Green Chemistry,
Год журнала:
2022,
Номер
24(5), С. 1809 - 1894
Опубликована: Янв. 1, 2022
A
comprehensive
and
critical
overview
of
the
sustainable
strategies
for
direct
C–H
bond
arylation
(hetero)arenes,
based
on
use
recoverable
catalysts,
solvents
non-conventional
energy
sources,
has
been
performed.
Frontiers in Bioengineering and Biotechnology,
Год журнала:
2021,
Номер
9
Опубликована: Март 9, 2021
Low
molecular
weight
polycyclic
aromatic
hydrocarbons
(PAHs)
like
naphthalene
and
substituted
naphthalenes
(methylnaphthalene,
naphthoic
acids,
1-naphthyl
N
-methylcarbamate,
etc.)
are
used
in
various
industries
exhibit
genotoxic,
mutagenic,
and/or
carcinogenic
effects
on
living
organisms.
These
synthetic
organic
compounds
(SOCs)
or
xenobiotics
considered
as
priority
pollutants
that
pose
a
critical
environmental
public
health
concern
worldwide.
The
extent
of
anthropogenic
activities
emissions
from
coal
gasification,
petroleum
refining,
motor
vehicle
exhaust,
agricultural
applications
determine
the
concentration,
fate,
transport
these
ubiquitous
recalcitrant
compounds.
Besides
physicochemical
methods
for
cleanup/removal,
green
eco-friendly
technology
bioremediation,
using
microbes
with
ability
to
degrade
SOCs
completely
convert
non-toxic
by-products,
has
been
safe,
cost-effective,
promising
alternative.
Various
bacterial
species
soil
flora
belonging
Proteobacteria
(
Pseudomonas
,
Pseudoxanthomonas
Comamonas
Burkholderia
Novosphingobium
),
Firmicutes
Bacillus
Paenibacillus
Actinobacteria
Rhodococcus
Arthrobacter
)
displayed
SOCs.
Metabolic
studies,
genomic
metagenomics
analyses
have
aided
our
understanding
catabolic
complexity
diversity
present
simple
life
forms
which
can
be
further
applied
efficient
biodegradation.
prolonged
persistence
PAHs
led
evolution
new
degradative
phenotypes
through
horizontal
gene
transfer
genetic
elements
plasmids,
transposons,
phages,
islands,
integrative
conjugative
elements.
Systems
biology
engineering
either
specific
isolates
mock
community
(consortia)
might
achieve
complete,
rapid,
bioremediation
synergistic
actions.
In
this
review,
we
highlight
metabolic
routes
diversity,
makeup
cellular
responses/adaptations
by
naphthalene-degrading
bacteria.
This
will
provide
insights
into
ecological
aspects
field
application
strain
optimization
bioremediation.
Current
interest
toward
ionic
liquids
(ILs)
stems
from
some
of
their
novel
characteristics,
like
low
vapor
pressure,
thermal
stability,
and
nonflammability,
integrated
through
high
conductivity
broad
range
electrochemical
strength.
Nowadays,
represent
a
new
category
chemical-based
compounds
for
developing
superior
multifunctional
substances
with
potential
in
several
fields.
ILs
can
be
used
solvents
such
as
salt
electrolyte
additional
materials.
By
adding
functional
physiochemical
variety
IL-based
electrolytes
also
energy
storage
purposes.
It
is
hoped
that
the
present
review
will
supply
guidance
future
research
focused
on
polymer
nanocomposites
sensors,
performance,
biomedicine,
environmental
applications.
Additionally,
comprehensive
overview
about
polymer-based
composites'
components,
including
classification
types
matrix
available
provided
this
review.
More
focus
placed
upon
ILs-based
polymeric
multiple
applications
biosensors,
energy-related
materials,
actuators,
environmental,
aviation
aerospace
industries.
At
last,
existing
challenges
prospects
field
are
discussed
concluding
remarks
provided.
Case Studies in Chemical and Environmental Engineering,
Год журнала:
2021,
Номер
3, С. 100104 - 100104
Опубликована: Апрель 23, 2021
The
widespread
consumption
of
electronic
devices
has
made
spent
batteries
an
ongoing
economic
and
ecological
concern
with
a
compound
annual
growth
rate
up
to
8%
during
2018,
expected
reach
between
18%
30%
2030.
There
is
lack
regulations
for
the
proper
storage
management
waste
streams
that
enables
their
accumulation
in
open
settings
leakage
hazardous
substances
into
environment
on
landfill
settings.
In
addition,
recent
trends
battery
manufacture
dictate
use
emerging
materials
like
ionic
liquids
electrolytes
nanostructures
cathodes
enhance
energetic
properties
lifespan.
full
impact
novel
compounds
still
uncertain
could
cause
further
hindrances
recycling
containment
efforts.
Currently,
only
handful
countries
are
able
recycle
mass-produced
lithium
batteries,
accounting
5%
total
more
than
345,000
tons
2018.
This
mini
review
aims
integrate
currently
reported
contaminants
present
potential
environmental
impact,
current
strategies
detection
as
evidence
policy
regulation.
International Journal of Molecular Sciences,
Год журнала:
2022,
Номер
23(2), С. 645 - 645
Опубликована: Янв. 7, 2022
Deep
eutectic
solvents
(DESs)
are
one
of
the
most
rapidly
evolving
types
solvents,
appearing
in
a
broad
range
applications,
such
as
nanotechnology,
electrochemistry,
biomass
transformation,
pharmaceuticals,
membrane
technology,
biocomposite
development,
modern
3D-printing,
and
many
others.
The
their
applicability
continues
to
expand,
which
demands
development
new
DESs
with
improved
properties.
To
do
so
requires
an
understanding
fundamental
relationship
between
structure
properties
DESs.
Computer
simulation
machine
learning
techniques
provide
fruitful
approach
they
can
predict
reveal
physical
mechanisms
readily
be
linked
experiments.
This
review
is
devoted
computational
research
describes
technical
features
DES
simulations
corresponding
perspectives
on
various
applications.
aim
demonstrate
current
frontiers
discuss
future
perspectives.
Green Chemistry,
Год журнала:
2022,
Номер
24(5), С. 1809 - 1894
Опубликована: Янв. 1, 2022
A
comprehensive
and
critical
overview
of
the
sustainable
strategies
for
direct
C–H
bond
arylation
(hetero)arenes,
based
on
use
recoverable
catalysts,
solvents
non-conventional
energy
sources,
has
been
performed.