PORTLAND, Ore., Aug. 2, 2024 /PRNewswire/ -- Environmental
regulations and policies play a critical role in promoting the
construction and adoption of zero-emission buildings (ZEBs)
globally. These regulations are designed to reduce carbon emissions
and combat climate change, creating a regulatory framework that
encourages or even mandates the development of energy-efficient and
sustainable buildings. These stringent regulations create a
favorable environment for the adoption of zero-emission buildings
by setting clear expectations for energy performance and
sustainability.
Allied Market Research published a report, titled,
"Zero Emission Buildings Market by Element
Type (Lighting, Walls & Roofs, Heating, Ventilation, And Air
Conditioning (HVAC) Systems, and Others), Building Type
(Residential and Commercial): Global Opportunity Analysis and
Industry Forecast, 2024-2033". The global zero emission
building market size was valued at $28.7
billion in 2023, and is projected to reach $155.1 Billion by 2033, growing at a CAGR of
18.4% from 2024 to 2033.
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Prime determinants of growth
The zero emission building market is propelled by several key
drivers, including stringent environmental regulations and policies
aimed at reducing carbon emissions, rising energy costs that make
energy-efficient buildings more attractive, and technological
advancements in building materials and renewable energy systems. In
addition, increase in consumer awareness and demand for sustainable
living and working environments, coupled with financial incentives
and subsidies from governments, further stimulate market growth.
However, the market faces restraints such as the high initial
construction costs, technical and design challenges, and a limited
availability of skilled labor. Despite these challenges,
significant opportunities exist in the continued innovation in
sustainable building technologies, urbanization and smart city
initiatives, retrofitting existing buildings to zero-emission
standards, and the corporate sector's focus on sustainability
goals. The increase in availability of green financing options also
provides a strong foundation for future growth in the zero emission
buildings market.
Report coverage & details:
Report
Coverage
|
Details
|
Forecast
Period
|
2024–2033
|
Base Year
|
2023
|
Market Size In
2023
|
$28.7
Billion
|
Market Size In
2033
|
$155.1
Billion
|
CAGR
|
18.4 %
|
No. Of Pages In
Report
|
280
|
Segments
Covered
|
Element Type, Building
Type, And Region.
|
Drivers
|
- Growing Demand For Sustainable Living And
Working Environments
- Government Policies And Incentives
|
Opportunities
|
- Innovation In Sustainable Building Materials
And Technologies
|
Restraint
|
|
The Heating, Ventilation, and Air Conditioning (HVAC) systems
segment is expected to lead throughout the forecast
period
Heating, Ventilation, and Air Conditioning (HVAC) systems are
critical components of zero-emission buildings due to their
substantial impact on energy consumption. Advanced HVAC
technologies such as high-efficiency heat pumps, energy recovery
ventilation systems, and smart thermostats are integral for
achieving energy efficiency and maintaining indoor air quality.
This segment is often highlighted as the largest or most
significant within the zero emission buildings market.
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Tables, and Figures) @ https://bit.ly/3ylHlZQ
The residential segment is expected to exhibit fastest growth
throughout the forecast period
The residential sector is experiencing substantial growth in the
adoption of zero-emission building practices, driven by several key
factors. Increasing consumer awareness about environmental
sustainability and the long-term cost benefits of energy-efficient
homes is a major driver. Homeowners are becoming more conscious of
their carbon footprints and the advantages of living in
energy-efficient buildings, such as lower utility bills and
improved indoor air quality.
Supportive government policies are also playing a crucial role
in this growth. Many governments around the world are implementing
regulations and incentives to promote zero-emission buildings.
These include tax credits, subsidies, and grants for homeowners and
builders who incorporate energy-efficient technologies and
renewable energy systems into their homes. For example, programs
like the U.S. Department of Energy's Zero Energy Ready Home program
and various European initiatives under the EU's Green Deal
encourage the construction of residential buildings that meet
stringent energy efficiency and sustainability standards.
Asia-Pacific to maintain its
dominance by 2033
The Asia-Pacific region is
experiencing rapid urbanization, leading to increased demand for
residential and commercial buildings. This urban growth provides an
opportunity for integrating zero emission buildings principles from
the outset in new developments. Various countries in the region,
such as Japan, China, South
Korea, and Australia, are
implementing policies to promote energy efficiency and reduce
carbon emissions. For example, Japan's " zero emission buildings roadmap"
aims to make all newly constructed public buildings zero emission
by 2030. China's Green Building
Action Plan also promotes the development of zero emission
buildings through incentives and stricter building codes.
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Players: -
- Skanska AB
- Bouygues Construction
- Honeywell International Inc
- Siemens AG
- Johnson Controls International plc
- Schneider Electric
- Tesla, Inc.
- SunPower Corporation
- Mitsubishi Electric Corporation
- GreenTree Global
Technology Advancement:
- Artificial Intelligence (AI) algorithms analyze vast amounts of
data from building sensors, weather forecasts, occupancy patterns,
and energy consumption to predict future energy demand. This allows
buildings to proactively adjust heating, cooling, lighting, and
ventilation systems to optimize energy usage while maintaining
comfort levels.
- AI-powered Fault Detection and Diagnostics systems continuously
monitor building systems and equipment for abnormalities and
inefficiencies. By identifying potential issues early, these
systems help prevent energy waste, reduce maintenance costs, and
prolong equipment lifespan.
- Machine Learning (ML) algorithms analyze occupant behavior and
feedback to personalize building environments. Smart HVAC and
lighting systems adjust settings based on occupancy, preferences,
and comfort levels, enhancing occupant satisfaction while
minimizing energy consumption.
- AI algorithms optimize energy consumption in response to
fluctuating energy prices and demand. Buildings can automatically
adjust energy usage, such as shifting non-essential loads to
off-peak hours or leveraging onsite energy storage during peak
demand periods, to reduce costs and support grid
stability.
- AI-powered design tools assist architects and engineers in
creating energy-efficient building designs. These tools use
optimization algorithms to generate building layouts, materials
selection, and HVAC system configurations that minimize energy
consumption and environmental impact.
- AI-driven energy management platforms provide real-time
monitoring and reporting of building energy performance. Building
owners and operators can track energy usage, identify trends, and
receive actionable insights to make informed decisions for further
energy optimization.
The report provides a detailed analysis of these key players in
the global zero emission buildings market. These players have
adopted different strategies such as new product launches,
collaborations, expansion, joint ventures, agreements, and others
to increase their market share and maintain dominant shares in
different regions. The report is valuable in highlighting business
performance, operating segments, product portfolio, and strategic
moves of market players to showcase the competitive scenario.
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