
Green Analytical Chemistry, Год журнала: 2025, Номер unknown, С. 100272 - 100272
Опубликована: Апрель 1, 2025
Язык: Английский
Green Analytical Chemistry, Год журнала: 2025, Номер unknown, С. 100272 - 100272
Опубликована: Апрель 1, 2025
Язык: Английский
Talanta Open, Год журнала: 2025, Номер unknown, С. 100423 - 100423
Опубликована: Фев. 1, 2025
Язык: Английский
Процитировано
8Green Analytical Chemistry, Год журнала: 2025, Номер unknown, С. 100209 - 100209
Опубликована: Янв. 1, 2025
Язык: Английский
Процитировано
4Trends in Environmental Analytical Chemistry, Год журнала: 2024, Номер unknown, С. e00250 - e00250
Опубликована: Ноя. 1, 2024
Язык: Английский
Процитировано
10Green Analytical Chemistry, Год журнала: 2025, Номер unknown, С. 100221 - 100221
Опубликована: Фев. 1, 2025
Язык: Английский
Процитировано
1Water, Год журнала: 2025, Номер 17(4), С. 565 - 565
Опубликована: Фев. 15, 2025
Lead (Pb) is one of the most relevant contaminants due to its high toxicity, even at low concentrations. The growing need for research about real-time Pb analysis in field has driven advancements portable, sensitive, and automated analytical methodologies. These innovations are crucial taking proactive measures against impacts pollution on ecosystems public health. Flow techniques have proven be very effective automating procedures isolating preconcentrating surface water biological samples. Such automation boosts sample throughput reduces processing time reagent consumption, aligning with green chemistry principles by lowering costs minimizing waste. This review covers 31 recent methodologies employing flow such as FIA, SIA, MSFIA, LOV, emphasizing trend toward portability miniaturization, which facilitates in-situ analysis. Additionally, this examines pretreatment methods detection systems used, highlighting parameters each technique. discussed demonstrate capability process up 55 samples per hour accurately. Limits quantification 0.014 µg L−1 reported, enabling environmental monitoring that effectively detects concentrations below WHO EPA drinking reference values 10 15 L−1, respectively.
Язык: Английский
Процитировано
1Green Analytical Chemistry, Год журнала: 2025, Номер unknown, С. 100248 - 100248
Опубликована: Март 1, 2025
Язык: Английский
Процитировано
1Journal of Food Composition and Analysis, Год журнала: 2024, Номер 135, С. 106638 - 106638
Опубликована: Авг. 8, 2024
Язык: Английский
Процитировано
8Results in Chemistry, Год журнала: 2024, Номер 11, С. 101761 - 101761
Опубликована: Сен. 10, 2024
Язык: Английский
Процитировано
6Food Chemistry, Год журнала: 2024, Номер 457, С. 140192 - 140192
Опубликована: Июнь 24, 2024
Язык: Английский
Процитировано
5Critical Reviews in Analytical Chemistry, Год журнала: 2024, Номер unknown, С. 1 - 14
Опубликована: Июль 1, 2024
The current work is devoted to a comparative analysis of enhanced co-factors in solidified floating organic drop microextraction methods (SFODME) and an environmental assessment. Also, the description SFODME, with focus on its applications determination metals different matrices, was explained. impact several parameters, developments, greenness evaluations introduced. Especially, review provides concise overview multiple approaches emphasis environmentally friendly, supported co-factors. These mods include ultrasound, vortex, air-assisted SFODME procedures. selectivity sensitivity increase when are added SFODME. Lastly, also aims select tools (Analytic GREEnness Metric Approach (AGREE), Red-Green-Blue (RGB12), Blue Applicability Grade Index (BAGI)) that have been described as friendly. Additionally provide explanation data collected, compare, emphasize advantages certain characteristics each tool. Furthermore, case studies comparisons for three were shown.
Язык: Английский
Процитировано
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