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https://doi.org/10.1007/978-3-658-20585-0other important issue that will determine the future of Green Analytical Chemistry is education and popularization of this concept in the society. This chapter summarizes contemporary problems and gives the future perspectives of Green Analytical Chemistry.
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Teaching Green Analytical Chemistry on the Example of Bioindication and Biomonitoring (B & B) Technively new field in analytical chemistry. Although there is much that can be derived from Green and Sustainable Chemistry, the GAC’s forward-looking perspectives in particular are independent approaches that must not be neglected. In the first chapter of this article, approaches are pursued “how (tea
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Teaching Green Analytical and Synthesis Chemistry: Performing Laboratory Experiments in a Greener W with chemical processes and products. In this chapter, we have considered the major aspects of green analytical and synthetic chemistry as a new paradigm and its integration with higher education course curriculum. Teaching green analytical chemistry must be focused on analytical parameters and pra
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Mass Spectrometry-Based Direct Analytical Techniques,utions do not require sample preparation and analytes separation steps, therefore do not consumpt harmful substances (or consumpt only minimum amounts of them) and do not generate hazardous waste. Technical solutions for direct analysis also offer miniaturized and field-portable analyzers or allow f
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New Achievements in the Field of Extraction of Trace Analytes from Samples Characterized by Complexr enrichment of analytes due to the fact that majority of analytical techniques are not sensitive enough for direct determination of trace compounds. On the other hand, sample preparation is considered as crucial part of whole analytical procedures, in particular in samples characterized by complex
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