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In this valuable volume, new and original research on various
topics on chemical engineering and technology is presented on
modeling and simulation, material synthesis, wastewater treatment,
analytical techniques, and microreactors. The research presented
here can be applied to technology in food, paper and pulp,
polymers, petrochemicals, surface coatings, oil technology aspects,
among other uses. The book is divided into five sections: modeling
and simulation environmental applications materials and
applications processes and applications analytical methods Topics
include: modeling and simulation of chemical processes process
integration and intensification separation processes advances in
unit operations and processes chemical reaction engineering fuel
and energy advanced materials CFD and transport processes
wastewater treatment The valuable research presented here will be
of interest to researchers, scientists, industry practitioners, as
well as upper-level students.
Due to increasing demand for potable and irrigation water, new
scientific research is being conducted to deal with wastewater from
a variety of sources. Novel Water Treatment and Separation Methods:
Simulation of Chemical Processes presents a selection of research
related to applications of chemical processes for wastewater
treatment, separation techniques, and modeling and simulation of
chemical processes. Among the many topics are: degradation of
herbicide removal of anionic dye efficient sun-light driven
photocatalysis removal of copper and iron using green activated
carbon defluoridation of drinking water removal of calcium and
magnesium from wastewater using ion exchange resins degradation of
vegetable oil refinery wastewater novel separation techniques,
including microwave-assisted extraction and more The volume
presents selected examples in wastewater treatment, highlighting
some recent examples of processes such as photocatalytic
degradation, emulsion liquid membrane, novel photocatalyst for
degradation of various pollutants, and adsorption of heavy metals.
The book goes on to explore some novel separation techniques, such
as microwave-assisted extraction, anhydrous ethanol through
molecular sieve dehydration, batch extraction from leaves of
Syzygium cumini (known as jambul, jambolan, jamblang or jamun), and
reactive extraction. These novel separation techniques have proved
be advantageous over conventional methods. The volume also looks at
modeling and simulation of chemical processes, including chapters
on flow characteristics of novel solid-liquid multistage
circulating fluidized bed, mathematical modeling and simulation of
gasketed plate heat exchangers, optimization of the adsorption
capacity of prepared activated carbon, and modeling of
ethanol/water separation by pervaporation, along with topics on
simulation using CHEMCAD software. The diverse chapters share and
encourage new ideas, methods, and applications in ongoing advances
in this growing area of chemical engineering and technology. It
will be a valuable resource for researchers and faculty and
industrialists as well as for students.
In this valuable volume, new and original research on various
topics on chemical engineering and technology is presented on
modeling and simulation, material synthesis, wastewater treatment,
analytical techniques, and microreactors. The research presented
here can be applied to technology in food, paper and pulp,
polymers, petrochemicals, surface coatings, oil technology aspects,
among other uses. The book is divided into five sections: modeling
and simulation environmental applications materials and
applications processes and applications analytical methods Topics
include: modeling and simulation of chemical processes process
integration and intensification separation processes advances in
unit operations and processes chemical reaction engineering fuel
and energy advanced materials CFD and transport processes
wastewater treatment The valuable research presented here will be
of interest to researchers, scientists, industry practitioners, as
well as upper-level students.
Due to increasing demand for potable and irrigation water, new
scientific research is being conducted to deal with wastewater from
a variety of sources. Novel Water Treatment and Separation Methods:
Simulation of Chemical Processes presents a selection of research
related to applications of chemical processes for wastewater
treatment, separation techniques, and modeling and simulation of
chemical processes. Among the many topics are: degradation of
herbicide removal of anionic dye efficient sun-light driven
photocatalysis removal of copper and iron using green activated
carbon defluoridation of drinking water removal of calcium and
magnesium from wastewater using ion exchange resins degradation of
vegetable oil refinery wastewater novel separation techniques,
including microwave-assisted extraction and more The volume
presents selected examples in wastewater treatment, highlighting
some recent examples of processes such as photocatalytic
degradation, emulsion liquid membrane, novel photocatalyst for
degradation of various pollutants, and adsorption of heavy metals.
The book goes on to explore some novel separation techniques, such
as microwave-assisted extraction, anhydrous ethanol through
molecular sieve dehydration, batch extraction from leaves of
Syzygium cumini (known as jambul, jambolan, jamblang or jamun), and
reactive extraction. These novel separation techniques have proved
be advantageous over conventional methods. The volume also looks at
modeling and simulation of chemical processes, including chapters
on flow characteristics of novel solid-liquid multistage
circulating fluidized bed, mathematical modeling and simulation of
gasketed plate heat exchangers, optimization of the adsorption
capacity of prepared activated carbon, and modeling of
ethanol/water separation by pervaporation, along with topics on
simulation using CHEMCAD software. The diverse chapters share and
encourage new ideas, methods, and applications in ongoing advances
in this growing area of chemical engineering and technology. It
will be a valuable resource for researchers and faculty and
industrialists as well as for students.
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