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A response to increasingly stringent regulation of pollution and
toxicity levels in industrial waste discharge, Micellar Enhanced
Ultrafiltration: Fundamentals & Applications offers the most
complete book available on the benefits and use of
micellar-enhanced ultrafiltration (MEUF) to achieve continuous
removal of organic and inorganic pollutants. An Unparalleled Book
That Addresses Both Academic and Industrial Points of View Several
membrane-based techniques, such as microfiltration,
ultrafiltration, nanofiltration, and reverse osmosis, are currently
used in a wide range of applications throughout the textile, pulp
and paper, sugar, chemical, pharmaceutical, biomedical,
biotechnological, and food industries. However, although reverse
osmosis is an effective means of removing contaminants, this book
explains why MEUF is a better substitute, as it less expensive,
less energy-intensive, and more efficient and practical for a wider
range of applications. Topics covered include: Effects of pollution
in water and its consequences Various treatment processes and
membrane technologies Fundamentals of ultrafiltration Outline of
various membrane modules and modeling approaches Principles of
colloid chemistry Theories of micelle formation Stability and
dynamics of micelles Phenomena of counterion binding Solubilization
of organic pollutants Selection criteria for surfactants Various
flux enhancement techniques Recovery of precious metals This book
conveys how, with proper selection of surfactant and membrane, MEUF
can be used to efficiently remove almost all metal ions (heavy
metals, lanthanides, radioa
A response to increasingly stringent regulation of pollution and
toxicity levels in industrial waste discharge, Micellar Enhanced
Ultrafiltration: Fundamentals & Applications offers the most
complete book available on the benefits and use of
micellar-enhanced ultrafiltration (MEUF) to achieve continuous
removal of organic and inorganic pollutants. An Unparalleled Book
That Addresses Both Academic and Industrial Points of View Several
membrane-based techniques, such as microfiltration,
ultrafiltration, nanofiltration, and reverse osmosis, are currently
used in a wide range of applications throughout the textile, pulp
and paper, sugar, chemical, pharmaceutical, biomedical,
biotechnological, and food industries. However, although reverse
osmosis is an effective means of removing contaminants, this book
explains why MEUF is a better substitute, as it less expensive,
less energy-intensive, and more efficient and practical for a wider
range of applications. Topics covered include: Effects of pollution
in water and its consequences Various treatment processes and
membrane technologies Fundamentals of ultrafiltration Outline of
various membrane modules and modeling approaches Principles of
colloid chemistry Theories of micelle formation Stability and
dynamics of micelles Phenomena of counterion binding Solubilization
of organic pollutants Selection criteria for surfactants Various
flux enhancement techniques Recovery of precious metals This book
conveys how, with proper selection of surfactant and membrane, MEUF
can be used to efficiently remove almost all metal ions (heavy
metals, lanthanides, radioa
Dipeptidyl Peptidase-IV (DPP-IV) was found to be one of the
emerging targets in the field of antidiabetic drug development. In
recent years, Piperidone analogs have shown their application in
the field of diabetology as observed in the crystallographic
structure of DPP-IV. All the ligand molecules were designed
considering the pharmacophoric features of the GGO901
(Co-crystallised ligand of DPP-IV with the PDB entry-2OQI). It was
thought worthwhile to perform docking study by extracting the
crystallographic structure of Dipeptidyl Peptidase-IV inhibitor
with all the virtually developed molecules to ensure the better
binding energy which would be well able to explain the ligand
target interaction of novel piperidone analogs, actively inhibiting
DPP-IV enzyme. Based on the docking output, a few novel imidazole
linked piperidone analogs were synthesized & as a part of the
structure elucidation process various spectroscopic data were
collected and subsequently analysed. All the analytically proven
synthesized compounds were further sent for biological evaluation.
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