A. Christian, Simple purification of ionic liquid solvents by nanofiltration in biorefining of lignocellulosic substrates, Journal of Membrane Science, pp.405-406, 2012.

B. Al-rashdi, D. J. Johnson, and N. Hilal, « Removal of heavy metal ions by nanofiltration, Desalination, vol.315, 2013.

T. Lima-de and A. , Biotechnological production of xylitol from lignocellulosic wastes : A review, Process Biochemistry, vol.49, pp.1779-1789, 2014.

S. Allen, A comparison of aqueous and dilute-acid single-temperature pretreatment of yellow poplar sawdust, Industrial & Engineering Chemistry Research, vol.40, pp.888-5885, 2001.

A. Mohammad, « Nanofiltration and reverse osmosis as a platform for production of natural botanic extracts : The case study of carob by-products, Separation and Purification Technology, vol.149, pp.389-397, 2015.

,

J. R. Almeida, Increased tolerance and conversion of inhibitors in lignocellulosic hydrolysates by Saccharomyces cerevisiae, 2007.

J. Rm and A. , Pichia stipitis xylose reductase helps detoxifying lignocellulosic hydrolysate by reducing 5-hydroxymethyl-furfural (HMF). » 208 BIBLIOGRAPHIE In, vol.1, p.12, 2008.

P. Alvira, Pretreatment technologies for an efficient bioethanol production process based on enzymatic hydrolysis : A review, Bioresource Technology, vol.101, pp.4851-4861, 2010.

A. Pablo, Application of a microassay method to study enzymatic hydrolysis of pretreated wheat straw, Journal of Chemical Technology and Biotechnology, vol.85, 2010.

D. Amendola, Autohydrolysis and organosolv process for recovery of hemicelluloses, phenolic compounds and lignin from grape stalks, Bioresource Technology, vol.107, pp.267-274, 2012.

A. Amon, M. Liu, and A. Zulfiqar, Understanding the link between antimicrobial properties of dietary olive phenolics and bacterial ATP synthase, International Journal of Biological Macromolecules, vol.101, pp.153-164, 2017.

A. Magnus, Pulsed addition of HMF and furfural to batch-grown xylose-utilizing Saccharomyces cerevisiae results in different physiological responses in glucose and xylose consumption phase, Biotechnology for biofuels, vol.6, p.181, 2013.

A. Magnus, « The influence of HMF and furfural on redox-balance and energy-state of xylose-utilizing Saccharomyces cerevisiae, Biotechnology for biofuels, vol.6, pp.1754-6834, 2013.

B. E. Lobo and B. , Evaluation of hydrogen and methane production from sugarcane bagasse hemicellulose hydrolysates by two-stage anaerobic digestion process, Bioresource Technology, vol.218, pp.436-446, 2016.

M. Amin, B. , M. Shafiei, and K. Keikhosro, Anaerobic digestion as a pretreatment to enhance ethanol yield from lignocelluloses, Process Biochemistry, vol.51, pp.1359-5113, 2016.

B. Venkatesh, Enzymatic digestibility and pretreatment degradation products of AFEX-treated hardwoods (populus nigra), Biotechnology Progress, vol.25, pp.365-375, 2009.

G. Bargeman, Nanofiltration of multi-component feeds. Interactions between neutral and charged components and their effect on retention, Journal of Membrane Science, vol.247, 2005.

G. Bargeman, « The effect of NaCl and glucose concentration on retentions for nanofiltration membranes processing concentrated solutions, Separation and Purification Technology, vol.134, pp.46-57, 2014.

C. Bellido, Effect of inhibitors formed during wheat straw pretreatment on ethanol fermentation by Pichia stipitis, Bioresource Technology, vol.102, pp.10868-10874, 2011.

N. Ben-amar, Effect of temperature on the transport of water and neutral solutes across nanofiltration membranes, Langmuir, vol.23, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00170177

B. Nihel and . Amar, « Effect of temperature on the rejection of neutral and charged solutes by Desal 5 DK nanofiltration membrane, Desalination, vol.246, pp.294-303, 2009.

B. Michael, H. Ulrich, W. Thomas, and E. , « Flow-cytometric study of vital cellular functions in Escherichia coli during solar disinfection (SODIS), Microbiology 152, pp.1719-1729, 2006.

L. J. Bessa, M. Ferreira, and G. Paula, « Evaluation of membrane fluidity of multidrug-resistant isolates of Escherichia coli and Staphylococcus aureus in presence and absence of antibiotics, Journal of Photochemistry and Photobiology B : Biology, vol.181, pp.150-156, 2017.

C. Line and B. , Purification of pentoses from hemicellulosic hydrolysates without neutralization for sulfuric acid recovery, Separation and Purification Technology, vol.174, pp.513-519, 2017.

,

B. Antoine, R. Hélène, . Balmann, and L. Florence, « Nanofiltration of glucose and sodium lactate solutions : Variations of retention between single-and mixed-solute solutions, Journal of Membrane Science, vol.258, 2005.

B. Marielle and G. Sarrah, Assessment of bacterial membrane fluidity by flow cytometry, vol.143, pp.50-57, 2017.

B. Teresa, Detoxification of hemicellulosic hydrolysates from extracted olive pomace by diananofiltration, Process Biochemistry, vol.49, pp.173-180, 2014.

F. M. Campos, Cell membrane damage induced by phenolic acids on wine lactic acid bacteria, International Journal of Food Microbiology, vol.135, pp.144-151, 2009.

C. Larissa, J. Batista, D. E. Almeida, A. I. Silva, and S. Nápoles, « Eucalyptus hydrolysate detoxification with activated charcoal adsorption or ion-exchange resins for xylitol production, Process Biochemistry, vol.39, 2004.

C. Maria, « Comparison of different detoxification methods for steam-exploded poplar wood as a substrate for the bioproduction of ethanol in SHF and SSF, Process Biochemistry, vol.39, 2004.

N. Capelle, Purification of heterocyclic drug derivatives from concentrated saline solution by nanofiltration, Journal of Membrane Science, vol.196, pp.125-141, 2002.
URL : https://hal.archives-ouvertes.fr/hal-01916606

C. Walter, Use of immobilized Candida yeast cells for xylitol production from sugarcane bagasse hydrolysate : cell immobilization conditions, Applied biochemistry and biotechnology, pp.489-496, 2002.

C. Walter-de, Detoxification of sugarcane bagasse hemicellulosic hydrolysate with ion-exchange resins for xylitol production by calcium alginate-entrapped cells, Journal of Chemical Technology and Biotechnology, vol.79, pp.863-868, 2003.

A. Cassano, Effect of polyphenols-membrane interactions on the performance of membrane-based processes. A review, Coordination Chemistry Reviews, vol.351, pp.45-75, 2017.

C. Causserand, Dichloroaniline retention by nanofiltration membranes, Water Research, vol.39, 2005.

. Bibliographie,

A. Kumar and C. , Detoxification of sugarcane bagasse hydrolysate improves ethanol production by Candida shehatae NCIM 3501, Bioresource Technology, vol.98, 2007.

C. Jayani, « Nanofiltration and nanodiafiltration of acid whey as a function of pH and temperature, Separation and Purification Technology, vol.160, pp.18-27, 2016.

C. He, Ceramic tubular nanofiltration membranes with tunable performances by atomic layer deposition and calcination, Journal of Membrane Science, vol.528, pp.95-102, 2016.

C. Hongyan, « A review on the pretreatment of lignocellulose for high-value chemicals, Fuel Processing Technology, vol.160, pp.196-206, 2017.

,

C. Kaifei, Ion exchange separation for recovery of monosaccharides, organic acids and phenolic compounds from hydrolysates of lignocellulosic biomass, Separation and Purification Technology, vol.172, pp.100-106, 2017.

,

C. Tao, Engineering Bacillus subtilis for acetoin production from glucose and xylose mixtures, Journal of Biotechnology, vol.168, pp.499-505, 2013.

C. Xianfu, Novel pore size tuning method for the fabrication of ceramic multi-channel nanofiltration membrane, Journal of Membrane Science, vol.552, pp.77-85, 2017.

S. Swaroop, D. , M. Patel, and K. R. Sudip, Development and evaluation of poplar hemicellulose prehydrolysate upstream processes for the enhanced fermentative production of xylitol, Biomass and Bioenergy, vol.105, 2017.

J. P. Delgenes, R. Moletta, and J. M. Navarro, « Effects of lignocellulose degradation products on ethanol fermentations of glucose and xylose by Saccharomyces cerevisiae, Zymomonas mobilis, Pichia stipitis, and Candida shehatae, Enzyme and Microbial Technology, vol.19, pp.220-225, 1996.

M. Mekonnen and . Demeke, Combining inhibitor tolerance and D-xylose fermentation in industrial Saccharomyces cerevisiae for efficient lignocellulosebased bioethanol production, Biotechnology for Biofuels, vol.6, pp.1-17, 2013.

M. José, A. Domínguez, . Converti, P. Patrizia, and . Yeasts, , 1990.

D. Aleta, P. Manzanares, and B. Mercedes, Extrusion as a pretreatment for lignocellulosic biomass : Fundamentals and applications, Renewable Energy, vol.114, pp.1427-1441, 2017.

A. M. Earl, L. Richard, and K. Roberto, « Ecology and genomics of Bacillus subtilis, Trends in Microbiology, vol.16, 2008.

F. Claire, Adsorption of small organic solutes from beet distillery condensates on reverse-osmosis membranes : Consequences on the process performances, Journal of Membrane Science, vol.446, pp.132-144, 2013.

,

J. and M. Penner, « Comparison of aromatic monomers in lignocellulosic biomass prehydrolysates, Journal of Industrial Microbiology and Biotechnology, vol.20, pp.364-368, 1998.

R. W. Field, « Critical flux concept for microfiltration fouling, Journal of Membrane Science, vol.100, pp.259-272, 1995.

W. Robert, . Field, and K. P. Graeme, sustainable and threshold fluxes for membrane filtration with water industry applications, Advances in Colloid and Interface Science, vol.164, 2011.

D. J. Fitzgerald, Mode of antimicrobial of vanillin against Escherichia coli, Lactobacillus plantarum and Listeria innocua, Journal of Applied Microbiology, vol.97, pp.104-113, 2004.

M. Ann, F. , P. T. Pienkos, and Z. Min, « Development of a high-throughput method to evaluate the impact of inhibitory compounds from lignocellulosic hydrolysates on the growth of Zymomonas mobilis, Journal of Biotechnology, vol.144, pp.259-267, 2009.

M. Ann and F. , Inhibition of growth of Zymomonas mobilis by model compounds found in lignocellulosic hydrolysates, » In : Biotechnology for biofuels, vol.6, pp.1754-6834, 2013.

G. Rebeca, Adaptive tolerance to phenolic biocides in bacteria from organic foods : Effects on antimicrobial susceptibility and tolerance to physical stresses, Food Research International, vol.85, pp.131-143, 2016.

C. M. Galanakis, F. Georgios, and G. Vassilis, « Nanofiltration of brackish groundwater by using a polypiperazine membrane, Desalination, vol.286, pp.277-284, 2012.

G. Antoine, Exploring the microstructure of natural fibre composites by confocal Raman imaging and image analysis, Composites Part A : Applied Science and Manufacturing, vol.94, 2017.

D. Gärtner, M. Geissendörfer, and W. Hillen, « Expression of the Bacillus subtilis xyl operon is repressed at the level of transcription and is induced by xylose, Journal of bacteriology, vol.170, pp.3102-3109, 1988.

G. Amitkumar and J. M. Todd, Performance evaluation and fouling analysis for reverse osmosis and nanofiltration membranes during processing of lignocellulosic biomass hydrolysate, Journal of Membrane Science, vol.451, pp.252-265, 2014.

G. Gayatri and H. Swapnali, Coupling of ionic liquid treatment and membrane filtration for recovery of lignin from lignocellulosic biomass, Separation and Purification Technology, vol.173, 2017.

D. Greetham, A. J. Hart, and G. A. Tucker, « Presence of low concentrations of acetic acid improves yeast tolerance to hydroxymethylfurfural (HMF) and furfural, Biomass and Bioenergy, vol.85, 2016.

D. Greetham, A. J. Hart, and G. A. Tucker, « Presence of low concentrations of acetic acid improves yeast tolerance to hydroxymethylfurfural (HMF) and furfural, Biomass and Bioenergy, vol.85, 2016.

M. T. Guarnieri, Conversion and assimilation of furfural and 5-(hydroxymethyl)furfural by Pseudomonas putida KT2440 ». In : Metabolic Engineering Communications, vol.4, pp.22-28, 2016.

G. Honglin, « Fabrication and characterization of TiO2/ZrO2ceramic membranes for nanofiltration, Microporous and Mesoporous Materials, vol.260, pp.125-131, 2018.

H. Sohrab and . Mood, Lignocellulosic biomass to bioethanol, a comprehensive review with a focus on pretreatment, Renewable and Sustainable Energy Reviews, vol.27, 2013.

G. Hagmeyer and R. G. , Modelling the rejection of nanofiltration membranes using zeta potential measurements, Separation and Purification Technology, vol.15, pp.50-51, 1999.

H. Binbing, Adsorptive membranes vs. resins for acetic acid removal from biomass hydrolysates, Desalination, vol.193, issue.1, pp.361-366, 2006.

H. Basem-mikhaeil, Impact of furfural on biohydrogen production from glucose and xylose in continuous-flow systems, Renewable Energy, vol.93, pp.302-311, 2016.

J. Catherine and . Harrison, Bench-Scale Testing of Nanofiltration for Seawater Desalination, pp.1004-1014, 2007.

M. Gary, . Hawkins, and D. Joy, A strain of Saccharomyces cerevisiae evolved for fermentation of lignocellulosic biomass displays improved growth and fermentative ability in high solids concentrations and in the presence of inhibitory compounds, Biotechnology for Biofuels, vol.4, pp.1754-6834, 2011.

H. Swapnali, N. N. Dutta, and P. G. Rao, « Dissolution of lignocellulose in ionic liquids and its recovery by nanofiltration membrane, Separation and Purification Technology, vol.97, pp.123-129, 2012.

H. Dominik, H. Daniel, and S. Uwe, « Resistance of Saccharomyces cerevisiae to high concentrations of furfural is based on NADPH-dependent reduction by at least two oxireductases, Applied and Environmental Microbiology, vol.75, pp.7631-7638, 2009.

I. Horváth, Selection of anion exchangers for detoxification of diluteacid hydrolysates from spruce, Appl.Biochem.Biotechnol, pp.273-2289, 2004.

I. Sárvári and H. , Effects of Furfural on the Respiratory Metabolism of Saccharomyces cerevisiae in Glucose-Limited Chemostats Effects of Furfural on the Respiratory Metabolism of Saccharomyces cerevisiae in Glucose-Limited Chemostats, Applied and environmental microbiology, vol.69, pp.4076-4086, 2003.

H. Jiang and H. , A review of separation technologies in current and future biorefineries, Separation and Purification Technology, vol.62, 2008.

D. H. John and . Matplotlib, A 2D graphics environment, Computing in Science and Engineering, vol.9, pp.99-104, 2007.

. Bibliographie,

I. Saksit, « Influence of alkaline catalyst addition on compressed liquid hot water pretreatment of rice straw, Chemical Engineering Journal, vol.278, pp.85-91, 2015.

I. Hafiz-muhammad-nasir, K. Godfrey, and K. Tajalli, « Advances in the valorization of lignocellulosic materials by biotechnology : An overview, BioResources, vol.8, pp.3157-3176, 2013.

J. Marine, A Renewable and Safer Alternative to BisphenolA for Epoxy-Amine Resins, 2017.

J. Ron, Steam pretreatment of spruce forest residues : Optimal conditions for biogas production and enzymatic hydrolysis, Carbohydrate Polymers, vol.100, 2014.

J. So-yeon, Improvement of the fermentability of oxalic acid hydrolysates by detoxification using electrodialysis and adsorption, Bioresource Technology, vol.152, pp.444-449, 2014.

J. Leif, . Jönsson, A. Björn, and N. Nils-olof, Bioconversion of lignocellulose : inhibitors and detoxification. » In : Biotechnology for biofuels, vol.6, p.16, 2013.

L. J. Jönsson and M. Carlos, « Pretreatment of lignocellulose : Formation of inhibitory by-products and strategies for minimizing their effects, Bioresource Technology, vol.199, p.10, 2016.

J. Bishnu, Lignocellulosic ethanol production : Current practices and recent developments, Biotechnology and Molecular Biology Review, vol.6, pp.172-182, 2011.

K. Keikhosro, J. Mohammad, and . Taherzadeh, A critical review of analytical methods in pretreatment of lignocelluloses : Composition, imaging, and crystallinity, Bioresource Technology, vol.200, pp.1008-1018, 2016.

H. David and . Keating, Aromatic inhibitors derived from ammonia-pretreated lignocellulose hinder bacterial ethanologenesis by activating regulatory circuits controlling inhibitor efflux and detoxification, Frontiers in Microbiology, vol.5, pp.1-17, 2014.

K. Heribert, W. Gerd, and R. Hans-jiirgen, « Phenol-induced membrane changes in free and immobilized Escherichia coli, Applied microbiology and biotechnology, vol.33, pp.66-71, 1990.

K. Anurag, « Synthesis, antimicrobial evaluation and QSAR studies of p-coumaric acid derivatives, Arabian Journal of Chemistry, vol.10, 2017.

J. Hyung and K. , « Separation of galactose, 5-hydroxymethylfurfural and levulinic acid in acid hydrolysate of agarose by nanofiltration and electrodialysis, Bioresource Technology, vol.140, 2013.

A. A. Kiss, Separation technology-Making a difference in biorefineries, Biomass and Bioenergy, vol.95, pp.296-309, 2016.

. Bibliographie,

H. , A. Thomsen, and B. Ahring, « Inhibition of ethanol-producing yeast and bacteria by degradation products produced during pre-treatment of biomass, » In : Applied microbiology and biotechnology, vol.66, pp.10-26, 2004.

K. Rakesh, Lignocellulosic ethanol production at high-gravity : challenges and perspectives, Trends in biotechnology, vol.32, pp.46-53, 2014.

, DOI : 10 . 1016 / j, pp.1879-3096

O. Krispin and R. A. , The Bacillus subtilis AraE protein displays a broad substrate specificity for several different sugars, Journal of Bacteriology, vol.180, pp.3250-3252, 1998.

M. N. Satheesh-kumar, « Lignin and its applications with polymers, Journal of Biobased Materials and Bioenergy, vol.3, 2009.

K. Naresh and P. Vikas, « Potential applications of ferulic acid from natural sources, Biotechnology Reports, vol.4, pp.86-93, 2014.

K. Parveen, Methods for pretreatment of lignocellulosic biomass for efficient hydrolysis and biofuel production, 2009.

F. Kunst and A. L. , The complete genome sequence of the gram-positive bacterium Bacillus subtilis, Nature, vol.390, pp.249-256, 1997.

L. Pascal, une alternative prometteuse à la pétrochimie, Biotechnology, Agronomy and Society and Environment, vol.15, p.13706233, 2011.

H. Joo, L. , W. Seok, L. , J. Won et al., « Improvement of ethanol fermentation from lignocellulosic hydrolysates by the removal of inhibitors, Journal of Industrial and Engineering Chemistry, vol.19, pp.2010-2015, 2013.

,

J. Won, L. , L. Thi-phi, T. , H. Joo et al., « Removal of inhibitors from a hydrolysate of lignocellulosic biomass using electrodialysis, Separation and Purification Technology, vol.122, p.10, 2014.

,

J. Myoung and L. , « Detoxification of woody hydrolyzates with activated carbon for bioconversion to ethanol by the thermophilic anaerobic bacterium Thermoanaerobacterium saccharolyticum, Biomass and Bioenergy, vol.35, pp.626-636, 2011.

L. Madalena, The effects of ferulic and salicylic acids on Bacillus cereus and Pseudomonas fluorescens single-and dual-species biofilms, International Biodeterioration & Biodegradation, vol.86, 2014.

Z. L. Liu, Multiple gene-mediated NAD(P)H-dependent aldehyde reduction is a mechanism of in situ detoxification of furfural and 5-hydroxymethylfurfural by Saccharomyces cerevisiae, Applied Microbiology and Biotechnology, vol.81, 2008.

L. I. Yun, Separation and concentration of hydroxycinnamic acids in alkaline hydrolyzate from rice straw by nanofiltration, Separation and Purification Technology, vol.149, pp.315-321, 2015.

L. Savitree, Effect of Acetic Acid on Growth and Ethanol Fermentation of Xylose Fermenting Yeast and Saccharomyces cerevisiae, Natural Science, vol.73, pp.75-5192, 2000.

L. Richen, « Inhibitory effects of furan derivatives and phenolic compounds on dark hydrogen fermentation, BIBLIOGRAPHIE p, vol.196, pp.1873-2976, 2015.

L. Yanfeng, Modular pathway engineering of Bacillus subtilis for improved N-acetylglucosamine production, Metabolic Engineering, vol.23, pp.42-52, 2014.

L. Yanfeng, « Pathway engineering of Bacillus subtilis for microbial production of N-acetylglucosamine, Metabolic Engineering, vol.19, pp.107-115, 2013.

L. Yating, Enhanced lipid production with undetoxified corncob hydrolysate by Rhodotorula glutinis using a high cell density culture strategy, Bioresource Technology, vol.180, pp.32-39, 2015.

L. Zhen, « Efficient utilization of hemicellulose hydrolysate for propionic acid production using Propionibacterium acidipropionici, Bioresource Technology, vol.114, 2012.

L. Gabriele, « Recovery of monosaccharides from lignocellulosic hydrolysates by ion exclusion chromatography, Journal of Chromatography A, vol.1496, pp.25-36, 2017.

L. Zaixiang, Coumaric acid kills bacteria through dual damage mechanisms, Food Control, vol.25, pp.550-554, 2012.

L. Jianquan and D. Luhui, « Influence of pH on treatment of dairy wastewater by nanofiltration using shear-enhanced filtration system, Desalination, vol.278, pp.150-156, 2011.

J. Luo and W. Yinhua, Desalination of effluents with highly concentrated salt by nanofiltration : From laboratory to pilot-plant, Desalination, vol.315, pp.91-99, 2013.

L. Jianquan and W. Yinhua, Effect of highly concentrated salt on retention of organic solutes by nanofiltration polymeric membranes, vol.372, pp.145-153, 2011.

L. Jianquan and W. Yinhua, « Effects of pH and salt on nanofiltration-a critical review, Journal of Membrane Science, vol.438, 2013.

L. Jianquan, « Separation of phenolic acids from monosaccharides by low-pressure nanofiltration integrated with laccase pre-treatments, Journal of Membrane Science, vol.482, pp.83-91, 2015.

L. Hang, Monophenols separation from monosaccharides and acids by two-stage nanofiltration and reverse osmosis in hydrothermal liquefaction hydrolysates, Journal of Membrane Science, vol.504, pp.141-152, 2016.

L. Hang, Two-stage nanofiltration process for high-value chemical production from hydrolysates of lignocellulosic biomass through hydrothermal liquefaction, Separation and Purification Technology, vol.147, pp.276-283, 2015.

,

M. A. Jian-feng, Structural modification of hemicelluloses and lignin based on the biorefinery process with white-rot fungal, Carbohydrate Polymers, vol.153, pp.7-13, 2016.

. Bibliographie,

V. Mageshwaran, F. Inmann, L. Iii, and . Holmes, « Growth kinectis of Bacillus subtilis in lugnocellulosic carbon sources, » In : 6, vol.2, pp.570-574, 2014.

K. Soumen and . Maiti, Modeling of the separation of inhibitory components from pretreated rice straw hydrolysate by nanofiltration membranes, Bioresource Technology, vol.114, pp.419-427, 2012.

,

M. Malfeito, « Weak acid inhibition of fermentation and Saccharomyces by Zygosaccharomyces cerevisiae, Science 1605.97, 1997.

M. Mohammadmahdi, J. J. Stickel, S. Ranil, and W. , Sugar concentration and detoxification of clarified biomass hydrolysate by nanofiltration, Separation and Purification Technology, vol.132, pp.655-665, 2014.

I. Maciel-de, M. Nazmul, and K. , « Evaluation of Ion Exchange Resins for Removal of Inhibitory, pp.1837-1841, 2003.

M. Sindhu, T. Emilia, A. , and S. Sudheesh, « Rapid conversion of ferulic acid to 4-vinyl guaiacol and vanillin metabolites by Debaryomyces hansenii, Journal of Molecular Catalysis B : Enzymatic, vol.44, pp.48-52, 2007.

M. Wes, « pandas : a Foundational Python Library for Data Analysis and Statistics, Python for High Performance and Scientific Computing, pp.1-9, 2011.

M. Fatma, Improvement of butanol production from a hardwood hemicelluloses hydrolysate by combined sugar concentration and phenols removal, Bioresource Technology, vol.192, pp.287-295, 2015.

M. Daniel, Regenerable polymer/ceramic hybrid nanofiltration membrane based on polyelectrolyte assembly by layer-by-layer technique, Journal of Membrane Science, vol.520, pp.924-932, 2016.

Y. Tirzah, N. R. Mills, . Sandoval, and T. G. Ryan, Cellulosic hydrolysate toxicity and tolerance mechanisms in Escherichia coli, Biotechnology for Biofuels, vol.2, 2009.

M. Kambiz, Alkaline pretreatment of spruce and birch to improve bioethanol and biogas production, BioResources, vol.5, p.19302126, 2010.

V. D. Mitchell, C. M. Taylor, and B. Stefan, « Comprehensive Analysis of Monomeric Phenolics in Dilute Acid Plant Hydrolysates, Bioenergy Research, vol.7, 2014.

F. Monlau, « Do furanic and phenolic compounds of lignocellulosic and algae biomass hydrolyzate inhibit anaerobic mixed cultures ? A comprehensive review, Biotechnology Advances, vol.32, pp.934-951, 2014.
DOI : 10.1016/j.biotechadv.2014.04.007

M. Florian, Specific inhibition of biohydrogen-producing Clostridium sp. after dilute-acid pretreatment of sunflower stalks, International Journal of Hydrogen Energy, vol.38, 2013.

A. D. Moreno, Different laccase detoxification strategies for ethanol production from lignocellulosic biomass by the thermotolerant yeast Kluyveromyces marxianus CECT 10875, Bioresource Technology, vol.106, pp.101-109, 2012.
DOI : 10.1016/j.biortech.2011.11.108

. Bibliographie,

A. D. Moreno, Ethanol from laccase-detoxified lignocellulose by the thermotolerant yeast Kluyveromyces-Effects of steam pretreatment conditions, process configurations and substrate loadings, Biochemical Engineering Journal, vol.79, pp.94-103, 2013.

A. D. Moreno, « In situ laccase treatment enhances the fermentability of steam-exploded wheat straw in SSCF processes at high dry matter consistencies, Bioresource Technology, vol.143, pp.337-343, 2013.

M. Siddhartha, « Production of fructose sugar from aqueous solutions : nanofiltration performance and hydrodynamic analysis, Journal of Cleaner Production, vol.92, pp.44-53, 2015.

M. Ioannis, Thermal oxidation of vanillin affects its antioxidant and antimicrobial properties, Food Chemistry, vol.114, pp.791-797, 2009.

,

M. Slavomíra and D. Katarína, « Response mechanisms of bacterial degraders to environmental contaminants on the level of cell walls and cytoplasmic membrane, International Journal of Microbiology, 2014.

,

G. S. Murthy, Concentration of xylose reaction liquor by nanofiltration for the production of xylitol sugar alcohol, Separation and Purification Technology, vol.44, pp.221-228, 2005.

S. I. Mussatto, « Technological trends, global market, and challenges of bio-ethanol production, Biotechnology Advances, vol.28, 2010.

S. Inês, M. Inês-conceição, and R. , « Alternatives for detoxification of diluted-acid lignocellulosic hydrolyzates for use in fermentative processes : A review, Bioresource Technology, vol.93, 2004.

M. Michiko, . Nakano, and H. Marion, « Adaptation of Bacillus subtilis to oxygen limitation, FEMS Microbiology Letters, vol.157, pp.3-9, 1997.

L. , I. Schäfer, and M. Elimelech, « Removal of natural hormones by nanofiltration membranes : Measurements, modeling, and mechanisms, Environmental Science and Technology, vol.38, pp.1888-1896, 2004.

D. T. Nguyen, Optimization and modeling of diananofiltration process for the detoxification of ligno-cellulosic hydrolysates -Study at preindustrial scale, Journal of Membrane Science, vol.512, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01583758

N. Nguyen, Assessing nanofiltration and reverse osmosis for the detoxification of lignocellulosic hydrolysates, Journal of Membrane Science, vol.487, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01186911

T. Nguyen, Vanillin causes the activation of Yap1 and mitochondrial fragmentation in Saccharomyces cerevisiae, Journal of Bioscience and Bioengineering, vol.117, pp.33-38, 2014.

J. N. Nigam, Ethanol production from wheat straw hemicellulose hydrolysate by Pichia stipitis, Journal of Biotechnology, vol.87, pp.17-27, 2001.

N. Nilvebrant, Detoxification of lignocellulose hydrolysates with ion-exchange resins, » In : Applied biochemistry and biotechnology, pp.35-49, 2001.

. Bibliographie,

J. M. Ochando-pulido, M. Stoller, and A. Martinez-ferez, « Boundary flux modelling for purification optimization of differently-pretreated agroindustrial wastewater with nanofiltration, Separation and Purification Technology 193, pp.147-154, 2017.

M. José and . Oliva, Effects of acetic acid, furfural and catechol combinations on ethanol fermentation of Kluyveromyces marxianus, Process Biochemistry, vol.41, 2006.

. Ing-marie and . Olsson, « Rational DOE protocols for 96-well plates, Chemometrics and Intelligent Laboratory Systems, vol.83, pp.66-74, 2006.

O. Lisbeth and H. Bärbel, « Fermentation of lignocellulosic hydrolysates for ethanol production, Enzyme and Microbial Technology, vol.18, pp.312-331, 1996.

Ö. Sibel, Ç. P?nar, H. Tunçer, and . Özdamar, Fed-Batch Biomolecule Production by Bacillus subtilis : A State of the Art Review, » In : Trends in biotechnology, vol.34, pp.1879-3096, 2016.

P. Eva and H. Bärbel, « Fermentation of lignocellulosic hydrolysates. I : Inhibition and detoxification, Bioresource Technology, vol.74, pp.160-161, 2000.

P. Eva and H. Bärbel, « Fermentation of lignocellulosic hydrolysates. II : Inhibitors and mechanisms of inhibition, Bioresource Technology, vol.74, pp.25-33, 2000.

P. Eva, « Main and interaction effects of acetic acid, furfural, and p-hydroxybenzoic acid on growth and ethanol productivity of yeasts, Biotechnology and Bioengineering, vol.63, pp.46-55, 1999.

P. Wenyang, T. Christopher, . Nomura, and P. N. James, Estimation of inhibitory effects of hemicellulosic wood hydrolysate inhibitors on PHA production by Burkholderia cepacia ATCC 17759 using response surface methodology, Bioresource Technology, vol.125, pp.275-282, 2012.

P. Richa, Efficacy of ferulic acid encapsulated chitosan nanoparticles against Candida albicans biofilm, Microbial Pathogenesis, vol.95, 2016.

P. Seong-eon, Expression of aldehyde dehydrogenase 6 reduces inhibitory effect of furan derivatives on cell growth and ethanol production in Saccharomyces cerevisiae, Bioresource Technology, vol.102, pp.6033-6038, 2011.

,

Y. Cheol, P. , S. Young, J. , J. Ho et al., « Construction and characterization of recombinant Bacillus subtilis JY123 able to transport xylose efficiently, Journal of Biotechnology, vol.161, pp.402-406, 2012.

P. Feng, « Fractional purification and bioconversion of hemicelluloses, Biotechnology Advances, vol.30, pp.879-903, 2012.

P. Joana, . Pereira, J. Peter, . Verheijen, J. Adrie et al., « Growth inhibition of S. cerevisiae, B. subtilis, and E. coli by lignocellulosic and fermentation products, Applied Microbiology and Biotechnology, vol.100, 2016.

T. Philip, . Pienkos, and Z. Min, Role of pretreatment and conditioning processes on toxicity of lignocellulosic biomass hydrolysates, 2009.

A. Magdalena and P. , An overview of natural antimicrobials role in food, European Journal of Medicinal Chemistry, vol.143, pp.922-935, 2018.

C. Edwin, . Van-der, and . Pol, Identifying inhibitory effects of lignocellulosic by-products on growth of lactic acid producing micro-organisms using a rapid small-scale screening method, Bioresource Technology, vol.209, pp.297-304, 2016.

M. Povelainen and N. M. Andrei, Production of xylitol by metabolically engineered strains of Bacillus subtilis, Journal of Biotechnology, vol.128, pp.24-31, 2007.

Q. I. Benkun, « Application of ultrafiltration and nanofiltration for recycling cellulase and concentrating glucose from enzymatic hydrolyzate of steam exploded wheat straw, Bioresource Technology, vol.104, 2012.

,

Q. I. Benkun, « Separation of furfural from monosaccharides by nanofiltration, Bioresource Technology, vol.102, 2011.

Q. Marianne, Inhibition of fermentative hydrogen production by lignocellulose-derived compounds in mixed cultures, International Journal of Hydrogen Energy, vol.37, p.3603199, 2012.

C. Hun and R. A. , Biotransformation of 5-hydroxymethylfurfural (HMF) by Scheffersomyces stipitis during ethanol fermentation of hydrolysate of the seaweed Gelidium amansii, Bioresource Technology, vol.140, 2013.

,

Y. El, Cross-flow microfiltration of wine : Effect of colloids on critical fouling conditions, Journal of Membrane Science, pp.177-186, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00750746

A. F. Reano, Chemo-enzymatic preparation and characterization of renewable oligomers with bisguaiacol moieties : promising sustainable antiradical/antioxidant additives, Green Chem, vol.18, pp.3334-3345, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01707347

A. F. Reano, Ferulic Acid-Based Bis/Trisphenols as Renewable Antioxidants for Polypropylene and Poly(butylene succinate), ACS Sustainable Chemistry and Engineering, vol.4, pp.6562-6571, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01564419

A. J. Roe, Inhibition of E . coli growth by acetic acid : A problem with methionine biosynthesis and homocysteine toxicity Inhibition of Escherichia coli growth by acetic acid : a problem with methionine biosynthesis and homocysteine toxicity, pp.2215-2222, 2002.

E. Rouches, « Improvement of anaerobic degradation by white-rot fungi pretreatment of lignocellulosic biomass : A review, Renewable and Sustainable Energy Reviews, vol.59, pp.179-198, 2016.

H. Vasantha and R. , Vanillin inhibits pathogenic and spoilage microorganisms in vitro and aerobic microbial growth in fresh-cut apples, Food Research International, vol.39, 2006.

S. Thiyagarajan, Detoxification of furanic and phenolic lignocellulose derived inhibitors of yeast using laccase immobilized on bacterial cellulosic nanofibers, Journal of Molecular Catalysis B : Enzymatic, vol.134, pp.196-205, 2016.

S. Kengo, Optimized membrane process to increase hemicellulosic ethanol production from pretreated rice straw by recombinant xylosefermenting Saccharomyces cerevisiae, Bioresource Technology, vol.169, pp.380-386, 2014.

D. Schmiedel and H. Wolfgang, Bacillus subtilis 168 mutant with increased xylose uptake can utilize xylose as sole carbon source, FEMS Microbiology Letters, vol.135, issue.95, pp.445-454, 1996.

J. Steven and . Schneiderman, Quantifying second generation ethanol inhibition : Design of Experiments approach and kinetic model development, Bioresource Technology, vol.179, p.10, 2015.

,

L. Schwartz and . Diafiltration, A Fast, Efficient Method for Desalting or Buffer Exchange of Biological Samples, Pall Scientific &, 2003.

. }str and . Pdf,

N. Teixeira and S. , « 5-Hydroxymethylfurfural induces ADH7 and ARI1 expression in tolerant industrial Saccharomyces cerevisiae strain P6H9 during bioethanol production, Bioresource Technology, vol.133, pp.190-196, 2013.

,

R. Peter, . Seidl, and K. G. Adriana, Pretreatment processes for lignocellulosic biomass conversion to biofuels and bioproducts, Current Opinion in Green and Sustainable Chemistry, vol.2, pp.48-53, 2016.

S. Masafumi, Development of combined nanofiltration and forward osmosis process for production of ethanol from pretreated rice straw, Bioresource Technology, vol.235, p.10, 2017.

,

S. Eyal, R. Uzi, and S. Yuval, « Isolation of a Bacillus sp. capable of transforming isoeugenol to vanillin, Journal of Biotechnology, vol.78, pp.199-205, 2000.

S. Raveendran, B. Parameswaran, and P. Ashok, « Biological pretreatment of lignocellulosic biomass -An overview, Bioresource Technology, vol.199, pp.76-82, 2016.

S. Joginder, M. Suhag, and D. Anil, Augmented digestion of lignocellulose by steam explosion, acid and alkaline pretreatment methods : A review, Carbohydrate Polymers, vol.117, pp.624-631, 2015.

S. Elina, Xylose recovery by nanofiltration from different hemicellulose hydrolyzate feeds, Journal of Membrane Science, vol.310, pp.268-277, 2008.

S. Justin and F. G. Eugéne-van-rensburg-et-johann, Simultaneously improving xylose fermentation and tolerance to lignocellulosic inhibitors through evolutionary engineering of recombinant Saccharomyces cerevisiae harbouring xylose isomerase, BMC Biotechnology, vol.14, pp.1-17, 2014.

. Bibliographie,

H. Suk and S. , Increase in furfural tolerance by combinatorial overexpression of NAD salvage pathway enzymes in engineered isobutanolproducing E. coli, Bioresource Technology, vol.245, pp.1430-1435, 2017.

H. S. Electrodialysis, Desalination, vol.264, pp.268-288, 2010.

F. Streffer, Lignocellulose to Biogas and other Products, vol.2, pp.1-8, 2014.

M. Shafiq-mohd and . Sueb, High-performance removal of acids and furans from wheat straw pretreatment liquid by diananofiltration, Separation Science and Technology (Philadelphia), vol.52, pp.1901-1912, 2017.

T. Hajime, Growth inhibition effects of ferulic acid and glycine/sodium acetate on Listeria monocytogenes in coleslaw and egg salad, 2015.

T. Hajime, Use of ferulic acid as a novel candidate of growth inhibiting agent against Listeria monocytogenes in ready-to-eat food, Food Control, vol.33, pp.244-248, 2013.

T. Bao, Highly efficient rice straw utilization for poly-($?$ ? glutamicacid)productionb 2, Bioresource technology, vol.193, pp.1873-2976, 2015.

T. Achyuta, G. W. Huber, and M. F. David, Separation of acetic acid from the aqueous fraction of fast pyrolysis bio-oils using nanofiltration and reverse osmosis membranes, Journal of Membrane Science, vol.378, pp.495-502, 2011.

A. Teixeira, From bench scale to kilolab production of renewable ferulic acid-based bisphenols : optimisation and evaluation of different purification approaches towards technical feasibility and process environmental sustainability, Reaction Chemistry & Engineering, vol.2, pp.406-419, 2017.

, , pp.2058-9883

T. Kamini, Laccase-mediated biografting of p-coumaric acid for development of antibacterial and hydrophobic properties in coconut fibers, Journal of Molecular Catalysis B : Enzymatic, vol.122, pp.289-295, 2015.

B. Tomadoni, Efficacy of vanillin and geraniol in reducing Escherichia coli O157 :H7 on strawberry juice, vol.64, pp.554-557, 2015.

L. Thi-phi and T. , An integrated detoxification process with electrodialysis and adsorption from the hemicellulose hydrolysates of yellow poplars, Bioresource Technology, vol.161, pp.280-287, 2014.

U. Chakkrit, Nanofiltration as a purification step in production process of organic acids : Selectivity improvement by addition of an inorganic salt, Process Biochemistry, vol.45, pp.1763-1768, 2010.

. Bibliographie,

J. Gabriel, . Vargas-betancur, and P. Nei, Sugar cane bagasse as feedstock for second generation ethanol production. Part I : Diluted acid pretreatment optimization, Electronic Journal of Biotechnology, vol.13, pp.1-9, 2010.

L. Vavrová, M. Katarína, and B. Imrich, « Comparison of different Bacillus subtilis expression systems, Research in Microbiology, vol.161, 2010.

V. Kate?ina, Membrane fluidization by alcohols inhibits DesKDesR signalling in Bacillus subtilis, Biochimica et Biophysica Acta -Biomembranes, vol.1860, pp.718-727, 2018.

V. Eert and T. Gun, « Nanofiltration of combined salt and sugar solutions : coupling between retentions, Desalination, vol.120, 1998.

M. L. Villarreal, Detoxification procedures of eucalyptus hemicellulose hydrolysate for xylitol production by Candida guilliermondii, Enzyme and Microbial Technology, vol.40, pp.17-24, 2006.

U. Volker, Analysis of the induction of general stress proteins of Bacillus subtilis, Microbiology 140, vol.4, 1994.

W. Sara, . Adriaan-van-heiningen, and . Peter-van-walsum, « Inhibition effects on fermentation of hardwood extracted hemicelluloses by acetic acid and sodium, Bioresource Technology, vol.101, issue.6, 2010.

W. Tao, Natural products from Bacillus subtilis with antimicrobial properties, Chinese Journal of Chemical Engineering, vol.23, 2015.

W. Tielin, Removal of furfural and HMF from monosaccharides by nanofiltration and reverse osmosis membranes, Journal of the Energy Institute, 2017.

W. Xiahui, Inhibitory effects of phenolic compounds of rice straw formed by saccharifica-tion during ethanol fermentation by Pichia stipitis Inhibitory effects of phenolic compounds of rice straw formed by saccharification during ethanol fermentation by Pichia stip, Bioresource Technology, vol.244, pp.1059-1067, 2017.

W. Xiaojun, « Separation of hemicellulose-derived saccharides from wood hydrolysate by lime and ion exchange resin, Bioresource Technology, vol.206, 2016.

J. Warczok, « Concentration of apple and pear juices by nanofiltration at low pressures, Journal of Food Engineering, vol.63, 2004.

W. Ping, « A review of membrane technology for bioethanol production, Renewable and Sustainable Energy Reviews, vol.30, pp.388-400, 2014.

,

Y. Hsiang and W. , Separation of acetic acid from xylose by nanofiltration, Separation and Purification Technology, vol.67, pp.95-102, 2009.

Y. Hsiang and W. , « Separation of furans and carboxylic acids from sugars in dilute acid rice straw hydrolyzates by nanofiltration, Bioresource Technology, vol.101, pp.4889-4894, 2010.

W. Anil, R. Colin, and . Harwood, The Bacillus subtilis genome sequence : the molecular blueprint of a soil bacterium, FEMS Microbiology Ecology, vol.28, pp.1-9, 1999.

W. Jeremiah, Batch and continuous culture-based selection strategies for acetic acid tolerance in xylose-fermenting Saccharomyces cerevisiae, FEMS Yeast Research, vol.11, pp.299-306, 2011.

M. C. Xavier, Lipid production from hemicellulose hydrolysate and acetic acid by Lipomyces starkeyi and the ability of yeast to metabolize inhibitors, Biochemical Engineering Journal, vol.118, pp.11-19, 2017.

Y. Ying, Dilute acid pretreatment of oven-dried switchgrass germplasms for bioethanol production, Energy and Fuels, vol.23, pp.3759-3766, 2009.

Y. Yohan, « Membrane fluidity-related adaptive response mechanisms of foodborne bacterial pathogens under environmental stresses, Food Research International, vol.72, pp.25-36, 2015.

Y. U. Qiang, Influence of lignin level on release of hemicellulose-derived sugars in liquid hot water, International Journal of Biological Macromolecules, vol.82, pp.967-972, 2016.

Y. U. Qiang, Liquid hot water pretreatment of energy grasses and its influence of physico-chemical changes on enzymatic digestibility, Bioresource Technology, vol.199, pp.265-270, 2016.

Z. Jesus, A. Martinez, and O. I. Lonnie, Effect of alcohol compounds found in hemicellulose hydrolysate on the growth and fermentation of ethanologenic Escherichia coli, Biotechnology and Bioengineering, vol.68, 2000.

Z. Jesus, A. Martinez, O. Lonnie, and . Ingram, « Effect of Organics Acids on the Growth and Fermentation of Ethanologenic Escherichia coli LY01, Biotechnology and Bioengineering, vol.65, pp.24-33, 1999.

Z. Jesus, A. Martinez, and O. I. Lonnie, Effect of selected aldehydes on the growth and fermentation of ethanologenic Escherichia coli, Biotechnology and Bioengineering, vol.65, pp.24-33, 1999.

Z. Stefanie, « Preparation and characterization of new low MWCO ceramic nanofiltration membranes for organic solvents, Journal of Membrane Science, vol.470, 2014.

Z. Bo, Inverse metabolic engineering of Bacillus subtilis for xylose utilization based on adaptive evolution and whole-genome sequencing, Applied Microbiology and Biotechnology, vol.99, pp.885-896, 2014.

Z. Dongxu, Biological detoxification of furfural and 5-hydroxyl methyl furfural in hydrolysate of oil palm empty fruit bunch by Enterobacter sp, Biochemical Engineering Journal, vol.8, 2013.

Z. Li, « Impacts of lignocellulose-derived inhibitors on l-lactic acid fermentation by Rhizopus oryzae, Bioresource Technology, vol.203, 2016.

. Bibliographie,

Z. Fanglei, W. Cunwen, and W. Jiang, « Separation of acetic acid from monosaccharides by NF and RO membranes : Performance comparison, Journal of Membrane Science, vol.429, pp.243-251, 2013.

Z. Tan-che, J. Jiang, and Z. , « Production of validamycin A from hemicellulose hydrolysate by Streptomyces hygroscopicus 5008, Bioresource Technology, vol.175, pp.160-166, 2015.