An Updated Review of Recent Applications and Perspectives of Hydrogen Production from Biomass by Fermentation: A Comprehensive Analysis
Biomass,
Год журнала:
2024,
Номер
4(1), С. 132 - 163
Опубликована: Март 1, 2024
Fermentation
is
an
oxygen-free
biological
process
that
produces
hydrogen,
a
clean,
renewable
energy
source
with
the
potential
to
power
low-carbon
economy.
Bibliometric
analysis
crucial
in
academic
research
evaluate
scientific
production,
identify
trends
and
contributors,
map
development
of
field,
providing
valuable
information
guide
researchers
promote
innovation.
This
review
provides
advanced
bibliometric
future
perspective
on
fermentation
for
hydrogen
production.
By
searching
WoS,
we
evaluated
refined
62,087
articles
4493
articles.
allowed
us
most
important
journals,
countries,
institutions,
authors
field.
In
addition,
ten
cited
dominant
areas
were
identified.
A
keyword
revealed
five
clusters
illustrate
where
progressing.
The
outlook
indicates
deeper
understanding
microbiology
support
from
policy
will
drive
fermentation.
Язык: Английский
Unveiling latent topics in the interplay of Circular Economy and Energy Transition: A Topic Modelling approach
Resources Conservation and Recycling,
Год журнала:
2025,
Номер
219, С. 108318 - 108318
Опубликована: Апрель 15, 2025
Язык: Английский
Fabricating mesoporous titanium nanocomposites with high adsorption and photolysis performance by using rice husk ash as a renewable support source
Environmental Technology & Innovation,
Год журнала:
2024,
Номер
34, С. 103605 - 103605
Опубликована: Март 21, 2024
Rice
husk
(RH)
is
a
valuable
and
renewable
source
of
bioenergy.
Once
RH
has
been
burned
to
produce
thermal
energy,
ash
(RHA)
remains,
this
can
be
used
as
sustainable
resource
improve
the
circular
economy.
In
study,
we
RHA
silicon
fabricate
RH-SBA-15.
Incipient
wetness
impregnation
was
then
employed
directly
incorporate
TiO2
nanocrystals
into
mesopores
XRD
TEM
confirmed
successful
integration
framework
RH-SBA-15,
with
hexagonal
array
ordered
mesostructure
RH-SBA-15
being
unchanged.
FTIR
XPS
revealed
formation
Ti–O–Si
bonds
on
surface
which
enhanced
activity
TiO2.
The
pore
volume
area
TiO2/RH-SBA-15
were
0.292–0.604
cm3/g
170–366
m2/g.
Photocatalytic
tests
conducted
examine
catalysts
in
degradation
Reactive
Blue
4
(RB4).
results
indicated
that
exhibited
63%
higher
catalytic
efficiency
than
did
bare
adsorption
high
photolytic
resulted
an
improvement
RB4
degradation.
photoactivity
increased
decreasing
solution
pH
calcination
temperature
increasing
catalyst
mass.
A
ratio
25%
highest
photoactivity,
yielding
composite
completely
eliminated
within
5
h.
composites
had
stability
after
four
cycles.
Overall,
method
study
for
fabricating
mesoporous
photocatalysts
from
recycled
bio-waste
disposal
wastewater
purification.
Язык: Английский
Co-digestion of peach biowaste and parboiled rice effluent: Characterization of feedstocks and renewable energy possibility
International Journal of Hydrogen Energy,
Год журнала:
2024,
Номер
67, С. 618 - 625
Опубликована: Апрель 23, 2024
Язык: Английский
Rice husk as renewable energy: Potential in pabelan and bringin district, semarang regency
IOP Conference Series Earth and Environmental Science,
Год журнала:
2024,
Номер
1414(1), С. 012065 - 012065
Опубликована: Дек. 1, 2024
Abstract
Energy
consumption
in
Indonesia
has
increased
by
7-8%
per
year
line
with
population
and
economic
growth
last
10
years.
Based
on
Indonesian
Government
Ordinance
no.
79/2014
regarding
the
National
Policy,
2025
it’s
required
to
use
renewable
energy
at
least
23%
31%
from
total
mixture
2050.
Besides
its’
limited
availability,
fossil
fuel
leads
greenhouse
gas
release
which
contributing
global
warming.
abundant
sources
such
as
biomass.
data
Central
Statistics
Agency
of
Semarang
Regency,
2023
Regency
40.428,3
ha
rice
field
area
that
produces
246.942,2
tons
rice.
Pabelan
District
agricultural
land
4.950,1
29.451,5
production.
While
Bringin
3.986,9
23.554
Rice
husk
one
byproduct
have
not
been
optimally
utilized.
The
current
underutilization
this
resource,
only
around
20%
being
used
for
practical
purposes,
presents
a
significant
opportunity
tapping
into
its
potential
source.
This
paper
will
elaborate
biogas
production
District,
benefits
environmental
perspectives.
Язык: Английский