Hydrogen production from catalytic steam-gasification of biomass using char and char-supported iron catalysts
Yan Cao,
No information about this author
Yu Bai,
No information about this author
Jiang Du
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et al.
Journal of the Energy Institute,
Journal Year:
2025,
Volume and Issue:
unknown, P. 102031 - 102031
Published: Feb. 1, 2025
Language: Английский
Insight into carbon structural variation from steam gasification of rice straw on enhancing hydrogen generation
Journal of Environmental Management,
Journal Year:
2025,
Volume and Issue:
379, P. 124815 - 124815
Published: March 10, 2025
Language: Английский
Optimizing energy recovery from agroforestry waste: Char and inorganic influence on reactivity through co-gasification with coal
Sheng-Li Shi,
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Xinsha Zhang,
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Yanting Wa
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et al.
Process Safety and Environmental Protection,
Journal Year:
2024,
Volume and Issue:
190, P. 704 - 713
Published: July 20, 2024
Language: Английский
Thermogravimetric Analysis of Combustion of Semi-Coke Obtained from Coniferous Wood and Mixtures on Their Basis
Andrey Zhuikov,
No information about this author
Tatyana Pyanykh,
No information about this author
I I Grishina
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et al.
Fire,
Journal Year:
2024,
Volume and Issue:
7(11), P. 385 - 385
Published: Oct. 28, 2024
Coal
remains
one
of
the
most
used
solid
fuels
for
heat
and
electricity
generation
but
burning
coal
releases
large
amounts
CO2
into
urban
atmosphere
in
addition
to
harmful
substances.
In
order
reduce
consumption
fossil
fuels,
it
is
necessary
search
capable
replacing
terms
its
thermal
environmental
characteristics.
One
best
alternative
biomass,
which
considered
carbon
neutral,
characteristics
are
worse
than
those
fuels.
this
work,
an
was
studied
first
time,
semi-coke,
obtained
by
gasification
at
a
temperature
700–900
°C,
combustion
turned
out
be
higher
that
biomass
before
treatment
75%.
We
also
fuel
mixtures
based
on
resulting
semi-coke.
The
aim
work
determine
main
semi-coke
from
coniferous
wood
them.
method
thermogravimetric
analysis
oxidising
medium
heating
rate
20
°C/min
applied
research.
According
results
analysis,
ignition
burnout
temperatures
were
determined,
index
duration
coke
residue
synergetic
interactions
between
mixture
components
influencing
established.
It
found
more
50%
10%
higher.
Adding
increases
30%
decreases
temperature.
synergistically
interact
with
each
other
during
value
maximum
mass
loss
rate.
atomic
ratios
O/C
H/C
lower
gasification.
Language: Английский