M. Jantunen, E. O. Fernandes, P. Carrer, and S. Kephalopoulos, Promoting actions for healthy indoor air (IAIAQ), European Commission Directorate General for Health and Consumers, 2011.

C. Seigneur, Effets sanitaires de la pollution atmosphérique, Cerea Laboratoire commun École des Ponts Paris Tech / EDF R&D

C. Wang, L. Yin, L. Zhang, D. Xiang, and R. Gao, Metal Oxide Gas Sensors: Sensitivity and Influencing Factors, vol.10, pp.2088-2106, 2010.

B. K. Kim, E. J. Lee, Y. Kang, and J. J. Lee, Application of ionic liquids for metal dissolution and extraction, Journal of Industrial and Engineering Chemistry, vol.61, pp.388-397, 2018.

I. Rykowska, J. Ziembli?ska, and I. Nowak, Modern approaches in dispersive liquid-liquid microextraction (DLLME) based on ionic liquids: A review, Journal of Molecular Liquids, vol.259, pp.319-339, 2018.

Z. Lei, C. Dai, and B. Chen, Gas Solubility in Ionic Liquids, Chemical Reviews, vol.114, pp.1289-1326, 2014.

X. Zhang, X. Zhang, H. Dong, Z. Zhao, S. Zhang et al., Carbon capture with ionic liquids: overview and progress, Energy & Environmental Science, vol.5, pp.6668-6681, 2012.

D. F. Mohshim, H. Mukhtar, and Z. Man, A study on carbon dioxide removal by blending the ionic liquid in membrane synthesis, Separation and Purification Technology, vol.196, pp.20-26, 2018.

A. Berthod, M. J. Ruiz-Ángel, and S. Carda-broch, Recent advances on ionic liquid uses in separation techniques, Journal of Chromatography A, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01825252

J. P. Hallett and T. Welton, Room-Temperature Ionic Liquids. Solvents for Synthesis and Catalysis, Chemical Reviews, pp.3508-3576, 2011.

S. Platzer, M. Kar, R. Leyma, S. Chib, A. Roller et al., Task-specific thioglycolate ionic liquids for heavy metal extraction: Synthesis, extraction efficacies and recycling properties, Journal of Hazardous Materials, vol.324, pp.241-249, 2017.

R. Leyma, S. Platzer, F. Jirsa, W. Kandioller, R. Krachler et al., Novel thiosalicylate-based ionic liquids for heavy metal extractions, Journal of Hazardous Materials, vol.314, pp.164-171, 2016.

J. Zhu, B. He, J. Huang, C. Li, and T. Ren, Effect of immobilization methods and the pore structure on CO2 separation performance in silica-supported ionic liquids, Microporous and Mesoporous Materials, vol.260, pp.190-200, 2018.

T. Wang, D. Zheng, Y. Ma, J. Guo, Z. He et al., Benzyl substituted imidazolium ionic liquids as efficient solvent-free catalysts for the cycloaddition of CO2 with epoxides: Experimental and Theoretic study, Journal of CO2 Utilization, vol.22, pp.44-52, 2017.

Z. Fan, J. Chen, W. Guo, F. Ma, S. Sun et al., In situ monitoring the moisture absorption of three ionic liquids with different halogen anions by ATR-FTIR spectroscopy, Journal of Molecular Sturcture, vol.1164, pp.297-302, 2018.

M. Mohammadi, M. Asadollahzadeh, and S. Shirazian, Molecular-level understanding of supported ionic liquid membranes for gas separation, Journal of Molecular Liquids, 2018.

M. Malankowska, C. F. Martins, H. S. Rho, L. A. Neves, R. M. Tiggelaar et al., Microfluidic devices as gas -Ionic liquid membrane contactors for CO2 removal from anaesthesia gases, Journal of Membrane Science, vol.545, pp.107-115, 2018.

S. Marullo, C. Rizzo, N. T. Dintcheva, F. Giannici, and F. , Ionic liquids gels: Soft materials for environmental remediation, Journal of Colloid and Interface Science, vol.517, pp.182-193, 2018.

J. Wu, L. Mu, J. Zhu, Y. Chen, X. Yin et al., Turning the solubility and lubricity of ionic liquids by absorbing CO2, Tribology International, vol.121, pp.223-230, 2018.

H. Wang, J. Wang, S. Zhang, and X. Xuan, Structural Effects of Anions and Cations on the Aggregation Behavior of Ionic Liquids in Aqueous Solutions, The Journal of Physical Chemostry B, pp.16682-16689, 2008.

R. Turgis, G. Arrachart, S. Michel, S. Legeai, M. Lejeune et al., Ketone functionalized task specific ionic liquids for selective tantalum extraction, Separation and Purification Technology, vol.196, pp.174-182, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02062512

M. S. Shahrom, C. D. Wilfred, and A. K. Taha, CO2 capture by task specific ionic liquids (TSILs) and polymerized ionic liquids (PILs and AAPILs), vol.219, pp.306-312, 2016.

D. Zheng, L. Dong, W. Huang, X. Wu, and N. Nie, A review of imidazolium ionic liquids research and development towards working pair of absorption cycle, Renewable and Sustainable Energy Reviews, vol.37, pp.47-68, 2014.

F. D. Francesco, N. Calisi, M. Creatini, B. Melai, P. Salvo et al., Water sorption by anhydrous ionic liquids, Green Chemistry, vol.13, pp.1712-1717, 2011.

Z. Ziobrowski and A. , The influence of water content in imidazolium based ILs on carbon dioxide removal efficiency, Separation and Purification Technology, pp.412-419, 2017.

P. L. Alviz and A. Alvarez, Comparative life cycle assessment of the use of an ionic liquid ([Bmim]Br) versus a volatile organic solvent in the production of acetylsalicylic acid, Journal of Cleaner Production, 2018.

A. Favard, J. Seguin, K. Aguir, X. Yan, S. Anguille et al., Humidity Impact Reduction on WO3 Gas Microsensor Response Using New Filters Based on Ionic Liquid, The Third International Conference on Advances in Sensors, Actuators, Metering and Sensing, vol.2018, pp.35-37, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02116757

K. Aguir, M. V. Bendahan, and . Laithier, Heated sensitive layer gas sensor, patent N° FR 13 59494, 2013.

J. Guérin, K. Aguir, and M. Bendahan, Modeling of the conduction in a WO3 thin film as ozone sensor, Sensors and Actuators B, vol.119, pp.327-334, 2006.

F. M. Li, J. Liu, Y. Sun, Z. Jin, L. Kong et al., Synthesis and gas sensing properties of hierarchical meso-macroporous SnO2 for detection of indoor air pollutants, Sensors and Actuators B, vol.166, pp.519-525, 2012.

Y. Q. Wang, H. Chen, Z. Lin, and K. Dai, Highly selective n-butanol gas sensor based on mesoporous SnO2 prepared with hydrothermal treatment, Sensors and Actuators B, vol.201, pp.153-159, 2014.

, Ionic Liquid in Synthesis, 2003.

S. Anguille, F. Testa, and P. Moulin, Device for extraction of pollutants by multichannel tubular membrane

E. P. Grishina, L. M. Ramenskaya, M. S. Gruwdev, and O. V. Kraeva, Water effect on physicochemical properties of 1-butyl-3-methylimidazolium based ionic liquids with inorganic anions, Journal of Molecular Liquids, vol.177, pp.267-272, 2013.

G. Korotcenkov, I. Blinov, V. Brinzari, and J. R. Stetter, Effect of air humidity on gas response of SnO2 thin film ozone sensors, Sensors and Actuators B, vol.122, pp.519-526, 2007.

A. Favard, T. Contaret, K. Aguir, A. Dumas, and M. Bendahan, Highly Sensitive WO3 Thin Films Integrated on Microsensor Platforms for ppb BTEX Detection in a Gas Mixture with High Rate of Humidity, Proceeding IEEE Sensor, 2017.

Q. Qi, T. Zhang, X. Zheng, H. Fan, L. Liu et al., Electrical response of Sm2O3-doped SnO2 to C2H2 and effect of humidity interference, Sensors and Actuators B, vol.134, pp.36-42, 2008.

R. Ionescu, A. Vancu, C. Moise, and A. Tomescu, Role of water vapour in the interaction of SnO2 gas sensors with CO and CH4, Sensors and Actuators B, vol.61, pp.39-42, 1999.