Artigos de revistas sobre o tema "Mineral ion exchanger"
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Salinas Rodríguez, Eleazar, Edgar A. Cárdenas-Reyes, Francisco R. Barrientos-Hernández, Javier Flores-Badillo, M. P. Gutiérrez-Amador, Ariadna Sánchez-Castillo, Otilio A. Acevedo-Sandoval, Eduardo Cerecedo-Sáenz e Juan Hernández-Ávila. "Ce and Nd Extraction by Cationic Exchange, Using Bentonite, Diatomite, and Eggshell—Preliminary Study". Minerals 13, n.º 6 (29 de maio de 2023): 735. http://dx.doi.org/10.3390/min13060735.
Texto completo da fontePonomareva, Maria, Olga Cheremisina, Yulia Mashukova e Elena Lukyantseva. "Increasing the efficiency of rare earth metal recovery from technological solutions during processing of apatite raw materials". Записки Горного института 252 (17 de dezembro de 2021): 1–10. http://dx.doi.org/10.31897/pmi.2021.6.13.
Texto completo da fonteEl-Sweify, Fatma H., Ehab A. A. El-Shazly e Shreen M. Salama. "Comparison of some organic and inorganic ion exchangers concerning the sorption of Ce(III), Te(IV), Zr(IV), Hf(IV) and Nb(V)". Radiochimica Acta 106, n.º 3 (28 de março de 2018): 207–16. http://dx.doi.org/10.1515/ract-2017-2789.
Texto completo da fonteAliyah Shahab e Indah Agus Setiorini. "EFEKTIFITAS VOLUME RESIN ION EXCHANGER TERHADAP KAPASITAS PERTUKARAN ION DAN WAKTU JENUH PADA UNIT DEMIN PLANT DI PT PLN (PERSERO) UPDK KERAMASAN". Journal of Innovation Research and Knowledge 2, n.º 9 (25 de fevereiro de 2023): 3791–802. http://dx.doi.org/10.53625/jirk.v2i9.5407.
Texto completo da fonteDe Luca, Pierantonio, Ivano Bernaudo, Rosangela Elliani, Antonio Tagarelli, Jànos B.Nagy e Anastasia Macario. "Industrial Waste Treatment by ETS-10 Ion Exchanger Material". Materials 11, n.º 11 (18 de novembro de 2018): 2316. http://dx.doi.org/10.3390/ma11112316.
Texto completo da fonteVasil’eva, Vera I., Elmara M. Akberova, Ali M. Saud e Victor I. Zabolotsky. "Current-Voltage Characteristics of Membranes with Different Cation-Exchanger Content in Mineral Salt—Neutral Amino Acid Solutions under Electrodialysis". Membranes 12, n.º 11 (2 de novembro de 2022): 1092. http://dx.doi.org/10.3390/membranes12111092.
Texto completo da fonteRathore, Sawai Singh, Archana Joshi, Hanuman . e Vikal Gupta. "Synthesis and environmental application of TTCHEA resin in effluent handling". Research Journal of Chemistry and Environment 26, n.º 11 (25 de outubro de 2022): 63–67. http://dx.doi.org/10.25303/2611rjce063067.
Texto completo da fonteSeptiyani, Elda, Yuniati Zevi e Nur Novilina Arifianingsih. "SUSTAINABLE REGENERATION OF MORDENITE MINERAL AS ION EXCHANGER FOR REMOVAL IRON AND MANGANESE IN GROUNDWATER". MATTER: International Journal of Science and Technology 6, n.º 1 (7 de julho de 2020): 147–60. http://dx.doi.org/10.20319/mijst.2020.61.147160.
Texto completo da fonteKubová, J., V. Nevoral e V. Streško. "Determination of beryllium trace contents in mineral waters after preconcentration on a chelating ion-exchanger". Fresenius' Journal of Analytical Chemistry 348, n.º 4 (abril de 1994): 287–90. http://dx.doi.org/10.1007/bf00324036.
Texto completo da fonteZhanabayeva, A. K., G. K. Bishimbayeva, D. S. Zhumabayeva, A. M. Nalibayeva e Ye N. Abdikalykov. "A technology for producing electrode materials for lithium-ion batteries from Kazakhstan spodumene raw materials". Proceedings of Universities. Applied Chemistry and Biotechnology 12, n.º 1 (1 de abril de 2022): 141–52. http://dx.doi.org/10.21285/2227-2925-2022-12-1-141-152.
Texto completo da fonteGreen, M., N. Denekamp, O. Lahav e S. Tarre. "Production of gaseous nitrogen compounds in a novel process for ammonium removal". Water Science and Technology 46, n.º 1-2 (1 de julho de 2002): 215–22. http://dx.doi.org/10.2166/wst.2002.0480.
Texto completo da fonteZhang, Zhihao, Yun Jia e Judong Zhao. "Effect of Magnesium Ion Concentration on the Scale Inhibition of Heat Exchanger in Circulating Cooling Water under Alternating Electric Field". Applied Sciences 10, n.º 16 (8 de agosto de 2020): 5491. http://dx.doi.org/10.3390/app10165491.
Texto completo da fonteBronckers, A. L. J. J. "Ion Transport by Ameloblasts during Amelogenesis". Journal of Dental Research 96, n.º 3 (19 de dezembro de 2016): 243–53. http://dx.doi.org/10.1177/0022034516681768.
Texto completo da fonteAlsar, Zh, B. Duskinova e Z. Insepov. "New Sorption Properties of Diatomaceous Earth for Water Desalination and Reducing Salt Stress of Plants". Eurasian Chemico-Technological Journal 22, n.º 2 (30 de junho de 2020): 89. http://dx.doi.org/10.18321/ectj955.
Texto completo da fonteLai, Zhong-Fang, e Katsuhide Nishi. "Intracellular chloride activity increases in guinea pig ventricular muscle during simulated ischemia". American Journal of Physiology-Heart and Circulatory Physiology 275, n.º 5 (1 de novembro de 1998): H1613—H1619. http://dx.doi.org/10.1152/ajpheart.1998.275.5.h1613.
Texto completo da fonteNovikov, G. V., N. V. Lobus, A. N. Drozdova e Yu P. Dikov. "Sorption of Y 3+, La 3+ AND Се 3+ cations on the cobalt-rich manganese crusts of the Magellan Rise and Marcus-Wake seamounts, Pacific Ocean". Литология и полезные ископаемые, n.º 4 (9 de julho de 2019): 318–36. http://dx.doi.org/10.31857/s0024-497x20194318-336.
Texto completo da fonteDezhatkina, S. V., Sh R. Zyalalov, A. Z. Mukhitov, M. E. Dezhatkin, N. V. Sharonina e V. V. Akhmetova. "Production of organic products in dairy cattle breeding by feeding natural silicon-containing additives". Agrarian science, n.º 2 (7 de abril de 2021): 45–49. http://dx.doi.org/10.32634/0869-8155-2021-345-2-45-49.
Texto completo da fonteDezhatkina, S. V., V. V. Akhmetova, N. V. Sharonina, L. P. Pulycherovskaya, S. V. Merchina, N. A. Provorova e M. E. Dezhatkin. "New feed additives generation in dairy cattle breeding". Agrarian science, n.º 9 (2 de novembro de 2021): 67–72. http://dx.doi.org/10.32634/0869-8155-2021-352-9-67-72.
Texto completo da fonteJantarajit, Walailak, Kornkamon Lertsuwan, Jarinthorn Teerapornpuntakit, Nateetip Krishnamra e Narattaphol Charoenphandhu. "CFTR-mediated anion secretion across intestinal epithelium-like Caco-2 monolayer under PTH stimulation is dependent on intermediate conductance K+channels". American Journal of Physiology-Cell Physiology 313, n.º 1 (1 de julho de 2017): C118—C129. http://dx.doi.org/10.1152/ajpcell.00010.2017.
Texto completo da fonteIzci, Ertugrul. "Mineralogical Transformation and Microstructure of the Killik Region Clays". Proceedings of the Bulgarian Academy of Sciences 75, n.º 12 (23 de dezembro de 2022): 1775–84. http://dx.doi.org/10.7546/crabs.2022.12.09.
Texto completo da fonteMartens, Holger, Sabine Leonhard-Marek, Monika Röntgen e Friederike Stumpff. "Magnesium homeostasis in cattle: absorption and excretion". Nutrition Research Reviews 31, n.º 1 (10 de janeiro de 2018): 114–30. http://dx.doi.org/10.1017/s0954422417000257.
Texto completo da fonteDzyazko, Yuliya, Mariya Chaban e Olga Bystryk. "MATERIALS BASED ON TITANIUM AND MANGANESE OXIDES FOR SELECTIVE RECOVERY OF LITHIUM FROM WATER SOURCES". Ukrainian Chemistry Journal 85, n.º 2 (15 de fevereiro de 2019): 88–100. http://dx.doi.org/10.33609/0041-6045.85.2.2019.88-100.
Texto completo da fonteZhang, Qian, Xiaohua Shu, Xuetao Guo, Deqing Mo, Shiguang Wei e Chen Yang. "Effect of ions on sorption of tylosin on clay minerals". RSC Advances 6, n.º 58 (2016): 53175–81. http://dx.doi.org/10.1039/c6ra07794c.
Texto completo da fontePeng, Zhang-kuang, e Zhi-na Liu. "Accurate Determination of Boron Content in Halite by ICP-OES and ICP-MS". International Journal of Analytical Chemistry 2019 (29 de maio de 2019): 1–5. http://dx.doi.org/10.1155/2019/9795171.
Texto completo da fonteBunge, A. L., e C. J. Radke. "The Origin of Reversible Hydroxide Uptake on Reservoir Rock". Society of Petroleum Engineers Journal 25, n.º 05 (1 de outubro de 1985): 711–18. http://dx.doi.org/10.2118/11798-pa.
Texto completo da fonteEichert, Diane, Christèle Combes, Christophe Drouet e Cristian Rey. "Formation and Evolution of Hydrated Surface Layers of Apatites". Key Engineering Materials 284-286 (abril de 2005): 3–6. http://dx.doi.org/10.4028/www.scientific.net/kem.284-286.3.
Texto completo da fonteLatrille, Christelle, Aubéry Wissocq e Catherine Beaucaire. "Zn sorption on Ca-illite and Ca-smectite: experiment and modelling". E3S Web of Conferences 98 (2019): 04008. http://dx.doi.org/10.1051/e3sconf/20199804008.
Texto completo da fonteSingh, S. K., Prashant K. Srivastava, M. Gupta e S. Mukherjee. "Modeling mineral phase change chemistry of groundwater in a rural-urban fringe". Water Science and Technology 66, n.º 7 (1 de outubro de 2012): 1502–10. http://dx.doi.org/10.2166/wst.2012.338.
Texto completo da fonteEVANGELOU, V. P., e F. J. COALE. "AN INVESTIGATION ON THE DEPENDENCE OF THE GAPON COEFFICIENT ON EXCHANGEABLE SODIUM BY THREE LINEAR TRANSFORMATIONS". Canadian Journal of Soil Science 68, n.º 4 (1 de novembro de 1988): 813–20. http://dx.doi.org/10.4141/cjss88-080.
Texto completo da fonteHasan, Samia S., Zenhom E. Salem e Ahmed Sefelnasr. "Assessment of Hydrogeochemical Characteristics and Seawater Intrusion in Coastal Aquifers by Integrating Statistical and Graphical Techniques: Quaternary Aquifer, West Nile Delta, Egypt". Water 15, n.º 10 (9 de maio de 2023): 1803. http://dx.doi.org/10.3390/w15101803.
Texto completo da fonteHapis, Abul Ainin, e Mukhlis Sanuddin. "Analisis Spektrofotometri Serapan Atom pada Penjernihan Air Sumur Bor di Desa Sekernan". Jurnal Ilmiah Universitas Batanghari Jambi 22, n.º 1 (19 de fevereiro de 2022): 335. http://dx.doi.org/10.33087/jiubj.v22i1.1797.
Texto completo da fonteHubicki, Zbigniew, Halina Hubicka e Bozena Lodyga. "Studies of the Separation of Palladium(II) Microquantities from Macroquantities of Salts of other Elements on Selective Ion Exchangers". Adsorption Science & Technology 14, n.º 1 (fevereiro de 1996): 5–23. http://dx.doi.org/10.1177/026361749601400102.
Texto completo da fonteKudryavtsev, G. V., Stanislav Z. Bernadyuk e Georgii V. Lisichkin. "Ion exchangers based on modified mineral carriers". Russian Chemical Reviews 58, n.º 4 (30 de abril de 1989): 406–19. http://dx.doi.org/10.1070/rc1989v058n04abeh003449.
Texto completo da fonteZhang, Guosheng, Na Liu, Yuan Luo, Haibo Zhang, Long Su, Kokyo Oh e Hongyan Cheng. "Efficient Removal of Cu(II), Zn(II), and Cd(II) from Aqueous Solutions by a Mineral-Rich Biochar Derived from a Spent Mushroom (Agaricus bisporus) Substrate". Materials 14, n.º 1 (23 de dezembro de 2020): 35. http://dx.doi.org/10.3390/ma14010035.
Texto completo da fonteColella, C. "Ion exchange equilibria in zeolite minerals". Mineralium Deposita 31, n.º 6 (setembro de 1996): 554–62. http://dx.doi.org/10.1007/bf00196136.
Texto completo da fonteColella, C. "Ion exchange equilibria in zeolite minerals". Mineralium Deposita 31, n.º 6 (1 de setembro de 1996): 554–62. http://dx.doi.org/10.1007/s001260050062.
Texto completo da fonteKuczumow, Andrzej, Tomasz Blicharski, Mieczysław Gorzelak, Jakub Kosiński, Agnieszka Lasota, Jacek Gągała, Jakub Nowak, Maciej Jarzębski e Mirosław Jabłoński. "Measurements of Energetic States Resulting from Ion Exchanges in the Isomorphic Crystals of Apatites and Bioapatites". Molecules 27, n.º 24 (15 de dezembro de 2022): 8913. http://dx.doi.org/10.3390/molecules27248913.
Texto completo da fonteCasey, W. H., C. Eggleston, P. A. Johnsson, H. R. Westrich e M. F. Hochella. "Aqueous Surface Chemistry and Corrosion of Minerals". MRS Bulletin 17, n.º 5 (maio de 1992): 23–29. http://dx.doi.org/10.1557/s0883769400041245.
Texto completo da fonteBobreshova, Olga V., Anna V. Parshina e Ksenia A. Polumestnaya. "Potentiometric Multisensory Systems with Novel Ion-Exchange Polymer-Based Sensors for Analysis of Drugs". International Journal of Electrochemistry 2012 (2012): 1–10. http://dx.doi.org/10.1155/2012/392735.
Texto completo da fonteMathur, Ryan, Christopher Emproto, Adam C. Simon, Linda Godfrey, Charles Knaack e Jeffery D. Vervoort. "A Chemical Separation and Measuring Technique for Titanium Isotopes for Titanium Ores and Iron-Rich Minerals". Minerals 12, n.º 5 (20 de maio de 2022): 644. http://dx.doi.org/10.3390/min12050644.
Texto completo da fonteEdwin, Rudiawan, Diana Rakhmawaty Eddy, Solihudin e Iman Rahayu. "THE ORGANIC MODIFICATION OF PRE-LITHIATED MONTMORILLONITE". RASAYAN Journal of Chemistry, Special Issue (2022): 167–71. http://dx.doi.org/10.31788/rjc.2022.1558226.
Texto completo da fonteKhramtsov, A. G. "Technological breakthrough of the agrarian-and-food innovations in dairy case for example of universal agricultural raw materials. Ion exchange". Agrarian-And-Food Innovations 16 (29 de dezembro de 2021): 7–19. http://dx.doi.org/10.31208/2618-7353-2021-16-7-19.
Texto completo da fonteUmirova, Nilufar. "Use of glauconite as a non-reagent sorbent for the softening of drinking and boiler waters, industrial waste water". E3S Web of Conferences 216 (2020): 01147. http://dx.doi.org/10.1051/e3sconf/202021601147.
Texto completo da fonteRockley, N. L., e M. G. Rockley. "The FT-IR Analysis by PAS and KBr Pellet of Cation-Exchanged Clay Mineral and Phosphonate Complexes". Applied Spectroscopy 41, n.º 3 (março de 1987): 471–75. http://dx.doi.org/10.1366/0003702874448797.
Texto completo da fontePanikorovskii, Taras L., Victor N. Yakovenchuk, Nataliya Yu Yanicheva, Yakov A. Pakhomovsky, Vladimir V. Shilovskikh, Vladimir N. Bocharov e Sergey V. Krivovichev. "Crystal chemistry of ivanyukite-group minerals, A3–xH1+x[Ti4O4(SiO4)3](H2O)n (A = Na, K, Cu), (n = 6–9, x = 0–2): crystal structures, ion-exchange, chemical evolution". Mineralogical Magazine 85, n.º 4 (7 de junho de 2021): 607–19. http://dx.doi.org/10.1180/mgm.2021.51.
Texto completo da fonteIvanenko, Vladimir I., Roman I. Korneykov e Nikita V. Zharov. "Justification of the prospects of using phosphatotitanium ion exchangers for extracting rare earth metals from solutions of radionuclides". Butlerov Communications 59, n.º 9 (30 de setembro de 2019): 58–65. http://dx.doi.org/10.37952/roi-jbc-01/19-59-9-58.
Texto completo da fonteMohammed, Isah, Dhafer Al Shehri, Mohamed Mahmoud, Muhammad Shahzad Kamal, Olalekan Alade, Muhammad Arif e Shirish Patil. "Effect of Native Reservoir State and Oilfield Operations on Clay Mineral Surface Chemistry". Molecules 27, n.º 5 (7 de março de 2022): 1739. http://dx.doi.org/10.3390/molecules27051739.
Texto completo da fonteKrebs, R., M. Sardin e D. Schweich. "Mineral dissolution, precipitation, and ion exchange in surfactant flooding". AIChE Journal 33, n.º 8 (agosto de 1987): 1371–78. http://dx.doi.org/10.1002/aic.690330814.
Texto completo da fonteMalamis, S., E. Katsou, M. Stylianou, K. J. Haralambous e M. Loizidou. "Copper removal from sludge permeate with ultrafiltration membranes using zeolite, bentonite and vermiculite as adsorbents". Water Science and Technology 61, n.º 3 (1 de fevereiro de 2010): 581–89. http://dx.doi.org/10.2166/wst.2010.859.
Texto completo da fonteMatijasevic, Srdjan, Aleksandra Dakovic, Deana Iles e Sonja Milicevic. "Adsorption of uranyl ion on acid-modified zeolitic mineral clinoptilolite". Chemical Industry 63, n.º 5 (2009): 407–14. http://dx.doi.org/10.2298/hemind0905407m.
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