Case Studies in Construction Materials,
Год журнала:
2024,
Номер
20, С. e02918 - e02918
Опубликована: Янв. 28, 2024
The
use
of
industrial
and
agro-based
precursor
materials
from
local
sources
can
achieve
desirable
properties
for
geopolymer
binders,
thus
realize
the
carbon-efficient
sustainable
in
construction
industry.
At
same
time,
synergy
between
these
precursors
be
assessed
using
multilevel
material
investigation,
which
has
not
been
explored
extensively.
Moreover,
there
are
limited
studies
on
ternary
synthesized
with
rice
husk
ash
uncontrolled
burning
source
such
as
brick
kilns.
Therefore,
this
study
evaluates
performance
blended
binders
comprised
ground
granulated
blast
furnace
slag
(GGBFS),
fly
(FLA),
kiln
ask
(BRHA),
implementing
approach.
experimental
program
includes
assessment
comparative
analyses
setting
flow,
compressive
strength,
density,
water
absorption,
efflorescence.
Additionally,
X-ray
diffraction
(XRD)
scanning
electron
microscopy
(SEM)
examine
crystallographic
structure
microscopic
morphology
composite
binders.
initial
time
ranged
21
min
to
47
mixes,
comparison
58
binary
mixes.
GGBFS
significantly
contribute
binder
due
hydration
reaction
formation
C-S-H
gel.
flow
mixes
exhibits
standard
deviation
11.42
mm
when
compared
20.96
Lower
dispersion
values
suggests
improved
coaction
GGBFS,
FLA,
BRHA.
strength
optimum
60
MPa
was
obtained
G60A40F95R5,
25%
66.67%
higher
than
G60F40
G60R40,
respectively.
Similarly,
mix
G70A30F95R5
showed
least
absorption
2.08%
53%
58.4%
lower
G70F30
G70R30,
improvement
confirmed
XRD
analysis,
reveal
coexistence
along
crystalline
SiO2
that
positively
improve
microstructure
binder.
SEM
analysis
dense
further
validate
sustainability
discloses
enhanced
wherein,
G60A40F95R5
19.35%
46.23%
carbon
dioxide
parameter
All
all,
investigation
provides
a
great
avenue
delve
best
performing
will
find
applications
Environmental Chemistry Letters,
Год журнала:
2023,
Номер
21(4), С. 2003 - 2039
Опубликована: Март 23, 2023
Abstract
New
technologies,
systems,
societal
organization
and
policies
for
energy
saving
are
urgently
needed
in
the
context
of
accelerated
climate
change,
Ukraine
conflict
past
coronavirus
disease
2019
pandemic.
For
instance,
concerns
about
market
policy
responses
that
could
lead
to
new
lock-ins,
such
as
investing
liquefied
natural
gas
infrastructure
using
all
available
fossil
fuels
compensate
Russian
supply
cuts,
may
hinder
decarbonization
efforts.
Here
we
review
energy-saving
solutions
with
a
focus
on
actual
crisis,
green
alternatives
fuel
heating,
buildings
transportation,
artificial
intelligence
sustainable
energy,
implications
environment
society.
Green
include
biomass
boilers
stoves,
hybrid
heat
pumps,
geothermal
solar
thermal
photovoltaics
systems
into
electric
boilers,
compressed
hydrogen.
We
also
detail
case
studies
Germany
which
is
planning
100%
renewable
switch
by
2050
developing
storage
air
China,
emphasis
technical
economic
aspects.
The
global
consumption
2020
was
30.01%
industry,
26.18%
transport,
22.08%
residential
sectors.
10–40%
can
be
reduced
sources,
passive
design
strategies,
smart
grid
analytics,
energy-efficient
building
intelligent
monitoring.
Electric
vehicles
offer
highest
cost-per-kilometer
reduction
75%
lowest
loss
33%,
yet
battery-related
issues,
cost,
weight
challenging.
5–30%
saved
automated
networked
vehicles.
Artificial
shows
huge
potential
improving
weather
forecasting
machine
maintenance
enabling
connectivity
across
homes,
workplaces,
transportation.
18.97–42.60%
through
deep
neural
networking.
In
electricity
sector,
automate
power
generation,
distribution,
transmission
operations,
balance
without
human
intervention,
enable
lightning-speed
trading
arbitrage
decisions
at
scale,
eliminate
need
manual
adjustments
end-users.
Environmental Chemistry Letters,
Год журнала:
2023,
Номер
21(4), С. 1959 - 1989
Опубликована: Май 9, 2023
Abstract
The
rising
amount
of
waste
generated
worldwide
is
inducing
issues
pollution,
management,
and
recycling,
calling
for
new
strategies
to
improve
the
ecosystem,
such
as
use
artificial
intelligence.
Here,
we
review
application
intelligence
in
waste-to-energy,
smart
bins,
waste-sorting
robots,
generation
models,
monitoring
tracking,
plastic
pyrolysis,
distinguishing
fossil
modern
materials,
logistics,
disposal,
illegal
dumping,
resource
recovery,
cities,
process
efficiency,
cost
savings,
improving
public
health.
Using
logistics
can
reduce
transportation
distance
by
up
36.8%,
savings
13.35%,
time
28.22%.
Artificial
allows
identifying
sorting
with
an
accuracy
ranging
from
72.8
99.95%.
combined
chemical
analysis
improves
carbon
emission
estimation,
energy
conversion.
We
also
explain
how
efficiency
be
increased
costs
reduced
management
systems
cities.
Environmental Chemistry Letters,
Год журнала:
2023,
Номер
21(3), С. 1381 - 1418
Опубликована: Март 24, 2023
Abstract
The
global
shift
from
a
fossil
fuel-based
to
an
electrical-based
society
is
commonly
viewed
as
ecological
improvement.
However,
the
electrical
power
industry
major
source
of
carbon
dioxide
emissions,
and
incorporating
renewable
energy
can
still
negatively
impact
environment.
Despite
rising
research
in
energy,
consumption
on
environment
poorly
known.
Here,
we
review
integration
energies
into
electricity
sector
social,
environmental,
economic
perspectives.
We
found
that
implementing
solar
photovoltaic,
battery
storage,
wind,
hydropower,
bioenergy
provide
504,000
jobs
2030
4.18
million
2050.
For
desalinization,
photovoltaic/wind/battery
storage
systems
supported
by
diesel
generator
reduce
cost
water
production
69%
adverse
environmental
effects
90%,
compared
full
fuel
systems.
potential
emission
reduction
increases
with
percentage
sources
utilized.
photovoltaic/wind/hydroelectric
system
most
effective
addressing
climate
change,
producing
2.11–5.46%
increase
generation
3.74–71.61%
guarantee
share
ratios.
Compared
single
systems,
hybrid
are
more
reliable
better
equipped
withstand
impacts
change
supply.
Environmental Chemistry Letters,
Год журнала:
2023,
Номер
21(5), С. 2525 - 2557
Опубликована: Июнь 13, 2023
Abstract
Climate
change
is
a
major
threat
already
causing
system
damage
to
urban
and
natural
systems,
inducing
global
economic
losses
of
over
$500
billion.
These
issues
may
be
partly
solved
by
artificial
intelligence
because
integrates
internet
resources
make
prompt
suggestions
based
on
accurate
climate
predictions.
Here
we
review
recent
research
applications
in
mitigating
the
adverse
effects
change,
with
focus
energy
efficiency,
carbon
sequestration
storage,
weather
renewable
forecasting,
grid
management,
building
design,
transportation,
precision
agriculture,
industrial
processes,
reducing
deforestation,
resilient
cities.
We
found
that
enhancing
efficiency
can
significantly
contribute
impact
change.
Smart
manufacturing
reduce
consumption,
waste,
emissions
30–50%
and,
particular,
consumption
buildings
30–50%.
About
70%
gas
industry
utilizes
technologies
enhance
accuracy
reliability
forecasts.
Combining
smart
grids
optimize
power
thereby
electricity
bills
10–20%.
Intelligent
transportation
systems
dioxide
approximately
60%.
Moreover,
management
design
cities
through
application
further
promote
sustainability.
Developments in the Built Environment,
Год журнала:
2023,
Номер
16, С. 100255 - 100255
Опубликована: Окт. 18, 2023
To
reduce
the
carbon
footprint
of
traditional
concrete
materials,
natural
fiber
is
vital.
This
study
systematically
analyzed
196
peer-reviewed
papers
using
literature
review
method
to
understand
fresh
properties,
mechanical
durability,
thermal
conductivity,
sound
absorption
sustainability,
applications,
barriers,
and
opportunities
for
concrete.
The
findings
indicate
that
reduces
cracking
rate,
increasing
tensile
strength.
Although
fibers
enhance
stress
distribution
within
concrete,
its
stability,
they
compressive
Additionally,
85.7%
concretes
exhibit
considerable
environmental
benefits;
however,
28.6%
43%
reviewed
studies
effective
economic
social
respectively.
Moreover,
this
demonstrates
following
potential
utilization:
60%
in
road
pavements
30%
residential
buildings.
However,
still
predominantly
utilized
laboratory
stage.
perspective
noteworthy:
summarizes
barriers
impede
application
develops
relevant
recommendations.
Environmental Chemistry Letters,
Год журнала:
2024,
Номер
22(2), С. 715 - 750
Опубликована: Янв. 29, 2024
Abstract
Traditional
building
materials
have
some
drawbacks
in
the
construction
industry,
particularly
terms
of
greenhouse
gas
emissions
and
energy
consumption.
Biomaterials
derived
from
renewable
sources
are
a
promising
alternative,
significantly
reducing
effect
enhancing
efficiency.
However,
traditional
still
dominate
sector,
there
is
lack
understanding
among
policymakers
developers
regarding
biomaterials.
Here,
we
review
biomaterials
their
policies
life
cycle
assessment
through
case
studies.
Bio-based
potential
to
reduce
over
320,000
tons
carbon
dioxide
by
2050.
They
also
exhibit
advantages
like
decreasing
water
absorption
40%,
consumption
8.7%,
acoustic
6.7%,
improving
mechanical
properties.
We
summarize
recent
advancements
mycelial
materials,
bioconcrete,
natural
fibers,
fiber-reinforced
composites.
explore
contributions
nanotechnology
microalgae
technology
biomaterials'
thermal
insulation
eco-friendliness.
Environmental Chemistry Letters,
Год журнала:
2023,
Номер
22(2), С. 751 - 784
Опубликована: Дек. 15, 2023
Abstract
The
building
sector
is
significantly
contributing
to
climate
change,
pollution,
and
energy
crises,
thus
requiring
a
rapid
shift
more
sustainable
construction
practices.
Here,
we
review
the
emerging
practices
of
integrating
renewable
energies
in
sector,
with
focus
on
types,
policies,
innovations,
perspectives.
sources
include
solar,
wind,
geothermal,
biomass
fuels.
Case
studies
Seattle,
USA,
Manama,
Bahrain,
are
presented.
Perspectives
comprise
self-sufficiency,
microgrids,
carbon
neutrality,
intelligent
buildings,
cost
reduction,
storage,
policy
support,
market
recognition.
Incorporating
wind
into
buildings
can
fulfill
about
15%
building's
requirements,
while
solar
integration
elevate
contribution
83%.
Financial
incentives,
such
as
30%
subsidy
for
adoption
technologies,
augment
appeal
these
innovations.
Materials,
Год журнала:
2023,
Номер
16(15), С. 5218 - 5218
Опубликована: Июль 25, 2023
Studies
were
carried
out
to
find
a
relation
between
the
important
physical
property,
i.e.,
water
absorption
and
main
mechanical
parameter,
compressive
strength
(fcm),
of
concretes
containing
coal
fly
ash
(CFA)
in
amounts
0%
(CFA-00),
20%
(CFA-20%),
30%
(CFA-30).
The
methodology
tests
reflected
conditions
prevailing
case
reinforced
concrete
structures
operating
below
table.
microstructure
all
materials
was
also
assessed.
Based
on
conducted
studies,
it
found
that
both
fcm
with
addition
CFA
its
depended
percentage
waste
used,
whereas
analyzed
parameters
closely
related
structure
cement
matrix
interfacial
transition
zone
area
coarse
aggregates
paste.
It
should
be
stated
at
content
binder
composition,
an
increase
material
is
observed,
simultaneous
absorption.
On
other
hand,
results
significant
decrease
composite
Thus,
CFA,
directly
proportional
level
Moreover,
including
may
durability
subjected
immersion
conditions.
From
application
point
view,
obtained
research
helpful
understanding
impact
additive
this
waste.
Materials Research Express,
Год журнала:
2023,
Номер
10(8), С. 085505 - 085505
Опубликована: Авг. 1, 2023
Abstract
Fly
ash
(FA)
is
a
waste
product
generated
in
thermal
power
plant
huge
quantitie
has
been
posing
problems
of
disposal.
Therefore,
the
purpose
this
study
to
make
meaningful
utilization
FA
as
binder
concrete
composites,
while
research
involved
low
volume
fly
(LVFAC).
The
cements
used
studies
were
ordinary
Portland
cement
(OPC),
(FA-00)
and
two
blended
OPC
containing
amount
of:
20%
(FA-20)
30%
(FA-30).
This
confronts
following
properties:
water
absorptions
by
immersion
(
wa
)
compressive
strength
f
cm
).
methodology
tests
was
reflect
conditions
prevailing
case
reinforced
structures
operating
below
table.
Both
evaluated
properties
measured
at
28
days.
In
addition,
microstructure
all
materials
also
assessed.
results
show
that,
best
,
i.e.
48.96
MPa
can
be
obtained
FA-20
concrete.
However,
LVFAC
decreases
45.10
MPa.
On
other
hand
average
values
4.6%
for
FA-30
5.3%
FA-20,
respectively.
Based
on
microstructural
it
found
that
behavior
attributed
reduced
pore
diameters
densification
matrix
series
showing
loose
porous
microstructure,
composite
increased
accordingly.
conducted
stated
may
increase
durability
subjected
conditions.
Furthermore,
from
an
application
point
view,
helpful
understanding
impact
additive
level
concretes
with
waste.