11 Toward Industrialization of Ionic Liquids
281
25. Maase M (2008) Industrial applications of ionic liquids. In: Wasserscheid P, Welton T (eds)
Ionic liquids in synthesis, 2nd edn. Wiley-VCH, Weinheim, pp 663–687. https://doi.org/10.
1002/9783527621194.ch9
26. Rogers RD, Seddon KR, Volkov S (eds) (2002) Green industrial applications of ionic liquids.
NATO science series, vol 92. Kluwer Academic Publishers, Dordrecht, Boston, London. ISBN
978-1-4020-1137-5
27. Holbrey JD (2004) Industrial applications of ionic liquids. Chim Oggi 22(6):35–37. ISSN:
0392-839X
28. Meksi N, Moussa A (2017) A review of progress in the ecological application of ionic liquids
in textile processes. J Clean Prod 161:105–126. https://doi.org/10.1016/j.jclepro.2017.05.066
29. Toledo Hijo AAC, Maximo GJ, Costa MC, Batista EAC, Meirelles AJA (2016) Applications of
ionic liquids in the food and bioproducts industries. ACS Sustain Chem Eng 4(10):5347–5369.
https://doi.org/10.1021/acssuschemeng.6b00560
30. Singh NR, Speight JG (2011) Applications of ionic liquids in industry. Chem Technol Indian
J 6(2):114–122. ISSN: 0974-7443
31. Han S, Li J, Zhu S, Chen R, Wu Y, Zhang X, Yu Z (2009) Potential applications of ionic liquids
in wood related industries. BioResources 4(2):825–834. ISSN: 1930-2126
32. Vallée C, Olivier-Bourbigou H (2005) Industrial production of ionic liquids. In: Cornils B, Herrmann WA, Horváth IT, Leitner W, Mecking S, Olivier-Bourbigou H, Vogt D (eds) Multiphase
homogeneous catalysis. Wiley-VCH, Weinheim, pp 581–587. ISBN: 978-3-527-30721-0
33. Barth T, Korth W, Jess A (2017) Selectivity-enhancing effect of a SCILL catalyst in butadiene
hydrogenation. Chem Eng Technol 40(2):395–404. https://doi.org/10.1002/ceat.201600140
34. Barth T (2016) Selektivhydrierung von 1,3-Butadien an mit ionischen Fluiden beschichteten
heterogenen Katalysatoren, Doctoral thesis, University of Bayreuth, http://nbn-resolving.org/
urn:nbn:de:bvb:703-epub-2927-6
35. Szesni N, Fischer R, Hagemeyer A, Groβmann F, Hou HC, Boyer J, Sun M, Urbancic M,
Lugmair C, Lowe DM (2013) Catalyst composition for selective hydrogenation with improved
characteristics, WO2013057244
36. Supported Ionic Liquid Phase (SILP) Technology. http://www.silp-technology.de. Accessed
2019-01-17
37. Werner S, Haumann M (2014) Ultralow temperature water-gas shift reaction enabled by supported ionic liquid phase catalysts. In: Fehrmann R, Riisager A, Haumann M (eds) Supported
ionic liquids. Wiley-VCH, Weinheim, pp 327–350. https://doi.org/10.1002/9783527654789.
ch16
38. Werner S (2011), Ultra-low temperature water-gas shift reaction with supported ionic liquid
phase (SILP) catalysts. Doctoral thesis, Friedrich-Alexander University Erlangen-Nürnberg
(FAU). http://nbn-resolving.de/urn:nbn:de:bvb:29-opus-26028
39. Franke R, Hahn H (2014) A catalyst that goes to its limits. PharmaChem 14(11/12):2–5. ISSN:
1720-4003
40. C-Tech Innovation Ltd., Chester, United Kingdom; personal communication. See also HiPerPol
project 2011, UK Research and Innovation, https://gtr.ukri.org/projects?ref=100009. Accessed
2019-01-17
41. Wang H, Gurau G, Rogers RD (2014) Dissolution of biomass using ionic liquids. In: Zhang S,
Wang J, Lu X, Zhou Q (eds) Structures and interactions of ionic liquids. Structure and bonding
151. Springer, Berlin, Heidelberg, pp 79–105. https://doi.org/10.1007/978-3-642-38619-0_3
42. SciFinder ® concept search using term “ionic liquids biomass”
43. Shi J, Gladden JM, Sathitsuksanoh N, Kambam P, Sandoval L, Mitra D, Zhang S, George A,
Singer SW, Simmons BA, Singh S (2013) One-pot ionic liquid pretreatment and saccharification
of switchgrass. Green Chem 15(9):2579–2589. https://doi.org/10.1039/c3gc40545a
44. Swatloski RP, Rogers RD, Holbrey JD (2003) Dissolution and processing of cellulose using
ionic liquids, cellulose solution, and regenerating cellulose. WO2003029329
45. Abai M, Atkins MP, Hassan A, Holbrey JD, Kuah Y, Nockemann P, Oliferenko AA, Plechkova
NV, Rafeen S, Rahman AA, Ramli R, Shariff SM, Seddon KR, Srinivasan G, Zoub Y (2015) An
ionic liquid process for mercury removal from natural gas. Dalton Trans 44(18):8617–8624.
https://doi.org/10.1039/C4DT03273J
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