4.6 Article

Designing Efficient Processes for Sustainable Bioethanol and Bio-Hydrogen Production from Grass Lawn Waste

Journal

MOLECULES
Volume 25, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/molecules25122889

Keywords

pretreatment; fermentation; hydrolysis; grass lawn; ethanol; hydrogen; whole slurry; separation; process scheme

Funding

  1. Greek General Secretariat for Research and Technology under Supporting Postdoctoral Researchers Projects Pretreatment of lignocellulosic wastes for 2nd generation biofuels [POSTDOC_PE8(1756)]

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The effect of thermal, acid and alkali pretreatment methods on biological hydrogen (BHP) and bioethanol production (BP) from grass lawn (GL) waste was investigated, under different process schemes. BHP from the whole pretreatment slurry of GL was performed through mixed microbial cultures in simultaneous saccharification and fermentation (SSF) mode, while BP was carried out through the C5yeastPichia stipitis, in SSF mode. From these experiments, the best pretreatment conditions were determined and the efficiencies for each process were assessed and compared, when using either the whole pretreatment slurry or the separated fractions (solid and liquid), the separate hydrolysis and fermentation (SHF) or SSF mode, and especially for BP, the use of other yeasts such asPachysolen tannophilusorSaccharomyces cerevisiae. The experimental results showed that pretreatment with 10 gH(2)SO(4)/100 g total solids (TS) was the optimum for both BHP and BP. Separation of solid and liquid pretreated fractions led to the highest BHP (270.1 mL H-2/g TS, corresponding to 3.4 MJ/kg TS) and also BP (108.8 mg ethanol/g TS, corresponding to 2.9 MJ/kg TS) yields. The latter was achieved by usingP. stipitisfor the fermentation of the hydrolysate andS. serevisiaefor the solid fraction fermentation, at SSF.

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