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市場調查報告書
商品編碼
2106638
碳捕獲吸附劑市場預測至2034年-按吸附劑類型、材料、捕獲製程、回收方法、最終用戶和地區分類的全球分析Carbon Capture Sorbents Market Forecasts to 2034 - Global Analysis By Sorbent Type (Solid Sorbents, Liquid Sorbents, Hybrid Sorbents and Other Sorbent Types), Material, Capture Process, Regeneration Method, End User, and Geography |
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根據 Stratistics MRC 的數據,預計到 2026 年,全球碳捕獲吸附劑市場規模將達到 29 億美元,並在預測期內以 22.4% 的複合年成長率成長,到 2034 年將達到 146 億美元。
碳捕獲吸附劑是一種特殊材料,可在碳捕獲、利用與儲存(CCUS)應用中選擇性地吸收或吸附工業排放氣體和大氣中的二氧化碳。這些吸附劑包括固體吸附劑、液體吸附劑、金屬有機框架(MOFs)、活性碳、沸石、胺基材料和先進多孔材料。它們能夠提高碳捕獲效率、降低能耗並支持工業脫碳。碳捕獲吸附劑廣泛應用於發電、水泥、鋼鐵、化學製造和直接空氣捕獲(DAC)系統。應對氣候變遷的努力和碳減排政策的進步正在推動碳捕獲吸附劑的創新和全球應用。
碳捕獲的擴展
為了減少排放並遵守氣候變遷法規,企業正在投資基於吸附劑的系統。各國政府透過補貼、稅收優惠和淨零排放承諾來支持碳捕獲技術的應用。消費者對永續能源解決方案的需求進一步提升了碳捕獲技術的重要性。發電和重工業領域的大型專案正在加速吸附劑的應用。這些應用也有助於企業實現其環境、社會和治理(ESG)目標並提升品牌聲譽。總而言之,碳捕獲技術的日益普及為吸附劑技術的發展提供了強勁的推動力。
再生吸附劑所需的能量非常巨大。
吸附劑需要頻繁再生才能保持效率,這會消耗大量能源。企業面臨著如何在營運成本和永續性目標之間取得平衡的挑戰。與資源雄厚的大型競爭對手相比,中小企業在採用吸附劑技術方面面臨更多困難。法律規範通常要求提高效率,從而導致降低能源強度的壓力日益增大。消費者對經濟高效解決方案的需求凸顯了再生製程創新的必要性。因此,高能耗仍是吸附劑廣泛應用的一大障礙。
固體吸附材料創新
金屬有機框架(MOFs)和沸石等尖端材料具有更高的效率和更低的回收成本。對於企業而言,這意味著更高的擴充性和更小的環境影響。世界各國政府都在資助研發項目,以加速吸附劑材料的創新。消費者對永續且價格合理的碳捕獲解決方案的需求正在推動該領域的投資。此外,這些創新將使其能夠應用於從水泥到鋼鐵生產等各種工業領域。預計這一機會將重塑碳捕獲吸附劑的競爭格局。
不透明的碳定價政策
碳權價格的波動會為專案的經濟可行性帶來不穩定性。缺乏可預測的定價框架,企業難以製定長期投資計畫。與大型競爭對手相比,中小企業尤其容易受到政策不確定性的影響。區域監管差異也使全球業務擴大策略更加複雜。消費者對價格合理的能源的需求不斷增加,這給企業保持成本競爭力帶來了更大的壓力。只要碳定價保持穩定,不確定性就將繼續成為碳吸附劑部署的挑戰。
新冠感染疾病擾亂了工業活動,並降低了對碳捕獲專案的短期需求。封鎖措施延緩了設備安裝,並減緩了研發活動。然而,這場危機凸顯了韌性和永續能源系統的重要性。各國政府強調了綠色復甦戰略,並強化了碳捕獲技術的角色。企業再次將重點放在吸附劑創新上,以實現疫情後的永續性目標。危機期間,消費者對氣候變遷的認知顯著提高。
在預測期內,固體吸附劑細分市場預計將佔據最大的市場佔有率。
由於固體吸附劑將佔據最大的市場佔有率。與液體吸附劑相比,固體吸附劑具有更高的效率和耐久性。電力和重工業等大型專案中,企業高度依賴固體吸附劑的應用。消費者對可靠且經濟高效的解決方案的需求也推動了該細分市場的成長。材料科學的進步正在提升固體吸附劑的性能和擴充性。因此,固體吸附劑仍是碳捕集吸附劑市場的基礎。
在預測期內,直接大氣捕獲(DAC)領域預計將呈現最高的複合年成長率。
在預測期內,由於對大氣碳去除的需求不斷成長,直接空氣捕集(DAC)領域預計將呈現最高的成長率。吸附劑在直接從周圍大氣中捕集二氧化碳方面發揮著至關重要的作用。企業正在投資DAC項目,以履行淨零排放承諾和碳抵銷目標。各國政府透過資金和政策框架支持DAC的發展。消費者對氣候友善解決方案的需求正在加速該領域的應用。吸附劑效率和擴充性的提升正在推動該領域的進一步成長。
在預測期內,由於政策對碳捕獲的大力支持,北美預計將佔據最大的市場佔有率。美國在大規模碳捕獲項目和融資舉措中發揮主導作用。北美企業正大力投資吸附技術以滿足法規要求。消費者對永續能源解決方案的需求高於其他地區。法律規範在支持創新的同時確保合規性,進一步促進了技術的普及應用。政府也在資助直接空氣捕獲(DAC)先導計畫。
在預測期內,亞太地區預計將呈現最高的複合年成長率,這主要得益於快速的工業化和清潔能源舉措。中國、印度和日本等國正在擴大碳捕獲項目,以實現永續性目標。不斷壯大的中產階級正在推動對環保能源解決方案的需求。各國政府正實施扶持政策,以促進吸附技術在國內的應用。當地企業正在加大創新力度,以滿足國內和出口需求。固體吸附材料的進步正在加速該地區的應用。
According to Stratistics MRC, the Global Carbon Capture Sorbents Market is accounted for $2.9 billion in 2026 and is expected to reach $14.6 billion by 2034 growing at a CAGR of 22.4% during the forecast period. Carbon capture sorbents are specialized materials that selectively absorb or adsorb carbon dioxide from industrial emissions or ambient air for carbon capture, utilization, and storage (CCUS) applications. These sorbents include solid adsorbents, liquid absorbents, metal-organic frameworks (MOFs), activated carbon, zeolites, amine-based materials, and advanced porous materials. They improve carbon capture efficiency, reduce energy consumption, and support industrial decarbonization. Carbon capture sorbents are widely used in power generation, cement, steel, chemical manufacturing, and direct air capture systems. Growing climate mitigation efforts and carbon reduction policies are driving innovation and global adoption of carbon capture sorbents.
Increasing carbon capture deployment
Enterprises are investing in sorbent-based systems to reduce emissions and comply with climate regulations. Governments are supporting carbon capture adoption through subsidies, tax incentives, and net-zero commitments. Consumer demand for sustainable energy solutions reinforces the importance of carbon capture. Large-scale projects in power generation and heavy industries are accelerating the use of sorbents. These deployments also help companies meet ESG targets and improve brand reputation. Collectively, rising carbon capture adoption ensures strong momentum for sorbent technologies.
High sorbent regeneration energy requirements
Sorbents must be regenerated frequently to maintain efficiency, which consumes significant energy. Enterprises face challenges in balancing operational costs with sustainability goals. Smaller firms struggle to adopt sorbent technologies compared to larger competitors with greater resources. Regulatory frameworks often demand efficiency improvements, adding pressure to reduce energy intensity. Consumer demand for cost-effective solutions highlights the need for innovation in regeneration processes. As a result, high energy requirements remain a barrier to widespread adoption.
Solid sorbent material innovations
Advanced materials such as metal-organic frameworks (MOFs) and zeolites offer higher efficiency and lower regeneration costs. Enterprises benefit from improved scalability and reduced environmental impact. Governments are funding R&D projects to accelerate innovation in sorbent materials. Consumer demand for sustainable and affordable carbon capture solutions reinforces investment in this segment. Innovations also enable integration into diverse industrial applications, from cement to steel production. This opportunity is expected to reshape the competitive landscape of carbon capture sorbents.
Uncertain carbon pricing policies
Fluctuations in carbon credit values create instability in project economics. Enterprises struggle to plan long-term investments without predictable pricing frameworks. Smaller firms are particularly vulnerable to policy uncertainty compared to larger competitors. Regulatory differences across jurisdictions complicate global expansion strategies. Consumer demand for affordable energy adds pressure to maintain cost competitiveness. Unless carbon pricing stabilizes, uncertainty will remain a challenge for sorbent adoption.
The Covid-19 pandemic disrupted industrial operations, reducing short-term demand for carbon capture projects. Lockdowns delayed installations and slowed down R&D activities. However, the crisis highlighted the importance of resilient and sustainable energy systems. Governments emphasized green recovery strategies, reinforcing the role of carbon capture technologies. Enterprises renewed focus on sorbent innovations to meet post-pandemic sustainability goals. Consumer awareness of climate change grew significantly during the crisis.
The solid sorbents segment is expected to be the largest during the forecast period
The solid sorbents segment is expected to account for the largest market share during the forecast period as they are widely used in industrial carbon capture. Solid sorbents provide high efficiency and durability compared to liquid alternatives. Enterprises rely heavily on solid sorbents for large-scale projects in power generation and heavy industries. Regulatory support for emission reduction further boosts adoption. Consumer demand for reliable and cost-effective solutions reinforces growth in this segment. Advances in material science enhance performance and scalability. Consequently, solid sorbents remain the cornerstone of the carbon capture sorbents market.
The direct air capture segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the direct air capture segment is predicted to witness the highest growth rate due to rising demand for atmospheric carbon removal. Sorbents play a critical role in capturing CO2 directly from ambient air. Enterprises are investing in DAC projects to meet net-zero commitments and carbon offset goals. Governments are supporting DAC initiatives through funding and policy frameworks. Consumer demand for climate-positive solutions accelerates adoption in this segment. Advances in sorbent efficiency and scalability further boost growth.
During the forecast period, the North America region is expected to hold the largest market share owing to strong policy support for carbon capture. The U.S. leads in large-scale carbon capture projects and funding initiatives. Enterprises in North America are investing heavily in sorbent technologies to meet regulatory requirements. Consumer demand for sustainable energy solutions is higher compared to other regions. Regulatory frameworks support innovation while ensuring compliance, further boosting adoption. Governments are also funding pilot projects for direct air capture.
Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR driven by rapid industrialization and clean energy initiatives. Countries such as China, India, and Japan are scaling up carbon capture projects to meet sustainability goals. Rising middle-class populations are fueling demand for eco-friendly energy solutions. Governments are introducing supportive policies to encourage domestic adoption of sorbent technologies. Local companies are expanding innovations to meet both domestic and export requirements. Advances in solid sorbent materials accelerate adoption in this region.
Key players in the market
Some of the key players in Carbon Capture Sorbents Market include BASF SE, Honeywell International Inc., Climeworks AG, Svante Technologies Inc., Carbon Clean Solutions Limited, Mitsubishi Heavy Industries, Ltd., SLB, Clariant AG, Arkema S.A., Air Liquide S.A., Linde plc, Evonik Industries AG, Johnson Matthey Plc, Tosoh Corporation and Shell plc.
In July 2025, Linde plc entered a strategic engineering alliance to deliver custom compression and cryogenic conditioning hardware for major atmospheric carbon extraction sites. The high-capacity systems are designed to chill and compress incoming low-pressure gaseous streams into highly dense liquid carbon dioxide suitable for immediate deep geological injection.
In June 2025, Evonik Industries AG scaled the mass production of its amine-functionalized solid adsorbent polyimide hollow fiber membranes for direct air capture applications. These structure-engineered fibers offer enhanced chemical resistance against atmospheric degradation, drastically expanding the functional lifecycle of modular air filtering plants.
Note: Tables for North America, Europe, APAC, South America, and Rest of the World (RoW) are also represented in the same manner as above.