За научно-изследователската дейност през 2012 г. Директор:



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Volume 17, pp. S21-S26, 1993 (in English).

Цитирана в:



  1. Liu Linlin , Du Jian , Xiao Feng , Chen Li and Yao Pingjing, Direct heat exchanger network synthesis for batch process with cost targets, book series Computer Aided Process Engineering, 2010.

Ivanov B., K. Peneva, N. Bancheva, Heat Integration of Batch Vessels at Fixed Time Interval. Part I: Schemes With Recicling Main Fluids, Hungarian Journal of Industrial Chemistry, Volume 20, pp. 225-231, 1992, (in English).

Цитирана в:


  1. Inmaculada Fernández, Carlos J. Renedo, Severiano F. Pérez ,Alfredo Ortiz, Mario Manana, A review: Energy recovery in batch processes, Renewable and Sustainable Energy Reviews, 16 (2012) 2260– 2277

Ivanov B., K. Peneva, N. Bancheva, Heat Integration of Batch Vessels at Fixed Time Interval. Part II: Schemes with Intermediate Heating and Cooling Agents, Hungarian Journal of Industrial Chemistry, Volume 20, pp. 233-239, 1992 (in English).

Цитирана в:


  1. Inmaculada Fernández, Carlos J. Renedo, Severiano F. Pérez ,Alfredo Ortiz, Mario Manana, A review: Energy recovery in batch processes, Renewable and Sustainable Energy Reviews, 16 (2012) 2260– 2277

Ivanov B., K. Peneva, N. Bancheva Heat Integration in Batch Reactors Operating in Different Time Intervals. Part I. A Hot-Cold Reactor Systems with Two Storage Tanks, Journal of Industri Hungarian al Chemistry, Volume 21, pp. 201-207 1993 (in English)

Цитирана в:


  1. Inmaculada Fernández, Carlos J. Renedo, Severiano F. Pérez ,Alfredo Ortiz, Mario Manana, A review: Energy recovery in batch processes, Renewable and Sustainable Energy Reviews, 16 (2012) 2260– 2277

Ivanov B., K. Peneva, N. Bancheva Heat Integration in Batch Reactors Operating in Different Time Intervals. Part II. A Hot-Cold Reactor Systems with a Common Storage Tank, Hungarian Journal of Industrial Chemistry, Volume 21, pp. 209-216, 1993.

Цитирана в:


  1. Inmaculada Fernández, Carlos J. Renedo, Severiano F. Pérez ,Alfredo Ortiz, Mario Manana, A review: Energy recovery in batch processes, Renewable and Sustainable Energy Reviews, 16 (2012) 2260– 2277

Ivanov B., K. Peneva, N. Bancheva Heat Integration in Batch Reactors Operating in Different Time Intervals. Part III. Synthesis and Reconstruction of Integrated Systems with Heat Tanks, Hungarian Journal of Industrial Chemistry, Volume 21, pp. 217-223, 1993 (in English).

Цитирана в:


  1. Inmaculada Fernández, Carlos J. Renedo, Severiano F. Pérez ,Alfredo Ortiz, Mario Manana, A review: Energy recovery in batch processes, Renewable and Sustainable Energy Reviews, 16 (2012) 2260– 2277

Ivanov B., N. Vaklieva-Bantcheva Optimal Reconstruction of Batch Chemical Plants with Regard to Maximum Heat Recuperation, Computers and Chemical Engineering, Volume 18, pp. S313-S317, 1994 (in English).

Цитирана в:


  1. Inmaculada Fernández, Carlos J. Renedo, Severiano F. Pérez ,Alfredo Ortiz, Mario Manana, A review: Energy recovery in batch processes, Renewable and Sustainable Energy Reviews, 16 (2012) 2260– 2277

Ivanov B., K. Peneva, N. Vaklieva-Bancheva, Synthesis of a Flexible Heat Exchange Network for a Hot-Cold Batch Reactors System, Hungarian Journal of Industrial Chemistry, Volume 23, pp. 251-260, 1995 (in English).

Цитирана в:


  1. Inmaculada Fernández, Carlos J. Renedo, Severiano F. Pérez ,Alfredo Ortiz, Mario Manana, A review: Energy recovery in batch processes, Renewable and Sustainable Energy Reviews, 16 (2012) 2260– 2277

Boyadjiev Chr., B. Ivanov, N. Vaklieva-Bancheva, C.C. Pantelides, N. Shah, Optimal Energy Integration in Antibiotics Manifacture, Computers and Chemical Engineering, Volume 20, pp. S31-S36, 1996 (in English).

Цитирана в:


  1. Yu-Shan Li, Optimization for Energy Efficiency with Unrelated Parallel Machines Scheduling Problem, Master's Thesis, National Yunlin University of Science and Technology, Institute of Industrial Engineering and Management, 2007-06-28

  2. Inmaculada Fernández, Carlos J. Renedo, Severiano F. Pérez ,Alfredo Ortiz, Mario Manana, A review: Energy recovery in batch processes, Renewable and Sustainable Energy Reviews, 16 (2012) 2260– 2277

Vaklieva-Bancheva N., B.B.Ivanov, N. Shah and C. C. Pantelides Heat Exchanger Network Design for Multipurpose Batch Plants, Computers and Chemical Engineering, Volume 20, pp. 989-1001, 1996 (in English).

Цитирана в:


  1. Zhao, XG; O'Neill, BK; Roach, JR; Wood, RM, The Scheduling of Batch Processes for Energy Integration by Cascade Analysis, Chemeca 2000: Opportunities and Challenges for the Resource and Processing Industries. Barton, A.C.T.: Institution of Engineers, Australia, 2000: [296]-[304], ISBN: 0646399101

  2. Benoît Allen, Optimisation dEchangeurs de Chaleur: Condenseur a calandre, reseau d’echangeurs de chaleur e production d’wau froid, Thesis MSc, Departement de Genie Mecanique, Faculte des edudes superieures, L’Universite Laval, Quebec, Canada 2010

  3. Mujtaba Hassan AGHA, Integrated Management of Energy and Production: Scheduling of Batch Process and Combined Heat & Power (CHP) Plant, Doctorat De L’université De Toulouse, Institut National Polytechnique de Toulouse, Génie Industriel, 30 Octobre 2009.

  4. Inmaculada Fernández, Carlos J. Renedo, Severiano F. Pérez ,Alfredo Ortiz, Mario Manana, A review: Energy recovery in batch processes, Renewable and Sustainable Energy Reviews, 16 (2012) 2260– 2277

  5. Andrej Szíjjarto , Stavros Papadokonstantakis, and Konrad Hungerbühler, Model-Based Identification and Analysis of the Energy Saving Potential in Batch Chemical Processes, Ind. Eng. Chem. Res., 2012, 51 (34), pp 11170–11182

Pozna A., B.Ivanov and N. Vaklieva-Bancheva, Design of a Heat Exchanger Network for a System of Batch Vessels, Hungarian Journal of Industrial Chemistry, Volume 26, pp. 205-211, 1998, (in English).

Цитирана в:


  1. Inmaculada Fernández, Carlos J. Renedo, Severiano F. Pérez ,Alfredo Ortiz, Mario Manana, A review: Energy recovery in batch processes, Renewable and Sustainable Energy Reviews, 16 (2012) 2260– 2277

Shopova E. G., N.G. Vaklieva-Bancheva, BASIC – A Genetical Algorithm for Engineering Problems Solution, Computers and Chemical Engineering, v. 30, pp.1293-1309, 2006.



Цитирана в:

  1. Rajesh A. Kubde, Collaborative Planning, Forecasting and Replenishment: Determinants of Joint Action in Buyer-supplier Relationships, Research Journal of Business Management, 2012, ISSN 1819-1932/ DOI: 10.3923/rjbm.2012. Pages:1-7

  2. Wang Jianling, Li Renling, Jia Chunsheng, (2012), Acupuncture and moxibustion literature data warehouse construction based on data mining, National Natural Science Fund project (81,072,883), Acupuncture Research, Volume 1, Pages: 71-75

  3. Xin-She Yang, Amir Hossein Gandomi, (2012). Bat Algorithm: A Novel Approach for Global Engineering Optimization, Engineering Computations, Emerald Publishing, Vol. 29, Issue 5

  4. Raziegarshasebi, D Rashtchian, Optimum production of vinyl chloride with a flow chart of genetic algorithm approach

  5. Shyamal Gondkar, Sivakumar Sreeramagiri, and Edwin Zondervan, (2012), Methodology for Assessment and Optimization of Industrial Eco-Systems (Review), Challenges, 3(1), 49-69

  6. Kang, Xiaoming; Yue, Yong; Li, Dayou; Maple, Carsten, (2011). Genetic Algorithm Based Solution to Dead-End Problems In, International Journal of Computer Applications in Technology, Volume 41, pages: 177-184

  7. Kwanchai Kraitong, Numerical Modelling and Design Optimization of Stirling Engines for Power Production, School of Computing, Engineering and Information Sciences, University of Northumbria at Newcastle, a Thesis submitted in partial fulfillment of the requirements of the University of Northumbria at Newcastle for the PhD degree, June 2012

  8. WANG Jian-ling, LI Ren-ling, JIA Chun-sheng, Establishment of Data Warehouse of Needling and Moxibustion Literature Based on Data Mining, Acupuncture Research, Volume 37, Issue 1, 2012

  9. Sarvestani, Mohammad Taghizadeh; Sola, Behnam Sedaee; Rashidi, Fariborz, (2012). Genetic algorithm application for matching ordinary black oil PVT data, Petroleum Science, Volume: 9 Issue: 2 Pages: 199-211, DOI: 10.1007/s12182-012-0200-2 Published: JUN 2012

  10. Yadav Aruna, Kumar Sanjeev, Genetic Algorithm for optimizing load distribution on Video on Demand Servers, International Journal of Scientific & Engineering Research, Volume 3, Issue 6, June-2012, Pages 1-4, ISSN 2229-5518

  11. Seyedalireza Seyedi, Rohanin Ahmad, Mohd Ismail Abd Aziz, Capability of the Function Optimization Algorithms for Solving Functional, International Conference on Mathematical Applications in Engineering (ICMAE’), 3-5 August 2010, Kuala Lampur, Malaysia, pages: 1-5

  12. Zhe Zhou, Jianyun Zhang, Pei Liu, Zheng Li, Michael C. Georgiadis, Efstratios N. Pistikopoulos, A two-stage stochastic programming model for the optimal design of distributed energy systems, Applied Energy, In Press, Corrected Proof, Available online 9 October, 2012

  13. K.S. Babu Narayan, (2011). REALEX-SUMT an Algorithm for Shape Optimization of Trusses, International Journal of Mechanics Structural, ISSN 0974-312X, Volume 2, Number 2 (2011), pp. 19-30

  14. Adnan, M.H.B.M., Husain, W.; Rashid, N.A. (2012). A hybrid approach using Naïve Bayes and Genetic Algorithm for childhood obesity prediction, Computer & Information Science (ICCIS), IEEE Conference Publications, 12-14 June 2012, Volume 1, Pages: 281 – 285

  15. SHI Hongyan, YUAN Mingzhe, WANG Tianran, YUAN Decheng, (2012). A Survey on Dynamic Optimization Methods of Batch Processes, Information and Control, Volume 41, №1, February 2012, pp 75-82

  16. Corneliu Cojocaru, Gheorghe Duca, Maria Gonta, (2012). Chemical kinetic model for methylurea nitrosation reaction: Computer-aided solutions to inverse and direct problems, Chemical Engineering Journal, In Press, Accepted Manuscript, Available online 8 December 2012

Vaklieva-Bancheva Natasha Gr., Elisaveta G. Kirilova, Cleaner manufacture of multipurpose batch chemical and biochemical plants. Scheduling and optimal choice of production recipes, Journal of Cleaner Production, Volume 18, Issue 13, pp. 1300-1310, 2010. ISSN 0959-6526

Цитирана в:


  1. Fernando J. Diaz Lopez & Carlos Montalvo, The Evolving and Cumulative Nature of Sustainable Innovation in an Energy Intensive Industry, TNO Working Paper Series, ISSN 2211-0054, Working Paper № 2011-3, 30 November 2011

  2. Li Yu, (2011). Research on Cleaner Production System from a Perspective of Resources and Environment, Contemporary Economy & Management, Volume 33, Issue 11, Pages 17-23

  3. Issues in Technology Theory, Research, and Application / 2011 Edition, Chapter 11: Green Technology, edited by Q. Ashton Acton, PhD, pages: 278-279. e-Book, published by Scholarly Editions, Atlanta, Georgia, US

Stateva, R.P., St. Tsvetkov: “A Diverse Approach for the Solution of the Isothermal Multiphase Flash Problem. Application to Vapor-Liquid-liquid Systems.” Can. J. Chem. Eng., 72, 772 (1994)

Цитирана в:


  1. Xu Huilin: “An One-Step Algorithm for Multiphase Equilibrium Calculation Using Equations of State”. MSc Thesis, Tsinghua University, China (2001).

Stateva, R.P., W.A. Wakeham: “Phase Equilibrium Calculations for Chemically Reacting Systems”, Ind. Eng. Chem. Res. 36, 5474 (1997).

Цитирана в:


  1. Haibo Zhang: “New Strategies For Global Optimization Of Chemical Engineering Applications By Differential Evolution”. PhD Thesis, Department Of Chemical And Biomolecular Engineering, National University Of Singapore, Singapore (2012).

  2. J. van Bennekom, J. Winkelman, R. Venderbosch, S. Nieland, and H.J. Heeres: “Modeling and Experimental Studies on Phase- and Chemical Equilibria in High Pressure Methanol Synthesis”. Ind. Eng. Chem. Res. 51, 12233–12243 (2012).

Elhassan, A.E., St.G. Tsvetkov, R.J.B. Craven, R.P. Stateva, W.A Wakeham: Ind. Eng. Chem. Res. 37, 1483 (1998).

Цитирана в:


  1. V. Gaganis, N. Varotsis: “Non-iterative phase stability calculations for process simulation using discriminating functions”. Fluid Phase Equilibria 314, 69-77 (2012).

  2. Xu Huilin: “An One-Step Algorithm for Multiphase Equilibrium Calculation Using Equations of State”. MSc Thesis, Tsinghua University, China (2001).

  3. S. Bhattacharjee, C.P. Paolini, M. Patterson: “A Web Service Infrastructure and its Application for Distributed Chemical Equilibrium Computation”. J. Comput. Science Education 3, 19-27 (2012).

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 в


  1. Jue Huiling: “QSPR for Critical Properties of Organic Compounds”. MSc Thesis, Tianjin University, China (2006).

Stateva, R.P., G.St. Cholakov, A.A. Galushko, W.A. Wakeham: “A Powerful Algorithm for Liquid-Liquid-Liquid Predictions and Calculations”, Chem. Eng. Sci., 55, 2121 (2000).

Цитирана в:


  1. F. García-Sánchez; D.M. Justo-García; J. Águila-Hernández; A. Romero-Martínez, Ascención: “Modeling of Multiphase Liquid Equilibria for Quaternary Systems with the NRTL and UNIQUAC”. Informacion Tecnolуgica 23 (1), 129-138 (2012).

Sovova, H., R.P. Stateva, A.A. Galushko: “Essential Oils from Seeds. Solubility of limonene in supercritical CO2 and how it is affected by fatty oil”, J. Supercritical Fluids, 20, 113 (2001).

Цитирана в:


  1. Claudio M. Inaldo : “Fractionation of Copaifera multijuga Hayne Oil by the USE of pressurized CO,Department of Chemical Engineering and Food.

  2. CHEN Jing-Jing, SUN Zhi-gao: “Research Advances on limonene”. Proceedings of Annual Meeting of the Chinese citrus fruits scientific innovation and the industrial development strategy forum and the Chinese Citrus fruits Academic society, Southwest university food science institute; Chinese Agriculture Academy of science Citrus fruits Research institute, Changsha, Hunan, China (2007)

  3. Lim Chee Siang, Zainuddin Abdul Manan, Mohd Roji Sarmidi: “Simulation Modelling of the Phase Behaviour of Palm Oil with Supercritical Carbon Dioxide”. Proceedings of International Conference on Chemical and Bioprocess Engineering, pp 427-433, ISBN: 983-2643-15-5, Kota Kinabalu, 27-29 August 2003, Malaysia.

  4. T. Fornari, G. Vicente, E. Vazquez, M.R. Garcia-Risco, G. Reglero: “Isolation of essential oil from different plants and herbs by supercritical fluid extraction”. J. Chromatography A 1250, 34-48 (2012).

  5. Guan Wenqiang: “Study on Supercritical Carbon Dioxide Extraction of Clove Oil and It's Application in Postharvest Storage of Fruits and Vegetables”. PhD Thesis, Tianjin University of Chemical Technology, China (2006)

  6. F. Gironi, M. Maschietti: “Phase equilibrium of the system supercritical carbon dioxide – lemon essential oil: New experimental data and thermodynamic modelling”. The Journal of Supercritical Fluids 70, 8-16 (2012).

  7. C. Gutierrez, M.T. Garcıa, I. Gracia, A. de Lucas, J.F. Rodrıguez: “Recycling of extruded polystyrene wastes by dissolution and supercritical CO2 technology”. J Mater Cycles Waste Manag. 14, 308-316 (2012).

Sovova, H., R.P. Stateva, A.A. Galushko: “Solubility of -carotene in supercritical CO2 and the effect of entrainers”. J. Supercritical Fluids 21, 195 (2001).

Цитирана в:


  1. Machmudah, S., Zakaria, Winardi, S., Sasaki, M., Goto, M., Kusumoto, N., Hayakawa, K.: “Lycopene Extraction from Tomato Peel By-product Containing Tomato Seed using Supercritical Carbon Dioxide”. J. Food Engineering 108, 230-236 (2012).

  2. J. Shi, S. Jun Xue, Y. Jiang and X. Ye: “Supercritical-fluid extraction of lycopene from tomatoes”. pp 619-645 in: Separation, extraction and concentration processes in the food, beverage and nutraceutical industries. Edited by Syed S. H. Rizvi. Woodhead Publishing Limited, Abington Hall, Granta Park, Great Abington, Cambridge CB21 6AH, UK (2010).

  3. E. Uquiche, X. Fica, K. Salazar and J.M. del Valle: “Time Fractionation of Minor Lipids from Cold-Pressed Rapeseed Cake Using Supercritical CO2”. J Am Oil Chem Soc 89 (6), 1135-1144 (2012).

  4. Zhao Tang, Jun-su Jin, Ze-ting Zhang, and Hong-tao Liu: “New experimental data and modeling of the solubility of compounds in supercritical carbon dioxide”. Ind. Eng. Chem. Res. 51, 5515-5526 (2012).

  5. Lim Chee Siang, Zainuddin Abdul Manan, Mohd Roji Sarmidi: “Simulation Modelling of the Phase Behaviour of Palm Oil with Supercritical Carbon Dioxide”. Proceedings of International Conference on Chemical and Bioprocess Engineering, pp 427-433, ISBN: 983-2643-15-5, Kota Kinabalu, 27-29 August 2003, Malaysia.

  6. John Calabro: “Investigation into the Desorption Equilibrium of Ethers in Activated Carbon Using SC CO2”. MSc Thesis, Division of Chemical Engineering, University of Queensland, Australia (2003).

  7. Hu Dedong: “The Study of the Solubilities of Organic Solids in Supercritical Fluids”. PhD Thesis, Shandong University, China (2005)

  8. Quan C.: “Determination & Isolation of Organochlorine Pesticide Residues in Chinese Herbal Medicine Using Supercritical Fluid Extraction”. PhD Thesis, Tianjin University of Chemical Technology, China (2005).

  9. Freddy A. Urrego, José M. del Valle, and Juan C. de la Fuente: “Carotenoid partition between pure or vegetable-oil-modified supercritical carbon dioxide and red peppers”. Presentation at ISSF 2012, 10th Internatinoal Symposium on Supercritical Fluids, May 13-16, San Fransico, Ca. USA (2012).

  10. Özlem Güçlü Üstündağ, Umut Güçlü, Sevcan Erşan: “Application of Artificial Neural Networks for the Modeling of Lipid Solubility in Supercritical Carbon Dioxide”. Presentation at ISSF 2012, 10th Internatinoal Symposium on Supercritical Fluids, May 13-16, San Fransico, Ca. USA (2012).

  11. Tang Zhao: “Experimental and Theoretical Study on Phase Equilibrium of Supercritical System”. PhD Thesis, Beijing University of Chemical Technology, Chemical Engineering and Technology, China (2012).

Wakeham, W. A., G. St. Cholakov, R. P. Stateva: “Liquid Density and Critical Properties of Hydrocarbons Estimated from Molecular Structure”, J. Chem. Eng. Data, 47 (3), 559 – 570 (2002).

Цитирана в:


  1. Новиков А.Е., Тремасов Е.Н., Максудов Р.Н., Аляев В.А: “Термодинамическое Моделирование Растворимости Веществ В Сверхкритическом Диоксиде Углерода.” Вестник Казанского технологического университета. № 20, 130-136 (2011).

  2. C. Desgranges, K.N. Ngale, J. Delhommelle: “Prediction of critical properties for Naphthacene, Triphenylene and Chrysene by Wang-Landau simulations”. Fluid Phase Equilibria 322–323, 92-96 (2012).

  3. Jue Huiling: “QSPR for Critical Properties of Organic Compounds”. MSc Thesis, Tianjin University, China (2006).

  4. Hechinger, M., Voll, A., Marquardt, W. “On the integration of product and process design for bio-based fuels”.19th International Congress of Chemical and Process Engineering, CHISA 2010 and 7th European Congress of Chemical Engineering, ECCE-7;Prague;28 August 2010 - 1 September 2010

  5. Lin, Ronghong: "Issues on Clean Diesel Combustion Technology Using Supercritical Fluids: Thermophysical Properties and Thermal Stability of Diesel Fuel". PhD Thesis, L.C. Smith College of Engineering and Computer Science, Syracuse University, Syracuse, New York, USA (2011).

  6. K. Takamura, H. Fischer, N.R. Morrow: “Physical properties of aqueous glycerol solutions”. J. of Petroleum Science and Engineering, 98–99, 50-60 (2012).

  7. Dahmen, M., Hechinger, M., Victoria Villeda, J., Marquardt, W.: “Towards Model-Based Identification of Biofuels for Compression Ignition Engines”. SAE International Journal of Fuels and Lubricants 5 (3), 990-1003 (2012).

Polishuk, I., R. P. Stateva, J. Wisniak, H. Segura: “Prediction of High Pressure Phase Equilibria Using Cubic EOS. What Can Be Learned?” Can. J. Chem. Eng., 80, pp. 927 – 942 (2002).

Цитирана в:


  1. N. Saber, M. Satyro, H. Yarranton, J.M. Shaw: “Multiphase Equilibrium Predictions for Ill-Defined Assymetric Hydrocarbon Mixtures”. Hydrocarbon World 6 (2), 50-57 (2011).

Polishuk I, Stateva RP, Wisniak J, Segura H: “Simultaneous prediction of the critical and sub-critical phase behavior in mixtures using equations of state IV. Mixtures of chained n-alkanes”. Chem. Eng. Sci., 59 (3): 633-643 (2004).



  1. Sabeti, S.A., Pahlevaninezhad, M., Soleymani, M., Panjepour, M: “The effect of temperature on the grain growth of nanocrystalline metals and its simulation by molecular dynamics method”. Computational Materials Science 51, 233-240 (2012).

Balogh, J., T. Csendes, R.P. Stateva: “Application of a Stochastic Method to the Solution of the Phase Stability Problem: Cubic Equations of State”, Fluid Phase Equilibria, 212 (1-2), 257-267 (2003).

Цитирана в:


  1. Митянина, О. Е.: “Оптимизация процесса синтеза высокооктановых добавок в колоннах реакционной ректификации”. PhD Thesis, Томск, Россия (2011).

  2. H. Zhang: “New Strategies For Global Optimization Of Chemical Engineering Applications By Differential Evolution”. Phd Thesis, Department Of Chemical And Biomolecular Engineering, National University Of Singapore, Singapore (2012).

  3. Malinen I., J. Kangas, J. Tanskanen: “A new Newton homotopy based method for the robust determination of all the stationary points of the tangent plane distance function”. Chem. Eng. Sci. 84, 266-275 (2012).

  4. Li Wentao: “Study on Liquid-Liquid Equilibrium and Engineering Application”. MSc Thesis, East China University of Science and Technology, Dept. Chemical Engineering, China (2012).

  5. J.S. de Souza, L.N.H. Guedes de Oliveira: “Contribuições Da Hibridização De Uma Metaheurística Enxame De Partículas Com Um Método De Busca Direta”. Proceedings of the Congreso Latino Iberoamericano de Investigacion Operativa, 24-28 Sept., Rio de Janeiro, Brasil (2012).

  6. Самборская М.А., Митянина О.Е., Дёрина К.В.: “Стационарные Состояния В Колоннах Реакционной Ректификации”. Вестник МИТХТ им. М.В. Ломоносова. Теоретические Основы Химической Технологии


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