Development of a new renewable energy system for clean hydrogen and ethanol production
Energy Conversion and Management,
Journal Year:
2024,
Volume and Issue:
306, P. 118304 - 118304
Published: March 21, 2024
The
present
research
work
aims
to
a
uniquely
designed
renewable
energy-based
integrated
system
along
with
an
equilibrium
model
for
the
processing
of
feedstock
by
following
hybrid
route
thermochemical
and
biochemical
ways.
In
this
regard,
Canadian
maple
leaves
plastic
wastes
are
selected
as
potential
feedstocks
co-pyrolysis
syngas
fermentation.
influence
process
parameters
on
overall
performance
is
investigated
assessed.
Also,
several
sensitivity
analyses
performed
determine
optimal
operating
that
can
generate
maximum
yields
hydrogen
ethanol.
further
thermodynamically
in
terms
energetic
exergetic
approaches
efficiencies.
study
shows
molar
flow
ratio
1:1
wastes,
temperature
1000°C
temperature,
pressure
1
bar
appear
be
most
suitable
conditions
net
production
capacities
7.43
tons/day
8.72
cold
gas
efficiency
LHV
produced
found
57.23%
19.96
MJ/kg,
respectively.
efficiencies
30.98%
26.88%,
Language: Английский
Processing of lipid-enriched microalgae Chlorella biomass into biofuels and value-added chemicals
Fuel,
Journal Year:
2024,
Volume and Issue:
381, P. 133484 - 133484
Published: Oct. 25, 2024
Language: Английский
The removal of tar and the production of methane-rich gas from biomass hydrogen pyrolysis by using biochar-based catalysts
Energy Conversion and Management,
Journal Year:
2024,
Volume and Issue:
313, P. 118596 - 118596
Published: May 29, 2024
Language: Английский
From Microalgal Biomass to Biohydrogen
Advances in environmental engineering and green technologies book series,
Journal Year:
2024,
Volume and Issue:
unknown, P. 29 - 38
Published: May 6, 2024
The
rising
influence
of
greenhouse
gas
(GHG)
emissions
from
burning
fossil
fuels
on
climate
change
has
led
to
a
demand
for
clean
energy.
only
consequence
H2's
combustion
is
water
vapor,
making
it
energy
source.
As
source,
hydrogen
contributes
significantly
and
environmental
sustainability
helps
mitigate
the
world's
problem
change.
Microalgae
have
recently
been
found
hold
tremendous
promise
producing
biodiesel
biohydrogen.
Under
certain
conditions,
sunlight
used
by
green
microalgae
split
particles,
resulting
in
production
molecular
oxygenation.
With
an
emphasis
microalgae,
this
review
outlined
possible
algal
strains
production.
In
addition,
comprehensive
procedure
aimed
at
presenting
importance
using
produce
hydrogen.
More
significantly,
included
overview
present
constraints
potential
future
directions
sustainable
synthesis
biohydrogen
microalgae.
Language: Английский