The
pursuit
of
climate
neutrality
in
dairy
farming
has
become
an
imperative,
driven
by
the
urgency
mitigating
greenhouse
gas
emissions
and
achieving
sustainability
goals.
This
paper
presents
a
comprehensive
overview
AI-driven
strategies
to
benchmark
emissions,
optimize
practices,
foster
sustainable
transformation
within
industry.
Through
meticulous
examination
ofgenetic
selection,
diet
management,
feed
additives,
innovative
approaches,
sensortechnologies,
we
elucidate
multifaceted
challenges
promising
solutions.
Genetic
selection
emerged
as
pioneering
approach,
capitalizing
on
genetic
markers
associated
with
methane
production
breed
methane-efficient
cattle.
Diet
encompassing
manipulation
forage-to-concentrate
ratios
incorporation
dietary
oils,
tannin
rich
feedstuffs,
algae,
offers
diverse
toolkit
for
reducing
emissions.
Moreover,
pasture
quality
commercial
exemplified
Bovaer,
demonstrate
potential
reduction.
Emerging
technologies
such
biochar
methane-utilizing
microorganisms
contribute
growing
repertoire
strategies.
integration
sensor
plays
pivotal
role
this
transformation,
providing
real-time
data
animal
behavior,
physiology,
well-being.
These
insights
enable
data-driven
decision-making
indirectly
lower
through
optimized
health
welfare.
benchmarking,
underpinned
machine
learning
models,
empowers
farmers
predictive
capabilities,
benchmarking
against
industry
standards,
personalized
reduction
systems
track
across
Scope
1,
2,
3,
fostering
transparency
collaboration
throughout
supply
chain.
signifies
paradigm
shift
towards
sustainability.
Harnessing
AI's
capabilities
collection,
analysis,
reporting,
decision
support
unprecedented
opportunity
mitigate
enhance
environmental
responsibility
sector.
Energy Conversion and Management X,
Год журнала:
2024,
Номер
23, С. 100661 - 100661
Опубликована: Июль 1, 2024
The
food
industry
is
a
cornerstone
of
the
global
economy,
supporting
millions
jobs
and
generating
substantial
revenue
annually.
It
also
significantly
influences
public
health,
environmental
sustainability,
social
equity.
As
world's
population
continues
to
grow,
demand
for
increasing
dramatically,
necessitating
investments
in
agricultural
productivity,
infrastructure,
improved
distribution
access.
Concurrently,
addressing
resulting
impact
ensuring
sustainability
are
crucial
challenges.
inextricable
link
between
energy,
water,
waste
production
underscores
need
reduce
loss
throughout
supply
chain,
enhance
energy
efficiency
processes,
optimize
resource
utilization.
This
work
aims
extensively
analyze
industry,
focusing
on
dimensions.
study
provides
an
in-depth
exploration
market,
employing
comprehensive
review
approach,
with
information
diverse
geographic
regions
major
markets.
Moreover,
sheds
light
critical
sections
that
present
significant
opportunities
improvements,
emphasizing
intricate
interplay
up
introducing
standardized
taxonomy
planning
framework.
paper
highlights
implications
unsustainable
utilization
resources
valuable
insights
into
feasibility
applicability
various
conventional
innovative
management
strategies.
findings
serve
as
foundation
guide
development
efficient
sustainable
solutions
cleaner
future.
Energy Conversion and Management,
Год журнала:
2024,
Номер
306, С. 118286 - 118286
Опубликована: Март 15, 2024
With
rising
temperatures,
extreme
weather
events,
and
environmental
challenges,
there
is
a
strong
push
towards
decarbonization
an
emphasis
on
renewable
energy,
with
wind
energy
emerging
as
key
player.
The
concept
of
multi-energy
systems
offers
innovative
approach
to
decarbonization,
the
potential
produce
hydrogen
one
output
streams,
creating
another
avenue
for
clean
production.
Hydrogen
has
significant
decarbonizing
multiple
sectors
across
buildings,
transport,
industries.
This
paper
explores
integration
production,
particularly
in
areas
where
solutions
are
crucial,
such
impoverished
villages
Africa.
It
models
three
systems:
distinct
configurations
micro-multi-energy
that
generate
electricity,
space
cooling,
hot
water,
using
thermodynamics
cost
approach.
System
1
combines
turbine,
hydrogen-producing
electrolyzer,
heat
pump
cooling
water.
2
integrates
this
biomass-fired
reheat-regenerative
power
cycle
balance
out
intermittency
power.
3
incorporates
solid
oxide
fuel
cell
continuous
electricity
absorption
system
refrigeration,
exchanger
water
These
modeled
Engineering
Equation
Solver,
analyzed
based
exergy
efficiencies,
economic
metrics
like
levelized
(LCOE),
(LCOC),
refrigeration
(LCOR),
(LCOH)
under
steady-state
conditions.
A
sensitivity
analysis
various
parameters
presented
assess
change
performance.
Systems
were
optimized
multi-objective
method,
maximizing
efficiency
minimizing
total
product
unit
used
objective
functions.
results
show
achieves
79.78
%
53.94
efficiency.
efficiencies
55.26
27.05
respectively,
while
attains
78.73
58.51
respectively.
costs
LCOE
=
0.04993
$/kWh,
LCOC
0.004722
LCOH
0.03328
$/kWh.
For
2,
these
values
0.03653
0.003743
In
case
3,
they
0.03736
0.004726
0.03335
LCOR
0.03309
here
have
competitive
performance
existing
systems,
powered
by
other
renewables.
Integrating
will
further
sustainable
net
zero
transition,
especially
rural
communities.
Deleted Journal,
Год журнала:
2025,
Номер
unknown, С. 100062 - 100062
Опубликована: Янв. 1, 2025
<p>Along
with
the
gradual
phase-out
of
fossil-fuels,
technology
readiness
and
cost
decline
renewable
energy
technologies
battery
storages
can
bring
new
prospects
for
trading
market
extensive
power-sector
decarbonization.
Renewable
has
rapidly
transformed
from
traditional
grid-based
transactions
towards
future
direct
free
multi-stakeholders.
However,
sustainable
development
systems
is
unclear,
in
terms
establishment
conditions,
increased
profit
margin
promotion
initiatives.
In
this
study,
markets
spontaneous
system
installations
among
stakeholders
instead
government
are
proposed
spatiotemporal
economic
balances
different
types
buildings
electric
vehicles
(EVs).
For
centralized
system,
it
based
on
transmission
between
PV
farms
consumers.
Besides,
distributed
also
established
EV
owners
prosumers
flexible
management
strategies
(i.e.
sharing,
cascade
utilization).
Roles
EVs
under
vehicle-to-everything
(V2X)
charging/discharging
modes
analysed
considering
trade-off
additional
expenditures
cycling
aging
costs
profits
feasibility
carbon
emission
reduction
environmental
sustainability
dynamic
mechanism
associated
decline.
The
results
suggest
that,
due
to
rapid
both
renewables
batteries,
along
penetration
systems,
free-market
model
could
become
widely
accepted
by
2060.
Due
decrease
increase
grid
price,
will
transit
payers
earners,
levelized
charging
(LCOC)
sharing
decreases
2.24
CNY/kWh
2020
-1.27
Furthermore,
retired
utilization
building
reduce
electricity
(LEC)
residential
owners.
Overall,
study
provides
valuable
insights
into
evolutions
which
significantly
encourages
investments
behaviours
deployment.</p>
Energies,
Год журнала:
2024,
Номер
17(5), С. 1101 - 1101
Опубликована: Фев. 25, 2024
This
paper
aims
to
investigate
potential
strategies
reduce
energy
consumption
and
environmental
impacts
of
a
recently
converted
rural
complex
into
an
agri-spa
in
high
value
area
within
the
province
Viterbo
(Italy).
Actual
operational
data
on
appliances,
climate,
are
employed
for
audit.
While
this
analysis
generally
provides
energy-saving
solutions,
such
options
not
examined
their
life
cycle
impacts.
The
current
article
is
based
experimentation
consolidated
methodological
approach
scientific
literature,
integrating
audit,
assessment
(LCA),
economic
(Life
Cycle
Cost)
assess
series
energy-efficiency
measures
designed
new
wellness
centre
function.
combined
use
these
well-established
procedures
comprehensive
intervention
scenarios
particularly
energy-intensive
type
case
study,
yet
widely
documented
literature.
results
reveal
that
related
heating/cooling
marginal
compared
actual
electrical
specific
study.
Therefore,
most
efficient
involve
installing
photovoltaic
systems
replacing
gas
boilers
with
high-efficiency
heat
pumps,
especially
economically
advantageous
insulation.
leads
51%
reduction
81%
decrease
heating,
DHW,
electricity
costs.
Administrative Sciences,
Год журнала:
2025,
Номер
15(2), С. 38 - 38
Опубликована: Янв. 27, 2025
The
current
Bangladeshi
dairy
sector
faces
many
problems
related
to
sustainability
indicators
from
economic,
social,
and
environmental
perspectives.
In
this
circumstance,
they
must
combine
cutting-edge
innovation
overcome
growing
concerns
technical
revolutions
become
smart
farms.
This
study
analyzes
how
farmers
might
use
technologies
in
their
sub-processes
determine
the
benefits
of
achieving
additional
productivity
efficiency.
paper
examines
precision
livestock
farming,
information
analytics,
alternative
energy
sources
reduce
hazards
increase
resource
Using
like
artificial
intelligence
(AI),
machine
learning
(ML),
robotics
(RPA),
Internet
Things
(IoT),
data
system
dynamics,
simulation
modeling
can
assist
improving
results.
Analyzing
developing
country
case
studies
best
practices
reveals
crucial
answers
for
reconciling
stewardship
operational
dynamics
method
builds
a
model
finds
projected
results
before
implementing
it
real
life.
findings
provide
considerable
waste
reduction
gains
through
technological
deployments.
creates
two
scenarios
‘current’
‘technology-adopted’
processes
examine
transformational
sustainable
practices.
A
was
adopted
technology
deployment
organize
comprehensive
strategy
that
blends
sustainability.
ends
with
recommendations
policymakers
create
resilient
environmentally
friendly
operation
secure
sector’s
long-term
viability
transforming
technologies.
Future
farms
follow
practical,
technical,
policy,
as
well
improve
processes,
such
farm
concepts
available
academia
dairy-developed
countries.