Materials Chemistry Frontiers,
Год журнала:
2023,
Номер
7(4), С. 689 - 697
Опубликована: Янв. 1, 2023
A
new
synthetic
protocol
generates
in
situ
BINOL
moieties
for
novel
BINOL-based
porous
polymers
capturing
multiple
toxic
micropollutants
from
water
with
ultrafast
kinetics
and
maximum
uptake
of
1941
mg
g
−1
.
Environmental Science & Technology,
Год журнала:
2022,
Номер
56(5), С. 2917 - 2935
Опубликована: Фев. 11, 2022
Characteristic
emerging
pollutants
at
low
concentration
have
raised
much
attention
for
causing
a
bottleneck
in
water
remediation,
especially
complex
matrices
where
high
of
interferents
coexist.
In
the
future,
tailored
treatment
methods
are
therefore
increasing
significance
accurate
removal
target
different
matrices.
This
critical
review
focuses
on
overall
strategies
accurately
removing
highly
toxic
presence
typical
interferents.
The
main
difficulties
hindering
improvement
selectivity
analyzed,
implying
that
it
is
difficult
to
adopt
universal
approach
multiple
targets
and
substrates.
Selective
based
assorted
principles
proposed
aiming
improve
anti-interference
ability.
Thus,
approaches
fundamentals
achieve
subsequently
summarized
including
their
mechanism,
superiority
inferior
position,
application
scope,
method
bottlenecks.
results
show
may
be
applicable
certain
conditions
pollutants.
To
better
understand
mechanism
each
selective
further
select
appropriate
method,
advanced
qualitative
quantitative
characterization
presented.
processes
adsorption,
interaction,
electron
transfer,
bond
breaking
discussed.
Some
comparable
helpful
promoting
development
related
fields.
research
framework
its
established.
Presently,
although
continuous
advances
remarkable
achievements
been
attained
characteristic
organic
pollutants,
there
still
various
substantial
challenges
opportunities.
It
hopeful
inspire
researches
new
generation
wastewater
technology,
which
can
selectively
preferentially
treat
establish
reliable
lead
direction
environmental
science.
Molecules,
Год журнала:
2024,
Номер
29(18), С. 4317 - 4317
Опубликована: Сен. 11, 2024
The
growing
presence
of
diverse
pollutants,
including
heavy
metals,
organic
compounds,
pharmaceuticals,
and
emerging
contaminants,
poses
significant
environmental
health
risks.
Traditional
methods
for
pollutant
removal
often
face
limitations
in
efficiency,
selectivity,
sustainability.
This
review
provides
a
comprehensive
analysis
recent
advancements
innovative
adsorbents
designed
to
address
these
challenges.
It
explores
wide
array
non-conventional
adsorbent
materials,
such
as
nanocellulose,
metal–organic
frameworks
(MOFs),
graphene-based
composites,
biochar,
emphasizing
their
sources,
structural
characteristics,
unique
adsorption
mechanisms.
discusses
processes,
the
basic
principles,
kinetics,
isotherms,
factors
influencing
efficiency.
highlights
superior
performance
materials
removing
specific
pollutants
across
various
settings.
practical
applications
are
further
explored
through
case
studies
industrial
settings,
pilot
studies,
field
trials,
showcasing
real-world
effectiveness.
Additionally,
critically
examines
economic
considerations,
technical
challenges,
impacts
associated
with
adsorbents,
offering
balanced
perspective
on
viability
conclusion
emphasizes
future
research
directions,
focusing
development
scalable
production
methods,
enhanced
material
stability,
sustainable
regeneration
techniques.
assessment
underscores
transformative
potential
remediation
critical
role
advancing
protection.