By Olga Kuzmina, Jason Hallett
Application, Purification, and restoration of Ionic Liquids presents a entire evaluate of the use of ionic beverages (IL). The ebook offers an outline of the tools used for restoration and purification of ILs, a precis of the commercial facets of utilizing ILs, and a assessment at the toxicity facts of ILs.
It is written for researchers, scientists, and engineers operating with ILs, their houses, and usages. The booklet not just describes the chemical points, however the monetary and environmental facets besides, making it of specific curiosity to execs utilising this technology.
- Chapters written via scientists in academia and researchers in undefined, making sure assurance of either the medical fundaments and commercial applications
- A unmarried resource of knowledge for a large selection of restoration and purification methods
- Provides info on utilizing ionic beverages as eco-friendly solvents
- Includes financial features of restoration and reuse of ionic drinks
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Additional info for Application, Purification, and Recovery of Ionic Liquids
2002). After cellulose dissolution into the IL, cellulose fibers, films, and casts can be obtained by spinning into a bath consisting of water, and/or low molecular weight alcohols, where cellulose precipitates and the IL remains in solution. Cellulose can also be modified by adding synthetic polymers or metals to build composite materials. Its depolymerization into sugars was also tested using [C4C1im][HSO4], a Brønsted acidic IL, with the selectivity of the depolymerization depending strongly on the water content.
George et al. (2011) studied the effect of different ILs – the 34 Application, Purification, and Recovery of Ionic Liquids combination of [C2C1im]+ with different anions: n-hexylsulfate [C6SO4]−, diethylphosphate [Et2PO4]−, n-butylsulfate [BuSO4]−, dimethylphosphate [Me2PO4]−, lactate [lac]−, Cl−, [MeCO2]−, and other ILs such as [C4C1im]Cl, Cyphos 101, Cyphos 165, and 1-methyl-2-pyrrolidone chloride ([C1pyr]Cl) on lignins from different sources (organosolv, alkali (NaOH), and slightly sulfonated alkali lignin).
ILs clearly show promise for thermal fluid applications at temperatures below those where conventional molten salts or liquid metal systems would be accessible. Compared to neutral organic fluids, ILs provide equal or even greater thermal conductivity and heat capacity as well as reduced vapor pressures and reduced flammability. The major limitations for ILs at present are their cost and viscosity relative to other thermal fluids, although the former may be ameliorated by their increased scale of production if a large-scale application was found.
Application, Purification, and Recovery of Ionic Liquids by Olga Kuzmina, Jason Hallett