Advances in finance, accounting, and economics book series,
Год журнала:
2023,
Номер
unknown, С. 218 - 229
Опубликована: Окт. 24, 2023
This
chapter
offers
a
comprehensive
study
on
the
impact
of
artificial
intelligence
(AI)
in
sustainable
energy
industry.
It
aims
to
provide
detailed
analysis
potential
applications,
challenges,
and
opportunities
that
AI
presents
sector.
To
be
able
accomplish
this
goal,
literature
review
was
conducted
twelve
papers
directly
or
indirectly
related
subject.
Their
aims,
methods,
main
findings
were
included
fourth
section.
A
conclusion
reached
by
examining
these
contents.
The
indicate
has
demonstrated
significant
advantages
increased
efficiency
systems
had
been
used
improve
their
performance
different
ways
tasks.
Future
sector
guideline
for
better
use
also
contents
paper.
Lastly,
limitations
recommendations
future
research
shared
discussion.
Hydrogen
(H2)
is
considered
a
suitable
substitute
for
conventional
energy
sources
because
it
abundant
and
environmentally
friendly.
However,
the
widespread
adoption
of
H2
as
an
source
poses
several
challenges
in
production,
storage,
safety,
transportation.
Recent
efforts
to
address
these
have
focused
on
improving
efficiency
cost-effectiveness
production
methods,
developing
advanced
storage
technologies
ensure
safe
handling
transportation
H2,
implementing
comprehensive
safety
protocols.
Furthermore,
are
being
made
integrate
into
existing
infrastructure
explore
new
opportunities
its
application
various
sectors
such
transportation,
industry,
residential
applications.
Overall,
recent
developments
opened
avenues
clean
sustainable
source.
This
review
highlights
potential
solutions
overcome
associated
with
Additionally,
discusses
achieve
carbon-neutral
society
reduce
dependence
fossil
fuels.
Fuels,
Год журнала:
2024,
Номер
5(4), С. 625 - 649
Опубликована: Окт. 4, 2024
The
high
externalized
and
still
partly
unknown
costs
of
fossil
fuels
through
air
pollution
from
combustion,
their
limited
resources
have
caused
mankind
to
(re)turn
renewable
sources
such
as
wind,
solar,
biomass
meet
its
energy
needs.
Converting
synthesis
gas
is
advantageous
since
it
can
utilize
a
wide
variety
(waste)
feedstocks
obtain
an
energetic
versatile
product
at
low
cost
in
large
quantities.
Gasification
no
new
technology;
yet
recent
years,
gasification
has
attracted
significant
attention.
Due
the
non-depletable
nature
agricultural
waste
similar
side
streams,
which
little
value
bring
environmental
problems
when
mismanaged
methane
emissions,
possible
cheap
electrical
or
thermal
produced
with
efficiencies.
Combined
heat
power
(CHP)
preferred
use
case,
recently
focus
moved
polygeneration,
e.g.,
make
value-added
products
gas.
Fischer–Tropsch
coal-derived
syngas
now
being
complemented
by
fermentation
biobased
gas,
where
microorganisms
yield
materials
CO/H2
(and
CO2)
anaerobic
process
CH4/O2
aerobic
process.
Syngas
methanation
offers
alternative
route
produce
synthetic
natural
(SNG,
bio-SNG)
additional
feedstock
for
fermentation.
Materials
made
are
decoupled
primary
operations
do
not
compete
feed
food
production.
ample
raw
material
base
gasification,
basically
be
all
kinds
mostly
dry
biomass,
including
municipal
solid
(MSW),
syngas-derived
highly
scalable.
Amongst
them
bioplastics,
biofuels,
building
blocks,
single-cell
protein
(SCP)
food.
This
article
reviews
state-of-the-art
spotlight
on
sustainable
production
high-volume
materials.
Heliyon,
Год журнала:
2024,
Номер
10(4), С. e26267 - e26267
Опубликована: Фев. 1, 2024
The
concerns
with
the
environment
and
sustainability
have
promoted
options
for
energy
sources
that
mitigate
footprint
of
human
life.
use
biomass
from
agriculture,
forestry
other
land
uses
(AFOLU)
has
enormous
potential
production
bioenergy
as
a
renewable
source
energy.
In
this
context,
research
aims
to
analyse
interrelationships
between
uses,
highlighting
contributions
digital
transition
these
dimensions.
To
achieve
objectives,
bibliometric
analysis
through
co-citation
links
(and
items
related
cited
authors,
references
sources)
was
carried
out
dimensions
associated
AFOLU
after
specific
literature
survey
performed
frameworks.
With
study,
top
were
identified
topics
assessed
it
highlighted
importance
transitions
more
efficient
in
worldwide
contexts.
Microbial Cell Factories,
Год журнала:
2024,
Номер
23(1)
Опубликована: Ноя. 14, 2024
This
review
comprehensively
examines
the
various
applications
of
microalgae,
focusing
on
their
significant
potential
in
producing
biodiesel
and
hydrogen,
serving
as
sustainable
food
sources,
efficacy
treating
both
municipal
food-related
wastewater.
While
previous
studies
have
mainly
focused
specific
such
biofuel
production
or
wastewater
treatment,
this
covers
these
comprehensively.
It
for
microalgae
to
be
applied
industrial
sectors
energy,
security,
environmental
management.
By
bridging
different
application
areas,
differs
from
providing
an
integrated
multifaceted
view
microalgae.
Since
it
is
essential
increase
productivity
process
utilize
applications,
research
trends
cultivation
processes,
including
culture
system
(e.g.,
open
ponds,
closed
ponds)
conditions
pH,
temperature,
light
intensity)
improve
biomass
valuable
substances
was
firstly
analyzed.
In
addition,
technologies
that
can
maximize
while
limiting
contamination
occur
when
utilizing
systems
been
described
CO2
reduction.
conclusion,
has
provided
a
detailed
analysis
current
findings
technological
innovations,
highlighting
important
role
addressing
global
challenges
related
supply,
waste
also
insights
into
future
directions
commercial
several
bio-related
industries,
illustrated
how
continued
exploration
development
area
realize
full
This
review
investigates
the
role
of
Continuous
Improvement
(CI)
methodologies,
including
Lean,
Six
Sigma,
and
Kaizen,
in
enhancing
sustainability
hydrogen
production-a
sector
crucial
to
achieving
global
carbon
neutrality.
CI
practices
are
evaluated
for
their
capacity
optimize
production
processes,
minimize
resource
waste,
reduce
footprints.
Through
a
structured
analysis
applications,
study
identifies
efficiency
gains
green
production,
reductions
energy
consumption
emissions.
The
findings
demonstrate
as
transformative
approach,
offering
operational
environmental
benefits
that
support
cost-effective,
low-emission
solutions.
Recommendations
emphasize
integrating
principles
across
drive
decarbonization,
calling
policy
industry
commitment
leverage
tool
sustainable
innovation.