И з в л е ч е н и е 2010 г. Директор: (проф дтн В. Бешков)



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цитирана статия :

Boyadzhiev L., Kyuchoukov G., “Further development of carrier-mediated extraction “ Journ. of Membrane Sci., 6, 107-112 ( 1980 ).

цитирана от:


  1. M. Hor , A. Riad , A. Benjjar , L. Lebrun b, M. Hlaïbi. Technique of supported liquid membranes (SLMs) for the facilitated transport of vanadium ions (VO2+). Parameters and mechanism on the transport process. Desalination 255 (2010) 188–195.


цитирана статия :

Boyadzhiev L., Lazarova Z., Bezenshek E.: Mass transfer in three-liquide-phase systems. poster-paper, Inter.Conf.ISEC 83, Denver, Colorado, Aug. (1983).

Цитирана в:,


  1. Zhang W, C.Cui, Ren Z.., Y. Dai, H.Meng, Simultaneous removal and recovery of copper (2) from acidic wastewater by hollow fiber renewal liquid membrane with LIX 984N as carrier, Chem.Engng.J., 157, 230 (2010)


цитирана статия :

Boyadzhiev L., Z.Lazarova, "Study on creeping film pertraction. Recovery of copper from diluted aqueous solution", Chem. Eng.Sci., 42, 1131-1135 (1987).

Цитирана в:


  1. Hanzah B., Jalaludin N. et al, Copper II extraction from nitric acid solution with 1-phenyl-3-methyl-4-benzoyl-5-pyrazolone as a cation carrier by liquid membrane emulsion, e-Journal of chemistry, 7, 239 (2010)


цитиран труд :

Boyadzhiev L., Z.Lazarova, "Liquid Membranes" in "Handbook of Membrane Separations" (Eds.R.Noble and A.Stern), Marcel Dekker Pbl., New York, (1995)



Цитирано в:

  1. Irfan M., M. Seyler, Encapsulation using hyperbranched polymers: From reseach and technology to emerging applications, Ind.Eng.Chem.Research,49, 1169 (2010)

  2. Raszkowska-Kaczor A., Adamczak P., Wodski R., Hybrid rotating pertractor for Zinc-II recovery and separation, Desalination, 257, 66, (2010)

  3. Bartsch R, J.Way, Chemical separations with liquid membranes, book , ACS Sympòsium Series, v.642 Boca Raton Fl. (1996)

  4. Rautenbach R., Membranverfahren: Grundlagen der Modul- und Anlagenauslegung, p. 67, Springer, Berlin (2007)

  5. Wannachod P., S. Chaturabul et al., The efective recovery of praseodymium from mixed rare earhs via a hollow fiber supported liquid membrane and its mass transfer related, J. of alloys and compounds, 509, 354 (2011)

  6. Chtioui O., K.Dimitrov, F.Gancer, I. Nikov, Biosurfactants production by immobilized cells of bacillus subtilis ATCC21332 and their recovery by pertraction, Process Biochemistry,45, 1795 (2010)

  7. Panja S., P. Mohapatra, et al., Controlled pertraction of plutonium III under reduced conditions from acidic feeds using TOGDA as the carrier extraction,Separ.Sci.Technol., 46, 94 (2011)

  8. Vangeli O., G.Romanos et al., Development and characterization of chemically stabilized ionic liquid membranes Part I Nanoporous ceramic supports, 365, 366 (2010)

  9. Chowta S., P.Mohapatra et al. Recovery and pre-concentration of americium III from dilute acidic solutions using an emulsion liquid membrane containing di-2-ethylhexyl phosphoric acid D2EHPA as extractant. J. Radioanal.Nucl. Chem., 285, 309 (2010)

  10. Manchanda V., P. Pathak, P. Mohapatra, Ch.2 New developments in Thorium, Uranium and Plutonium extraction, in: Advances of Ion exchage and solvent extraction, p.66, CRC Press , Boca Raton (2009)(

  11. Dimitrov K., L.Gancel, P.Montatruc,P.Dhuster, I. Nikov, Liquid membrane extraction of lipopeptides, Proceed.25 Symp. Ars Separatoria, p. 62, Torun (2008)

  12. Altin S., The effect of temperature on Na ion treatement in bulk liquid membrane systems , Proceed. 2nd Colloque International sur l’éau et l’environement, p. 224, Sidi Fredj (2007)

  13. Shamsipur M., R. Davarkhan, A. Khanchi, Facilitated transport of uranium VI across a bulk liquid membran containing thenoylfluoroacetone in the presence of crown ethers as synergitic agents, Separ.Purif.Technology, 71, 63 (2010)

  14. Raszkowska A., R. Wodski, Rotating hybrid pertractor, Proceed. 25th Intern Symp., Ars Simposium, p.269 , Torun (2008)

  15. Panja S., P.Mohapatra et al Transport of torium IV across a supported liquid membrane containing N-N-N-N-tetraocthyl-3-oxapentanediamine TODGA as the extractant, Separ.Sci.Tehnology, 45, 1112 (2010)

  16. Kloetzer L., A. Galaction, D. Cascaval, Facilitated pertraction of p-Aminobenzoic acid with Amberlite LA-2 in presence of 1-octanol, Separ.Sci.and technology, 45, 1440 (2010)

  17. Altin S., Y. Yildrim, A.Altin, Transport of silver ions throuh a flat-sheet supported liquid membrane, Hydrometallurgy, 103, 144 (2010)

  18. Chtioui O., K.Dimitrov, F.Gancer, I. Nikov, Biosurfactants production by immobilized cells of bacillus subtilis ATCC21332 and their recovery by pertraction, Proceedinds of ISV Global Congress, p. 145,45, Viena, Oct (2010)

  19. Dinkar A., P. Mohapatra, Transport of Americium III across SLM containing CMPO as the carrier extractant, Desalination and Water Treatement, 12,73 (2009)

  20. Reddy T., J. Ramkumar et al., Selective transport of copper across a bulk liquid membrane using 8-hydroxy quinoline as carier, J.Mebr.Sci., 351, 11 (2010)


цитирана статия :

Boyadzhiev L., T.Sapundziev, E.Besenshek, Modelling of carrier-media- ted extraction", Separation Science,12,541,(1977).

Цитирана в



  1. Bakhieonsu Y., J. Hyeong, Aekmak separated by law. Purification tehnology, Korean Chem. Enging., N 203, 171 (1982)

  2. Irfan M., M. Seyler, Encapsulation using hyperbranched polymers: From reseach and technology to emerging applications, Ind.Eng.Chem.Research,49, 1169 (2010)


цитирана статия :

Boyadzhiev L., B. Yordanov, " Pertraction of indol alkaloids from Vinca minor L.", Separ. Sci. and Technol., 39, 1321 (2004)

Цитирано в:



  1. Rauf Fard R., A.Moeni, R. Omidbaigi, Effect of different concentrations of alfa-naphtalenacetic acid and 6-benzylaminopurine, J. Agricultural science and technology,10,337 (2008)

  2. Ouyang L., X.Su, et al., A study on separation and extraction of four main alkaloids in macleaya cordata (willd) R.Br. withstrip dispersion hybrid liquid membrane, 33, 2026 (2010)


цитирана статия :

Бояджиев Л., Д.Хаджиев, "Екстракция на метални катиони от водни разтвори с помощта на процеса "КОМЕКС", Химия и индустрия, 49,404-407 (1981).

Цитирана в:



  1. Gaiqwad R., Review and research needs for active treatement of acid mine drainage by ion exchange, E.J. of Envir., Agricultural an food Chem., 9, 1343 (2010)


цитирана статия :

Brauner N., Stateva R. P., Cholakov G. S. and Shacham M.: “Structurally Targeted. Quantitative Structure-Property Relationship Method for Property Prediction”. Ind. Eng. Chem. Res., 45, 8430–8437 (2006).

цитирана от:


  1. Hechinger, M., W. Marquardt: “Targeted QSPR for the Prediction of the Laminar Burning Velocity of Biofuels”. Comp.& Chem. Eng. 34 (9), 1507-1514 (2010).

  2. Hechinger, M., A. Voll, W. Marquardt: “Towards an integrated design of biofuels and their production pathways”. Computers and Chemical Engineering 34, 1909-1918 (2010).


цитирана статия :

Brauner N, G.St. Cholakov, O. Kahrs, R.P. Stateva, and M. Shacham: “Linear QSPRs for predicting pure compound properties in homologous series”. AIChE J. 54, 978-990 (2008).

цитирана от:


  1. Pan, Y., J. Jiang, X. Ding, R. Wang, J. Jiang: “Prediction of flammability characteristics of pure hydrocarbons from molecular structures”. AIChE J. 56 (3) 690-701 (2010).


Цитирана статия:

Burhan N., Ts. Sapundzhiev, V. Beschkov, Mathematical modeling of cyclodextrin-glucano-transferase production by batch cultivation, Biochemical Engineering Journal, 24, 73-77 (2005).

цитирана от:


  1. Wen-Hung Huang, Modeling and Optimization of Fermentation Processes for Yeast Using a Mixture of Sugars to Produce Ethanol, PhD Thesis, Graduate Institute of Chemical Engineering, Taiwan, 2010.


цитирана статия :

Casammatta G., L.Boyadzhiev, H.Angelino, "Du role des agents tensio-actifs dans la separation des melanges par un procede a trois phases liquides", Chem.Eng.Sci., 29, 2005-2008 (1974).

Цитирана в



  1. Bakhieonsu Y., J. Hyeong, Aekmak separated by law. Purification tehnology, Korean Chem. Enging., N 203, 171 (1982)


цитирана статия :

Cháfer, A., T. Fornari, R.P. Stateva, A. Berna and J. García-Reverter: “On the Solubility of the Natural Antioxidant Gallic Acid in Supercritical CO2 + Ethanol as a co-Solvent”, J. Chem. & Eng. Data, 52 (1), 116-121 (2007).

цитирана от:


  1. Pereira, C.E., M.A.A. Meireles: “Supercritical Fluid Extraction of Bioactive Compounds: Fundamentals, Applications and Economic Perspectives”. Food Bioprocess Technol 3, 340–372 (2010).


цитирана статия :

Chafer, A., T. Fornari, A. Berna, R.P. Stateva: “Solubility of Quercetin in Supercritical CO2+Ethanol as a modifier: Measurements and Thermodynamic Modelling”, J. Supercritical Fluids, 32, 89–96 (2004).

цитирана от:


  1. Z.P. Méndez: “Desarrollo de nuevos métodos de extracción para el análisis de compuestos de interés enológico”, PhD Thesis, Departamento de Química Analítica de la Universidad de Cádiz, Spain (2005).

  2. Benjapol Kongsombut, Atsushi Tsutsumi, Nara Suankaew and Tawatchai Charinpanitkul: “Encapsulation of SiO2 and TiO2 Fine Powders with Poly(dl-lactic-co-glycolic acid) by Rapid Expansion of Supercritical CO2 Incorporated with Ethanol Cosolvent”. Ind. Eng. Chem. Res. 48 (24), 11230–11235 (2009).

  3. R. Dohrn, S. Peper, J.M.S. Fonseca, High-Pressure Fluid-Phase Equilibria: Experimental Methods and Systems Investigated (2000-2004), Fluid Phase Equilibria 288 (1-2), 1-54 (2010)

  4. Camila G. Pereira and M. Angela A. Meireles: “Supercritical Fluid Extraction of Bioactive Compounds: Fundamentals, Applications and Economic Perspectives”. Food & Bioprocess Technol 3, 340–372 (2010).

  5. Keerthi Srinivas and Jerry W. King: “Chapter 3: Supercritical Carbon Dioxide and Subcritical Water: Complementary Agents in the Processing of Functional Foods”, pp 39-78 in “Functional Food Product Development”. Editor(s): Jim Smith, Edward Charter Blackwell Publishing Ltd (2010).

  6. G.A. Nunez, J.M. del Valle, and Juan C. de la Fuente: “Solubilities in Supercritical Carbon Dioxide of (2E,6E)-3,7,11-Trimethyldodeca-2,6,10-trien-1-ol (Farnesol) and (2S)-5,7-Dihydroxy-2-(4-hydroxyphenyl)chroman-4-one (Naringenin)”. J. Chem. Eng. Data 55 (9) 3863–3868 (2010).

  7. M. Sato, K. Takeda, M. Ota, Y. Sato and H. Inomata: “Solubility Estimation of High-value Natural Products in Supercritical CO2 Based on Solubility Parameter”, Kagaku Kogaku Ronbunshu, Vol. 36, pp.466-471 (2010).

  8. Thais M. Takeuchi, M. Laura Rubano and M. Angela A. Meireles: "Characterization and Functional Properties of Macela (Achyrocline satureioides) Extracts Obtained by Supercritical Fluid Extraction Using Mixtures of CO2 Plus Ethanol", Food and Bioprocess Technology, 3, 804-812 (2010).

  9. Ana Teresa Serra, Inês J. Seabra, Mara E.M. Braga, M.R. Bronze, Hermínio C. de Sousa, Catarina M.M. Duarte: “Processing cherries (Prunus avium) using supercritical fluid technology. Part1: Recovery of extract fractions rich in bioactive compounds”. J.Supercrit. Fluids 55, 184–191 (2010).

  10. Ana M.A. Diaso, Inês J. Seabra, Mara M. E. Braga, M. Helena Gil, Hermínio C. de Sousa: “Supercritical solvent impregnation of natural bioactive compounds in N-carboxybutyl chitosan membranes for the development of topical wound healing applications”. Journal of Controlled Release 148, e21–e56 (2010).


цитирана статия :

Cholakov GS, RP Stateva, M. Shacham and N. Brauner: “Prediction of properties in homologous series with a shortcut QS2PR method”, AIChE J, 53:150 –159 (2007).

цитирана от:


  1. Pan, Y., J. Jiang, X. Ding, R. Wang, J. Jiang: “Prediction of flammability characteristics of pure hydrocarbons from molecular structures”. AIChE J., 56 (3) 690-701 (2010).


цитирана статия :

Cholakov, G.St., W.A. Wakeham, R.P. Stateva: “Estimation of normal boiling points of hydrocarbons from descriptors of molecular structure”. Fluid Phase Equilibria, 163, 21 (1999).

цитирана от:


  1. Fernando Óscar Montañés Salcedo: “Aplicación de la tecnología de fluidos supercríticos a la purificación de carbohidratos prebióticos”, PhD Thesis, Universidad Autónoma De Madrid Facultad De Ciencias, Departamento De Química-Física Aplicada, Madrid, Spain (2009).


цитирана статия :

Cholakov, G.St., R.P. Stateva, N. Brauner, and M. Shacham: “Estimation of Properties of Homologous Series with Targeted Quantitative Structure Property Relationships”. J. Chem. Eng. Data, 53, 2510-2520 (2008).



  1. Hechinger, M., W. Marquardt: “Targeted QSPR for the Prediction of the Laminar Burning Velocity of Biofuels”. Comp.& Chem. Eng. 34 (9), 1507-1514 (2010).


цитирана статия :

Coelho, J.P., K. Bernotaityte, M.A. Miraldes, A.F. Mendonsa, and R.P. Stateva: “Solubility of Ethanamide and 2-Propenamide in Supercritical Carbon Dioxide. Measurements and Correlation”. J. Chem. Eng. Data , 54 (9), 2546–2549 (2009).

цитирана от:


  1. Mota, F.L., A.J. Queimada, S.P. Pinho, E.A. Macedo: “Water Solubility of Drug-Like Molecules with the Cubic-Plus-Association Equation of State”. Fluid Phase Equil. 298, 75-82 (2010).


Цитирана статия:

Danova Svetla, Kaloyan Petrov, Plamen Pavlov and Penka Petrova “Isolation and characterization of Lactobacillus strains involved in koumiss fermentation” International Journal of Dairy Technology, vol. 58 (2), (2005) 100-105. (ISSN 1364-727X)

Цитиращи статии:



  1. H. Wang, C. Dong, Y. Chen, L. Cui and H. Zhang “A New Probiotic Cheddar Cheese with High ACE-Inhibitory Activity and g-Aminobutyric Acid Content Produced with Koumiss-Derived Lactobacillus casei Zhang” Food Technology and Biotechnology, vol. 48 (1), (2010) 62-70. (ISSN 1330-9862)

  2. S. Todorov and B. Franco “Lactobacillus plantarum: Characterization of the Species and Application in Food Production” Food Reviews International, vol. 26 (3), (2010) 205-229. (ISSN 8755-9129)

  3. Z. Sun, W. Liu, J. Zhang, J.Yu, W. Gao, M. Jiri, B. Menghe, T. Sun and H. Zhang “Identification and Characterization of the Dominant Lactic acid Bacteria Isolated from Traditional Fermented Milk in Mongolia” Folia Microbiology, vol. 55 (3), (2010) 270-276. (ISSN 0015-5632)

  4. Z. Sun, W. Liu, J. Zhang, J.Yu, W. Zhang, C. Cai, B. Menghe, T. Sun and H. Zhang “Identification and characterization of the dominant lactobacilli isolated from koumiss in China” The Journal of General and Applied Microbiology, vol. 56 (3), (2010) 257-265. (ISSN 0022-1260)


Цитирана статия:

Daraktchiev R., N. Kolev, V. Beschkov, T. Aleksandrova, A new bioreactor with a semi-fixed packing: investigation of degradation of phenol, Bioprocess Engineering, 16, 5-7 (1996).

цитирана от:


  1. Chandana Lakshmi, M.V.V. Sridevi, V., A review on biodegradation of phenol from industrial effluents, Journal of Industrial Pollution Control, Volume 25, Issue 1, 2009, Pages 13-27.


Цитирана статия:

Daraktchiev R., V. Beschkov, N. Kolev, T. Aleksandrova, Bioreactor with a semi-fixed packing: anaerobic lactose to lactic acid fermentation, Bioprocess Engineering, 16, 115 (1997).

цитирана от:


  1. S.F. Dagher, Al.L. Ragout, F. Siñeriz and J.M. Bruno-Bárcena, Cell Immobilization for Production of Lactic Acid: Biofilms Do It Naturally, Advances in Applied Microbiology, Volume 71, 2010, Pages 113-148.

  2. J.J.G. Rodrigues, Studies on biofilm growth, attachment and biokinetic performance in biofilters packed with macroporous media, PhD Thesis, University of Cincinnati, 2007, p. 5


цитирана статия :

Darakchiev, R., T. Petrova, S. Darakchiev : Gas distribution in columns with packing Raschig Super – Ring, Chemical Engineering and Processing, 44, 827 – 833 (2005).

цитирана от:


  1. Zeng Jiang Tao, Dry Aihua, Ma Shuangyu : Double row vane of gas distributor Study on Two-Line Vane Gas Distributor, Petrochemical design, 26(4), pp. 16-18,(2009).

  2. Kr. Semkov, Evaluation of the Influence of the Vapor Phase Smallscale Maldistribution on the Efficiency of Distillation Packed Columns using a Stochastic Parallel Model, 20th European Symposium on Computer Aided Process Engineering (ESCAPE 20), 6-9 June, Ischia, Italy, S. Pierucci and G. Buzzi (Editors), Computer Aided Chemical Engineering, 28, ELSEVIER, 1441-1446 (2010). ISBN 978-0-444-53718-8.

  3. Xu-Guang Li, Yu Bin, Li Xuguang,YU Bin : Dual vane gas distributor CFD simulation of flow field in two-line vane gas distributor, Chemical industry and engineering progress, 26 (z1), 2007.


цитирана статия :

Darakchiev, S., T. Petrova, R. Darakchiev : Gas distribution in packed-bed columns with IMTP and Ralu - flow, Chemical and Biochemical Engineering Quarterly, 19 (2), 147 – 152 (2005).

цитирана от:


  1. Kr. Semkov, Evaluation of the Influence of the Vapor Phase Smallscale Maldistribution on the Efficiency of Distillation Packed Columns using a Stochastic Parallel Model, 20th European Symposium on Computer Aided Process Engineering (ESCAPE 20), 6-9 June, Ischia, Italy, S. Pierucci and G. Buzzi (Editors), Computer Aided Chemical Engineering, 28, ELSEVIER, 1441-1446 (2010). ISBN 978-0-444-53718-8;


цитирана статия :

Dimitrov K., S.Alexandrova, L. Boyadzhiev, S.Ruelan, M.Burgard, Recovery of copper from its solutions by rotating film pertraction, Separ. And Purification technology, 12, 165, 1997)

Цитирано в:


  1. Raszkowska-Kaczor A., Adamczak P., Wodski R., Hybrid rotating pertractor for Zinc-II recovery and separation, Desalination, 257, 66, (2010)

  2. Raszkowska A., R. Wodski, Rotating hybrid pertractor, Proceed. 25th Intern Symp., Ars Simposium, p.269 , Torun (2008)


цитирана статия :

Dimitrov K., L.Boyadzhiev, R.Tufeu, "Properties of supercritiical CO2 saturated poly(ethylene glicol)nonylphenyl ether" Macromol. Chem. Phys., 200 ,(7), 1626 (1999)

Цитирано в:


  1. Liao X., Y.Li, Interfacial tension of linear and branched PP in supercritical carbon dioxide, J.Supercritical Fluids, 55, 386 (2010)

  2. Miler M., D.Luebke, R.Enick, CO2-philic oligomers as novel solvents for CO2 absorption, Energy and fuels, 24,6214 (2010)


цитирана статия :

Dimitrov K. L. Boyadzhiev, R. Tufeu, F. Cansell, D. Barth, Solubility of Poly(ethylen glycol) nonylphenylether in supercritical carbon dioxide, J. Supercritical fluids, 14, 41 (1998)

Цитирано в :


  1. Ianatul K. Isothermal Vapor-liquid equilibrium for mixtures of oligomeric materials and alcohols, Ph.D.Thesis, Taiwan Nat Technol. Univ.,Taipei (2000)


цитирана статия :

Dimitrov K., L. Boyadzhiev L., A. Saboni, S. Alexandrova, Silver recovery from dilute Aqueous solutions using semi-batch RF-pertraction, Chem.Eng. Technol., 25, 663-666 (2002)

Цитирано в


  1. Raszkowska-Kaczor A., Adamczak P., Wodski R., Hybrid rotating pertractor for Zinc-II recovery and separation, Desalination, 257, 66, (2010)

  2. Tang B., G.Yu et al., Recovery of high-purity silver directly from dilute effluents by an emulsion liquid membrane-crystalization process, J.Hazardous materials, 177, 377 (2010)


цитирана статия :

Dimitrov K., D. Metcheva, S. Alexandrova, A. Saboni, L. Boyadzhiev, Recovery of tropane alkaloids from Deadly Nightshade I. A hybrid process of solid-liquid extraction and liquid membrane alkaloids purification, Bulg.Chem. Comm., 38, 231-216 (2006)

Цит ирана в


  1. Tang F., Q Zhang, et al., Sample preparation for analyzing traditional Chinese medicines., Trends in Anal. Chem., 28, 1253 (2009)


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