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Ion Exchange - Theory & Applications (Hardcover)
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Ion Exchange - Theory & Applications (Hardcover)
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Ion exchange materials are extremely effective absorbents generally
containing some functional groups with insoluble structures, which
have high affinity capacities towards the targets among a series of
structurally similar ions or ion groups. In recent decades, the
various methods used to preparing the absorbents for contaminant
removal and resource recycle from environment have been extensively
studied under the backgrounds of environment pollution and resource
shortages. Molecular imprinting technology (MIT) was developed
rapidly as a research hot topic to prepare ion exchange materials
with shape memory effects. In consideration of the advantages of
molecular imprinted polymers (MIPs), including high adsorption
capacities, high selectivity, easy recycle etc., their applications
in the separation and concentration of target molecules or ions
have been widely explored. This book briefly narrates the
fundamentals and preparations of MIPs, and particularly focus on
the research advances relevant to human-living environment
including water, atmosphere and soil. An overview of the most
important applications of the ion exchange method in the treatment
of industrial wastewaters which contain heavy metal ions, and the
main environmental benefits of this method are highlighted. The
most important ion exchangers used in environment remediation
processes, including their classification and environmental
utilisations, are presented as well. The influence of operating
conditions on the ion exchange process is discussed, both from
efficiency and mechanism perspectives. Also, the opportunities and
challenges, which make that the ion exchange method to be still an
important research issue at international level, are reviewed.
Other chapters familiarise the reader with innovative practices to
develop sustainable water treatment methods; review the use of
adsorption materials, including raw biomasses, and ion exchange
resins for the treatment of olive mill wastewater; various examples
of selective removal of heavy metal ions discharged in an effluent
from electroplating plants, metal finishing operations, as well as
mining and electronics industries through ion exchange are
presented and finally; the principal mechanisms and specific
features of the copper ion exchange in alkali silicate glasses is
explored.
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