Advances in Chemical Engineering and Science

Advances in Chemical Engineering and Science

ISSN Print: 2160-0392
ISSN Online: 2160-0406
www.scirp.org/journal/aces
E-mail: aces@scirp.org
"Biosynthesis of Ethanol and Hydrogen by Glycerol Fermentation Using Escherichia coli"
written by Nida Chaudhary, Michael O. Ngadi, Benjamin K. Simpson, Lamin S. Kassama,
published by Advances in Chemical Engineering and Science, Vol.1 No.3, 2011
has been cited by the following article(s):
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[2] Bioconversion of glycerol into biofuels—opportunities and challenges
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[3] Microbial Utilization of Glycerol for Biomanufacturing
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[4] Որոշ բակտերիաների ԱԵՖ-ազային ակտիվության բնութագրումը գլիցերոլի և գլյուկոզի օքսիդացման պայմաններում
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[6] Alkali and glycerol pretreatment of West African biomass for production of sugars and ethanol
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[7] Anaerobic Digestion of Biodiesel Residues for Energy and Revenue Generation
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[9] Current state and perspectives in hydrogen production by Escherichia coli: roles of hydrogenases in glucose or glycerol metabolism
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[10] Bioethanol production: Advances in technologies and raw materials
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[12] Bioenergy and Biofuels
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[13] Biorefineries: Design and Analysis
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[14] Bioethanol production
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[15] Valorização energética do glicerol através da digestão anaeróbia
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[16] Improvement of hydrogen yield by ethanol producing Escherichia coli recombinants in acidic condition
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[17] Anaerobic digestion of the inedible oil biodiesel residues for value addition
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[18] Co-production of Hydrogen and Ethanol of Escherichia coli SS1 Isolate
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[19] Co-production of hydrogen and ethanol by Escherichia coli SS1 and its recombinant
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[20] Cavity-Enhanced Raman Spectroscopy in the Biosciences: In Situ, Multicomponent, and Isotope Selective Gas Measurements To Study Hydrogen Production and Consumption by Escherichia coli
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[21] Bioelectrochemical Biorefining
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[22] GLICEROL RESIDUAL DA USINA PILOTO DE BIODIESEL DO IFBA–CAMPUS PAULO AFONSO: ANÁLISE DO APROVEITAMENTO ENERGÉTICO MEDIANTE …
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[23] The effect of glycerol on readily biodegradable chemical oxygen demand (RBCOD) in a wastewater stream
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[24] Integrated Production of Different Types of Bioenergy from Oil Palm Through Biorefinery Concept
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[25] Improved glycerol to ethanol conversion by E. coli using a metagenomic fragment isolated from an anaerobic reactor
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[26] GLICEROL RESIDUAL DA USINA PILOTO DE BIODIESEL DO IFBA–CAMPUS PAULO AFONSO: ANÁLISE DO APROVEITAMENTO ENERGÉTICO MEDIANTE …
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[27] Development of ethanol production from cooking oil glycerol waste by mutant Enterobacter aerogenes
African Journal of Biotechnology, 2016
[28] Hydrogen generation through cuprous chloride-hydrochloric acid electrolysis
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[29] Immobilization of Escherichia coli Mutant Strain for Efficient Production of Bioethanol from Crude Glycerol
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[30] Hydrogen biorefinery: Potential utilization of the liquid waste from fermentative hydrogen production
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[31] Mini review: hydrogen and ethanol co-production from waste materials via microbial fermentation
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[32] A COMPARATIVE ANALYSIS ON MICROBIAL PRODUCTION OF PRIMARY ALCOHOLS USING PRETREATED GLYCEROL
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[33] Optimization of Fermentation Parameters for Bioethanol Production from Waste Glycerol by Microwave Induced Mutant Escherichia Coli
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[34] Coupled chemical-biological process for the conversion of glycerol to bioethanol
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[35] Immobilization of Escherichia coli mutant strain for efficient production of bioethanol from crude glycerol.
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[36] Optimization of bioethanol production from glycerol by Escherichia coli SS1
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[37] Aerobic utilization of crude glycerol by recombinant Escherichia coli for simultaneous production of poly 3-hydroxybutyrate and bioethanol
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[38] A comprehensive and quantitative review of dark fermentative biohydrogen production
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