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市场调查报告书
商品编码
1803039
全球碳中和水泥市场预测(至2032年):按类型、原料、通路、技术、应用、最终用户和地区进行分析Carbon-Neutral Cement Market Forecasts to 2032 - Global Analysis By Type, Raw Material, Distribution Channel, Technology, Application, End User and By Geography |
根据 Stratistics MRC 的数据,全球碳中和水泥市场预计在 2025 年达到 25.1 亿美元,到 2032 年将达到 47.4 亿美元,预测期内的复合年增长率为 11.2%。
碳中和水泥是一种旨在在其整个生命週期中抵消或消除碳排放的水泥。这是透过替代黏合剂、碳捕获技术以及在生产中使用可再生能源等技术创新来实现的。此外,飞灰和矿渣等替代工业产品的加入减少了对传统水泥熟料的依赖。其目标是在保持结构完整性、支持永续施工实践以及与全球建筑材料产业脱碳目标保持一致的同时,最大限度地减少对环境的影响。
根据能源与资源研究所(TERI)的数据,2016年全球水泥消费量达到约48亿吨,预计2022年将接近60亿吨。
对绿色建筑和永续基础设施的需求不断增加
随着政府和私人开发商越来越多地采用绿色建筑认证,对低排放材料的需求也日益增长。碳中和水泥是寻求减少环境影响的基础设施计划的首选,因为它符合全球气候变迁目标。此外,新兴国家日益增长的都市化正在加速向环保建筑材料的转变。主要市场的政策奖励和更严格的排放法规进一步推动了这一趋势。
生产成本上升和价格竞争
水泥生产过程涉及许多先进技术和替代原材料,这会增加生产成本。此外,传统水泥製造商受益于规模经济,这使得永续替代水泥难以在价格上竞争。低碳原料的供应有限以及对专用设备的需求也导致营运成本上升。这些因素影响市场渗透率,尤其是在价格敏感地区。
开发新型「无碳」水泥化学
研究人员正在探索以无机聚合物为基础的黏合剂、硅酸镁体係以及其他能够显着减少二氧化碳排放的新型化合物。这些新技术不仅具有环境效益,还能提升材料性能,例如耐久性和耐热性。产学研之间的策略合作正在加速这些替代技术的商业化。随着法律规范不断发展以支持低碳解决方案,市场已准备好迎接变革性成长。
缺乏对「碳中和」或「低碳」水泥的明确一致的定义
「低碳」和「碳中和」等术语的使用经常不一致,导致相关人员产生混淆。这种模糊性损害了消费者的信任,并使合规性变得复杂。如果没有明确的基准,企业可能会诉诸「绿色清洗,从而破坏真正的永续性努力。缺乏统一的评估标准也使得跨地区产品比较变得困难,从而减缓了对可靠解决方案的采用和投资。
疫情扰乱了全球供应链和施工进度,暂时减缓了碳中和水泥的推广应用。封锁和劳动力短缺导致计划延期,建材需求波动也为筹资策略带来了不确定性。世界各国政府开始优先考虑绿色復苏计划,并为气候智慧型建筑拨款。这种政策重点的转变重新激发了人们对低碳水泥技术的兴趣,使其成为疫情后復苏工作的核心。
预计预测期内,石灰石煅烧粘土水泥(LC3)部分将增长至最大。
石灰石-煅烧粘土水泥 (LC3) 预计将在预测期内占据最大的市场占有率,这得益于其成本效益和显着减少二氧化碳排放。透过用煅烧粘土和石灰石替代大量熟料,LC3 为永续建筑提供了可扩展的解决方案。此外,LC3 还具有优异的机械性能和耐久性,适用于住宅和商业应用。正在进行的研究和先导计画正在进一步检验其在不同气候条件下的表现。
熟料替代技术部门预计将在预测期内实现最高的复合年增长率
熟料替代技术细分市场预计将在预测期内实现最高成长率,这得益于其显着减少二氧化碳排放的潜力。结合飞灰、矿渣、天然火山灰和煅烧粘土的技术正受到致力于实现永续性目标的生产商的青睐。配方和固化製程的技术进步使这些替代技术在规模化生产中更具可行性。监管支持和碳定价机制正在进一步加速其应用。
由于快速的城市发展和政府大力推动永续基础设施建设,预计亚太地区将在预测期内占据最大的市场占有率。中国和印度等国家正大力投资绿建筑计划,对低排放材料的需求强劲。该地区还拥有丰富的适用于替代水泥配方的原料。公私伙伴关係和环保法规正在巩固该地区在全球市场的主导地位。
受严格的环境法规和消费者意识不断提升的推动,北美地区预计将在预测期内实现最高的复合年增长率。美国和加拿大正透过税收优惠和绿色采购政策积极推动建筑业的脱碳。此外,大规模基础设施更新计画的实施也为永续材料整合创造了机会。该地区在应对气候变迁措施方面的积极立场使其成为市场的关键成长引擎。
According to Stratistics MRC, the Global Carbon-Neutral Cement Market is accounted for $2.51 billion in 2025 and is expected to reach $4.74 billion by 2032 growing at a CAGR of 11.2% during the forecast period. Carbon-neutral cement is a type of cement engineered to offset or eliminate its net carbon emissions throughout its lifecycle. This is achieved through innovations such as alternative binders, carbon capture technologies, and the use of renewable energy during production. Additionally, incorporating industrial by-products like fly ash or slag reduces reliance on traditional clinker. The goal is to minimize environmental impact while maintaining structural integrity, supporting sustainable construction practices and aligning with global decarbonization targets in the building materials sector.
According to the Energy and Resources Institute (TERI), global cement consumption reached approximately 4.8 billion tons in 2016 and was projected to approach 6 billion tons by 2022, reflecting sustained growth driven by infrastructure and urbanization demands worldwide.
Growing demand for green buildings and sustainable infrastructure
As governments and private developers increasingly adopt green building certifications, the need for low-emission materials has surged. Carbon-neutral cement aligns with global climate targets, making it a preferred choice for infrastructure projects aiming to reduce environmental impact. Additionally, urbanization in emerging economies is accelerating the shift toward eco-friendly construction materials. This trend is further supported by policy incentives and stricter emission regulations across major markets.
Higher production costs and price competitiveness
The production process often involves advanced technologies and alternative raw materials, which can drive up manufacturing expenses. Moreover, conventional cement producers benefit from economies of scale, making it difficult for sustainable alternatives to compete on price. Limited availability of low-carbon inputs and the need for specialized equipment also contribute to higher operational costs. These factors collectively impact market penetration, especially in price-sensitive regions.
Development of new "carbon-free" cement chemistries
Researchers are exploring geopolymer-based binders, magnesium silicate systems, and other novel compounds that drastically reduce CO2 emissions. These emerging technologies not only offer environmental benefits but also improve material performance in terms of durability and thermal resistance. Strategic collaborations between academia and industry are accelerating the commercialization of these alternatives. As regulatory frameworks evolve to support low-carbon solutions, the market is poised for transformative growth.
Lack of clear, consistent definitions for "carbon-neutral" or "low-carbon" cement
Terms like "low-carbon" and "carbon-neutral" are often used inconsistently, leading to confusion among stakeholders. This ambiguity hampers consumer trust and complicates regulatory compliance. Without clear benchmarks, companies may engage in greenwashing, undermining genuine sustainability efforts. The lack of harmonized metrics also makes it difficult to compare products across regions, slowing down adoption and investment in credible solutions.
The pandemic disrupted global supply chains and construction timelines, temporarily slowing the momentum of carbon-neutral cement adoption. Lockdowns and labor shortages led to project delays, while fluctuating demand for building materials created uncertainty in procurement strategies. Governments began prioritizing green recovery initiatives, allocating funds toward climate-friendly construction. This shift in policy focus has reinvigorated interest in low-carbon cement technologies, positioning them as central to post-pandemic rebuilding efforts.
The limestone calcined clay cement (LC3) segment is expected to be the largest during the forecast period
The limestone calcined clay cement (LC3) segment is expected to account for the largest market share during the forecast period due to its cost-effectiveness and substantial reduction in CO2 emissions. By replacing a significant portion of clinker with calcined clay and limestone, LC3 offers a scalable solution for sustainable construction. Additionally, LC3 exhibits excellent mechanical properties and durability, making it suitable for both residential and commercial applications. Ongoing research and pilot projects are further validating its performance across diverse climatic conditions.
The clinker substitution techniques segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the clinker substitution techniques segment is predicted to witness the highest growth rate driven by its potential to drastically cut carbon emissions. Techniques such as incorporating fly ash, slag, natural pozzolans, and calcined clays are gaining traction among producers aiming to meet sustainability targets. Technological advancements in blending and curing processes are making these substitutes more viable at scale. Regulatory support and carbon pricing mechanisms are further accelerating their adoption.
During the forecast period, the Asia Pacific region is expected to hold the largest market share attributed to rapid urban development and strong government backing for sustainable infrastructure. Countries like China and India are investing heavily in green building initiatives, creating robust demand for low-emission materials. The region also benefits from abundant raw materials suitable for alternative cement formulations. Public-private partnerships and environmental mandates are reinforcing the region's dominant position in the global market.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR fueled by stringent environmental regulations and rising consumer awareness. The U.S. and Canada are actively promoting decarbonization in the construction sector through tax incentives and green procurement policies. Additionally, the presence of major infrastructure renewal programs is creating opportunities for sustainable material integration. The region's proactive stance on climate action is positioning it as a key growth engine for the market.
Key players in the market
Some of the key players in Carbon-Neutral Cement Market include HeidelbergCement AG, Holcim Ltd, Ecocem, Kiran Global Chem Limited, Navrattan Group, JSW Cement, UltraTech Cement Ltd, Taiheiyo Cement Corporation, Votorantim Cimentos, Hallett Group, CarbonCure Technologies Inc., LafargeHolcim Ltd, Calera Corporation, Siam Cement Public Company (SCG), CeraTech, Anhui Conch Cement Company Limited, ACC Ltd, and Green Cement Inc.
In June 2025, Heidelberg Materials announced the acquisition of a concrete-recycling business in Calgary to expand its circular-economy footprint in North America. The deal is intended to scale reuse of recycled concrete paste and support lower-carbon concrete production at regional sites.
In June 2025, Taiheiyo Cement announced plans to establish a blended-cement export hub using ash resources at its Saiki Ash Center. The initiative supports export growth and low-carbon blended cement products using industrial by-products.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.