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Real Operating Parameters of Bioethanol Burners in Terms of Heat Output | ACS Omega
Full article: Improved bioethanol production using genome-shuffled Clostridium ragsdalei (DSM 15248) strains through syngas fermentation
Lignocellulosic bioethanol production: prospects of emerging membrane technologies to improve the process – a critical review
Optimization of some fermentation conditions for bioethanol production from microalgae using response surface method | Bulletin of the National Research Centre | Full Text
Integrated bioethanol production from mixtures of corn and corn stover - ScienceDirect
Bioethanol production from the nutrient stress-induced microalga Chlorella vulgaris by enzymatic hydrolysis and immobilized yeast fermentation - ScienceDirect
Lignocellulosic Biomass Valorization for Bioethanol Production: a Circular Bioeconomy Approach | SpringerLink
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A critical review on production of bioethanol from macroalgal biomass - ScienceDirect
A critical review on second- and third-generation bioethanol production using microwaved-assisted heating (MAH) pretreatment - ScienceDirect
Bioethanol production from pretreated CS at 15% (w/v) substrate... | Download Scientific Diagram
An integrative approach enables high bioresource utilization and bioethanol production from whole stillage - ScienceDirect
Reducing glucoamylase usage for commercial-scale ethanol production from starch using glucoamylase expressing Saccharomyces cerevisiae | Bioresources and Bioprocessing | Full Text
PDF) Improved bioethanol productivity through gas flow rate-driven self-cycling fermentation
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Agronomy | Free Full-Text | Bioethanol Production from Steam-Exploded Barley Straw by Co-Fermentation with Escherichia coli SL100 | HTML
CelS-Catalyzed Processive Cellulose Degradation and Cellobiose Extraction for the Production of Bioethanol | Journal of Chemical Information and Modeling
Agronomy | Free Full-Text | The Energy Efficiency of the Production and Conversion of Spring Triticale Grain into Bioethanol | HTML
Optimization of some fermentation conditions for bioethanol production from microalgae using response surface method | Bulletin of the National Research Centre | Full Text
Response surface methodology (RSM) for optimization of thermochemical pretreatment method and enzymatic hydrolysis of deodar sawdust (DS) for bioethanol production using separate hydrolysis and co-fermentation (SHCF) | SpringerLink
Bioethanol steam reforming over monoliths washcoated with RhPt/CeO2–SiO2: The use of residual biomass to stably produce syngas - ScienceDirect
Acid hydrolysis of sawdust waste into bioethanol | SpringerLink