Modern Flow Analysis

Flow analysis is an automatic, precise and fast way to perform analytical tests. Flow instruments are used for clinical and pharmaceutical analyses, quality control of industrial products, monitoring of environmental pollution and many other fields. The book presents the latest methodological, techn...

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Bibliographic Details
Other Authors: Koscielniak, Pawel (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2020
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DOAB: description of the publication
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520 |a Flow analysis is an automatic, precise and fast way to perform analytical tests. Flow instruments are used for clinical and pharmaceutical analyses, quality control of industrial products, monitoring of environmental pollution and many other fields. The book presents the latest methodological, technical and instrumental achievements in flow analysis. It shows new possibilities for the miniaturization and full mechanization of flow systems, together with examples of their interesting application. The proposed solutions contribute to reducing the amount of used reagents and waste, as well as increasing the safety of working with hazardous reagents, resulting in modern devices operating in accordance with the principles of green chemistry. A number of innovative methods of processing and measuring analytical samples have also been described. The book very well reflects the current state of flow analysis and development directions. 
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653 |a automation 
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653 |a neonicotinoid 
653 |a thiacloprid 
653 |a solid-phase spectroscopy 
653 |a optosensor 
653 |a luminescence 
653 |a bioaccessibility 
653 |a dog food 
653 |a dog nutrition 
653 |a dynamic extraction 
653 |a flow analysis 
653 |a kinetic profile 
653 |a zinc 
653 |a nuclear waste 
653 |a spent nuclear fuel 
653 |a ß-emitting nuclides 
653 |a 90Sr 
653 |a flow injection 
653 |a ICP-DRC-MS 
653 |a flow synthesis 
653 |a flow reactors 
653 |a flow-injection analysis 
653 |a flow techniques 
653 |a radionuclides 
653 |a radiochemical separation 
653 |a environmental monitoring 
653 |a nuclear emergency preparedness 
653 |a radioactive waste characterization 
653 |a medical isotope production 
653 |a titration 
653 |a Fe(III), Fe(II) determination 
653 |a speciation analysis 
653 |a Lab-In-Syringe 
653 |a automation of sample pretreatment 
653 |a potentials and troubles 
653 |a system setup and operation modes 
653 |a tips and tricks in method development 
653 |a 3D printing of instrument elements 
653 |a histidine 
653 |a random human urine 
653 |a zone fluidics 
653 |a o-phthalaldehyde 
653 |a derivatization 
653 |a stopped-flow 
653 |a fluorimetry 
653 |a SI-LAV 
653 |a mono-segmented flow 
653 |a in-line dilution 
653 |a in-line single-standard calibration 
653 |a in-line standard addition 
653 |a albumin 
653 |a glucose 
653 |a creatinine 
653 |a flow method 
653 |a chitosan 
653 |a catalyst particles 
653 |a micron-size 
653 |a sampling study 
653 |a p-nitrophenol reduction 
653 |a preconcentration 
653 |a evaporation 
653 |a sequential injection analysis 
653 |a paired emitter-detector diode detector 
653 |a contactless conductivity detector 
653 |a flow-based analysis 
653 |a simultaneous detection 
653 |a sequential detection 
653 |a flow chemistry 
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