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  • Ramu G., Mohan G.K., Jayaveera K.N., Dhanapal S.P., Senthilkumar, G., Preliminary phytochemical and antioxidant study of hydroalcoholic extracts from selected genera of Indian Lamiaceae, 2012, Asian Pacific Journal of Tropical Biomedicine 2 (2 SUPPL.) , S685-S688.

    Atanassova M.,Georgieva S., Comparative polyphenol composition and antioxidant capacity of the Bulgarian plants (dry herbs), 2010, Electronic Journal of Environmental, Agricultural and Food Chemistry 9 (9) , 1514-1523.

    Цитирана от:


    1. Gougoulias, N., Comparative study on the antioxidant activity and polyphenol content of some Salvia species (Salvia L.), 2012, Oxidation Communications, 35 (2) , 404-412.

    Lazarova Z., Boyadzhieva S., Treatment of phenol-containing aqueous solutions by membrane-based solvent extraction in coupled ultrafiltration modules, Chemical Engineering Journal, V. 100, issue 1-3,129-138, 2004.



    Цитирана от:

    1. Dastgir M.G., Peeva L.G.,Livingston A.G., Morley T.A., Steinke J.H.G., The synthesis of polypropylene glycol based polyethers and their use in membranes for the membrane aromatic recovery system (MARS), Journal of Membrane Science, 261 (1-2) , 87-97, 2005.

    2. Carmona M., Lucas A.D.,Valverde J.L., Velasco B., Rodríguez J.F., Combined adsorption and ion exchange equilibrium of phenol on Amberlite IRA-420, Chemical Engineering Journal 117 (2) , 155-160, 2006.

    3. Cañizares P., Carmona M., Baraza O., Delgado A., Rodrigo, M.A., Adsorption equilibrium of phenol onto chemically modified activated carbon F400, Journal of Hazardous Materials, 131 (1-3) , 243-248, 2006.

    4. Loss C.F., Azevedo E.B., Dezotti M., Treatment of the butadiene washing stream from a synthetic rubber industry and recovery of p-TBC, Water Science and Technology, 54 (10) ,17-21, 2006.

    5. Jiang H., Guo Q.-X., Comparison of liquid-liquid extraction system and extraction-evaporation system for high concentrations of phenolic wastewater, Journal of Environmental Engineering, 133 (2) , 198-202, 2007.

    6. Correia P.F.M.M., Ferreira L.M., Reis M.T.A., de Carvalho J.M.R., A study on the selective recovery of phenol and formaldehyde from phenolic resin plant effluents by liquid-liquid extraction, Solvent Extraction and Ion Exchange, 25 (4) , 485-501, 2007.

    7. Qiu Y.-R., Rahman N.A.,Matsuyama H., Preparation of hydrophilic poly(vinyl butyral)/Pluronic F127 blend hollow fiber membrane via thermally induced phase separation, Separation and Purification Technology, 61 (1) ,1-8, 2008.

    8. Chaudhary A.J., Grimes S.M., A combined photolytic-electrolytic system for the simultaneous recovery of copper and degradation of phenol or 4-chlorophenol in mixed solutions, Chemosphere 72 (11) , 1636-1642, 2008.

    9. Burghoff B., Goetheer E.L.V., de Haan A.B., Solvent impregnated resins for the removal of low concentration phenol from water, Reactive and Functional Polymers, 8 (9) , 1314-1324, 2008.

    10. Cuypers R., Burghoff B., Marcelis A.T.M.,Sudhölter E.J.R., De Haan A.B., Zuilhof H., Complexation of phenols and thiophenol by phosphine oxides and phosphates. Extraction, isothermal titration calorimetry, and ab initio calculations, Journal of Physical Chemistry A,112 (46) , 11714-11723, 2008.

    11. Mohd Din A.T., Hameed B.H., Ahmad A.L., Batch adsorption of phenol onto physiochemical-activated coconut shell, Journal of Hazardous Materials,161 (2-3) , 1522-1529, 2009.

    12. Shen S.F., Smith K.H., Cook, S., Kentish S.E., Perera J.M., Bowser T., Stevens, G.W. , Phenol recovery with tributyl phosphate in a hollow fiber membrane contactor: Experimental and model analysis, Separation and Purification Technology, 69 (1) , 48-56, 2009.

    13. Lóss C.F., Azevedo E.B., Dezotti, M., Recovery of p-TBC from a butadiene washing stream in a pilot plant, Brazilian Journal of Chemical Engineering, 26 (4) , 635-640, 2009.

    14. Mǎicǎneanu A., Coteţ C. C., Danciu, V., Stanca, M., Iron doped carbon aerogel as catalyst for phenol total oxidation, Studia Universitatis Babes-Bolyai Chemia 3 , 116-125, 2009.

    15. Kurumada K.-I., Kamimura Y., Matsumoto, S., Entrapment of organic liquid species in molecular scale in sol-gel derived silica glass matrix, Advanced Powder Technology, 21 (1) , 23-27, 2010.

    16. Zeng H.-Y., Jiang, H., Xia K., Wang Y.-J., Huang Y., Characterization of phenol degradation by high-efficiency binary mixed culture, Environmental Science and Pollution Research, 17 (5) , 1035-1044, 2010.

    17. Al-Rub F.A.A., Hamdi J., Hamdi N. , Allaboun H., Zarooni M.A., Al-Sharyani M., Adsorption of phenol on different activated carbons prepared from date pits, Separation Science and Technology, 46 (2) , 300-308, 2011.

    18. Mahiudddin Md., Fakhruddin. A. N. M and Abdullah-Al-Mahin, Degradation of Phenol via Meta Cleavage Pathway by Pseudomonas fluorescens PU1, Microbiology, V. 6, 2012.

    19. Chakroun H., Bouaziz M., Dhouib A., Sayadi S., Enzymatic oxidative transformation of phenols by Trametes trogii laccases, Environmental Technology, V.33, Issue 17, 2012.

    20. Hofman M. and Pietrzak R., Nitrogen-doped carbonaceous materials for removal of phenol from aqueous solutions, Scientific World Journal., 297654, 2012.

    21. Dhidan S. K., Removal of phenolic compunds from aqueous solutions by adsoption onto activted carbons prepared from date stones by chemical activation with FeCl3, Journal of Engineering, n. 1, V. 18, 2012.

    Kyuchoukov, G.,Szymanowski, J., Extraction of copper(II) and zinc(II) from chloride media with mixed extractants, Journal of Radioanalytical and Nuclear Chemistry 246 (3) , pp. 675-682, 2000

    Цитирана от:


    1. Zhu, Z., Zhang, W.,Pranolo, Y., Cheng, C.Y., Separation and recovery of copper, nickel, cobalt and zinc in chloride solutions by synergistic solvent extraction, Hydrometallurgy 127-128 , pp. 1-7, 2012

    2. Zhu, Z., Zhang, W.,Cheng, C.Y., A synergistic solvent extraction system for separating copper from iron in high chloride concentration solutions, Hydrometallurgy 113-114 , pp. 155-159, 2012

    G. Kyuchoukov, M.B. Bogacki, J. Szymanowski: Copper extraction from ammoniacal solutions with LIX 84 and LIX 54, Ind. Eng. Chem. Res., 37, 4084-4089, 1998

    Цитирана от:


    1. Hu, J., Chen, Q., Hu, H.,Chen, X., Ma, Q., Yin, Z., Extraction behavior and mechanism of Cu(II) in ammoniacal sulfate solution with β-diketone, Hydrometallurgy 127-128 , pp. 54-61, 2012

    2. Wieszczycka, K.,Kaczerewska, M.,Krupa, M., Parus, A.,Olszanowski, A., Solvent extraction of copper(II) from ammonium chloride and hydrochloric acid solutions with hydrophobic pyridineketoximes, Separation and Purification Technology 95 , pp. 157-164, 2012

    3. Ocio, A., Elizalde, M.P.,Aparicio, J.L., Correlation of the extraction constant values of Zn 2+ and Cd 2+ from phosphoric acid media by bis(2,4,4-trimethylpentyl) dithiophosphinic acid dissolved in toluene, Journal of Solution Chemistry 41 (6) , pp. 994-1007, 2012

    4. Gusev, V.Yu.,Radushev, A.V.,Muksinova, D.A.,Vaulina, V.N., Extraction of copper(II) with N-(para-tert-butylbenzoyl)-N',N'- dialkylhydrazines, Russian Journal of Inorganic Chemistry 57 (5) , pp. 738-743, 2012

    Kyuchoukov, G., Mishonov, I., “New extraction mixture for recovery of copper from hydrochloric etching solution” Solvent Extraction and Ion Exchange, 11(4), pp. 555-567, 1993

    Цитирана от:


    1. Wieszczycka, K.,Kaczerewska, M.,Krupa, M., Parus, A.,Olszanowski, A., Solvent extraction of copper(II) from ammonium chloride and hydrochloric acid solutions with hydrophobic pyridineketoximes, Separation and Purification Technology, 95 , pp. 157-164, 2012

    Mishonov, I.,Kyuchoukov, G., Separation of copper and zinc during their transfer from hydrochloric acid to sulphuric acid medium using a mixed extractant, Hydrometallurgy 41 (1), pp. 89-98, 1996

    Цитирана от:


    1. Hu, J.-G., Chen, Q.-Y.,Hu, H.-P., Yin, Z.-L., Synergistic extraction of zinc from ammoniacal solutions using β-diketone mixed with CYANEX923 or LIX84I, Transactions of Nonferrous Metals Society of China (English Edition) 22 (5) , pp. 1217-1223, 2012

    Kyuchoukov, G.,Mihaylov, Y., A novel method for recovery of copper from hydrochloric acid solutions, Hydrometallurgy 27 (3) , pp. 361-369, 1991

    Цитирана от:


    1. Wieszczycka, K.,Kaczerewska, M.,Krupa, M., Parus, A.,Olszanowski, A., Solvent extraction of copper(II) from ammonium chloride and hydrochloric acid solutions with hydrophobic pyridineketoximes, Separation and Purification Technology, 95 , pp. 157-164, 2012

    Labbaci, A.,Kyuchoukov, G., Albet, J., Molinier, J., Detailed investigation of lactic acid extraction with tributylphosphate dissolved in dodecane, Journal of Chemical and Engineering Data 55 (1) , pp. 228-233, 2010

    Цитирана от:


    1. Oliveira, F.S., Araújo, J.M.M., Ferreira, R.,Rebelo, L.P.N.,Marrucho, I.M., Extraction of l-lactic, l-malic, and succinic acids using phosphonium-based ionic liquids, Separation and Purification Technology, 85 , pp. 137-146, 2012

    Kyuchoukov, G.,Morales, A.F., Albet, J.,Malmary, G., Molinier, J., On the possibility of predicting the extraction of dicarboxylic acids with tributylphosphate dissolved in a diluent, Journal of Chemical and Engineering Data 53 (3) , pp. 639-647, 2008

    Цитирана от:


    1. Oliveira, F.S., Araújo, J.M.M., Ferreira, R.,Rebelo, L.P.N.,Marrucho, I.M., Extraction of l-lactic, l-malic, and succinic acids using phosphonium-based ionic liquids, Separation and Purification Technology, 85 , pp. 137-146, 2012

    Morales, A.F., Albet, J.,Kyuchoukov, G.,Malmary, G., Molinier, J., Influence of extractant (TBP and TOA), diluent, and modifier on extraction equilibrium of monocarboxylic acids, Journal of Chemical and Engineering Data 48 (4) , pp. 874-886, 2003

    Цитирана от:


    1. Jongmans, M.T.G., Londoño, A., Mamilla, S.B., Pragt, H.J.,Aaldering, K.T.J.,Bargeman, G.,Nieuwhof, M.R., De Haan, A.B., Extractant screening for the separation of dichloroacetic acid from monochloroacetic acid by extractive distillation, Separation and Purification Technology, 98 , pp. 206-215, 2012

    2. Mcpartland, T.J., Patil, R.A., Malone, M.F.,Roberts, S.C., Liquid-liquid extraction for recovery of paclitaxel from plant cell culture: Solvent evaluation and use of extractants for partitioning and selectivity, Biotechnology Progress, 28 (4) , pp. 990-997, 2012

    Marinova, M., Albet, J.,Molinier, J.,Kyuchoukov, G., Specific influence of the modifier (1-Decanol) on the extraction of tartaric acid by different extractants, Industrial and Engineering Chemistry Research 44 (17) , pp. 6534-6538, 2005

    Цитирана от:


    1. Uslu, H., Distribution of gibberellic acid from the aqueous phase to the organic phase, Journal of Chemical and Engineering Data 57 (3) , pp. 902-906, 2012

    Marinova, M., Kyuchoukov, G., Albet, J., Molinier, J., Malmary, G., Separation of tartaric and lactic acids by means of solvent extraction, Separation and Purification Technology, 37 (3) , pp. 199-207, 2004

    Цитирана от:


    1. Cheng, G., Zhao, Y.,Wang, Q., Separations of ammonium lactate from lactic salts by Electrodialysis, Advanced Materials Research 550-553 , pp. 2051-2054, 2012

    2. Yi, H., Yi, L., He, R., Lv, Q., Ren, X., Zhang, Z.,Liang, Y., He, J., Dynamic Metabolic Profiling of Urine From Type 2 Diabetic KK-Ay Mice Treated with Repaglinide by GC-MS, Analytical Letters 45 (13) , pp. 1862-1874, 2012

    3. Wang, Q., Liu, J., Jiang, L., Extraction of 2-chloroethanol from aqueous solutions by trioctylamine, Journal of Industrial and Engineering Chemistry, 18 (4) , pp. 1267-1271, 2012

    4. Wang, Q., Jiang, L., Ni, F., Wang, T., The separation and concentration of titanium(IV) from sulfuric acid solution with trioctylamine, Industrial and Engineering Chemistry Research 51 (8) , pp. 3430-3435, 2012

    Kyuchoukov, G.,Marinova, M., Albet, J.,Molinier, J., New Method for the Extraction of Lactic Acid by Means of a Modified Extractant (Aliquat 336), Industrial and Engineering Chemistry Research 43 (5) , pp. 1179-1184, 2004

    Цитирана от:


    1. Zakhodyaeva, Yu.A.,Voshkin, A.A., Belova, V.V., Khol'kin, A.I., Extraction of monocarboxylic acids by trioctylmethylammonium di(2-ethylhexyl)phosphate, Theoretical Foundations of Chemical Engineering46 (4) , pp. 413-418, 2012

    2. Patra, A., Mahapatra, T., Synthesis of dihydropyrano[c]chromenes from hydroxycoumarins using Aliquat®336 catalysed condensation in aqueous medium, Journal of the Indian Chemical Society 89 (7) , pp. 925-932, 2012

    3. Matsumoto, M.,Murakami, Y.,Minamidate, Y., Kondo, K., Separation of Lactic Acid through Polymer Inclusion Membranes Containing Ionic Liquids, Separation Science and Technology 47 (2) , pp. 354-359, 2012

    Kyuchoukov, G.,Marinova, M., Molinier, J., Albet, J., Malmary, G., Extraction of lactic acid by means of a mixed extractant, Industrial and Engineering Chemistry Research 40 (23) , pp. 5635-5639, 2001

    Цитирана от:


    1. Elmoudir, W., Supap, T., Saiwan, C., Idem, R.,Tontiwachwuthikul, P., Part 6: Solvent recycling and reclaiming issues, Carbon Management, 3 (5) , pp. 485-509, 2012

    2. Chen, L., Zeng, A.,Dong, H., Li, Q., Niu, C., A novel process for recovery and refining of l-lactic acid from fermentation broth, Bioresource Technology, 112 , pp. 280-284, 2012

    3. 1Inci, I., Aşçi, Y.S., Uslu, H., LSER modeling of extraction of succinic acid by tridodecylamine dissolved in 2-octanone and 1-octanol, Journal of Industrial and Engineering Chemistry, 18 (1) , pp. 152-159, 2012

    D. Yankov, J. Molinier, J. Albet, G. Malmary, G. Kyuchoukov, “Lactic acid extraction from aqueous solutions with tri-n-octylamine dissolved in decanol and dodecane”, Biochem. Engn. J., 2004, 21, 63-71

    Цитирана от:


    1. D. Li, X. Zhou, Zh. Chang, Y. Guo, "Extraction Equilibria of 4-Hydroxypyridine using Di (2-ethylhexyl) Phosphoric Acid", Separation Science and Technology, 2012, 47, 2424–2429 Luciana de Souza Moraes, “Extraçao Liquido-Liquido de acido succinico usando contactores com membranmas de fibra oca”, MSc Thesis, 2011, Universidade General do Rio de Janeiro, p.14

    2. S. Kumar, D. Datta, B. V. Babu, “Reactive Extraction of Nicotinic Acid Using Tri-n-Octylphosphine Oxide (TOPO) Dissolved in a Binary Diluent Mixture”, 2012, AIChE Annual meeting, paper 286471

    3. Bin Xu, “Study on the purification process for lactic acid by esterification”, MSc Thesis, Hefei University of Technology, 2006, p. 4

    4. Xiaolin Pei, “Breeding of L-lactic acid high-producing strain by genome-shuffling and research on the ferment technology”, Jilin University, Master Thesis, 2007, p. 49

    5. Заходяева, Ю. А., “Экстракция монокарбоновых кислот в системах с бинарными экстрагентами”, Диссертация кхн, ИОНХ-РАН, 2011

    6. Yu Lei, “Molecular breeding of Lactobacillus rhamnosus by genome shuffling and l-lactic acid fermentation”, 2007, PhD Thesis, Jilin University, p. 31

    7. Antoine Bouchoux, “Еtude de la nanofiltration pour son integration dans les procedes de production d’acides organiques”, These de doctorat de L'Uiniversite Paul Sabatier, Toulousе, 2004, р. 7

    8. Yu. A. Zakhodyaeva, A. A. Voshkin, V. V. Belova, and A. I. Kholkin, “Extraction of Monocarboxylic Acids by Trioctylmethylammonium Di(2-ethylhexyl)phosphate”, Theoretical Foundations of Chemical Engineering, 2012, 46, 4, 413–418.

    9. Hsiu-Wen Hou “Investigation of using tri-octylamine for lactic acid extraction in batch type fermentation system”, MSc Thesis, 2012, National Chung Hsing University,

    10. Xiaonan Li, “Mixing and in situ Product Removal in Micro-bioreactors”, PhD Thesis, 2009, Delft University, pp. 134, 140

    11. J. Zhou, W. Bi, and K. H. Row, ”Extraction and separation of D/L-lactic acid in simulated fermentation broth”, Journal of the Indian Chemical Society, 2012, 89(5), 631-636

    12. Elmoudir W., Supap T., Saiwan C., Idem R., Tontiwachwuthikul, P., "Solvent recycling and reclaiming issues", Carbon Management, 2012, 3(5), 485-509

    13. Meath, "Study on Extraction Process Optimization of L (+)-tartaric Acid and L (+)-lactic Acid from Wild Vitis Quinquangvlanis Rehd. Lees", MSc thesis, 2012, Northwest Agriculture and Forestry University of Science and Technology,

    D.Yankov, J. Molinier, G. Kyuchoukov, J. Albet, G. Malmary,

    “Improvement of the lactic acid extraction. Extraction from aqueous solutions and simulated fermentation broth by means of mixed extractant and TOA, partially loaded with HCl”. Chem Biochem. Eng. Q., 2005, 19(1), 17-24
    Цитирана от:


    1. H. Lateef, A. Gooding, S. Grimes, “Use of 1-hexyl-3-methylimidazolium bromide ionic liquid in the recovery of lactic acid from wine”, Journal of Chemical Technology and Biotechnology, 2012, 87, 1066–1073

    2. D. Li, X. Zhou, Zh. Chang, Y. Guo, " Extraction Equilibria of 4-Hydroxypyridine using Di (2-ethylhexyl) Phosphoric Acid", Separation Science and Technology, 2012, 47, 2424–2429

    G. Kyuchoukov, D. Yankov, J. Albet, J. Molinier, “On the mechanism of lactic acid extraction with quaternary ammonium chloride (Aliquat 336)”, Ind. & Eng. Chem. Res. 2005, 44, 5733-5739


    Цитирана от:

    1. Hasan Uslu, “Distribution of Gibberellic Acid from the Aqueous Phase to the Organic Phase”, J. Chem. Eng. Data, 2012, 57 (3), 902–906

    2. А. Hadj Seyd, , T. Lanez, “Contribution a l’elaboration d’ún logiciel de simulation du rendement et du taux de partage dans une extraction liquid-liquide”, Rev. sci. fond. app., 2011, 3 (2), 44-56

    3. L. Chen, A. Zeng, H. Dong, Q. Li, C. Niu, “A Novel Process for Recovery and Refining of L-lactic acid from Fermentation Broth”, Bioresource Technology, 2012, 112, 280-284

    4. Заходяева, Ю. А., “Экстракция монокарбоновых кислот в системах с бинарными экстрагентами”, Диссертация кхн, ИОНХ-РАН, 2011

    5. Seyd, A.H., Lanez, T., Belfar, M.L., “Modelling of yield and distribution coefficient in a liquid-liquid extraction: Effect of the concentration of ligand”, Asian Journal of Chemistry, 2012, 24(10), 4511-4516

    6. Yu. A. Zakhodyaeva, A. A. Voshkin, V. V. Belova, and A. I. Kholkin, “Extraction of Monocarboxylic Acids by Trioctylmethylammonium Di(2_ethylhexyl)phosphate”, Theoretical Foundations of Chemical Engineering, 2012, 46, 4, 413–418.

    G. Kyuchoukov, D. Yankov, "Theoretical and experimental study of lactic acid stripping from loaded organic phase", Ind. & Eng. Chem. Res. 2010, 49, 8238–8243

    Цитирана от:


    1. Issues in Chemical Engineering and other Chemistry Specialties, 2012, ScholarlyEditions, Q. Ashton Acton Editor, p. 461

    Bogacki, M.B., Zhivkova, S., Kyuchoukov, G., Szymanowski, J., Modeling of copper(II) and zinc(II) extraction from chloride media with KELEX 100. Ind. Eng. Chem. Res. 39, 740–745, 2000

    Цитирана от:


    1. Li, X., Li, B., Wu, S., Li, J., Xu, Q., Yang, Z., Liu, Y., Chen, D., Silica-based 2-aminomethylpyridine functionalized adsorbent for hydrometallurgical extraction of low-grade copper ore, Industrial and Engineering Chemistry Research 51 (46) , 15224-15232, (2012)

    G. Kyuchoukov, S. Zhivkova, A. Borowiak-Resterna, J. Szymanowski, Separation of copper(II) and zinc(II) from chloride solutions with alkyl-8-hydroxyquinoline in various stages of extraction striping process, Ind. Eng. Chem. Res., 39, 3896-3900, 2000

    Цитирана от:


    1. Li, X., Li, B., Wu, S., Li, J., Xu, Q., Yang, Z., Liu, Y., Chen, D., Silica-based 2-aminomethylpyridine functionalized adsorbent for hydrometallurgical extraction of low-grade copper ore, Industrial and Engineering Chemistry Research 51 (46) , 15224-15232, (2012)

    2. Zhu, Z., Zhang, W.,Pranolo, Y., Cheng, C.Y., Separation and recovery of copper, nickel, cobalt and zinc in chloride solutions by synergistic solvent extraction, Hydrometallurgy 127-128, 1-7 (2012)

    3. Zhu, Z., Zhang, W.,Cheng, C.Y., A synergistic solvent extraction system for separating copper from iron in high chloride concentration solutions, Hydrometallurgy 113-114 , 155-159, (2012)

    D. M. Atanassova, S. Zhivkova, A. Lirkov "Solvent Extraction of Lanthanoid(III) ions with ternary mixtures of 4-benzoyl-3-methyl-1-phenyl-2-pyrazolin-5-one,1-(2-thienyl)-4,4,4-trifluoro-1,3-butanedioneand the quaternary ammonium salt Aliquat 336”, Journal of the University of Chemical Technology and Metallurgy, 41 (1), 75-80, 2006

    Цитирана от:


    1. Alaa F. H., Muneer A. A., Raghad S. H., Study of Liquid – Liquid Extraction of Neodymium (III) by derivative of amino acid N-Acetylcysteine(NAC), Journal of Kerbala University, 10 (1), (2012)

    Angelov, G., Journe, E., Line, A., Gourdon, C., Simulation of the flow patterns in a disc and doughnut column, The Chemical Engineering Journal, 45 (2), pp. 87-97, (1990).

    Цитирана от:


    1. Torab-Mostaedi M; Ghaemi A; Asadollahzadeh M., Prediction of mass transfer coefficients in a pulsed disc and doughnut extraction column, Can. Journ. of chem. eng., 90 (6):1570-1578 (2012).

    Angelov, G., Gourdon, C., Liné, A., Simulation of flow hydrodynamics in a pulsed solvent extraction column under turbulent regimes, Chemical Engineering Journal, 71 (1), pp. 1-9 (1998).

    Цитирана от:


    1. Charton, S; Duhamet, J; Borda, G; Ode, D, Axial dispersion in pulsed disk and doughnut columns: a unified law, Chem. Eng. Sci., 75, 468-477 (2012).

    2. Torab-Mostaedi M; Ghaemi A; Asadollahzadeh M., Prediction of mass transfer coefficients in a pulsed disc and doughnut extraction column, Can. Journ. of chem. eng., 90 (6):1570-1578 (2012).

    Prat, L., Wongkittipong, R., Angelov, G., Gourdon, C., Damronglerd, S., Fast batch to continuous transposition: Application to the extraction of andrographolide from plants, Chemical Engineering and Technology, 29 (3), 401-407 (2006).

    Цитирана от:


    1. Trivedi P., Singh R.; Shanker K., Micellar extraction and cloud-point preconcentration of labdane diterpenoids from andrographis paniculata, Journal of liquid chromatography & related technologies,


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