Matches in SemOpenAlex for { <https://semopenalex.org/work/W3164905932> ?p ?o ?g. }
- W3164905932 endingPage "81" @default.
- W3164905932 startingPage "74" @default.
- W3164905932 abstract "Emissions of volatile organic compounds (VOCs) were continuously measured during the aerobic decomposition of banana peel in a laboratory-scale landfill simulator over 25 d. Using direct membrane inlet single-photon ionisation time-of-flight mass spectrometry (MI-SPI-ToF-MS), 18 VOCs belonging to 10 functional groups were detected in the air samples, and their VOC emission profiles were established using cluster analysis on time-resolved data. Three emission stages were clearly identified, with the major release for most VOC compounds occurring during the first 14 d. The emission patterns of the individual compounds were quite similar despite the different release mechanisms. In addition, no apparent increase in temperature was observed inside the simulator during the entire experimental period. We suggest that the volatilisation of the constituents in the waste pile contributed equally to VOC emissions as did the degradation of banana peel via microbial activity. The average emission rate of total VOCs reached 44.3 × 10-3 mg VOC kg−1 of dry banana peel, with more than half belonging to malodourous substances. The malodourous emissions of the decaying banana peel in an aerobic environment mainly originated from styrene, dimethyl sulphide, and diethyl sulphide, the most common contributors to offensive odourants during food waste biodegradation." @default.
- W3164905932 created "2021-06-07" @default.
- W3164905932 creator A5011483285 @default.
- W3164905932 creator A5017020566 @default.
- W3164905932 creator A5027474848 @default.
- W3164905932 creator A5031628401 @default.
- W3164905932 creator A5032075112 @default.
- W3164905932 creator A5033679288 @default.
- W3164905932 creator A5033684035 @default.
- W3164905932 date "2021-07-01" @default.
- W3164905932 modified "2023-10-15" @default.
- W3164905932 title "Emission of volatile organic compounds during aerobic decomposition of banana peel" @default.
- W3164905932 cites W1588084064 @default.
- W3164905932 cites W1972471520 @default.
- W3164905932 cites W1973206432 @default.
- W3164905932 cites W1975165650 @default.
- W3164905932 cites W1976313936 @default.
- W3164905932 cites W1978992158 @default.
- W3164905932 cites W1982168876 @default.
- W3164905932 cites W1984994927 @default.
- W3164905932 cites W1985675705 @default.
- W3164905932 cites W1985893731 @default.
- W3164905932 cites W1989091356 @default.
- W3164905932 cites W1994177643 @default.
- W3164905932 cites W1996097533 @default.
- W3164905932 cites W2001615865 @default.
- W3164905932 cites W2010349062 @default.
- W3164905932 cites W2010567371 @default.
- W3164905932 cites W2024587259 @default.
- W3164905932 cites W2024869860 @default.
- W3164905932 cites W2025269163 @default.
- W3164905932 cites W2025553917 @default.
- W3164905932 cites W2026144848 @default.
- W3164905932 cites W2029415846 @default.
- W3164905932 cites W2029507722 @default.
- W3164905932 cites W2031278582 @default.
- W3164905932 cites W2045122051 @default.
- W3164905932 cites W2045715794 @default.
- W3164905932 cites W2047175870 @default.
- W3164905932 cites W2048410023 @default.
- W3164905932 cites W2050211629 @default.
- W3164905932 cites W2052653185 @default.
- W3164905932 cites W2054347564 @default.
- W3164905932 cites W2056653229 @default.
- W3164905932 cites W2057640179 @default.
- W3164905932 cites W2062104966 @default.
- W3164905932 cites W2074336963 @default.
- W3164905932 cites W2084355632 @default.
- W3164905932 cites W2085949123 @default.
- W3164905932 cites W2086086970 @default.
- W3164905932 cites W2092729964 @default.
- W3164905932 cites W2109939957 @default.
- W3164905932 cites W2119560482 @default.
- W3164905932 cites W2121703714 @default.
- W3164905932 cites W2123768764 @default.
- W3164905932 cites W2137034879 @default.
- W3164905932 cites W2157428903 @default.
- W3164905932 cites W2257141579 @default.
- W3164905932 cites W2565255748 @default.
- W3164905932 cites W2616097679 @default.
- W3164905932 cites W2734464954 @default.
- W3164905932 cites W2766223545 @default.
- W3164905932 cites W2793111292 @default.
- W3164905932 cites W2801829545 @default.
- W3164905932 cites W2898189869 @default.
- W3164905932 cites W2901127460 @default.
- W3164905932 cites W2901600437 @default.
- W3164905932 cites W2944309067 @default.
- W3164905932 cites W2971350440 @default.
- W3164905932 cites W2988131134 @default.
- W3164905932 cites W4248318556 @default.
- W3164905932 doi "https://doi.org/10.1016/j.wasman.2021.05.020" @default.
- W3164905932 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/34052469" @default.
- W3164905932 hasPublicationYear "2021" @default.
- W3164905932 type Work @default.
- W3164905932 sameAs 3164905932 @default.
- W3164905932 citedByCount "2" @default.
- W3164905932 countsByYear W31649059322023 @default.
- W3164905932 crossrefType "journal-article" @default.
- W3164905932 hasAuthorship W3164905932A5011483285 @default.
- W3164905932 hasAuthorship W3164905932A5017020566 @default.
- W3164905932 hasAuthorship W3164905932A5027474848 @default.
- W3164905932 hasAuthorship W3164905932A5031628401 @default.
- W3164905932 hasAuthorship W3164905932A5032075112 @default.
- W3164905932 hasAuthorship W3164905932A5033679288 @default.
- W3164905932 hasAuthorship W3164905932A5033684035 @default.
- W3164905932 hasConcept C107872376 @default.
- W3164905932 hasConcept C124681953 @default.
- W3164905932 hasConcept C157021035 @default.
- W3164905932 hasConcept C178790620 @default.
- W3164905932 hasConcept C185592680 @default.
- W3164905932 hasConcept C2778150766 @default.
- W3164905932 hasConcept C5413467 @default.
- W3164905932 hasConceptScore W3164905932C107872376 @default.
- W3164905932 hasConceptScore W3164905932C124681953 @default.
- W3164905932 hasConceptScore W3164905932C157021035 @default.
- W3164905932 hasConceptScore W3164905932C178790620 @default.
- W3164905932 hasConceptScore W3164905932C185592680 @default.