Tuning metal-support interactions in MOF-derived CoNi@NC supported Pd catalysts for efficient hydrogenation of bicarbonate using glycerol as a hydrogen donor
Xiaojin Dong,
No information about this author
Wenfeng Zhong,
No information about this author
Xuecheng Li
No information about this author
et al.
Physical Chemistry Chemical Physics,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
The
hydrogenation
of
bicarbonate,
a
byproduct
CO
2
captured
in
alkaline
solutions,
into
formic
acid
(FA)
using
glycerol
(GLY)
as
hydrogen
source
offers
promising
carbon-negative
strategy
for
reducing
emissions.
Language: Английский
Boosting the Transfer Hydrogenation of Nitrobenzene to Azobenzene from Glycerol by Tuning the Oxygen-Vacancy Defects over Iron-Based Catalysts
Honghui Gong,
No information about this author
Fei Wang,
No information about this author
Qi Li
No information about this author
et al.
ACS Sustainable Chemistry & Engineering,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Feb. 5, 2025
Language: Английский
The d-p electron coupling over the unsaturated oxygen coordinated CuCo alloy surface for enhanced N-heteroarenes hydrogenation under mild conditions
Dengqi Zhou,
No information about this author
Ke Zeng,
No information about this author
Liqiang Wang
No information about this author
et al.
Journal of Energy Chemistry,
Journal Year:
2025,
Volume and Issue:
unknown
Published: March 1, 2025
Language: Английский
Upgrading pyrolysis liquid from high-density polyethylene to fuel-like hydrocarbons by catalytic transfer hydrogenation with a NaBH4 hydrogen donor
Journal of the Energy Institute,
Journal Year:
2025,
Volume and Issue:
unknown, P. 102132 - 102132
Published: May 1, 2025
Language: Английский
Conceptual Process Design, Techno-Economics, and Greenhouse Gas Analysis of Furfuryl Alcohol Production via Transfer Hydrogenation
ACS Sustainable Chemistry & Engineering,
Journal Year:
2024,
Volume and Issue:
12(28), P. 10604 - 10614
Published: June 28, 2024
Catalytic
transfer
hydrogenation
(CTH)
has
gained
attention
as
a
potentially
more
sustainable
process
than
conventional
with
H
2
gas.In
this
process,
hydrogen
is
supplied
in
situ
from
donor
molecule
without
the
need
for
high-pressure
.We
developed
conceptual
commercial
of
furfural
into
furfuryl
alcohol
and
performed
techno-economic
greenhouse
gas
analyses
aiming
to
identify
bottlenecks
guide
future
research
field.Two
compounds
were
considered:
isopropanol
ethanol.Total
capital
investment
varies
between
US$24.8-33.3
million
these
processes,
minimum
selling
price
(MSP)
below
market
US$1.52/kgonly
ethanol
donor.The
main
impact
on
profitability
dehydrogenated
co-product.Thus,
low-cost
donors
that
generate
high-value
dehydrogenation
products
are
required
be
competitive
hydrogenation.In
addition,
utilizing
comes
free
embodied
and/or
avoids
GHG
release
CTH
have
lower
emissions
intensity
hydrogenation.
Language: Английский