Nanoscale Advances,
Год журнала:
2025,
Номер
unknown
Опубликована: Янв. 1, 2025
An
effective
nanocomposite
comprising
a
metal–organic
framework
and
porous
polysulfonamide-sodium
alginate
(SA-PS)
was
developed
for
phenyl
triazole
production.
Abstract
This
study
focuses
on
the
development
of
a
novel
self-cleaning
nanofiltration
membrane
for
efficient
removal
cationic
dye
methylene
blue
(MB)
from
industrial
wastewater.
The
is
composed
vinyl
resin
(VR),
cellulose
nanofibrils
(CNF),
and
titanium
alpha
aluminate
(TAAL)
nanoparticles.
TAAL
loading
ranged
1
to
5
wt%,
pH
varied
10,
initial
MB
concentration
10
50
ppm.
Using
dead-end
filtration
system,
(VR/CNF@TAAL)
with
wt%
at
demonstrated
excellent
performances.
It
achieved
remarkable
98.6%
efficiency
30
ppm
dye,
maximum
adsorption
capacity
125.8
mg/g.
kinetics
analysis
revealed
that
process
followed
pseudo-second-order
model,
indicating
chemisorption
mechanism.
rate
constant
was
determined
be
1.2732
×
–3
g
mg
−1
min
.
Freundlich
isotherm
model
provided
better
fit
(R
2
=
0.996)
than
Langmuir
suggesting
multilayer
nanocomposite
surface.
In
addition
its
high
capabilities,
exhibited
cost-effectiveness
environmental
friendliness
as
an
adsorbent
membrane’s
property
further
contributes
sustainability
by
reducing
need
additional
chemical
treatments.
Journal of Materials Chemistry A,
Год журнала:
2024,
Номер
12(9), С. 5474 - 5492
Опубликована: Янв. 1, 2024
The
central
aim
of
this
investigation
was
to
innovate
a
novel
nanocatalyst
for
the
eco-friendly
synthesis
benzothiazoles
through
an
acceptorless
dehydrogenative
coupling
2-aminothiophenol
and
benzyl
alcohol,
mitigating
environmental
impact.
The
rapid
growth
in
industrialization
and
population
has
resulted
the
generation
permanence
of
a
wide
variety
inorganic
organic
pollutants,
posing
potential
risks
to
environment
human
health.
degradation
(either
removal
or
reduction)
sensing
these
pollutants
from
various
environmental
media
(e.g.,
air,
water,
soil)
are
nowadays
important
problems
worldwide.
To
address
this
issue,
several
nanotechnologies
numerous
nanostructured
materials
composites
have
been
established
for
efficient
remediation
applications.
This
is
ascribed
their
large
surface
area
improved
characteristics
efficiency
(like
high
reactive
feature).
current
chapter
reports
such
as
filtration,
photocatalysis,
chemical
reactions,
absorption,
adsorption,
nanosensing,
etc.
It
also
offers
an
overview
use
environment.
Novel
materials,
involving
inorganic-based
nanomaterials
(NMs)
zero-valent
metal
NMs,
oxide-based
silica-based
NMs),
carbon-based
polymeric-based
well
nanocomposites
were
extensively
reported
discussed.
These
efficiently
employed
remediating
halogenated
herbicides,
volatile
compounds,
chlorinated
aromatic
aliphatic
hydrocarbons,
pharmaceuticals,
dyes,
heavy
metals,
biological
substances
antibiotics,
parasites,
bacteria,
viruses),
gases
(NOx,
CO,
SO2,
etc.).
Their
efficiency,
advantages,
limitations
compared
Moreover,
some
directions
future
studies
proposed.
Nanoscale Advances,
Год журнала:
2024,
Номер
6(14), С. 3612 - 3623
Опубликована: Янв. 1, 2024
The
primary
objective
of
this
investigation
was
to
develop
a
new
nanocatalyst
that
could
produce
amides
by
oxidative
amidation
benzyl
alcohol,
thereby
reducing
its
environmental
harm.