Matches in SemOpenAlex for { <https://semopenalex.org/work/W3139508924> ?p ?o ?g. }
- W3139508924 endingPage "112" @default.
- W3139508924 startingPage "102" @default.
- W3139508924 abstract "In this research, 54 newly isolated strains of yeast from various microhabitats were screened in order to explore their potential for bioethanol production through bioconversion of date palm sap (DPS), as a renewable raw material. The highest ethanol concentration of 58.7 ± 0.23 g/L was achieved by the newly selected Saccharomyces cerevisiae strain X19G2 under anaerobic conditions. The effects of nitrogen supplementation, inoculum size and incubation temperature on bioethanol production from DPS by this strain were investigated. Bioethanol yield (0.43 ± 0.01 g/g consumed sugars) and ethanol productivity (1.49 ± 0.11 g/L/h) increased significantly when a mixture of ammonium sulfate and yeast extract (1:1) were used as nitrogen sources at 30 °C. Subsequently, batch and fed-batch (FB) fermentation were performed in a 2 L bioreactor. The highest ethanol yield was achieved in the FB experiment, reaching 0.48 g/g consumed sugars, which corresponded to over 90 % of the maximum theoretical yield. Based on these findings, the minimum bioethanol production potential using DPS was estimated to be approximately 11000 L per hectare of palm trees. This study indicated that DPS is a highly promising feedstock for bioethanol production by the yeast S. cerevisiae strain X19G2 with economic benefits for industrial scale production." @default.
- W3139508924 created "2021-03-29" @default.
- W3139508924 creator A5006202259 @default.
- W3139508924 creator A5022065638 @default.
- W3139508924 creator A5022554637 @default.
- W3139508924 creator A5033398688 @default.
- W3139508924 creator A5048402015 @default.
- W3139508924 creator A5052302817 @default.
- W3139508924 creator A5066390540 @default.
- W3139508924 date "2021-06-01" @default.
- W3139508924 modified "2023-10-16" @default.
- W3139508924 title "Efficient bioethanol production from date palm (Phoenix dactylifera L.) sap by a newly isolated Saccharomyces cerevisiae X19G2" @default.
- W3139508924 cites W1018800699 @default.
- W3139508924 cites W1856132776 @default.
- W3139508924 cites W1868830645 @default.
- W3139508924 cites W1924878404 @default.
- W3139508924 cites W1968834637 @default.
- W3139508924 cites W1969960796 @default.
- W3139508924 cites W1977060414 @default.
- W3139508924 cites W1977170552 @default.
- W3139508924 cites W1993112778 @default.
- W3139508924 cites W2009674410 @default.
- W3139508924 cites W2016010901 @default.
- W3139508924 cites W2017624161 @default.
- W3139508924 cites W2018493495 @default.
- W3139508924 cites W2023825721 @default.
- W3139508924 cites W2044503683 @default.
- W3139508924 cites W2050753219 @default.
- W3139508924 cites W2053592079 @default.
- W3139508924 cites W2053971035 @default.
- W3139508924 cites W2057614143 @default.
- W3139508924 cites W2066241919 @default.
- W3139508924 cites W2078027548 @default.
- W3139508924 cites W2081427944 @default.
- W3139508924 cites W2082636686 @default.
- W3139508924 cites W2083790195 @default.
- W3139508924 cites W2084470968 @default.
- W3139508924 cites W2101884147 @default.
- W3139508924 cites W2112141650 @default.
- W3139508924 cites W2121677860 @default.
- W3139508924 cites W2124893973 @default.
- W3139508924 cites W2128836283 @default.
- W3139508924 cites W2144363624 @default.
- W3139508924 cites W2152108074 @default.
- W3139508924 cites W2152475760 @default.
- W3139508924 cites W2170140196 @default.
- W3139508924 cites W2298537974 @default.
- W3139508924 cites W2311203695 @default.
- W3139508924 cites W2325458012 @default.
- W3139508924 cites W2440319400 @default.
- W3139508924 cites W2508592539 @default.
- W3139508924 cites W2552908265 @default.
- W3139508924 cites W2563691073 @default.
- W3139508924 cites W2571407906 @default.
- W3139508924 cites W2584425961 @default.
- W3139508924 cites W2736690255 @default.
- W3139508924 cites W2766823163 @default.
- W3139508924 cites W2769601118 @default.
- W3139508924 cites W2780184031 @default.
- W3139508924 cites W2791084739 @default.
- W3139508924 cites W2795332265 @default.
- W3139508924 cites W2802996855 @default.
- W3139508924 cites W2835014956 @default.
- W3139508924 cites W2883461270 @default.
- W3139508924 cites W2895381805 @default.
- W3139508924 cites W2950707087 @default.
- W3139508924 cites W2956841933 @default.
- W3139508924 cites W2972824486 @default.
- W3139508924 cites W2973631320 @default.
- W3139508924 cites W2984305616 @default.
- W3139508924 cites W3002173020 @default.
- W3139508924 cites W3024386227 @default.
- W3139508924 cites W3034570550 @default.
- W3139508924 cites W349862650 @default.
- W3139508924 cites W4254275792 @default.
- W3139508924 cites W4256345231 @default.
- W3139508924 cites W636716608 @default.
- W3139508924 doi "https://doi.org/10.1016/j.procbio.2021.03.019" @default.
- W3139508924 hasPublicationYear "2021" @default.
- W3139508924 type Work @default.
- W3139508924 sameAs 3139508924 @default.
- W3139508924 citedByCount "8" @default.
- W3139508924 countsByYear W31395089242021 @default.
- W3139508924 countsByYear W31395089242022 @default.
- W3139508924 countsByYear W31395089242023 @default.
- W3139508924 crossrefType "journal-article" @default.
- W3139508924 hasAuthorship W3139508924A5006202259 @default.
- W3139508924 hasAuthorship W3139508924A5022065638 @default.
- W3139508924 hasAuthorship W3139508924A5022554637 @default.
- W3139508924 hasAuthorship W3139508924A5033398688 @default.
- W3139508924 hasAuthorship W3139508924A5048402015 @default.
- W3139508924 hasAuthorship W3139508924A5052302817 @default.
- W3139508924 hasAuthorship W3139508924A5066390540 @default.
- W3139508924 hasConcept C100544194 @default.
- W3139508924 hasConcept C150903083 @default.
- W3139508924 hasConcept C168170006 @default.
- W3139508924 hasConcept C178790620 @default.
- W3139508924 hasConcept C185592680 @default.