Langmuir,
Год журнала:
2024,
Номер
40(17), С. 8851 - 8861
Опубликована: Апрель 17, 2024
A
porous
geopolymer
was
synthesized
using
steel
slag
(accounting
for
71.6
wt
%)
with
the
aim
of
effectively
removing
Cu2+
ions.
The
chemical
composition
and
microstructure
this
material
were
investigated
X-ray
diffraction
spectroscopy,
Fourier
transform
infrared
scanning
electron
microscope
analysis,
BET
method.
effects
H2O2
doping,
H2O
curing
temperature
on
properties
systematically
investigated.
Subsequently,
adsorption
behavior
toward
explored
through
static
experiments.
findings
reveal
that
there
are
a
higher
specific
surface
area
pore
capacity
compared
to
original
slag,
total
porosity
90.3%,
compressive
strength
0.29
MPa,
volume
water
absorption
rate
69.4%.
is
found
be
36.8
mg·g–1,
which
slightly
superior
commercial
spherical
4A
molecular
sieves.
process
follows
quasi-first-order
kinetic
model,
while
isothermal
conforms
Freundlich
model.
Applied Sciences,
Год журнала:
2024,
Номер
14(12), С. 5081 - 5081
Опубликована: Июнь 11, 2024
Industrial
evolution
and
agricultural
expansion,
explained
by
continuing
population
growth,
have
rendered
enormous
problems
for
the
world
throughout
past
few
decades,
primarily
because
of
waste
generation.
To
reduce
environmental
impact
dependence
on
fossil
fuels,
scientists
explored
replacing
synthetic
polymers
with
environmentally
friendly
sustainable
alternatives
in
many
emergent
applications.
In
this
regard,
microbial
biopolymers
gained
special
attention.
Many
originating
from
various
strains
bacteria,
fungi,
algae
been
reported
their
possible
applications
increased
rapidly.
This
review
focuses
wide
range
biopolymers,
characteristics,
factors
influencing
production.
The
present
study
also
describes
biopolymers.
use
these
is
very
attractive
as
a
value-added
approach
to
wastewater
treatment.
By
acting
adsorbents,
coagulants,
flocculants
well
filters
membrane
processes,
shine
promising
solutions
beyond
conventional
methods.
They
can
be
integrated
into
stages
treatment
process,
further
enhancing
efficiency
Microbial
biopolymer
bioremediation
soil
stabilization
are
reviewed.
Several
studies
demonstrated
strong
potential
improvement
due
ability
minimize
permeability,
eliminate
heavy
metals,
stabilize
soil,
limit
erosion.
Challenges
related
scaling
up
downstream
processing
its
future
perspectives
applications,
discussed.
Marine Drugs,
Год журнала:
2025,
Номер
23(1), С. 39 - 39
Опубликована: Янв. 13, 2025
Pigment
production
has
a
substantial
negative
impact
on
the
environment,
since
mining
for
natural
pigments
causes
ecosystem
degradation,
while
synthetic
pigments,
derived
from
petrochemicals,
generate
toxic
by-products
that
accumulate
and
persist
in
aquatic
systems
due
to
their
resistance
biodegradation.
Despite
these
challenges,
remain
essential
across
numerous
industries,
including
cosmetic,
textile,
food,
automotive,
paints
coatings,
plastics,
packaging
industries.
In
response
growing
consumer
demand
sustainable
options,
there
is
increasing
interest
eco-friendly
alternatives,
particularly
bio-based
algae,
fungi,
actinomycetes.
This
shift
largely
driven
by
options.
For
bio-pigments,
actinomycetes,
Streptomyces
genus,
have
emerged
as
promising
green
source,
aligning
with
global
sustainability
goals
renewability
biodegradability.
Scale-up
of
yield
optimization
challenges
been
circumvented
aid
biotechnology
advancements,
genetic
engineering
innovative
fermentation
extraction
methods,
which
enhanced
bio-pigments’
viability
cost-competitiveness.
Actinomycete-derived
successfully
transitioned
laboratory
research
commercialization,
showcasing
potential
alternatives
dyes.
With
pigment
market
valued
at
approximately
USD
24.28
billion
2023,
projected
reach
36.58
2030,
economic
actinomycete
extensive.
review
explores
environmental
advantages
role
modern
industry,
regulatory
commercialization
they
face,
highlighting
importance
solutions
reduce
our
reliance
conventional
pigments.
The
successful
can
drive
an
industry-wide
transition
environmentally
responsible
offering
benefits
human
health,
safety,
sustainability.
Nanomaterials,
Год журнала:
2024,
Номер
14(12), С. 1037 - 1037
Опубликована: Июнь 16, 2024
With
the
processes
of
industrialization
and
urbanization,
heavy
metal
ion
pollution
has
become
a
thorny
problem
in
water
systems.
Among
various
technologies
developed
for
removal
ions,
adsorption
method
is
widely
studied
by
researchers
nanomaterials
with
good
performances
have
been
prepared
during
past
decades.
In
this
paper,
variety
novel
excellent
Pb(II)
Cu(II)
reported
recent
years
are
reviewed,
such
as
carbon-based
materials,
clay
mineral
zero-valent
iron
their
derivatives,
MOFs,
nanocomposites,
etc.
The
extremely
high
capacity,
selectivity
particular
nanostructures
summarized
introduced,
along
advantages
disadvantages.
And,
some
future
research
priorities
treatment
wastewater
also
prospected.
Water,
Год журнала:
2024,
Номер
16(7), С. 1052 - 1052
Опубликована: Апрель 5, 2024
Semi-arid
coastal
aquifers
face
critical
challenges
characterized
by
lower
rainfall,
higher
evaporation
rates,
and
looming
risk
of
over-exploitation.
These
conditions,
coupled
with
climate
change,
are
conducive
to
seawater
intrusion
promote
mechanisms
associated
it.
The
understanding
metal
behavior
in
such
environments
is
limited,
hence,
an
attempt
made
through
this
review
bridge
the
knowledge
gap.
A
study
on
trace
metals
within
a
specific
context
semi-arid
was
carried
out,
11
from
6
different
countries
were
included.
observed
that
exhibit
distinctive
behaviors
influenced
their
surrounding
environment.
prevalence
continuous
played
pivotal
role
shaping
dynamics
curtailing
groundwater
flux.
findings
suggest
formation
stable
Cl
organic
ligands
under
increased
alkaline
conditions
(pH
>
8)
has
control
over
Zn,
Pb,
Cd
toxicity
highly
ionic
reactive
condition.
In
addition,
dominant
Fe/Mn-hydroxide
association
Pb
high
affinity
Zn
controlling
its
bioavailability
as
WFB,
Saudi
Arabia
NW-C
India.
On
contrary,
prevailing
acidic
<
6),
carbonate
SO4-ligands
become
more
dominant,
bioavailability/desorption
Cu
irrespective
origin.
Ni
found
be
controlled
increasing
salinity.
An
increase
salinity
considered
shows
Ni,
except
UmC,
South
Africa,
where
act
sink
for
metal,
even
at
low
pH
5.5).
This
indicates
factors
mineral
saturation,
complexes,
variations
8),
chloride
complexes
govern
distribution
further
enhanced
prolonged
water
residence
time.
Nonetheless,
reducing
environment,
could
potentially
elevate
solubility
toxic
Cr
(VI)
released
anthropogenic
sources.
Chemical Engineering Journal,
Год журнала:
2024,
Номер
494, С. 152707 - 152707
Опубликована: Май 31, 2024
The
electroplating
industry
produces
a
large
amount
of
wastewaters
containing
economically
important
metals,
such
as
copper.
Usually,
the
copper
are
diluted
and
contaminated
with
ferric
ions.
Therefore,
selective
resource
recovery
from
wastewater
should
be
crucial
strategy
to
mitigate
environmental
change.
This
paper
focuses
on
gaining
new
insights
into
electrochemical
treatment
post-galvanic
ions
and,
consequence,
preconcentration
finally
in
metallic
form.
To
achieved
this
goal
integrated
method
electrodialysis
(ED)
enhanced
disodium
ethylenediaminetetraacetate
(Na2EDTA)
complexing
agent
electrolysis
(EL)
was
applied.
What
is
limited
by
using
simple
ED
or
EL
methods.
It
found
that,
complex
formation,
Na2EDTA
allowed
for
bonding
influence
salt
concentration
parameters
performance
evaluated
terms
selectivity
rate
factor,
ion
retention,
copper(II)
degree.
Furthermore,
concentrate
after
examined.
concluded
that
promoted
92.2%
2.95-fold
increase
retention
coefficient
94.3%.
Moreover,
effective
surface
cathode.
Almost
94.49%
recovered
purity
99.4%.
application
complexation
methods
can
improved
Results in Engineering,
Год журнала:
2024,
Номер
22, С. 102216 - 102216
Опубликована: Май 3, 2024
This
study
investigated
the
suitability
of
moss
peat
and
compost
as
adsorbents
for
removing
copper
ions
from
aqueous
systems.
Kinetic
experiments
were
conducted
at
pH
4,
20
°C,
an
initial
ion
concentration
mM.
Under
these
experimental
conditions,
had
a
maximum
adsorption
capacity
45.8
41.9
mg/g,
respectively.
The
kinetic
data
was
assessed
using
several
models,
fitted
well
with
pseudo-second-order
model
both
adsorbents.
Moreover,
analysis
isotherm
showed
that
Langmuir
could
fit
data,
suggesting
are
chemically
adsorbed
onto
compost.
value
4.5
most
effective
At
this
value,
capacities
60.0
mg/g
56.9
characterization
before
after
interaction
indicated
surface
precipitation
dominant
mechanism
by
which
removed
Copper
on
higher
than
compost,
it
found
to
be
7.7
wt%
3.8
wt%,
Overall,
findings
highlight
potential
in
highly
contaminated
water,
particularly
industrial
mining
effluent.
Waste Management Bulletin,
Год журнала:
2024,
Номер
2(2), С. 308 - 325
Опубликована: Июнь 1, 2024
Globally,
human
activity
and
fast
modernization
have
an
impact
on
the
ecological
economic
aspects.
These
factors
led
to
generation
of
complex
wastewater
consisting
recalcitrant
toxic
carcinogenic
contaminants.
The
inaccuracy
traditional
treatment
techniques
using
adsorbents
lower
concentration
pollutants
below
desired
standards
has
paved
way
for
technological
advancements
in
synthesis
method
operating
conditions.
Hence,
this
become
highly
imperative
utilize
effective
advanced
remediation
strategies
removal
pollutants.
Several
were
put
forth
because
their
unique
characteristics
such
as
affordability,
adaptability,
simplicity
use.
present
review
article
organizes
scattered
available
information
potential
abundant
biomass-derived
low-cost
It
been
discovered
that
are
extremely
effective,
alternative,
carbon–neutral
offering
a
new
perspective
modular
adsorption
process.