Scientia. Technology, science and society.,
Год журнала:
2024,
Номер
1(2), С. 50 - 61
Опубликована: Ноя. 1, 2024
The
construction
industry
is
undergoing
a
transformative
shift
towards
high-quality
development,
driven
by
advancements
in
industrialization,
digitization,
and
intelligent
methodologies.
Among
these
innovations,
3D
printing
technology
has
emerged
as
game-changer
due
to
its
advantages,
including
high
automation,
precision,
consistency,
efficiency.
These
attributes
have
opened
broad
application
prospects
for
construction.
To
deepen
the
understanding
of
concrete
technology,
this
article
explores
latest
developments
trends
field.
It
provides
comprehensive
review
research
scholars
globally,
highlighting
significant
material
strength
water
resistance
achieved
through
technological
innovation.
Additionally,
paper
identifies
current
challenges
proposes
strategies
improvement,
aiming
accelerate
adoption
refinement
within
industry.
Canadian Metallurgical Quarterly,
Год журнала:
2025,
Номер
unknown, С. 1 - 20
Опубликована: Янв. 9, 2025
Carbon
Capture
Utilisation
and
Storage
(CCUS)
technologies
have
become
increasingly
important
to
mitigate
greenhouse
gas
emissions
combat
climate
change.
One
promising
avenue
of
CCUS
is
the
use
industrial
waste
streams
as
feedstock
for
CO2
sequestration.
Iron
steel
slag,
by-products
manufacturing,
shown
potential
effective
adsorbents.
This
current
work
thus
provides
a
comprehensive
review
production
chemical
composition
iron
slags
its
in
sequestration,
synthesis
nanocomposite
hydrogels
via
sol–gel
method,
applications
emerging
trends
The
process
viable
technique
hydrogels,
offering
high
surface
area,
tunable
porosity,
enhanced
reactivity
suitable
CO₂
highlighted
calcium
oxide
content
reactive
sites
slags,
facilitating
sequestration
through
carbonation.
Challenges
such
limited
adsorption
capacity
structural
degradation
over
time
will
be
addressed
by
incorporating
slag
into
hydrogel
matrices.
findings
further
suggest
that
can
improve
functionality,
adding
mechanical
resilience
promoting
fixation
molecules.
study
concluded
slag-based
offer
promising,
sustainable
solution
with
future
research
needed
optimise
these
materials
scalable
environmental
remediation.