Langmuir,
Journal Year:
2024,
Volume and Issue:
40(15), P. 8144 - 8161
Published: April 8, 2024
Industrial
activities
have
led
to
releasing
harmful
substances
into
the
environment,
necessitating
elimination
of
these
toxic
compounds
from
wastewater.
Organic
dyes,
commonly
found
in
industrial
effluents,
pose
a
threat
ecosystems
and
human
health.
Conventional
treatment
methods
often
suffer
limitations
such
as
high
cost
poor
efficiency.
Metal-organic
frameworks
(MOFs)
emerged
promising
materials
for
selective
separation,
including
membrane
filtration
(MF).
Mixed-matrix
membranes
(MMMs)
combining
MOFs
with
polymers
offer
improved
properties.
In
this
study,
MMMs
were
fabricated
by
incorporating
synthesized
In-MOF
polyvinylidene
fluoride
(PVDF)
polymer
(In-MOF@PVDF
MMMs)
using
nonsolvent-induced
phase
separation
process.
The
evaluated
MF
various
organic
achieving
notable
removal
efficiencies.
containing
20%
(M
Separation and Purification Technology,
Journal Year:
2023,
Volume and Issue:
320, P. 124144 - 124144
Published: May 24, 2023
As
a
result
of
serious
pollution
in
the
water
environment,
sewage
disposal
has
been
receiving
lot
attention
from
industry.
Metal-organic
frameworks
(MOFs)
attract
interest
adsorption
and
separation
due
to
their
complex
structures
easily
adjustable
pore
sizes.
Magnetic
MOFs
inheriting
advantages
both
large
surface
area
easy
recovery
have
great
potentials
pollutants.
This
paper
reviews
recent
research
progress
on
ions,
dyes
other
contaminants
by
different
types
(magnetic
non-magnetic
MOFs)
magnetic
composites
(Fe3O4@MOF)
aqueous
environments.
The
factors
affecting
pollutants,
thermodynamic
kinetic
effects
are
discussed
with
detailed
examples.
Finally,
challenges
opportunities
for
further
development
elucidated.
Critical Reviews in Environmental Science and Technology,
Journal Year:
2023,
Volume and Issue:
53(13), P. 1289 - 1309
Published: Jan. 23, 2023
Advanced
porous
nanomaterials
such
as
metal-organic
frameworks
(MOFs),
covalent
organic
(COFs),
and
aromatic
(PAFs)
with
high
specific
surface
areas,
abundant
functional
groups,
accessible
pore
structures,
tunable
sizes,
easy
modification
are
attractive
adsorbents
for
the
capture
of
toxic
heavy
metal
ions,
pollutants,
radionuclides
from
aqueous
solutions.
This
review
first
comprehensively
introduces
properties
MOFs,
COFs,
PAFs
to
highlight
their
advantages
adsorbents.
Subsequently,
recent
progress
superior
efficient
removal
environmental
pollutants
is
summarized.
Furthermore,
influences
conditions
information
about
interaction
mechanisms
between
advanced
discussed.
Finally,
applications
promising
prospects
in
pollution
management
beneficial
designing
fabricating
materials,
which
also
provides
some
meaningful
guidance
studying
adsorption
materials
pollutants.
Separation Science and Technology,
Journal Year:
2023,
Volume and Issue:
58(14), P. 2578 - 2602
Published: Sept. 19, 2023
ABSTRACTDue
to
the
widespread
use
of
tetracyclines
antibiotics
(TCs)
in
livestock
breeding,
TCs
has
always
caused
soil
pollution.
cannot
only
enter
and
water
bodies
through
multiple
channels
but
also
accumulate
them
over
a
long
period.
It
is
more
abundant
soils,
agricultural
land.
Primarily,
should
explore
efficient
methods
for
removing
or
degrading
TCs.
This
review
provides
an
overview
birth,
development
problem
contamination
Then
focuses
on
toxicity
effects
microorganisms,
animals,
plants.
Furthermore,
following
chapters,
microbial
-,
plant
animal
–
biodegradation
are
introduced
summarize
species
plants
applied
removal
at
this
stage.
Meanwhile,
principle
mechanism
advanced
oxidation
processes
analyzed
deeply
fill
gap.
In
addition,
case
fuel
cells
based
sustainable
bioenergetics
with
promising
prospects
presented.
Due
interaction
between
carbonaceous
materials
soil,
characteristics
adsorption
method
under
environment
analyzed.KEYWORDS:
Antibiotic
pollutionbiodegradationelectrochemistrysoiltetracyclines
Disclosure
statementThe
authors
declare
that
they
have
no
known
competing
financial
interests
personal
relationships
could
appeared
influence
work
reported
paper.Statement
noveltyDue
not
able
period
time.
especially
Hence,
be
explored.
The
first
two
sections
provide
third
section
depth
cell
analyzed.
A
critical
analysis
contrast
reflection
presented
end
each
section.