Membranes,
Journal Year:
2024,
Volume and Issue:
14(11), P. 239 - 239
Published: Nov. 13, 2024
The
advancement
of
pharmaceutical
science
has
resulted
in
the
development
numerous
tailor-made
compounds,
i.e.,
pharmaceuticals,
tuned
for
specific
drug
targets.
These
compounds
are
often
characterized
by
their
low
biodegradability
and
commonly
excreted
to
a
certain
extent
unchanged
from
human
body.
Due
biodegradability,
these
represent
significant
challenge
wastewater
treatment
plants.
Often,
end
up
effluents
environment.
With
membrane
technologies
advanced
oxidation
processes,
photocatalysis
particular,
synergistic
approach
between
two
was
recognized
embraced.
hybrid
water
processes
focus
this
review,
specifically
removal
pharmaceuticals
using
combination
photocatalyst
pressure
process,
such
as
reverse
osmosis
or
nanofiltration
employing
photocatalytic
nanocomposite
membranes.
Nanomaterials,
Journal Year:
2025,
Volume and Issue:
15(3), P. 239 - 239
Published: Feb. 4, 2025
With
the
growth
of
population
and
development
industry
agriculture,
water
resources
are
experiencing
contamination
by
numerous
pollutants,
posing
a
threat
to
aquatic
environment
human
health.
Zeolitic
imidazolate
framework
(ZIF)
membranes,
as
solution
for
pollutant
treatment,
not
only
have
advantages
high
efficiency
adsorption,
good
selectivity,
stability,
easy
recyclability,
but
they
also
can
be
modified
or
derivatized
through
surface
functionalization,
compositing,
structural
tuning,
which
further
endow
membranes
with
other
functions,
such
catalysis
degradation.
In
order
improve
performance
ZIF
it
is
crucial
select
suitable
preparation
methods
optimize
microstructure
separation
stability
membranes.
This
review
systematically
summarizes
current
major
their
respective
disadvantages,
providing
an
overview
applications
in
treatment
dyes,
antibiotics,
heavy
metal
ions.
Future
prospects
discussed,
expectation
that
future
research
will
synthesis
enhance
mechanical
strength
permeability,
anti-fouling
properties
modifications
functionalization.
article
expected
provide
theoretical
support
application
pollution
treatment.
ChemistrySelect,
Journal Year:
2025,
Volume and Issue:
10(13)
Published: April 1, 2025
Abstract
A
bimetallic
MOF
(
NiCo‐F
)
was
solvothermally
crystallized
in
monoclinic
unit
cell
with
P2
1
/c
space
group
containing
situ
generated
ligand,
Ni
2+
and
Co
3+
ions.
The
theoretical
band
gap
found
to
be
2.5
eV
indicating
its
semiconducting
nature.
However,
conductivity
higher
respect
the
gap.
Therefore,
besides
through
bond
electrical
conduction,
coordinated
water
facilitated
proton
significantly
increase
overall
conductivity.
exhibits
capacitance
of
497
F/g
at
scan
rate
10
mV/s
which
impressive
considering
specific
derived
supercapacitors.
molecule
induced
selective
adsorption
methyl
blue
(MeB)
from
mixture
dyes
100%
aqueous
system.
High
sensitivity
enabled
trace
amount
target
dye
(upto
0.5
ppm)
efficiency
reaches
upto
90%
within
40
min.
MeB
attributed
synthon
type
interactions
between
─SO
3
−
MeB.
kinetics
follows
pseudo‐second‐order
Langmuir
monolayer
chemisorption
uniform
sites.
Moreover,
desorption
behaviors
establishes
recyclability
dye,
stability
MOF,
also
potentiality
reuse
adsorbent
for
multiple
times.