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FLOW INJECTION ANALYSIS

Flow Injection/Sequential Injection Chromatography: A Review of Recent Developments in Low Pressure with High Performance Chemical Separation

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Pages 1640-1671 | Received 28 Sep 2012, Accepted 09 Nov 2012, Published online: 11 Jul 2013

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Panagiotis Kondylis, Margarita Barbatsi & Anastasios Economou. (2016) Automated Flow Injection Chromatography for the Rapid Assay of Parabens in Hygiene Wipes. Analytical Letters 49:5, pages 690-698.
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Abubakr M. Idris. (2014) The Second Five Years of Sequential Injection Chromatography: Significant Developments in the Technology and Methodologies. Critical Reviews in Analytical Chemistry 44:3, pages 220-232.
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Articles from other publishers (24)

Margarita Barbatsi & Anastasios Economou. (2023) Programmable Low-Pressure Chromatographic Sub-90 s Assay of Parabens in Cosmetics with Post-Column Chemiluminescence Detection. Separations 10:6, pages 350.
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Susana S. M. P. Vidigal & António O. S. S. Rangel. (2021) Exploiting Flow-Based Separation Techniques for Sample Handling in Wine Analysis. Food Analytical Methods 15:3, pages 565-578.
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Anastasios Economou. 2021. Innovative Food Analysis. Innovative Food Analysis 99 122 .
Piliang Xiang, Yu Yang, Zhitao Zhao, Jianhua Wang, Mingli Chen, Apeng Chen & Shaorong Liu. (2020) Performing flow injection chromatography using a narrow open tubular column. Analytica Chimica Acta 1109, pages 19-26.
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Elias A.G. Zagatto & Fábio R.P. Rocha. (2020) The multiple facets of flow analysis. A tutorial. Analytica Chimica Acta 1093, pages 75-85.
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Parthena Chorti, Melina Ntousikou & Anastasios Economou. (2019) A linear gradient sequential injection chromatography method exploiting programmable fluidics for the determination of three methylxanthines. Talanta 202, pages 514-519.
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Erico A. Oliveira Pereira, Vander Freitas Melo, Gilberto Abate & Jorge C. Masini. (2019) Determination of glyphosate and aminomethylphosphonic acid by sequential-injection reversed-phase chromatography: method improvements and application in adsorption studies. Analytical and Bioanalytical Chemistry 411:11, pages 2317-2326.
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Constantinos K. Zacharis & Paraskevas D. Tzanavaras. 2019. Handbook of Smart Materials in Analytical Chemistry. Handbook of Smart Materials in Analytical Chemistry 643 674 .
Somchai Lapanantnoppakhun, Lucksagoon Ganranoo, Supaporn Kradtap Hartwell & Kate Grudpan. (2018) Sequential Injection Ion Chromatography with Flow Injection Post Column Derivatization Capable of Using the Unstable Reagent Murexide to Determine Calcium and Magnesium in a Mixture. Chromatographia 81:9, pages 1269-1276.
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Marek Trojanowicz, Kamila Kołacińska & Jay W. Grate. (2018) A review of flow analysis methods for determination of radionuclides in nuclear wastes and nuclear reactor coolants. Talanta 183, pages 70-82.
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Wolfgang Frenzel & Manuel Miró. 2018. Reference Module in Chemistry, Molecular Sciences and Chemical Engineering. Reference Module in Chemistry, Molecular Sciences and Chemical Engineering.
Judith C. Chow & John G. Watson. (2017) Enhanced Ion Chromatographic Speciation of Water-Soluble PM$$_{2.5}$$ to Improve Aerosol Source Apportionment. Aerosol Science and Engineering 1:1, pages 7-24.
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Sujitra Thaithet, Supaporn Kradtap Hartwell & Somchai Lapanantnoppakhun. (2017) Sequential Injection Chromatography with an Ultra-short Monolithic Column for the Low-Pressure Separation of α-Tocopherol and γ-Oryzanol in Vegetable Oils and Nutrition Supplements. Analytical Sciences 33:3, pages 313-317.
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Margarita Barbatsi, Michael Koupparis & Anastasios Economou. (2016) A new flow-injection chromatography method exploiting linear-gradient elution for fast quantitative screening of parabens in cosmetics. Analytical Methods 8:47, pages 8337-8344.
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Inês C. Santos, Raquel B. R. Mesquita, Catarina L. Amorim, Paula M. L. Castro & António O. S. S. Rangel. (2016) Development of a low pressure chromatographic flow system for monitoring the biodegradation of ofloxacin and ciprofloxacin. Analytical Methods 8:27, pages 5457-5465.
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Marek Trojanowicz & Kamila Kołacińska. (2016) Recent advances in flow injection analysis. The Analyst 141:7, pages 2085-2139.
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João Rodrigo Santos & António O.S.S. Rangel. (2015) Development of a chromatographic low pressure flow injection system using amperometric detection: Application to the analysis of niacin in coffee. Food Chemistry 187, pages 152-158.
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Robert B. Channon, Maxim B. Joseph, Eleni Bitziou, Anthony W. T. Bristow, Andrew D. Ray & Julie V. Macpherson. (2015) Electrochemical Flow Injection Analysis of Hydrazine in an Excess of an Active Pharmaceutical Ingredient: Achieving Pharmaceutical Detection Limits Electrochemically. Analytical Chemistry 87:19, pages 10064-10071.
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Burkhard Horstkotte, Patrícia Jarošová, Petr Chocholouš, Hana Sklenářová & Petr Solich. (2015) Sequential Injection Chromatography with post-column reaction/derivatization for the determination of transition metal cations in natural water samples. Talanta 136, pages 75-83.
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Ricardo de Prá Urio & Jorge C. Masini. (2015) Evaluation of sequential injection chromatography for reversed phase separation of triazine herbicides exploiting monolithic and core–shell columns. Talanta 131, pages 528-534.
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Abubakr M. Idris & Rafea E. E. Elgorashe. (2014) Eco-friendly, cost-effective and fast method for the estimation of furosemide and amiloride in tablet formulation by sequential injection chromatography. Journal of Analytical Chemistry 69:12, pages 1193-1198.
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Susana S. M. P. Vidigal & António O. S. S. Rangel. (2014) A Flow-Injection System Coupled to a Micro-Guard Cartridge for Monitoring a Vinification Process. Analytical Sciences 30:11, pages 1057-1062.
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Supaporn Kradtap Hartwell, Alison Kehling & Somchai Lapanantnoppakhun. (2014) Low-Pressure Chromatographic Separation of p-Hydroxybenzoates Using Sequential Injection with Lab-on-Valve System and Miniature Monolithic Column. Chromatographia 77:13-14, pages 883-891.
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Sandro de Miranda Colombo & Jorge Cesar Masini. (2014) A sequential-injection reversed-phase chromatography method for fluorimetric determination of glyphosate and aminomethylphosphonic acid. Anal. Methods 6:2, pages 490-496.
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