Perspectives on the replacement of harmful organic solvents in analytical methodologies: a framework toward the implementation of a generation of eco-friendly alternatives

被引:195
作者
Pena-Pereira, Francisco [1 ,2 ]
Kloskowskic, Adam [3 ]
Namiesnik, Jacek [2 ]
机构
[1] Univ Vigo, Fac Chem, Analyt & Food Chem Dept, Vigo 36310, Spain
[2] Gdansk Univ Technol, Fac Chem, Dept Analyt Chem, PL-80233 Gdansk, Poland
[3] Gdansk Univ Technol, Fac Chem, Dept Phys Chem, PL-80233 Gdansk, Poland
关键词
DEEP-EUTECTIC-SOLVENTS; TEMPERATURE IONIC LIQUIDS; SUPERCRITICAL-FLUID EXTRACTION; GREEN ANALYTICAL-CHEMISTRY; LIFE-CYCLE ASSESSMENT; UREA-SALT MIXTURES; THERMOPHYSICAL PROPERTIES; PHASE MICROEXTRACTION; SUSTAINABLE SOLVENTS; THERMAL-DESORPTION;
D O I
10.1039/c5gc00611b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Volatile organic solvents derived from non-renewable fossil feedstocks are commonplace in analytical laboratories. In spite of their convenient performance in countless unit operations, their environmental, health and safety issues represent a major area of concern. The progressive replacement of organic solvents obtained from fossil resources by eco-friendly alternatives would involve remarkable advances within the framework of green analytical chemistry, while avoiding future uncertainties regarding forthcoming regulations. This perspective tackles the problem of organic solvent use in analytical methodologies, providing relevant information for solvent selection and identifying a range of solvents derived from natural and/or renewable resources, namely bio-based molecular solvents, ionic liquids composed wholly of biomaterials and natural deep eutectic mixtures that could potentially be exploited toward advanced, more benign, analytical methodologies. In addition, physicochemical properties are provided, and a number of challenging aspects to be considered in the implementation of eco-friendly alternatives are evaluated.
引用
收藏
页码:3687 / 3705
页数:19
相关论文
共 184 条
[1]   Glycerol eutectics as sustainable solvent systems [J].
Abbott, Andrew P. ;
Harris, Robert C. ;
Ryder, Karl S. ;
D'Agostino, Carmine ;
Gladden, Lynn F. ;
Mantle, Mick D. .
GREEN CHEMISTRY, 2011, 13 (01) :82-90
[2]   Deep eutectic solvents formed between choline chloride and carboxylic acids: Versatile alternatives to ionic liquids [J].
Abbott, AP ;
Boothby, D ;
Capper, G ;
Davies, DL ;
Rasheed, RK .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (29) :9142-9147
[3]   Novel solvent properties of choline chloride/urea mixtures [J].
Abbott, AP ;
Capper, G ;
Davies, DL ;
Rasheed, RK ;
Tambyrajah, V .
CHEMICAL COMMUNICATIONS, 2003, (01) :70-71
[4]   Green chemistry tools to influence a medicinal chemistry and research chemistry based organisation [J].
Alfonsi, Kim ;
Colberg, Juan ;
Dunn, Peter J. ;
Fevig, Thomas ;
Jennings, Sandra ;
Johnson, Timothy A. ;
Kleine, H. Peter ;
Knight, Craig ;
Nagy, Mark A. ;
Perry, David A. ;
Stefaniak, Mark .
GREEN CHEMISTRY, 2008, 10 (01) :31-36
[5]   Gamma-valerolactone, a sustainable platform molecule derived from lignocellulosic biomass [J].
Alonso, David Martin ;
Wettstein, Stephanie G. ;
Dumesic, James A. .
GREEN CHEMISTRY, 2013, 15 (03) :584-595
[6]  
Anastas P. T., 2002, ACS SYM SER, V1991, P1
[7]  
Anastas P T., 1998, Principles of green chemistry. Green chemistry: Theory and Practice, V1st, P29
[8]   Green Chemistry: Principles and Practice [J].
Anastas, Paul ;
Eghbali, Nicolas .
CHEMICAL SOCIETY REVIEWS, 2010, 39 (01) :301-312
[9]   Green chemistry and the role of analytical methodology development [J].
Anastas, PT .
CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY, 1999, 29 (03) :167-175
[10]   Ionic liquids in analytical chemistry [J].
Anderson, Jared L. ;
Armstrong, Daniel W. ;
Wei, Guor-Tzo .
ANALYTICAL CHEMISTRY, 2006, 78 (09) :2892-2902