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Artykuły w czasopismach na temat "Chromatography"

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Arzu Ibragimova, Arzu Ibragimova. "BENEFITS OF USING A FID TO MEASURE THE MULTICOMPONENT GAS MIXTURES." PIRETC-Proceeding of The International Research Education & Training Centre 27, no. 06 (2023): 131–39. http://dx.doi.org/10.36962/piretc27062023-131.

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The development of the oil and gas complex is one of the priority areas of the Azerbaijan economy. Oil and gas are among the most competitive Azerbaijan goods and are in high and stable demand from global consumers. Therefore, increased attention is paid to product quality. One of the methods for quality control of petroleum products is gas chromatography. Today it is a widely used physical and chemical research method. The capabilities of a gas chromatography are mainly determined by the enormous separating power of the chromatographic columns and the characteristics of the detectors. If the
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Tong, Daixin, Keith D. Bartle, Anthony A. Clifford, and Robert E. Robinson. "Unified chromatograph for gas chromatography, supercritical fluid chromatography and micro-liquid chromatography." Analyst 120, no. 10 (1995): 2461. http://dx.doi.org/10.1039/an9952002461.

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Zhang, Jing, and Hongye Zhang. "Research progress on the detection of water-soluble vitamins in food using liquid chromatography." Theoretical and Natural Science 37, no. 1 (2024): 158–69. http://dx.doi.org/10.54254/2753-8818/37/20240183.

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Currently, liquid chromatography is widely used for the analysis and determination of water-soluble vitamins (WSVs) in functional foods. However, due to the diversity of sample characteristics and the requirement for purification accuracy, the chromatographic conditions and specific methods used vary. This paper reviews the chromatographic conditions of liquid chromatography techniques for detecting WSVs in food, as well as the selection of liquid chromatography methods in different application fields. The chromatographic conditions include chromatographic columns, column temperature, mobile p
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Dolgonosov, A. M., A. G. Prudkovskii, E. A. Zaitseva, N. K. Kolotilina, and A. A. Dolgonosov. "Mathematical Modelling in Analytical Chromatography: Problems and Solutions." Journal of Analytical Chemistry 76, no. 11 (2021): 1233–44. http://dx.doi.org/10.1134/s1061934821110046.

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Abstract Based on an analysis of the results of original research performed in the Laboratory of Sorption Methods of the Vernadsky Institute of Geochemistry and Analytical Chemistry of the Russian Academy of Sciences within the project “Mathematical Chromatograph,” the review covers the aim and strategy of the imitation modeling of high-performance chromatography; associated problems of the theory of intermolecular interactions; classifications of polar stationary phases by their selectivity; descriptions of the kinetics and dynamics of sorption processes, choice of the composition of multicom
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Ogierman, Leonard. "Gas Chromatography of Uracil Herbicides by On-Column Methylation with Trimethylanilinium Hydroxide." Journal of AOAC INTERNATIONAL 69, no. 5 (1986): 912–14. http://dx.doi.org/10.1093/jaoac/69.5.912.

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Abstract Substituted uracil herbicides injected into a gas chromatograph react with trimethylanilinium hydroxide to give iV-methyl derivatives with good gas chromatographic properties. Maximum methylation is obtained when the molar ratio of methylating reagent to herbicide is ca 4:1. This technique for preparing derivatives provides rapid qualitative and quantitative chromatography of the substances examined. Chromatographic response was linear with increased concentration for the synthetic standard and the on-column product of uracil herbicide. The proposed derivatization method was used to a
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Adel, E. Ibrahim, Elhenawee Magda, Saleh Hanaa, and M. Sebaiy Mahmoud. "Overview on liquid chromatography and its greener chemistry application." Annals of Advances in Chemistry 5, no. 1 (2021): 004–12. http://dx.doi.org/10.29328/journal.aac.1001023.

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This literature review is concerning with liquid chromatography specifically high performance liquid chromatography (HPLC), Ultra high performance liquid chromatography (UHPLC), chromatography theory, chromatographic parameters, monolithic columns, principles of green chemistry and its application ingreen chromatography.
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Custodio-Mendoza, Jorge Antonio, Patryk Pokorski, Havva Aktaş, Alicja Napiórkowska, and Marcin Andrzej Kurek. "Advances in Chromatographic Analysis of Phenolic Phytochemicals in Foods: Bridging Gaps and Exploring New Horizons." Foods 13, no. 14 (2024): 2268. http://dx.doi.org/10.3390/foods13142268.

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Chromatographic analysis of phenolic phytochemicals in foods has significantly advanced over the past decade (2014–2024), meeting increasing demands for precision and efficiency. This review covers both conventional and advanced chromatographic techniques used for detecting phenolic phytochemicals in foods. Conventional methods like High-Performance Liquid Chromatography, Ultra High-Performance Liquid Chromatography, Thin-Layer Chromatography, and Gas Chromatography are discussed, along with their benefits and limitations. Advanced techniques, including Hydrophilic Interaction Liquid Chromatog
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Meng, Xin Xin, and Shu Lin Yang. "Comparison of Gas Chromatography and Liquid Chromatogram Detecting Pesticide Residue." Applied Mechanics and Materials 539 (July 2014): 113–16. http://dx.doi.org/10.4028/www.scientific.net/amm.539.113.

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The existing methods of detecting pesticide residue include gas chromatography, high performance liquid chromatography, gas chromatograph-mass, liquid chromatograph-mass, capillary electrophoresis, radioimmunoassay, biosensor and rapid detection on the spot. The paper analyzes the comparison of gas chromatography and liquid chromatogram detecting pesticide residue, for achieving the development tendency and the future goal of analyzing pesticide residue.
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Denisov, I. S., V. V. Korotkov, and D. S. Smirnov. "Gaschromatographic monitoring of volatile pollutants of urban air: optimizing analysis and concentrating." Sanitarnyj vrač (Sanitary Doctor), no. 10 (October 1, 2020): 70–76. http://dx.doi.org/10.33920/med-08-2010-08.

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For determining 22 volatile organic compounds in the atmospheric air, the operating modes of the gas chromatographic complexes «chromatography-mass spectrometer — two-stage thermodesorber» and «gas chromatograph with 2 FID — static headspace analysis sampler» are optimized. The modes provide the values of the separation coefficients of the chromatographic peaks in the range of 1.5 ÷ 21. It has been experimentally established that the highest desorption efficiency of volatile organic compounds is registered when the sample is concentrated into Tenax TA sorption tubes.
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Omelchuk, Sergii T., Alina I. Syrota, and Anna V. Blagaia. "THE NEED FOR IMPROVEMENT OF FUNGICIDES RESIDUAL QUANTITIES CONTROL METHODS IN THE CONDITIONS OF THE DOMESTIC REGULATORY BASE HARMONIZATION." Wiadomości Lekarskie 75, no. 10 (2022): 2455–61. http://dx.doi.org/10.36740/wlek202210126.

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The aim: To develop highly sensitive analytical methods for the determination of the systemic phenylamide class fungicide – Metalaxyl-M residues in watermelons and grapes to reduce the risk of hazardous effects on workers’ and public health. Materials and methods: Conditions for Metalaxyl-M detection by gas-liquid chromatography (GLC) using a chromatographic capillary column SH-Rxi-5ms (length – 30 m, inner diameter – 0.25 mm, layer thickness – 0.25 μm) were determined. The optimal conditions for chromatography of Metalaxyl-M were established: column thermostat temperature – 220°С, evaporator
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Rozprawy doktorskie na temat "Chromatography"

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Mekaoui, Nazim. "Contribution à l'étude de la chromatographie à contre-courant : partage de composés ionisables, nouvelles colonnes et purification séquentielles." Thesis, Lyon 1, 2012. http://www.theses.fr/2012LYO10249/document.

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La chromatographie à contre courant (CCC) est une technique de purification chimique préparative quitravaille avec un système biphasique liquide. Une phase est la phase mobile, l'autre phase est la phasestationnaire. Il n'y a aucun support solide: un champ de force centrifuge est utilisé pour maintenir en place laphase stationnaire. Ce travail est une contribution à l'étude de la purification préparative par CCC. Après uneimportante étude bibliographique des procédés de purification en continu tant en CCC qu'autres, il est montréque la méthode dite "multi-dual-mode", ou MDM, est une solution p
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Power, Gillian Mary. "The study of chromatographic interactions using model reversed-phase chromatography surfaces." Thesis, University of Nottingham, 1999. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.285643.

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Galindo, Irma C. (Irma Concepcion). "Investigation Into the Causes for the Loss of Resolution in an Ion Chromatograpy Resin." Thesis, North Texas State University, 1988. https://digital.library.unt.edu/ark:/67531/metadc798197/.

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Four mechanisms were considered as possible causes of the loss in resolution for a Dionex CG2 ion chromatography resin: 1) presence of inorganic ions strongly bound to the active sites; 2) adsorption of organic species; 3) physical alterations; and 4) chemical alterations. The instrumental analyses used to gather data were ICP, FT-IR, SEM, solid C-13 NMR and IC. Based on the results, no metal ions are bound to the resin, no organic species are held onto the resin, and no physical change was observable. The cause for the loss of resolution is a strong reduction in the number of active sites in
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McBrady, Adam Dewey. "Microfabricated chromatographic instrumentation for micro total analysis systems /." Thesis, Connect to this title online; UW restricted, 2006. http://hdl.handle.net/1773/8570.

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Kirk, John Daniel. "Particle beam LC/MS with fast atom bombardment." Thesis, Georgia Institute of Technology, 1990. http://hdl.handle.net/1853/27127.

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Prazen, Bryan J. "Development of high speed hyphenated chromatographic analyzers and second order data analysis techniques /." Thesis, Connect to this title online; UW restricted, 1998. http://hdl.handle.net/1773/11550.

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Cao, Liming. "Protein Separation with Ion-exchange Membrane Chromatography." Link to electronic thesis, 2005. http://www.wpi.edu/Pubs/ETD/Available/etd-050405-174109/.

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Meacham, Robert Ian. "Sorption-effect chromatography." Thesis, Loughborough University, 1990. https://dspace.lboro.ac.uk/2134/27095.

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The objective of this work has been to develop an understanding of the changes in volumetric flow rate that occur during chromatography so that flow rate measurements can be used as the basis of an analytical method. It is suggested that the total amount of gas which adsorbs on a column equals the total amount of gas which elutes from the end of the column.
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Lyne, P. M. "Heater displacement chromatography." Thesis, University of Oxford, 1986. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.376927.

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Yang, Wei. "Solids phase chromatography." Thesis, University of Leeds, 2009. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.505060.

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The present study focuses on the development of a novel technique, namely Solids Phase Chromatography (SPC), for particle classification and size analysis. SPC is a fractionation based technique and utilises a separation channel to fractionate the particle samples into sub-fractions according to their sizes. Subsequently, the products may be analysed by various detectors and recovered for other investigations.
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Książki na temat "Chromatography"

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M, Miller James. Chromatography: Concepts and contrasts. 2nd ed. Wiley, 2005.

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J, Yang Frank, ed. Microbore column chromatography: A unified approach to chromatography. M. Dekker, 1989.

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1945-, Nakanishi Kazuhiro, and Matsuno Ryūichi 1939-, eds. Ion-exchange chromatography of proteins. M. Dekker, 1988.

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S, Hage David, ed. Handbook of affinity chromatography. 2nd ed. Taylor & Francis, 2006.

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Teresa, Kowalska, and Sherma Joseph, eds. Preparative layer chromatography. Taylor & Francis, 2006.

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Poole, C. F. Gas chromatography. Elsevier, 2012.

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D, Conway Walter, Petroski Richard J, American Chemical Society. Division of Agricultural and Food Chemistry., and American Chemical Society Meeting, eds. Modern countercurrent chromatography. American Chemical Society, 1995.

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1921-, Cagniant D., ed. Complexation chromatography. M. Dekker, 1992.

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1953-, Poole Salwa K., ed. Chromatography today. Elsevier, 1991.

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1950-, Kline Toni, ed. Handbook of affinity chromatography. Dekker, 1993.

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Części książek na temat "Chromatography"

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Santos, Joana, and M. Beatriz P. P. Oliveira. "Chromatography." In Food Authentication. John Wiley & Sons, Ltd, 2017. http://dx.doi.org/10.1002/9781118810224.ch7a.

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Ruiz-Matute, Ana I., M. Luz Sanz, F. Javier Moreno, and Marta Corzo-Martínez. "Chromatography." In Food Authentication. John Wiley & Sons, Ltd, 2017. http://dx.doi.org/10.1002/9781118810224.ch7b.

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Rosenberg, Ian M. "Chromatography." In Protein Analysis and Purification. Birkhäuser Boston, 1996. http://dx.doi.org/10.1007/978-1-4612-2056-5_10.

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Gooch, Jan W. "Chromatography." In Encyclopedic Dictionary of Polymers. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_2357.

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Wehmiller, John F. "Chromatography." In Encyclopedia of Scientific Dating Methods. Springer Netherlands, 2015. http://dx.doi.org/10.1007/978-94-007-6304-3_113.

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Wehmiller, John. "Chromatography." In Encyclopedia of Scientific Dating Methods. Springer Netherlands, 2013. http://dx.doi.org/10.1007/978-94-007-6326-5_113-3.

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Buxbaum, Engelbert. "Chromatography." In Biophysical Chemistry of Proteins. Springer US, 2010. http://dx.doi.org/10.1007/978-1-4419-7251-4_14.

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Grabenauer, Megan, and David T. Stafford. "Chromatography." In Principles of Forensic Toxicology. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-42917-1_11.

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Dennison, Clive. "Chromatography." In A Guide to Protein Isolation. Springer Netherlands, 2003. http://dx.doi.org/10.1007/978-94-017-0269-0_5.

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Dworkin, Jason P. "Chromatography." In Encyclopedia of Astrobiology. Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-662-44185-5_290.

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Streszczenia konferencji na temat "Chromatography"

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Sorensen, Eva, Dian Ning Chia, and Fanyi Duanmu. "A Superstructure Approach for Optimization of Simulated Moving Bed (SMB) Chromatography." In The 35th European Symposium on Computer Aided Process Engineering. PSE Press, 2025. https://doi.org/10.69997/sct.130271.

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One of the most successful continuous high-performance liquid chromatography (HPLC) processes for drug manufacturing is the Simulated Moving Bed (SMB). SMB is a multi-column, continuous, chromatographic process that can handle much higher throughputs than regular batch chromatographic processes. The process is initially transient, but eventually arrives at a cyclic steady state, which makes optimization very challenging, even more so when superstructure optimization is involved. To simplify the optimization problem, many researchers fixed the SMB structure, optimizing only the continuous varia
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Andrew, B. E. "Monitoring of Microbiological Metabolites by Ion Chromatography." In CORROSION 1988. NACE International, 1988. https://doi.org/10.5006/c1988-88089.

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Abstract Ion chromatography is a useful analytical technique for obtaining quantitative data with respect to microbiological metabolites on surfaces and in bulk solution. Case histories include anaerobic degradation of nitrite in bulk solution and on steel surfaces, resulting in microbiologically induced corrosion. Aerobic degradation of nitrite in a cooling water system will illustrate the importance of selecting appropriate simulation conditions. Short-chain fatty acids in emulsion coolants are generated by microbiological action, and can contribute to product corrosion. These metabolites ar
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Lytvynenko, Volodymyr, Serge Olszewski, Andrzej Smolarz, et al. "Thin-layer chromatography image segmentation for toxicological studies." In Photonics Applications in Astronomy, Communications, Industry, and High Energy Physics Experiments 2024, edited by Ryszard S. Romaniuk, Andrzej Smolarz, and Waldemar Wójcik. SPIE, 2024. https://doi.org/10.1117/12.3052160.

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Lu, Amos E., Anish Dighe, and Richard D. Braatz. "Modeling and Control of Continuous Countercurrent Tangential Chromatography." In 2024 American Control Conference (ACC). IEEE, 2024. http://dx.doi.org/10.23919/acc60939.2024.10644301.

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Kikkeri, Kruthika, Benjamin Ngu, and Masoud Agah. "Submicron dielectrophoretic chromatography." In 2018 IEEE Micro Electro Mechanical Systems (MEMS). IEEE, 2018. http://dx.doi.org/10.1109/memsys.2018.8346772.

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Stadler, M. P., M. D. Deo, and F. M. Orr. "Crude Oil Characterization Using Gas Chromatography and Supercritical Fluid Chromatography." In SPE International Symposium on Oilfield Chemistry. Society of Petroleum Engineers, 1993. http://dx.doi.org/10.2118/25191-ms.

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Electricwala, A., and T. Atkinson. "TANDEM PURIFICATION OF TISSUE PLASMINOGEN ACTIVATOR BY METAL CHELATE AND AFFINITY CHROMATOGRAPHY." In XIth International Congress on Thrombosis and Haemostasis. Schattauer GmbH, 1987. http://dx.doi.org/10.1055/s-0038-1644831.

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A tandem purification procedure was developed by a combination of metal chelate and affinity chromatography. The conditioned medium from different cell lines producing tissue plasminogen activator was first chromatographed on a zinc chelate-agarose column equilibrated with low ionic strength buffer. After thorough washing, the column was connected to a lysine-agarose column, previously equilibrated with the same buffer. Tissue plasminogen activator was eluted from the zinc chelate column by a gradient of imidazole and the effluent was allowed to flow through lysine-agarose matrix. The two colu
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Hatano, H., and T. Hanai. "International Symposium on Chromatography." In International Symposium. WORLD SCIENTIFIC, 1995. http://dx.doi.org/10.1142/9789814533317.

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Munson, Terry. "Failure Analysis - Using Ion Chromatography and Ion Chromatography/Mass Spec (IC/MS)." In 2020 Pan Pacific Microelectronics Symposium (Pan Pacific). IEEE, 2020. http://dx.doi.org/10.23919/panpacific48324.2020.9059319.

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DESMET, GERT, and GINO V. BARON. "SHEAR-DRIVEN CHROMATOGRAPHY: PERFORMING HIGH-VELOCITY OPEN-TUBULAR CHROMATOGRAPHIC SEPARATIONS AT ZERO PRESSURE DROP." In Proceedings of the Second Pacific Basin Conference. WORLD SCIENTIFIC, 2000. http://dx.doi.org/10.1142/9789812793331_0013.

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Raporty organizacyjne na temat "Chromatography"

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Richard Arnett, Richard Arnett. ChromatograDIY: Open-Source Chromatography Effort. Experiment, 2014. http://dx.doi.org/10.18258/2124.

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Laub, R. J. Inverse Gas Chromatography. Defense Technical Information Center, 1990. http://dx.doi.org/10.21236/ada227677.

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Mauritz, Kenneth A., and Robson F. Storey. Size Exclusion Chromatography System. Defense Technical Information Center, 2001. http://dx.doi.org/10.21236/ada393948.

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Aris, R., and R. W. Carr. Continuous chemical reaction chromatography. Office of Scientific and Technical Information (OSTI), 1992. http://dx.doi.org/10.2172/7070042.

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Weber, William P. Preparative Gel Permeation Chromatography. Defense Technical Information Center, 1989. http://dx.doi.org/10.21236/ada216936.

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Wheeler, Mandy. IROS322401 What is Chromatography. Office of Scientific and Technical Information (OSTI), 2025. https://doi.org/10.2172/2511133.

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Bora. PR-004-14604-R01 Miniaturized Gas Chromatography and Gas Quality Sensor. Pipeline Research Council International, Inc. (PRCI), 2015. http://dx.doi.org/10.55274/r0010869.

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The natural gas industry currently relies on gas chromatography to evaluate the composition of natural gas including alkanes, carbon dioxide, nitrogen, and oxygen. The higher and lower heating values, Wobbe Index, Hydrocarbon Dewpoint, Methane Number, and viscosity are all calculated from the gas composition. The need to understand the composition of fuel gas and to monitor its components is crucial to the natural gas industry. Monitoring the composition of the fuel gas provides the industry with the capability of protecting valuable underground assets, delivering gas that meets end-usage requ
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Quinlin, W. T., and C. L. Schaffer. Laboratory solvent reuse -- Liquid chromatography. Office of Scientific and Technical Information (OSTI), 1992. http://dx.doi.org/10.2172/10138435.

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Dasgupta, P. K. Novel approaches to ionic chromatography. Office of Scientific and Technical Information (OSTI), 1990. http://dx.doi.org/10.2172/6149811.

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Sklarew, D. S., J. C. Evans, and K. B. Olsen. Multielement detector for gas chromatography. Office of Scientific and Technical Information (OSTI), 1988. http://dx.doi.org/10.2172/6806223.

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