2022
DOI: 10.24275/rmiq/ia2822
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Sugar production by dilute acid hydrolysis of oat bagasse with three different acids: kinetics and thermodynamics

Abstract: totales del petróleo intemperizados en suelos y sedimentos (Biodegradation modeling of sludge bioreactors of total petroleum hydrocarbons weathering in soil and sediments)

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Cited by 2 publications
(3 citation statements)
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“…The need to increase the release of fermentable carbohydrates to obtain high yields in ethanol production has been reported, however, increased production costs are associated with this (Tomás-Pejó et al, 2008). Enzymatic hydrolysis, a typical pre-treatment of organic waste, is quite expensive and contributes significantly to the final cost of the biofuel (Klein-Marcuschamer et al, 2012;Gómora-Hernández et al, 2022). Although Crabtreenegative yeast (Schw.…”
Section: Ethanol Production In the Ssc Of The Ssmmentioning
confidence: 99%
“…The need to increase the release of fermentable carbohydrates to obtain high yields in ethanol production has been reported, however, increased production costs are associated with this (Tomás-Pejó et al, 2008). Enzymatic hydrolysis, a typical pre-treatment of organic waste, is quite expensive and contributes significantly to the final cost of the biofuel (Klein-Marcuschamer et al, 2012;Gómora-Hernández et al, 2022). Although Crabtreenegative yeast (Schw.…”
Section: Ethanol Production In the Ssc Of The Ssmmentioning
confidence: 99%
“…Gabhi et al 22 suggested electron hopping as a likely mechanism for electric conduction by studying the effect of different pyrolysis temperatures on the conductivity of biomass‐derived carbon (biochar). The effects of heating rate, temperature, and biomass particle size on the structural evolution of phosphoric acid activation carbon during carbonization and structural rearrangement have no relevant reports so far, though they are worth exploring 24–26 …”
Section: Introductionmentioning
confidence: 99%
“…The effects of heating rate, temperature, and biomass particle size on the structural evolution of phosphoric acid activation carbon during carbonization and structural rearrangement have no relevant reports so far, though they are worth exploring. [24][25][26] To provide a detailed picture of how temperature decides the morphology of the carbon during pyrolysis, and why it leads to different electrochemical performances when used as cathodes for Li-O 2 batteries, we use the abundant hemicellulose xylan as the biomass precursor with various pyrolysis temperatures followed by phosphoric acid activation. The electrochemical comparison between materials from a series of different process conditions such as pyrolysis temperature and the heating procedure has been obtained.…”
mentioning
confidence: 99%