الأسس النظرية للهندسة الكيميائية Russian journaTheoretical Foundations of Chemical Engineeringl

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Theoretical Foundations of Chemical Engineering​


Russian journal​
​



year 2000​



by Russian Academy of Sciences, Moscow, Russia ​

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ISSN PRINT: 0040-5795​


ISSN ONLINE: 1608-3431​


EDITOR-IN-CHIEF​

Pavel D. Sarkisov​


Academician, Russian Academy of Sciences, Moscow, Russia​

SCOPE

The journal Theoretical Foundations of Chemical Engineering publishes original articles on transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering, surface phenomena (e.g., the Marangoni effect), self-organization in nonequilibrium systems, synergetics, macrokinetics of chemical reactions, and the theory and methods for calculating chemical reactors. Processes where the separation of mixtures are encountered play the key role in processing industries. Still of current importance are the theory and practice of diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, and crystallization), among which the maximum attention is drawn to integrated reaction-mass-transfer processes and all types of membrane processes. An important field is the intensification of heat and mass transfer processes under the action of various factors such as electric and magnetic fields, ultrasonic waves, vibrations and pulsations, and increased velocities of interacting phases. The journal publishes articles on large-scale chemical engineering systems (energy-closed, resource-saving, economically optimized, etc.) as well as works devoted to automated system design and flexible automated production systems.​


TOPICS COVERED​

transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering; surface phenomena; self-organization in nonequilibrium systems; macrokinetics of chemical reactions; theory and methods for the calculating chemical reactions; separation of mixtures; diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, crystallization, etc.); integrated reaction - mass-transfer processes; membrane processes; intensification of heat and mass transfer; energy-closed, resource-saving, economically optimized chemical engineering systems; automated system design.
Theoretical Foundations of Chemical Engineering is abstracted and/or indexed in Chemical Abstracts, INSPEC Information Services, and SCOPUS..​



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(inlove)(inlove)(inlove)​
 
Theoretical Foundations of Chemical Engineering​


Russian journal​


year 2001​




by Russian Academy of Sciences, Moscow, Russia ​

25969.imgcache.jpg





EDITOR-IN-CHIEF​

Pavel D. Sarkisov​

Academician, Russian Academy of Sciences, Moscow, Russia​


SCOPE​

The journal Theoretical Foundations of Chemical Engineering publishes original articles on transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering, surface phenomena (e.g., the Marangoni effect), self-organization in nonequilibrium systems, synergetics, macrokinetics of chemical reactions, and the theory and methods for calculating chemical reactors. Processes where the separation of mixtures are encountered play the key role in processing industries. Still of current importance are the theory and practice of diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, and crystallization), among which the maximum attention is drawn to integrated reaction-mass-transfer processes and all types of membrane processes. An important field is the intensification of heat and mass transfer processes under the action of various factors such as electric and magnetic fields, ultrasonic waves, vibrations and pulsations, and increased velocities of interacting phases. The journal publishes articles on large-scale chemical engineering systems (energy-closed, resource-saving, economically optimized, etc.) as well as works devoted to automated system design and flexible automated production systems.​

TOPICS COVERED​

transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering; surface phenomena; self-organization in nonequilibrium systems; macrokinetics of chemical reactions; theory and methods for the calculating chemical reactions; separation of mixtures; diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, crystallization, etc.); integrated reaction - mass-transfer processes; membrane processes; intensification of heat and mass transfer; energy-closed, resource-saving, economically optimized chemical engineering systems; automated system design.
Theoretical Foundations of Chemical Engineering is abstracted and/or indexed in Chemical Abstracts, INSPEC Information Services, and SCOPUS​



links​


or​


or​




(inlove)(inlove)(inlove)​
 
Theoretical Foundations of Chemical Engineering​




Russian journal​





year 2002​




by Russian Academy of Sciences, Moscow, Russia ​


25969.imgcache.jpg






EDITOR-IN-CHIEF​

Pavel D. Sarkisov​

Academician, Russian Academy of Sciences, Moscow, Russia​


SCOPE​

The journal Theoretical Foundations of Chemical Engineering publishes original articles on transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering, surface phenomena (e.g., the Marangoni effect), self-organization in nonequilibrium systems, synergetics, macrokinetics of chemical reactions, and the theory and methods for calculating chemical reactors. Processes where the separation of mixtures are encountered play the key role in processing industries. Still of current importance are the theory and practice of diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, and crystallization), among which the maximum attention is drawn to integrated reaction-mass-transfer processes and all types of membrane processes. An important field is the intensification of heat and mass transfer processes under the action of various factors such as electric and magnetic fields, ultrasonic waves, vibrations and pulsations, and increased velocities of interacting phases. The journal publishes articles on large-scale chemical engineering systems (energy-closed, resource-saving, economically optimized, etc.) as well as works devoted to automated system design and flexible automated production systems.​

TOPICS COVERED​

transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering; surface phenomena; self-organization in nonequilibrium systems; macrokinetics of chemical reactions; theory and methods for the calculating chemical reactions; separation of mixtures; diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, crystallization, etc.); integrated reaction - mass-transfer processes; membrane processes; intensification of heat and mass transfer; energy-closed, resource-saving, economically optimized chemical engineering systems; automated system design.
Theoretical Foundations of Chemical Engineering is abstracted and/or indexed in Chemical Abstracts, INSPEC Information Services, and SCOPUS​



links​




or​




or​






(inlove)(inlove)(inlove)​
 
Theoretical Foundations of Chemical Engineering​


Russian journal


year 2003
​


by Russian Academy of Sciences, Moscow, Russia


25969.imgcache.jpg



EDITOR-IN-CHIEF​

Pavel D. Sarkisov​

Academician, Russian Academy of Sciences, Moscow, Russia​


SCOPE​

The journal Theoretical Foundations of Chemical Engineering publishes original articles on transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering, surface phenomena (e.g., the Marangoni effect), self-organization in nonequilibrium systems, synergetics, macrokinetics of chemical reactions, and the theory and methods for calculating chemical reactors. Processes where the separation of mixtures are encountered play the key role in processing industries. Still of current importance are the theory and practice of diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, and crystallization), among which the maximum attention is drawn to integrated reaction-mass-transfer processes and all types of membrane processes. An important field is the intensification of heat and mass transfer processes under the action of various factors such as electric and magnetic fields, ultrasonic waves, vibrations and pulsations, and increased velocities of interacting phases. The journal publishes articles on large-scale chemical engineering systems (energy-closed, resource-saving, economically optimized, etc.) as well as works devoted to automated system design and flexible automated production systems.​

TOPICS COVERED​

transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering; surface phenomena; self-organization in nonequilibrium systems; macrokinetics of chemical reactions; theory and methods for the calculating chemical reactions; separation of mixtures; diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, crystallization, etc.); integrated reaction - mass-transfer processes; membrane processes; intensification of heat and mass transfer; energy-closed, resource-saving, economically optimized chemical engineering systems; automated system design.
Theoretical Foundations of Chemical Engineering is abstracted and/or indexed in Chemical Abstracts, INSPEC Information Services, and SCOPUS​



link ​






(inlove)(inlove)(inlove)​
 
Theoretical Foundations of Chemical Engineering​


Russian journal​



year 2004​



by Russian Academy of Sciences, Moscow, Russia ​



25969.imgcache.jpg




EDITOR-IN-CHIEF​


Pavel D. Sarkisov​


Academician, Russian Academy of Sciences, Moscow, Russia​


SCOPE

The journal Theoretical Foundations of Chemical Engineering publishes original articles on transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering, surface phenomena (e.g., the Marangoni effect), self-organization in nonequilibrium systems, synergetics, macrokinetics of chemical reactions, and the theory and methods for calculating chemical reactors. Processes where the separation of mixtures are encountered play the key role in processing industries. Still of current importance are the theory and practice of diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, and crystallization), among which the maximum attention is drawn to integrated reaction-mass-transfer processes and all types of membrane processes. An important field is the intensification of heat and mass transfer processes under the action of various factors such as electric and magnetic fields, ultrasonic waves, vibrations and pulsations, and increased velocities of interacting phases. The journal publishes articles on large-scale chemical engineering systems (energy-closed, resource-saving, economically optimized, etc.) as well as works devoted to automated system design and flexible automated production systems.


TOPICS COVERED


transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering; surface phenomena; self-organization in nonequilibrium systems; macrokinetics of chemical reactions; theory and methods for the calculating chemical reactions; separation of mixtures; diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, crystallization, etc.); integrated reaction - mass-transfer processes; membrane processes; intensification of heat and mass transfer; energy-closed, resource-saving, economically optimized chemical engineering systems; automated system design.
Theoretical Foundations of Chemical Engineering is abstracted and/or indexed in Chemical Abstracts, INSPEC Information Services, and SCOPUS
​

link
​






(inlove)(inlove)(inlove)​
 
Theoretical Foundations of Chemical Engineering​

Russian journal​

​
year 2005​
​
​



by Russian Academy of Sciences, Moscow, Russia ​



25969.imgcache.jpg




EDITOR-IN-CHIEF​


Pavel D. Sarkisov​

Academician, Russian Academy of Sciences, Moscow, Russia​


SCOPE​

The journal Theoretical Foundations of Chemical Engineering publishes original articles on transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering, surface phenomena (e.g., the Marangoni effect), self-organization in nonequilibrium systems, synergetics, macrokinetics of chemical reactions, and the theory and methods for calculating chemical reactors. Processes where the separation of mixtures are encountered play the key role in processing industries. Still of current importance are the theory and practice of diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, and crystallization), among which the maximum attention is drawn to integrated reaction-mass-transfer processes and all types of membrane processes. An important field is the intensification of heat and mass transfer processes under the action of various factors such as electric and magnetic fields, ultrasonic waves, vibrations and pulsations, and increased velocities of interacting phases. The journal publishes articles on large-scale chemical engineering systems (energy-closed, resource-saving, economically optimized, etc.) as well as works devoted to automated system design and flexible automated production systems.​


TOPICS COVERED​


transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering; surface phenomena; self-organization in nonequilibrium systems; macrokinetics of chemical reactions; theory and methods for the calculating chemical reactions; separation of mixtures; diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, crystallization, etc.); integrated reaction - mass-transfer processes; membrane processes; intensification of heat and mass transfer; energy-closed, resource-saving, economically optimized chemical engineering systems; automated system design.
Theoretical Foundations of Chemical Engineering is abstracted and/or indexed in Chemical Abstracts, INSPEC Information Services, and SCOPUS​

link ​


 
Theoretical Foundations of Chemical Engineering​


Russian journal​


year 2006​




by Russian Academy of Sciences, Moscow, Russia




25969.imgcache.jpg






EDITOR-IN-CHIEF



Pavel D. Sarkisov


Academician, Russian Academy of Sciences, Moscow, Russia



SCOPE


The journal Theoretical Foundations of Chemical Engineering publishes original articles on transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering, surface phenomena (e.g., the Marangoni effect), self-organization in nonequilibrium systems, synergetics, macrokinetics of chemical reactions, and the theory and methods for calculating chemical reactors. Processes where the separation of mixtures are encountered play the key role in processing industries. Still of current importance are the theory and practice of diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, and crystallization), among which the maximum attention is drawn to integrated reaction-mass-transfer processes and all types of membrane processes. An important field is the intensification of heat and mass transfer processes under the action of various factors such as electric and magnetic fields, ultrasonic waves, vibrations and pulsations, and increased velocities of interacting phases. The journal publishes articles on large-scale chemical engineering systems (energy-closed, resource-saving, economically optimized, etc.) as well as works devoted to automated system design and flexible automated production systems.



TOPICS COVERED



transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering; surface phenomena; self-organization in nonequilibrium systems; macrokinetics of chemical reactions; theory and methods for the calculating chemical reactions; separation of mixtures; diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, crystallization, etc.); integrated reaction - mass-transfer processes; membrane processes; intensification of heat and mass transfer; energy-closed, resource-saving, economically optimized chemical engineering systems; automated system design.
Theoretical Foundations of Chemical Engineering is abstracted and/or indexed in Chemical Abstracts, INSPEC Information Services, and SCOPUS


link


​
​
​
(inlove)(inlove)(inlove)​
 
Theoretical Foundations of Chemical Engineering​



Russian journal​


year 2007​




by Russian Academy of Sciences, Moscow, Russia ​



25969.imgcache.jpg





EDITOR-IN-CHIEF​


Pavel D. Sarkisov​


Academician, Russian Academy of Sciences, Moscow, Russia​


SCOPE​


The journal Theoretical Foundations of Chemical Engineering publishes original articles on transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering, surface phenomena (e.g., the Marangoni effect), self-organization in nonequilibrium systems, synergetics, macrokinetics of chemical reactions, and the theory and methods for calculating chemical reactors. Processes where the separation of mixtures are encountered play the key role in processing industries. Still of current importance are the theory and practice of diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, and crystallization), among which the maximum attention is drawn to integrated reaction-mass-transfer processes and all types of membrane processes. An important field is the intensification of heat and mass transfer processes under the action of various factors such as electric and magnetic fields, ultrasonic waves, vibrations and pulsations, and increased velocities of interacting phases. The journal publishes articles on large-scale chemical engineering systems (energy-closed, resource-saving, economically optimized, etc.) as well as works devoted to automated system design and flexible automated production systems.​



TOPICS COVERED​


transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering; surface phenomena; self-organization in nonequilibrium systems; macrokinetics of chemical reactions; theory and methods for the calculating chemical reactions; separation of mixtures; diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, crystallization, etc.); integrated reaction - mass-transfer processes; membrane processes; intensification of heat and mass transfer; energy-closed, resource-saving, economically optimized chemical engineering systems; automated system design.
Theoretical Foundations of Chemical Engineering is abstracted and/or indexed in Chemical Abstracts, INSPEC Information Services, and SCOPUS​


link ​






(inlove)(inlove)(inlove)​
 
Theoretical Foundations of Chemical Engineering​


Russian journal​


year 2008​




by: MAIK Nauka ​



Russian Academy of Sciences, Moscow, Russia ​




25969.imgcache.jpg






EDITOR-IN-CHIEF​




Pavel D. Sarkisov​



Academician, Russian Academy of Sciences, Moscow, Russia​


SCOPE​



The journal Theoretical Foundations of Chemical Engineering publishes original articles on transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering, surface phenomena (e.g., the Marangoni effect), self-organization in nonequilibrium systems, synergetics, macrokinetics of chemical reactions, and the theory and methods for calculating chemical reactors. Processes where the separation of mixtures are encountered play the key role in processing industries. Still of current importance are the theory and practice of diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, and crystallization), among which the maximum attention is drawn to integrated reaction-mass-transfer processes and all types of membrane processes. An important field is the intensification of heat and mass transfer processes under the action of various factors such as electric and magnetic fields, ultrasonic waves, vibrations and pulsations, and increased velocities of interacting phases. The journal publishes articles on large-scale chemical engineering systems (energy-closed, resource-saving, economically optimized, etc.) as well as works devoted to automated system design and flexible automated production systems.​


TOPICS COVERED​

transport phenomena, chemical hydrodynamics, nonlinear processes in chemistry and chemical engineering; surface phenomena; self-organization in nonequilibrium systems; macrokinetics of chemical reactions; theory and methods for the calculating chemical reactions; separation of mixtures; diffusion processes (distillation, gas absorption, adsorption, drying, liquid extraction, dissolution, crystallization, etc.); integrated reaction - mass-transfer processes; membrane processes; intensification of heat and mass transfer; energy-closed, resource-saving, economically optimized chemical engineering systems; automated system design.
Theoretical Foundations of Chemical Engineering is abstracted and/or indexed in Chemical Abstracts, INSPEC Information Services, and SCOPUS​



links​






or​







or​







(inlove)(inlove)(inlove)​
 


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can you please re-upload Theoretical Foundations of Chemical Engineering 2004

can you please re-upload Theoretical Foundations of Chemical Engineering 2004
 
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