RSC Advances,
Journal Year:
2024,
Volume and Issue:
14(13), P. 9365 - 9390
Published: Jan. 1, 2024
The
growing
apprehension
surrounding
heavy
metal
pollution
in
both
environmental
and
industrial
contexts
has
spurred
extensive
research
into
adsorption
materials
aimed
at
efficient
remediation.
ACS Omega,
Journal Year:
2023,
Volume and Issue:
8(10), P. 9004 - 9030
Published: Feb. 28, 2023
In
previous
years,
different
pollutants,
for
example,
organic
dyes,
antibiotics,
heavy
metals,
pharmaceuticals,
and
agricultural
have
been
of
note
to
the
water
enterprise
due
their
insufficient
reduction
during
standard
wastewater
processing
methods.
MOFs
found
potential
toward
management.
This
Review
focused
on
synthesis
process
(such
as
traditional,
electrochemical,
microwave,
sonochemical,
mechanochemical,
continuous-flow
spray-drying
method)
MOF
materials.
Moreover,
properties
materials
discussed
in
detail.
Further,
materials'
applications
treatment
removal
metal
ions,
waste)
discussed.
Additionally,
we
compared
performances
some
typical
MOFs-based
with
those
other
commonly
used
Finally,
study's
current
challenges,
future
prospects,
outlook
highlighted.
Frontiers in Microbiology,
Journal Year:
2022,
Volume and Issue:
13
Published: Aug. 11, 2022
Heavy
metal
contamination
in
soils
endangers
humans
and
the
biosphere
by
reducing
agricultural
yield
negatively
impacting
ecosystem
health.
In
recent
decades,
this
issue
has
been
addressed
partially
remedied
through
use
of
“green
technology,”
which
employs
metal-tolerant
plants
to
clean
up
polluted
soils.
Furthermore,
global
climate
change
enhances
negative
effects
climatic
stressors
(particularly
drought,
salinity,
extreme
temperatures),
thus
growth
accumulation
capacity
remediating
plants.
Plant
growth-promoting
bacteria
(PGPB)
have
widely
introduced
into
improve
productivity
or
efficiency
phytoremediation
metal-contaminated
via
various
mechanisms,
including
nitrogen
fixation,
phosphate
solubilization,
phytohormone
production,
biological
control.
The
plants,
as
well
PGPB
inoculants,
should
hasten
process
moving
technology
from
laboratory
field.
Hence,
it
is
critical
understand
how
ameliorate
environmental
stress
toxicity
while
also
inducing
plant
tolerance,
mechanisms
involved
such
actions.
This
review
attempts
compile
scientific
evidence
on
topic,
with
a
special
emphasis
mechanism
bioremediation
[plant
promotion
detoxification/(im)mobilization/bioaccumulation/transformation/translocation]
deciphering
combined
(metal
stresses)
tolerance.
Plant Stress,
Journal Year:
2023,
Volume and Issue:
10, P. 100283 - 100283
Published: Nov. 7, 2023
The
substantial
influence
of
microbes
on
crop
growth,
stress
resilience,
and
ecological
restoration
has
generated
considerable
interest
due
to
the
intricate
interplay
between
these
microorganisms
plants.
This
study
comprehensively
examines
diverse
mechanisms
through
which
contribute
plant
well-being,
mitigate
stress,
facilitate
phytoremediation
processes.
Microorganisms
encompassing
bacteria,
fungi,
archaea,
viruses,
have
demonstrated
their
knack
for
stirring
up
growth-enabling
hormones,
activating
pathways
tuned
ameliorating
availability
nutrients
by
means
fixation
solubilization
Furthermore,
such
also
display
immense
potential
in
field
strategies
aiding
plants
extraction,
alteration,
detoxification
contaminants
found
both
soil
water.
Complementing
this,
enable
phytoextraction,
rhizofiltration,
phytostabilization,
rhizodegradation,
owing
harmonious
interaction
with
purification
tainted
environments.
However,
it
is
critical
address
legal
issues,
moral
dilemmas,
unintended
consequences
as
are
increasingly
incorporated
into
sustainable
agriculture
methods.
Optimizing
microbial
therapies
ensuring
appropriate
use
offers
promising
insights
when
leveraging
cutting-edge
technologies
like
omics
genetic
engineering.
Coordination
among
academics,
practitioners,
policymakers
still
crucial
quest
a
more
robust
peaceful
coexistence
microbes,
plants,
ecosystems.
In
nutshell,
this
work
highlights
pivotal
role
that
poised
assume,
guiding
trajectory
agriculture,
alleviating
fostering
environmental
sustainability
far-reaching
implications.