Matches in SemOpenAlex for { <https://semopenalex.org/work/W4386525612> ?p ?o ?g. }
- W4386525612 endingPage "132488" @default.
- W4386525612 startingPage "132488" @default.
- W4386525612 abstract "Quenching method is widely used to assess the contribution of specified reactive species through the probe inhibition efficiency (IE) caused by adding excessive quencher. However, for reactive species with weak ability such as singlet oxygen (1O2), the quenching results are prone to ambiguity. In this study, an 1O2 system using furfuryl alcohol (FFA) as a probe was successfully constructed by methylene-blue-N vis-photosensitization, to discuss the quenching, interference elimination and pollutant degradation ability of 1O2. Inhibition of FFA transformation caused by both quenching and interrupting of 1O2 production was found. The quenching is affected by quencher dosage and ability, which depends on the second-order-rate constant (k). A high k means a strong ability, and less dosage is required to achieve the same IE. Comparison between the calculated ratio of reactive species consumed by quencher and experimental IE helps to judge the interruption of 1O2 production. None of the organic-solvents (methanol, ethanol, iso-propanol, n-butanol, iso-butanol, tert-butanol, tetrahydrofuran, acetonitrile, acetone and chloroform) scavenged 1O2, which would be used as screening-agent for other reactive species (e.g., hydroxyl radicals) that would interrupt 1O2 contribution assessment. Besides, 1O2 was powerless to degrade most selected pollutants. These results encourage proper use of quenchers and better experimental design." @default.
- W4386525612 created "2023-09-08" @default.
- W4386525612 creator A5015824704 @default.
- W4386525612 creator A5017137108 @default.
- W4386525612 creator A5035642053 @default.
- W4386525612 creator A5056774919 @default.
- W4386525612 creator A5061184044 @default.
- W4386525612 creator A5063633997 @default.
- W4386525612 creator A5073972627 @default.
- W4386525612 creator A5089507578 @default.
- W4386525612 creator A5091878678 @default.
- W4386525612 date "2023-10-01" @default.
- W4386525612 modified "2023-09-29" @default.
- W4386525612 title "Validation of quenching effectiveness and pollutant degradation ability of singlet oxygen through model reaction system" @default.
- W4386525612 cites W1926950498 @default.
- W4386525612 cites W1964675752 @default.
- W4386525612 cites W1968987549 @default.
- W4386525612 cites W1969922892 @default.
- W4386525612 cites W1974470309 @default.
- W4386525612 cites W1982732549 @default.
- W4386525612 cites W1988765421 @default.
- W4386525612 cites W2013368240 @default.
- W4386525612 cites W2023350314 @default.
- W4386525612 cites W2026817107 @default.
- W4386525612 cites W2045538116 @default.
- W4386525612 cites W2049930002 @default.
- W4386525612 cites W2054094995 @default.
- W4386525612 cites W2054170411 @default.
- W4386525612 cites W2058620782 @default.
- W4386525612 cites W2061621009 @default.
- W4386525612 cites W2064906631 @default.
- W4386525612 cites W2074196765 @default.
- W4386525612 cites W2075791268 @default.
- W4386525612 cites W2081514346 @default.
- W4386525612 cites W208997364 @default.
- W4386525612 cites W2114119430 @default.
- W4386525612 cites W2119622056 @default.
- W4386525612 cites W2125307236 @default.
- W4386525612 cites W2170870591 @default.
- W4386525612 cites W2302530546 @default.
- W4386525612 cites W2323300972 @default.
- W4386525612 cites W2349182623 @default.
- W4386525612 cites W2521273518 @default.
- W4386525612 cites W2529622994 @default.
- W4386525612 cites W2586829079 @default.
- W4386525612 cites W2588366046 @default.
- W4386525612 cites W2594472239 @default.
- W4386525612 cites W2770125280 @default.
- W4386525612 cites W2804308463 @default.
- W4386525612 cites W2888736861 @default.
- W4386525612 cites W2950670169 @default.
- W4386525612 cites W3008264207 @default.
- W4386525612 cites W3016507599 @default.
- W4386525612 cites W3025192990 @default.
- W4386525612 cites W3038876116 @default.
- W4386525612 cites W3040225007 @default.
- W4386525612 cites W3118603034 @default.
- W4386525612 cites W3126920563 @default.
- W4386525612 cites W3133836515 @default.
- W4386525612 cites W3163368176 @default.
- W4386525612 cites W4200290932 @default.
- W4386525612 cites W4210636251 @default.
- W4386525612 cites W4212932521 @default.
- W4386525612 cites W4214669024 @default.
- W4386525612 cites W4220932998 @default.
- W4386525612 cites W4224294672 @default.
- W4386525612 cites W4280647030 @default.
- W4386525612 cites W4281554302 @default.
- W4386525612 cites W4282043249 @default.
- W4386525612 cites W4283586793 @default.
- W4386525612 cites W4285490845 @default.
- W4386525612 cites W4286512163 @default.
- W4386525612 cites W4293571816 @default.
- W4386525612 cites W4296821421 @default.
- W4386525612 cites W4308370254 @default.
- W4386525612 cites W4310787224 @default.
- W4386525612 cites W4317851302 @default.
- W4386525612 cites W4327682174 @default.
- W4386525612 cites W4360990031 @default.
- W4386525612 cites W4367056928 @default.
- W4386525612 doi "https://doi.org/10.1016/j.jhazmat.2023.132488" @default.
- W4386525612 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37696208" @default.
- W4386525612 hasPublicationYear "2023" @default.
- W4386525612 type Work @default.
- W4386525612 citedByCount "0" @default.
- W4386525612 crossrefType "journal-article" @default.
- W4386525612 hasAuthorship W4386525612A5015824704 @default.
- W4386525612 hasAuthorship W4386525612A5017137108 @default.
- W4386525612 hasAuthorship W4386525612A5035642053 @default.
- W4386525612 hasAuthorship W4386525612A5056774919 @default.
- W4386525612 hasAuthorship W4386525612A5061184044 @default.
- W4386525612 hasAuthorship W4386525612A5063633997 @default.
- W4386525612 hasAuthorship W4386525612A5073972627 @default.
- W4386525612 hasAuthorship W4386525612A5089507578 @default.
- W4386525612 hasAuthorship W4386525612A5091878678 @default.
- W4386525612 hasConcept C121332964 @default.
- W4386525612 hasConcept C121745418 @default.
- W4386525612 hasConcept C139066938 @default.