Sunday Jun 08, 2025

Net-Zero Energy Buildings (Nzebs) Market Size, Outlook, Key Players, Revenue, Latest Trends, and Forecast 2031

Report Ocean recently released a research report on the Net-Zero Energy Buildings (Nzebs) Market, which covers the market’s historical growth, cost structure, revenue, trends, and potential prospects for the period 2023-2031. The report provides an extensive coverage of the market across various categories and includes a detailed analysis at the national level, along with an evaluation of the key drivers, restraints, trends, and opportunities in the market.

The global Net-Zero Energy Buildings (NZEBs) market is forecast to reach US$ 36 billion by 2030, growing at a compound annual growth rate (CAGR) of 15% during the forecast period from 2021-2030.

ZNE verified buildings use local renewable energy technologies to fulfill their net energy demand over time. The energy is derived on-site from renewable rather than electricity, natural gas, or steam. A Net-Zero Energy Building (NZEBs) is characterized as “a building with very high energy performance, in which the quantity of energy requirement should be met extensively by renewable sources produced on-site or nearby.

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Factors Influencing

Growing technological advancements would boost the demand for Net-Zero Energy Buildings (NZEBs). Moreover, stringent policies and programs in various countries and Zero Negative Energy (ZNE) projects, including colleges, institutional buildings, offices, and public buildings, are expected to fuel the growth of the global net-zero energy buildings (NZEBs) market.

The growing concerns over greenhouse gas (GHG) emissions across the globe are a major driver for the growth of the global Net- Zero Energy Buildings (NZEB). The ongoing growth in industrialization and urbanization has drastically increased the need to control greenhouse gas emissions and protect the environment. As a result, the global Net-Zero Energy Buildings (NZEBs) market may witness promising growth opportunities during the forecast period. Construction Industry recorded 35.0% of the world’s energy use. According to a World Green Building Council report, the construction industry accounts for almost 40 percent of total carbon dioxide emissions globally, 

The market is likely to gain traction during the forecast period as companies adopt defined goals and laws focused on attaining sustainability. The public has become more aware of the feasibility and attainability of net-zero energy aims due to the successful results of the large number of projects utilizing new technology and design methodologies. HVAC systems are one of the most important and energy-consuming components of a building’s construction.

The critical installation design and limited purchasing capacities of solar panels may obstruct the adoption of ZNEBs and actual zero energy operations. As a result, it may decline the growth of the global Net-Zero Energy Buildings (NZEBs). 

Geographic Analysis

Of all the regions, North America has witnessed rapid growing adoption of the Net-Zero Energy Buildings (NZEBs) as the governments in the region are focused on achieving renewable energy use. It is attributed to the aim of reducing GHG emissions. The United States has a higher percentage of verified and emerging ZNE buildings than other countries. Efforts are being made to convert the city’s structures to be nearly zero-energy and green. Regional regulations, councils, designers, builders & contractors, bodies, government departments, organizations, fabricators, and material and equipment suppliers collaborate with regional architects to promote appropriate self-energy buildings. 

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COVID-19 Impact Analysis

The global Net-Zero Energy Buildings (NZEBs) market observed a significant decline during the pandemic period. The closure of construction activities was the main reason for the market decline. Moreover, the halt in industrial activities created a huge impact on the entire industry during the pandemic. 

Market Segmentation

Based on Construction

  • Residential
  • Commercial

Based on Equipment

  • Insulating Panels
  • Lightning Systems
  • HVAC Systems
  • Solar PV Panels

By Region

  • North America
  • The U.S.
  • Canada
  • Mexico
  • Europe
  • Western Europe
  • The UK
  • Germany
  • France
  • Italy
  • Spain
  • Rest of Western Europe
  • Eastern Europe
  • Poland
  • Russia
  • Rest of Eastern Europe
  • Asia Pacific
  • China
  • India
  • Japan
  • Australia & New Zealand
  • ASEAN
  • Rest of Asia Pacific
  • Middle East & Africa (MEA)
  • UAE
  • Saudi Arabia
  • South Africa
  • Rest of MEA
  • South America
  • Brazil
  • Argentina
  • Rest of South America

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Competitors in the Market

  • Daikin Industries Ltd
  • Xtratherm Limited
  • Rockwool Group
  • Solatube International Inc.
  • Kingspan Group plc
  • General Electric (GE)
  • Honeywell International Inc.
  • Schneider Electric
  • CertainTeed
  • Siemens AG
  • Other prominent players

Table of Content

Chapter 1: Global Net-Zero Energy Buildings (Nzebs) Industry Overview

Chapter 3: Market Dynamics

Chapter 4: Top Company Profiles

Chapter 5: Global Net-Zero Energy Buildings (Nzebs) market Competition, by Players

Chapter 6: Global Market Size by Regions

Chapter 7: Global Market Segment by Application

Chapter 8: Global Net-Zero Energy Buildings (Nzebs) Industry Segment by Type

Chapter 9: Market Chain, Sourcing Strategy, and Downstream Buyers

Chapter 10: Strategies and key policies by Distributors/Suppliers/Traders

Chapter 11: Key Marketing Strategy Analysis, by Market Vendors

Chapter 12: Market Effect Factors Analysis

Chapter 13: Global Net-Zero Energy Buildings (Nzebs) market Size Forecast (2023-2031).

Continue….

Reasons to Buy This Report

(A) The research provides valuable insights for top administration, policymakers, professionals, product advancements, sales managers, and stakeholders in the market. It helps them make informed decisions and strategize effectively.

(B) The report offers comprehensive analysis of Net-Zero Energy Buildings (Nzebs) market revenues on a global, regional, and country level, projecting trends until 2031. This data allows companies to assess their market share, identify growth opportunities, and explore new markets.

(C) The research includes segmentation of the Net-Zero Energy Buildings (Nzebs) market based on types, applications, technologies, and end-uses. This segmentation enables leaders to plan their products and allocate resources based on the expected growth rates of each segment.

(D) Analysis of the Net-Zero Energy Buildings (Nzebs) market benefits investors by providing insights into market scope, position, key drivers, challenges, restraints, expansion opportunities, and potential threats. This information helps them make informed investment decisions.

(E) The report offers a detailed analysis of competitors, their key strategies, and market positioning. This knowledge allows businesses to better understand the competition and plan their own strategies accordingly.

(F) The study helps evaluate Net-Zero Energy Buildings (Nzebs) business predictions by region, key countries, and top companies, providing valuable information for investment planning and decision-making.

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