285679311 cites W2015790062 @default.
- W4285679311 cites W2018461548 @default.
- W4285679311 cites W2053202657 @default.
- W4285679311 cites W2082573313 @default.
- W4285679311 cites W2098062964 @default.
- W4285679311 cites W2127242142 @default.
- W4285679311 cites W2135206328 @default.
- W4285679311 cites W2138549553 @default.
- W4285679311 cites W2148723714 @default.
- W4285679311 cites W2168817118 @default.
- W4285679311 cites W2394887079 @default.
- W4285679311 cites W2520498872 @default.
- W4285679311 cites W2586332156 @default.
- W4285679311 cites W2750485666 @default.
- W4285679311 cites W2768206117 @default.
- W4285679311 cites W2806621297 @default.
- W4285679311 cites W2886392700 @default.
- W4285679311 cites W2898113210 @default.
- W4285679311 cites W2898208330 @default.
- W4285679311 cites W2901708805 @default.
- W4285679311 cites W2904139162 @default.
- W4285679311 cites W2933473603 @default.
- W4285679311 cites W2951513154 @default.
- W4285679311 cites W2963501517 @default.
- W4285679311 cites W2969716257 @default.
- W4285679311 cites W2969760364 @default.
- W4285679311 cites W2973574723 @default.
- W4285679311 cites W2976786734 @default.
- W4285679311 cites W2981830284 @default.
- W4285679311 cites W2990540034 @default.
- W4285679311 cites W2991213954 @default.
- W4285679311 cites W3004289537 @default.
- W4285679311 cites W3011365398 @default.
- W4285679311 cites W3016931175 @default.
- W4285679311 cites W3040949052 @default.
- W4285679311 cites W3042133214 @default.
- W4285679311 cites W3044612909 @default.
- W4285679311 cites W3064066794 @default.
- W4285679311 cites W3086277522 @default.
- W4285679311 cites W3091198191 @default.
- W4285679311 cites W3093691700 @default.
- W4285679311 cites W3093878774 @default.
- W4285679311 cites W3096596121 @default.
- W4285679311 cites W3126220037 @default.
- W4285679311 cites W3157918462 @default.
- W4285679311 cites W3170174108 @default.
- W4285679311 cites W3185748345 @default.
- W4285679311 cites W3194323083 @default.
- W4285679311 cites W3196297513 @default.
- W4285679311 cites W3196563997 @default.
- W4285679311 cites W4213053082 @default.
- W4285679311 cites W4220692373 @default.
- W4285679311 cites W4220931725 @default.
- W4285679311 doi "https://doi.org/10.1016/j.jhazmat.2022.129611" @default.
- W4285679311 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35863220" @default.
- W4285679311 hasPublicationYear "2022" @default.
- W4285679311 type Work @default.
- W4285679311 citedByCount "6" @default.
- W4285679311 countsByYear W42856793112023 @default.
- W4285679311 crossrefType "journal-article" @default.
- W4285679311 hasAuthorship W4285679311A5028719243 @default.
- W4285679311 hasAuthorship W4285679311A5032789446 @default.
- W4285679311 hasAuthorship W4285679311A5051363890 @default.
- W4285679311 hasAuthorship W4285679311A5062736047 @default.
- W4285679311 hasAuthorship W4285679311A5062886387 @default.
- W4285679311 hasAuthorship W4285679311A5069598830 @default.
- W4285679311 hasAuthorship W4285679311A5084694747 @default.
- W4285679311 hasAuthorship W4285679311A5085538549 @default.
- W4285679311 hasConcept C121332964 @default.
- W4285679311 hasConcept C148898269 @default.
- W4285679311 hasConcept C174618031 @default.
- W4285679311 hasConcept C178790620 @default.
- W4285679311 hasConcept C185592680 @default.