RSC Advances,
Год журнала:
2023,
Номер
13(33), С. 22675 - 22697
Опубликована: Янв. 1, 2023
Steroidal
estrogens
(SEs)
pose
a
significant
threat
to
the
aquatic
environment
in
this
era
because
they
interfere
with
human
body's
normal
metabolic
functions,
calls
for
their
sequestration.
Case Studies in Chemical and Environmental Engineering,
Год журнала:
2022,
Номер
6, С. 100219 - 100219
Опубликована: Май 27, 2022
Emerging
contaminants
(ECs)
are
synthetic
or
naturally
occurring
chemicals
any
microorganisms
that
not
commonly
monitored
in
the
environment
but
have
potential
to
enter
and
cause
known
suspected
adverse
ecological
human
health
effects.
The
issue
of
ECs
persistent
can
disrupt
physiology
target
receptors,
they
recognized
as
Contaminants
emerging
environmental
concerns.
prominent
classes
include
pharmaceuticals
personal
care
products
(PPCPs),
plasticizers,
surfactants,
fire
retardants,
nanomaterials,
pesticides.
Several
been
endocrine
disruptive
compounds
(EDCs)
due
their
deleterious
effects
on
systems
(EDCs).
present
aquatic
resources
a
major
concern
for
safety
concern.
These
contaminations
risen
into
threat
water
distribution
system.
impact
such
medicines,
x-ray
media,
disruptors,
insecticides,
items
has
reported
surface
water,
wastewater,
groundwater
sources
worldwide
recent
years.
Various
techniques
explored
degradation
removal
mitigate
harmful
effect.
Numerous
prior
continuing
investigations
focused
using
variety
treatment
techniques,
including
(1)
physical,
(2)
chemical,
(3)
biological.
However,
experimental
data
is
insufficient
provide
precise
predictions
regarding
mechanistic
fate
across
various
in-practice
systems.
membrane
technology
remove
particles
fine
10
μm
colloidal
particles,
It
be
effectively
eliminated
by
up
99%
through
use
MBR
technologies
reverse
osmosis,
ultrafiltration,
nanofiltration
at
concentrations
5
g/liter.
In
this
paper,
overview,
sources,
application
treatments
based
studies
presented.
Environmental Science & Technology,
Год журнала:
2021,
Номер
55(21), С. 14494 - 14514
Опубликована: Окт. 20, 2021
The
presence
of
diverse
pollutants
in
water
has
been
threating
human
health
and
aquatic
ecosystems
on
a
global
scale.
For
more
than
century,
chemical
oxidation
using
strongly
oxidizing
species
was
one
the
most
effective
technologies
to
destruct
ensure
safe
clean
supply.
However,
removal
increasing
amount
with
higher
structural
complexity,
especially
emerging
micropollutants
trace
concentrations
complicated
matrix,
requires
excessive
dosage
oxidant
and/or
energy
input,
resulting
low
cost-effectiveness
possible
secondary
pollution.
Consequently,
it
is
practical
significance
but
scientifically
challenging
achieve
selective
interest
for
decontamination.
Currently,
there
are
variety
examples
concerning
aqueous
systems.
systematic
understanding
relationship
between
origin
selectivity
its
applicable
treatment
scenarios,
as
well
rational
design
catalyst
catalytic
oxidation,
still
lacking.
In
this
critical
review,
we
summarize
state-of-the-art
strategies
decontamination
probe
origins
selectivity,
that
is,
from
reactivity
either
oxidants
or
target
pollutants,
arising
accessibility
via
adsorption
size
exclusion,
due
interfacial
electron
transfer
process
enzymatic
oxidation.
Finally,
challenges
perspectives
briefly
outlined
stimulate
future
discussion
decontamination,
particularly
toward
application
real
scenarios.
Frontiers in Marine Science,
Год журнала:
2023,
Номер
10
Опубликована: Март 6, 2023
Advancements
in
chemical,
medical,
cosmetic,
and
plastic
producing
industries
have
improved
agricultural
yields,
health
human
life
general.
As
a
negative
consequence,
plethora
of
chemicals
are
intentionally
unintentionally
released
to
terrestrial
aquatic
environments
with
sometimes
devastating
effects
for
entire
ecosystems.
One
mitigation
strategy
counteract
this
pollution
is
bioremediation.
Bioremediation
an
umbrella
term
biologically
mediated
processes
during
which
undesired
compound
transformed,
degraded,
sequestered
and/or
entirely
removed
from
the
ecosystem.
Organisms
across
all
domains
may
mediate
bioremediation;
yet,
fungi
particularly
promising
candidates.
They
possess
metabolic
capabilities
break
down
complex
molecules
make
ultimate
degraders
recalcitrant
organic
matter
nature.
by
fungi,
also
termed
mycoremediation,
has
been
more
frequently
investigated
than
ecosystems,
although
thrive
lacustrine
marine
environments.
Here,
we
focus
on
mycoremediation
emerging
pollutants
In
context,
draw
parallels
between
fungal
taxa,
their
role
mycoremediation.
We
discuss
ability
break-down
(i)
pesticides,
(ii)
pharmaceuticals
personal
care
products,
(iii)
plastics,
both
conventional
types
(iv)
bioplastics,
role,
(v)
heavy
metal
pollution.
Furthermore,
(vi)
possible
strategies
applied
settings
highlight
novel
enzyme
based
strategies.
Current Pollution Reports,
Год журнала:
2021,
Номер
7(2), С. 167 - 179
Опубликована: Апрель 20, 2021
Abstract
Purpose
of
Review
In
the
presented
review,
we
have
summarized
recent
achievements
on
use
immobilized
oxidoreductases
for
biodegradation
hazardous
organic
pollutants
including
mainly
dyes,
pharmaceuticals,
phenols,
and
bisphenols.
order
to
facilitate
process
optimization
achievement
high
removal
rates,
effect
various
conditions
has
been
highlighted
discussed.
Recent
Findings
Current
reports
clearly
show
that
are
capable
efficient
conversion
pollutants,
usually
reaching
over
90%
rate.
Further,
enzymes
showed
great
recyclability
potential,
allowing
their
reuse
in
numerous
catalytic
cycles.
Summary
Collected
data
indicates
as
an
biocatalytic
tools
phenolic
compounds,
making
them
a
promising
option
future
water
purification.
Data
shows,
however,
both
immobilization
affect
efficiency;
therefore,
is
required
achieve
rates.
Nevertheless,
demonstrated
trends
several
issues
be
solved
near-future
research,
large-scale
application
wastewater
treatment.