2020
DOI: 10.21203/rs.3.rs-22333/v2
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Novel ethanol production using biomass preprocessing to increase ethanol yield and reduce overall costs

Abstract: Background: Ethanol biorefineries need to lower their overall production costs to become economically feasible. Two strategies to achieve this are to reduce costs by using cheaper feedstocks or to increase the ethanol production yield. Low-cost feedstocks usually have high non-structural components (NSC) content, therefore a new process is necessary to accommodate these feedstocks and overcome the negative effects of NSC. This study developed a novel ethanol biorefinery process including a biomass preprocessin… Show more

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Cited by 1 publication
(2 citation statements)
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“…A potential solution to this problem is to subject low-quality feedstocks to additional preprocessing steps aiming to minimize the negative effects of unwanted components and increase overall production yields. 43 The cost-effectiveness of biomass conversion could be increased by focusing on maximizing biomass use. This could be accomplished by expanding the product portfolio of any given biorefinery.…”
Section: Conversion Process and Product Manufacturing Stagementioning
confidence: 99%
See 1 more Smart Citation
“…A potential solution to this problem is to subject low-quality feedstocks to additional preprocessing steps aiming to minimize the negative effects of unwanted components and increase overall production yields. 43 The cost-effectiveness of biomass conversion could be increased by focusing on maximizing biomass use. This could be accomplished by expanding the product portfolio of any given biorefinery.…”
Section: Conversion Process and Product Manufacturing Stagementioning
confidence: 99%
“…For example, using low‐cost biomass feedstocks with inferior quality (i.e., high content of unwanted components) can help decrease production costs but will result in lower production yields. A potential solution to this problem is to subject low‐quality feedstocks to additional preprocessing steps aiming to minimize the negative effects of unwanted components and increase overall production yields 43 …”
Section: Industrymentioning
confidence: 99%