Green Chemistry,
Год журнала:
2024,
Номер
26(15), С. 8550 - 8563
Опубликована: Янв. 1, 2024
An
overview
on
the
catalyst-free
conversion
of
biomass
resources
into
value-added
products
is
provided.
Significantly,
opportunities
and
challenges
in
development
are
proposed
preliminarily.
Green Chemistry,
Год журнала:
2024,
Номер
26(18), С. 9503 - 9528
Опубликована: Янв. 1, 2024
An
overview
of
sustainability
outcomes
provided
by
flow
chemistry
is
reviewed
for
a
comprehensive
understanding
and
holistic
perspective.
Future
trends
potential
innovations
are
also
forecast.
Energies,
Год журнала:
2024,
Номер
17(18), С. 4543 - 4543
Опубликована: Сен. 10, 2024
Significant
concerns
over
energy
security
and
environmental
impact
reduction
will
drive
all
stakeholders
to
generate
proper
alternative
energies.
Biodiesel
is
a
prospective
cleaner-burning
biofuel
that
can
contribute
on
addressing
these
globally.
Presently,
pure
biodiesel
(B100)
application
still
facing
several
obstacles,
principally
in
terms
of
its
cold
flow
properties.
Improvement
behavior
parameters
the
solution
promoting
implementation
at
higher
percentage
wider
temperature
range.
This
study
provides
detailed
review
improvement
methods,
both
physical,
chemical,
biological,
from
various
scientific
sources,
elevate
fluidity
characteristics
biodiesel.
The
investigated
methods
convincingly
offer
enhancement
properties
Mostly,
this
accompanied
by
an
alleviation
oxidation
stability,
cetane
number,
and/or
viscosity.
However,
skeletal
isomerization
method
presents
promising
refinement
with
minimal
other
physical
Therefore,
continuous
development
promises
global
sustainable
high-quality
PeerJ,
Год журнала:
2024,
Номер
12, С. e17589 - e17589
Опубликована: Июль 8, 2024
Nanobiocatalysts
(NBCs),
which
merge
enzymes
with
nanomaterials,
provide
a
potent
method
for
improving
enzyme
durability,
efficiency,
and
recyclability.
This
review
highlights
the
use
of
eco-friendly
synthesis
methods
to
create
sustainable
nanomaterials
transport.
We
investigate
different
immobilization,
such
as
adsorption,
ionic
covalent
bonding,
entrapment,
cross-linking,
examining
their
pros
cons.
The
decreased
environmental
impact
green-synthesized
from
plants,
bacteria,
fungi
is
emphasized.
exhibits
various
uses
NBCs
in
food
industry,
biofuel
production,
bioremediation,
showing
how
they
can
enhance
effectiveness
eco-friendliness.
Furthermore,
we
explore
potential
biomedicine.
In
general,
green
nanobiocatalysts
are
notable
progression
technology,
leading
environmentally-friendly
effective
biocatalytic
that
have
important
impacts
on
industrial
biomedical
fields.