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全球绿色建材市场-2024年至2029年预测Global Green Building Materials Market - Forecasts from 2024 to 2029 |
预计2024-2029年期间,绿色建材市场的复合年增长率为8.91%。
由于环保意识不断增强和对永续建筑实践的需求不断增长等关键因素,绿色建筑材料市场正在显着增长。各种绿色建筑材料由于其能源效率、耐用性和防潮性而在住宅和建设产业中越来越受欢迎,例如纤维水泥墙板、竹子、飞灰、热改性木材和再生塑胶。另一方面,住宅产业被认为是绿色建材的主要终端用户产业,预计绿色建材市场将显着成长。在这方面,还有人们对绿色建材的认识和亲和性增强以及政府法规等因素支持终端用户领域绿色建材使用的持续增加。
多年来,人们发现绿色建筑材料具有能源效率,使其成为建筑领域的理想选择。监管支持、消费者意识的提高以及这些材料的经济性进一步推动了绿色建材市场的成长。支持绿建筑的政府政策确保所有建筑业的标准实践。此外,在该市场运营的公司正在增加对研发活动的投资,并提高产品质量,以满足消费者的需求。
截至2021年6月,CII-IGBC和IIA已签署协议,以推动建筑规划和设计领域的绿色建筑方法。消费者和开发人员越来越重视环保材料,以减少建设计划对环境的影响。环保水泥透过提供优异的绝缘性和耐火性来适应这一趋势,使其成为建筑计划的首选。
专用隔热材料材料预计将成为绿色建材市场中成长最快的部分,因为它在提高建筑物的能源效率和永续性方面发挥关键作用。纤维素、棉花、玻璃纤维和矿棉等隔热材料在控制穿过墙壁和屋顶的热通量方面发挥着非常重要的作用,有助于提高建筑物的能源效率。该行业正在快速扩张,特别是由于对节能绿色建筑的需求不断增加,节能绿色建筑在住宅和非住宅建设产业中变得越来越重要。
在政府的支持下,能源效率是推动该市场成长的因素。为了冬天保暖、夏天防热,建筑物需要适当的隔热材料,而这就是透过使用隔热材料来实现的。这种节能房产不仅对消费者有吸引力,对建筑商也有吸引力,因为它可以帮助他们节省能源和金钱。此外,许多政府也提供奖励措施和法规来鼓励使用节能材料,包括隔热材料。这些政策鼓励绿建筑实践,进而鼓励对隔热材料的需求。
此外,人们对使用环保材料的认识也不断增强。由天然纤维和回收材料製成的隔热材料符合这一趋势,因为它们危害较小且更环保。这表明新技术正在不断被发明和创新,以提高隔热材料的性能,使其更加环保。例如,正在开发更永续、更有效减少传热的新型隔热材料。
绿色建材市场预计将从2022年的2,863.74亿美元增至2029年的约5,668.59亿美元,2022-2029年预测期间复合年增长率为8.91%。
在预测期内,北美地区将主导绿色建材市场。
由于几个关键因素,预计北美地区将在预测期内主导绿色建材市场。在北美,各类建设活动中绿建筑的高消耗水准被认为是推动绿色建材市场成长的关键因素。 LEED(能源与环境设计领先)评级系统被认为非常重要,是全球最常用的绿色建筑评级系统,尤其是在美国。 LEED认证系统为开发绿建筑材料提供了一个高效率、节省成本、节省碳的架构。根据 USGBC 的数据,2021 年,墨西哥在 LEED 认证平方英尺 (sq.ft) 方面排名世界第九,拥有 47 个 LEED 绿色建筑计划,面积超过 955,000平方公尺(GSM)。此外,墨西哥多年来已认证了 531 个 LEED计划,总计近 1,100 万平方公尺。
根据美国能源资讯署统计,2021年住宅及商业领域能源消费量在2019年超过10兆Btu(3.1兆千瓦时),2021年将达到11.6兆Btu(3.36兆千瓦时),占28占美国最终消费量总量的%。人们经常证实,建筑物的电能需求非常高,在这方面,美国政府已做出努力,确保大多数低收入住宅都是节能建筑的一部分,从而减少国家的申请。
2023 年 2 月,Holcim 在法国 Saint-Pierre-la-Cours 工厂开设了第一家煅烧陶土水泥工厂,供应 ECOPlanet环保水泥,与标准水泥 (CEM I) 相比,二氧化碳排放减少了 50%。这条先进的生产线每年将生产高达 50 万吨低碳水泥,并使用 100% 生物质替代燃料和废热回收系统进行永续营运。
The green building materials market is expected to register at a CAGR of 8.91% during the projected period of 2024-2029.
There has been significant growth in the global green building materials market owing to imperative factors such as an increase in environmental awareness followed by the rising need for sustainable construction practices. Various types of green building materials are gaining popularity such as fiber cement siding, bamboo, fly ash, thermally modified wood, and recycled plastic among others in the residential and construction industries due to their energy efficiency, durability, and even moisture resistance. The residential sector on the other hand is expected to witness significant growth when it comes to the green building materials market as it is regarded to be the major end-user industry for green building materials. In this regard, there are factors as well such as the increasing awareness and affinity towards green building materials and the government regulations favoring the continuous increase in the use of these materials in the end-user sector.
Over the years, green building materials have turned out to be energy-efficient, which makes them an ideal choice when it comes to the construction sector thereby driving the growth of the market. The growth of the green building materials market is further driven by regulatory support, growing consumer awareness, and the economic viability of these materials. Governmental policies in support of green building construction ensure the standard practices across all construction sectors. Furthermore, companies operating in the market are increasing their investments in research and development activities and improving product quality to meet consumer requirements.
As of June 2021, the CII-IGBC and the IIA signed an agreement to boost green building methods in the area of architectural planning and design. Consumers and developers are increasingly prioritizing eco-friendly materials to reduce the environmental impact of construction projects. Green cement aligns with this trend by offering superior thermal insulation and fire resistance properties, making it a preferred choice for building projects.
The insulation segment by application is expected to be the fastest-growing segment in the green building materials market, driven by its significant role in enhancing energy efficiency and sustainability in buildings. Cellulose, cotton, fiberglass, and mineral wool are some of the insulation materials that play a very essential role in controlling the heat flux through walls and roofs, hence contributing to the energy efficiency of buildings. This segment is expanding at a very fast pace owing to the rising demand for energy-efficient green buildings that is gaining importance, especially in both residential and non-residential construction industry.
Energy efficiency is the factor that is creating growth for this market accompanied by the government's backing. To keep warmth in during winter or out during summer, buildings need proper insulation, and it is done by using insulation materials. This energy conservation characteristic is engaging to builders as well as consumers because it helps save energy and money. Additionally, many governments are offering incentives and regulations to promote the use of energy-efficient materials, including insulation. These policies encourage the adoption of green building practices, which in turn drive the demand for insulation materials.
Additionally, there is a growing awareness regarding the use of eco-friendly materials. Insulation materials made from natural fibers or recycled materials align with this trend, as they are less hazardous and more eco-friendly. This shows that there is constant invention and innovation of new technologies in insulation materials making them perform better and being environmentally friendly. For instance, new insulation products are being developed that are more effective at reducing heat transfer while also being more sustainable.
The green building materials market is expected to grow at a CAGR of 8.91% during the forecast period of 2022-2029 reaching around US$566.859 billion in 2029 from US$286.374 billion in 2022.
North America region to dominate the green building materials market during the forecast period.
The North American region is expected to dominate the green building materials market during the forecast period, driven by several key factors. In North America, the high level of consumption of green buildings across all types of construction activities is regarded to be the primary factor that is driving the growth of the green building materials market. The Leadership in Energy and Environmental Design (LEED) rating system is considered highly essential and is most commonly used in the green building rating system across the world, especially in the United States. LEED-certified system provides a framework that is efficient, cost-saving as well as carbon-saving, towards the formulation of green building materials. According to the USGBC, in 2021, Mexico recorded the 9th position globally in terms of square feet (sq.ft) of the LEED certification with 47 LEED green building projects representing more than 955,000 gross square meters (GSM) of space. Furthermore, over the years Mexico also certified 531 LEED projects, totalling nearly 11 million GSM.
According to the US Energy Information Administration, in 2021, the residential and commercial sectors consumed energy more than 10 quadrillion Btu (3.1 trillion kWh) in 2019 and 11.6 quadrillion Btu (3,36 trillion kWh) in 2021, thus accounting for 28% of the overall end-use consumption in the United States. The high energy demand for electricity from buildings has been frequently seen to be very high and the US government in this regard formulated plans to transform the majority of the homes in the lower-income demographics to make them part of the energy-efficient structures and moderate the country's bills.
February 2023, Holcim in its Saint-Pierre-la-Cour Plant in France launched its first calcined clay clement operation to deliver ECOPlanet green cement with a 50% lower CO2 footprint compared to standard cement (CEM I). This advanced production line will produce up to 500,000 tons of low-carbon cement per year with its sustainable operations being powered with 100% biomass-based alternative fuels and waste heat recovery systems.