Petroleum
has
played
a
vital
role
as
the
major
supplier
of
materials
and
energy
during
evolution
human
civilization.
Given
change
in
demand
for
from
high
to
low
carbon
ultimately
net
zero
carbon,
framework
undergone
revolutionary
changes.
The
attribute
petroleum
will
be
gradually
weakened,
while
material
CO2
emission
attributes
strengthened.
Thus,
petrochemical
processing
basis,
scientific
concepts,
ideas
undergo
adjustments
reshape
industry.
Hence,
it
is
necessary
reconsider
industry
historical
perspective
clarify
causes,
development
contexts,
possible
challenges
future
development.
Herein,
we
critically
reassess
key
drivers
rules
guiding
propose
reconstruction
strategy
based
on
simplified
engineering
thinking,
innate
nature
material,
emissions,
which
can
realized
through
integration
gasification
with
CO
target
product
recent
C1
chemistry
targeting
precise
synthesis
chemicals.
concept
product-based
process
selection
transformation
raw
molecules
atom
reconfiguration
driven
by
emissions.
More
accurate
management
C
atoms
accomplished
greatly
improved
utilization
efficiency
reduction
separation
intensity
emissions
via
stepwise
introduction
new
approach
current
Molecules,
Год журнала:
2023,
Номер
28(15), С. 5693 - 5693
Опубликована: Июль 27, 2023
With
the
development
of
world
economy
and
rapid
advancement
global
industrialization,
demand
for
energy
continues
to
grow.
The
significant
consumption
fossil
fuels,
such
as
oil,
coal,
natural
gas,
has
led
excessive
carbon
dioxide
emissions,
causing
ecological
problems.
CO2
hydrogenation
technology
can
convert
into
high-value
chemicals
is
considered
one
potential
ways
solve
problem
emissions.
Metal/semiconductor
catalysts
have
shown
good
activity
in
reactions
attracted
widespread
attention.
Therefore,
we
summarize
recent
research
on
metal/semiconductor
photocatalytic
from
design
structure
active
sites
mechanistic
investigations,
internal
mechanism
enhanced
elaborated
give
guidance
highly
catalysts.
Finally,
based
a
understanding
above
issues,
this
review
looks
forward
future
Journal of CO2 Utilization,
Год журнала:
2024,
Номер
82, С. 102741 - 102741
Опубликована: Март 23, 2024
In
this
paper,
the
reductive
N-formylation,
methylation
and
cyclization
of
amines
with
carbon
dioxide
(CO2)
using
sodium
borohydride
(NaBH4)
at
atmospheric
pressure,
via
a
one-pot
two-step
procedure,
is
presented.
Formato
(NaBHn(OCHO)4-n),
in
situ
formed
reaction
NaBH4
CO2,
as
an
efficient
agent
to
promote
corresponding
reaction,
mechanism
proposed
on
basis
experiments.
This
wide
substrate
scope
simple
operational
methodology
also
facilitates
effective
synthesis
formamides,
methylamines,
benzimidazoles
other
heterocyclic
compounds
avoiding
high
temperature
pressure.
CO
2
capture
and
utilization
has
been
attracting
intensive
attention
owing
to
its
vital
importance
in
long-standing
carbon
emission
reduction.
Numerous
novel
catalysts
strategies
for
the
integrated
conversion
of
have
developed
past
decades.
Here,
we
review
our
recent
electronic
structure
calculations
molecular
dynamics
(MD)
simulations
on
activation
catalytic
transformation.
The
focus
is
mainly
computational
design
several
types
low-dimensional,
nanomaterial-supported,
atomically
dispersed
metal
nonmetal
electrocatalytic
thermocatalytic
reduction
as
well
macrocycles
coupling
with
epoxides.
Based
extensive
simulations,
detailed
reaction
mechanisms,
performances
catalysts,
structure-activity
relationships
homogeneous
heterogeneous
transformation
discussed.