Dewaxing and Post-Pretreatment Washing: Impact on Sugar and Ethanol Yields from Tobacco Residue


Journal article


Muhammad Ayub Khan, E. Panakkal, M. Sriariyanun, M. Gundupalli, S. Roddecha, Keerthi Katam, Jayapriya Jayaprakash, K. Cheenkachorn
Applied Science and Engineering Progress, 2024

Semantic Scholar DOI
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APA   Click to copy
Khan, M. A., Panakkal, E., Sriariyanun, M., Gundupalli, M., Roddecha, S., Katam, K., … Cheenkachorn, K. (2024). Dewaxing and Post-Pretreatment Washing: Impact on Sugar and Ethanol Yields from Tobacco Residue. Applied Science and Engineering Progress.


Chicago/Turabian   Click to copy
Khan, Muhammad Ayub, E. Panakkal, M. Sriariyanun, M. Gundupalli, S. Roddecha, Keerthi Katam, Jayapriya Jayaprakash, and K. Cheenkachorn. “Dewaxing and Post-Pretreatment Washing: Impact on Sugar and Ethanol Yields from Tobacco Residue.” Applied Science and Engineering Progress (2024).


MLA   Click to copy
Khan, Muhammad Ayub, et al. “Dewaxing and Post-Pretreatment Washing: Impact on Sugar and Ethanol Yields from Tobacco Residue.” Applied Science and Engineering Progress, 2024.


BibTeX   Click to copy

@article{muhammad2024a,
  title = {Dewaxing and Post-Pretreatment Washing: Impact on Sugar and Ethanol Yields from Tobacco Residue},
  year = {2024},
  journal = {Applied Science and Engineering Progress},
  author = {Khan, Muhammad Ayub and Panakkal, E. and Sriariyanun, M. and Gundupalli, M. and Roddecha, S. and Katam, Keerthi and Jayaprakash, Jayapriya and Cheenkachorn, K.}
}

Abstract

Waste generated from tobacco cultivation has negatively impacted the environment due to its inappropriate disposal methods. This negative impact can be mitigated by valorizing tobacco residue. In this study, tobacco residue was pretreated and the effect of dewaxing and washing on sugar and ethanol yields was studied. Tobacco residue was pretreated with alkali (2.17 M NaOH, 94 °C, 4.5 h) or acid (2.95 wt% H2SO4, 133 °C, 0.92 h). The effect of dewaxing was studied by incorporating the dewaxing step prior to pretreatment. Similarly, the effect of washing was analyzed by omitting post-pretreatment washing. Compositional analysis revealed that dewaxing prior to alkaline pretreatment improved cellulose content by 80% compared to the standard pretreated sample. Enzymatic hydrolysis of the samples showed that pretreatment had improved sugar yield by up to 6.1 times. Moreover, the sugar yield further improved when dewaxing and post-pretreatment washing steps were incorporated into the process. The unwashed biomass showed a 3-fold decrease in sugar compared to untreated biomass. Furthermore, fermentation studies showed that the dewaxed alkaline pretreated tobacco residue enhanced ethanol yield by 34% compared to standard pretreated biomass. Thus, this study reveals the potential of tobacco residue valorization and emphasizes the importance of dewaxing and post-pretreatment washing in a biorefinery.


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