Application of the principles of green chemistry in analytical chemistry

Применение принципов зелёной химии в аналитической химии
Mihkel Koel, Mihkel Kaljurand
2006-01-01

analytical chemistrycapillary electrophoresisgreen chemistrysafer solventsseparation methods
The introduction of the dimension of green chemistry into the assessment of analytical methods should be a natural development trend in chemistry and should coincide with its general policy. Some of the principles of green chemistry - such as prevention of waste generation; safer solvents and auxiliaries; design for energy efficiency; safer chemistry to minimize the potential of chemical accidents; development of instrumental methods - are directly related to analytical chemistry. Analytical chemistry is considered to be a small-scale activity, but this is not always true in the case of controlling and monitoring laboratories whose number of runs performed is high. This makes an analytical laboratory comparable with the fine chemicals or pharmaceutical industry. The use of instrumental methods instead of wet chemistry, automation, and minimization is a new trend in analytical chemistry, making this branch of chemistry more sustainable. In this study, widespread separation methods are considered and an attempt is made to characterize them against the above-mentioned principles. Special attention is given to capillary electrophoresis (CE), which provides a very good opportunity to improve analytical chemistry by replacing many chromatographic methods that consume large volumes of solvents. The choice of different solvents and micronization in analytical chemistry is also discussed.
1
Analytical laboratories with high numbers of runs can generate impacts comparable to fine-chemical or pharmaceutical production, despite analytical chemistry generally being considered small-scale.
2
Capillary electrophoresis offers a sustainability advantage by potentially replacing chromatographic methods that consume large solvent volumes.
3
Green chemistry principles should be incorporated into analytical-method assessment as part of chemistry’s broader sustainability policy.
4
Instrumental methods, automation, and minimization reduce waste and support more sustainable analytical chemistry than conventional wet-chemical approaches.
5
The study evaluates widespread separation methods against waste prevention, safer solvents, energy efficiency, accident prevention, and instrumental-method principles.

Analytical separation methods, with particular emphasis on capillary electrophoresis (CE) and chromatographic methods

Their alignment with green chemistry principles, especially waste and solvent reduction, energy efficiency, safety, and sustainability

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2006-01-01
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Mihkel Koel
Mihkel Kaljurand
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