市场调查报告书
商品编码
1278354
CO2 捕获和再利用市场规模、市场份额、应用分析、区域前景、增长趋势、主要参与者、竞争战略、预测,2023-2031CO2 Capture and Recovery Market Size, Market Share, Application Analysis, Regional Outlook, Growth Trends, Key Players, Competitive Strategies and Forecasts, 2023 To 2031 |
全球 CO2 捕获和再利用市场预计将在未来几年稳步增长,在 2023 年至 2031 年的预测期内復合年增长率超过 9.2%。 这个市场是由越来越多的政府法规和政策推动的,以遏制各行业的二氧化碳排放。 CO2 捕获和再利用过程从发电、石油和天然气生产以及製造等工业过程中捕获和再利用二氧化碳。 对减少二氧化碳排放的兴趣日益浓厚,以及对温室气体和气候变化对环境的负面影响的认识不断提高,这推动了对碳捕获和再利用技术的需求。 此外,越来越多地采用提高采收率技术也有望在未来几年推动市场增长。 在提高石油采收率中使用二氧化碳可以增加石油产量并减少石油和天然气生产活动的碳足迹。 这推动了石油和天然气行业对 CO2 捕获和再利用系统的需求。 总体而言,由于政府法规和政策的增加、对减少碳排放的必要性的认识提高以及提高石油采收率技术的采用增加,预计未来几年碳捕获和再利用市场将稳定增长。 然而,它可能面临高资本成本、技术挑战以及缺乏 CO2 运输和储存基础设施等挑战。
旨在减少碳排放的政府法规和政策是碳捕获和再利用市场的主要驱动力之一。 世界各国政府已实施政策和法规,限制发电、石油和天然气以及製造业等各个行业的碳排放。 例如,在美国,环境保护署 (EPA) 实施了旨在减少发电厂碳排放的“清洁能源计划”。 欧盟 (EU) 制定了到 2030 年将二氧化碳排放量减少 55% 的目标。
减少碳排放的意识不断增强,推动了对 CO2 捕获和再利用技术的需求。 消费者、投资者和企业越来越意识到温室气体对环境和气候变化的负面影响。 因此,各行各业对清洁能源和可持续实践的需求不断增长。 CO2 捕获和再利用技术提供了一种减少工业过程中的碳排放并有助于营造更清洁环境的方法。
在石油和天然气行业,提高石油采收率 (EOR) 技术的日益普及推动了对 CO2 捕获和再利用系统的需求。 在 EOR 中,二氧化碳用于增加石油产量,同时减少石油和天然气生产活动的碳足迹。 由于对石油和天然气的需求不断增加以及减少碳排放的需要,预计未来几年二氧化碳在 EOR 中的使用将会增加。 根据全球 CCS 研究所的一份报告,到 2050 年,用于 EOR 的二氧化碳利用可能占二氧化碳捕集和封存需求的 70%。
CO2 捕获和再利用市场的主要製约因素之一是与引入 CO2 捕获和再利用技术相关的高成本。 CO2回收再利用系统的引入和运行需要大量的投资和运行成本。 国际能源署报告称,每捕获一吨 CO2,CO2 捕获和存储系统的成本在 50 到 100 美元之间。 这一成本明显高于大多数市场当前碳信用额度的价格,使得许多公司投资这些技术在经济上不可行。 此外,高成本会影响行业竞争,尤其是在新兴国家,因为它们没有财力投资这些技术。 CO2回收/再利用技术成本高是推广应用的主要问题,正在努力降低成本,提高经济效益。
CO2 捕获和再利用市场可大致分为液体介质和固体介质,具体取决于所使用的技术类型。 基于液体介质的 CO2 捕获技术使用胺类等化学溶剂从工业废气中捕获 CO2。 这些溶剂与 CO2 反应形成稳定的化合物,可以轻鬆分离以释放纯 CO2。 基于液体介质的二氧化碳捕集技术广泛应用于发电、化学加工、石油和天然气等各个行业,目前在市场上的收入份额最高。 此外,基于液体介质的 CO2 捕获和再利用部分预计将在 2023-2031 年的预测期内保持较高的复合年增长率并保持其市场主导地位。 另一方面,基于固体介质的 CO2 捕获技术使用沸石和有机金属框架等材料来吸附 CO2。 这些材料具有高表面积,可以通过物理或化学吸附捕获 CO2。 由于对更节能和更具成本效益的 CO2 捕获和再利用系统的需求不断增长,基于固体介质的 CO2 捕获行业预计将以显着的复合年增长率增长。 儘管与基于液体介质的技术相比收入份额较低,但基于固体介质的 CO2 捕获技术具有显着的潜力,可以降低与 CO2 捕获和再利用相关的成本,从而减少碳足迹。对于旨在实现以下目标的行业来说,这是一个有效的选择
二氧化碳捕获和再利用市场可根据应用细分为餐饮、温室、能源燃料和其他。 就收入而言,能源燃料部分将在 2022 年占据最大的市场份额。 这可能是由于石油和天然气行业越来越多地采用碳捕获技术来减少碳排放。 由于对碳酸饮料的需求增加以及采取可持续措施减少碳足迹,预计餐饮部门的收入将紧随其后。 就复合年增长率而言,预计温室部分将在 2023-2031 年的预测期内呈现最高增长率。 这可能是由于越来越多地采用可持续农业和不断增长的食品需求。 由于石油和天然气行业越来越多地采用碳捕获技术,预计能源燃料行业也将出现显着增长。 由于对碳酸饮料的需求增加以及对碳足蹟的兴趣日益增加,预计餐饮业在预测期内将出现显着增长。 根据国际能源署的一份报告,餐饮业约占全球二氧化碳排放量的 7%。 这促使该行业采取可持续措施,如 CO2 捕获和再利用,以减少其碳足迹。
CO2 捕获和再利用市场在世界各个地区都在经历显着增长。 北美强烈意识到减少其碳足迹,使其成为二氧化碳捕获和再利用的强大市场。 预计该地区将在预测期内以高收入份额和显着的复合年增长率继续主导市场。 美国是该地区的领先国家,占据了大部分市场份额。 该国已实施各种举措来减少碳足迹和推广可持续能源,推动对碳捕获和再利用技术的需求。 亚太地区的碳捕获和再利用市场也正在经历显着增长。 由于中国和印度等发展中国家对二氧化碳捕获和再利用技术的需求不断增长,预计该地区在预测期内将呈现较高的复合年增长率。 随着这些国家工业化和城市化进程的推进,二氧化碳排放量不断增加,有必要引进二氧化碳捕集和再利用技术。
CO2 捕获和再利用市场竞争激烈,多家公司都在争夺市场份额。 每家公司都投资于研发、战略联盟和合作伙伴关係,以加强其市场地位。 Air Products and Chemicals, Inc. 是市场领先者之一,该公司开发了一系列用于 CO2 捕获和再利用的产品和解决方案。 该公司还投资于战略合作和伙伴关係,以扩大其产品组合和地理范围。 另一个关键参与者是三菱重工有限公司,该公司提供一系列 CO2 捕获和再利用技术,包括其专有的 KS-1 溶剂。 该公司还与市场上的其他几家公司合作开发新的解决方案并扩大其客户群。 市场上其他强大的参与者包括林德公司、埃克森美孚公司、Aker Solutions ASA、Fluor Corporation 和霍尼韦尔国际公司。 这些公司专注于开发新技术和解决方案,以满足对二氧化碳捕获和再利用不断增长的需求。 作为一项关键战略,公司正专注于伙伴关係与合作以开发新技术并扩大其地理范围。 例如,2021 年,Air Products and Chemicals, Inc. 宣布与 ACWA Power 合作,在沙特阿拉伯开发一个新的 CO2 捕获和再利用项目。 此外,公司正在投资研发,以开发新的、更有效的 CO2 捕获和再利用技术。 这包括开发新的溶剂和其他材料,并将人工智能和其他先进技术集成到 CO2 捕获和回收系统中。
The global CO2 capture and recovery market is expected to grow at a steady rate in the coming years, with a projected CAGR of over 9.2% during the forecast period 2023-2031. The market is driven by increasing government regulations and policies to control carbon emissions from various industries. The CO2 capture and recovery process involves capturing carbon dioxide from industrial processes such as power generation, oil and gas production, and manufacturing, and then recovering and reusing it. The growing focus on reducing carbon emissions and increasing awareness of the negative impact of greenhouse gases on the environment and climate change are driving the demand for CO2 capture and recovery technologies. Furthermore, the increasing adoption of enhanced oil recovery techniques is expected to boost market growth in the coming years. The use of CO2 in enhanced oil recovery helps to increase oil production and reduce the carbon footprint of oil and gas production activities. This is driving the demand for CO2 capture and recovery systems in the oil and gas industry. Overall, the CO2 capture and recovery market is expected to see steady growth in the coming years, driven by increasing government regulations and policies, growing awareness of the need to reduce carbon emissions, and the increasing adoption of enhanced oil recovery techniques. However, the market may face challenges such as high capital costs, technological challenges, and the lack of infrastructure for CO2 transport and storage.
Government regulations and policies aimed at reducing carbon emissions are one of the major drivers of the CO2 capture and recovery market. Governments around the world are implementing policies and regulations to control carbon emissions from various industries, such as power generation, oil and gas, and manufacturing. For instance, in the United States, the Environmental Protection Agency (EPA) has implemented the Clean Power Plan, which aims to reduce carbon emissions from power plants. Similarly, the European Union has set a target of reducing carbon emissions by 55% by 2030.
The growing awareness of the need to reduce carbon emissions is driving the demand for CO2 capture and recovery technologies. Increasingly, consumers, investors, and companies are recognizing the negative impact of greenhouse gases on the environment and climate change. As a result, there is a growing demand for clean energy and sustainable practices across various industries. CO2 capture and recovery technologies offer a way to reduce carbon emissions from industrial processes and contribute to a cleaner environment.
The increasing adoption of enhanced oil recovery (EOR) techniques is driving the demand for CO2 capture and recovery systems in the oil and gas industry. CO2 is used in EOR to increase oil production while reducing the carbon footprint of oil and gas production activities. The use of CO2 for EOR is expected to increase in the coming years, driven by the growing demand for oil and gas and the need to reduce carbon emissions. According to a report by the Global CCS Institute, the use of CO2 for EOR could account for up to 70% of the demand for CO2 capture and storage by 2050.
One of the major restraints of the CO2 capture and recovery market is the high costs associated with implementing CO2 capture and recovery technologies. The installation and operation of CO2 capture and recovery systems require significant investment and operational expenses. According to a report by the International Energy Agency, the cost of CO2 capture and storage systems can range from $50 to $100 per ton of CO2 captured. This cost is significantly higher than the current price of carbon credits in most markets, which makes it economically unviable for many companies to invest in these technologies. Additionally, the high costs associated with CO2 capture and recovery technologies can impact the competitiveness of industries, particularly in developing countries where companies may not have the financial resources to invest in these technologies. The high costs associated with CO2 capture and recovery technologies remain a major challenge for the widespread adoption of these technologies, and efforts are ongoing to find ways to reduce these costs and make the technologies more economically viable.
The CO2 capture and recovery market can be segmented by type of technology used, with two main categories: liquid media and solid media. Liquid media-based CO2 capture technologies use chemical solvents, such as amines, to capture CO2 from industrial flue gases. These solvents react with CO2 to form stable compounds that can be easily separated, releasing pure CO2. Liquid media-based CO2 capture technologies currently hold the highest revenue share in the market, owing to their widespread adoption across various industries, including power generation, chemical processing, and oil and gas. Additionally, the liquid media-based CO2 capture and recovery segment is expected to maintain its dominant position in the market during the forecast period of 2023 to 2031, with a high compound annual growth rate (CAGR). Solid media-based CO2 capture technologies, on the other hand, use materials such as zeolites or metal-organic frameworks to adsorb CO2. These materials have a high surface area and can capture CO2 by physical or chemical adsorption. The solid media-based CO2 capture segment is expected to grow at a significant CAGR due to the increasing demand for more energy-efficient and cost-effective CO2 capture and recovery systems. Despite their lower revenue share compared to liquid media-based technologies, solid media-based CO2 capture technologies hold significant potential for reducing the costs associated with CO2 capture and recovery, making them a viable option for industries seeking to reduce their carbon footprint.
In terms of application, the CO2 capture and recovery market can be segmented into F&B, greenhouse, energy fuel, and others. In terms of revenue, the energy fuel segment held the largest market share in 2022. This can be attributed to the increasing adoption of carbon capture technologies in the oil and gas industry to reduce carbon emissions. The F&B segment is expected to follow closely in terms of revenue, driven by the increasing demand for carbonated beverages and the adoption of sustainable measures to reduce carbon footprint. In terms of CAGR, the greenhouse segment is expected to witness the highest growth rate during the forecast period of 2023 to 2031. This can be attributed to the increasing adoption of sustainable agriculture practices and the growing demand for food. The energy fuel segment is also expected to witness significant growth owing to the increasing adoption of carbon capture technologies in the oil and gas industry. The F&B industry is expected to witness significant growth during the forecast period due to the increasing demand for carbonated beverages and rising concerns over the carbon footprint of the industry. According to a report by the International Energy Agency, the F&B industry is responsible for around 7% of global CO2 emissions. This has prompted the industry to adopt sustainable measures such as CO2 capture and recovery to reduce its carbon footprint.
The CO2 capture and recovery market are witnessing significant growth in various regions of the world. North America, with its strong focus on reducing carbon emissions, has been a prominent market for CO2 capture and recovery. The region is projected to continue to dominate the market during the forecast period, with a high revenue share and a substantial CAGR. The U.S. is the leading country in the region, accounting for the majority of the market share. The country has been implementing various initiatives to reduce its carbon footprint and promote sustainable energy sources, driving the demand for CO2 capture and recovery technologies. The Asia Pacific region is also witnessing significant growth in the CO2 capture and recovery market. The region is expected to have a high CAGR during the forecast period, driven by the growing demand for CO2 capture and recovery technologies in developing countries such as China and India. The increasing industrialization and urbanization in these countries have led to an increase in carbon emissions, making it necessary to adopt CO2 capture and recovery technologies.
The CO2 capture and recovery market is highly competitive, with several players vying for market share. Companies are focusing on research and development, strategic collaborations, and partnerships to strengthen their position in the market. One of the leading players in the market is Air Products and Chemicals, Inc., which has developed a range of products and solutions for CO2 capture and recovery. The company has also invested in strategic collaborations and partnerships to expand its product portfolio and geographic reach. Another key player is Mitsubishi Heavy Industries, Ltd., which offers a range of technologies for CO2 capture and recovery, including its proprietary KS-1 solvent. The company has also partnered with several other players in the market to develop new solutions and expand its customer base. Other prominent players in the market include Linde AG, ExxonMobil Corporation, Aker Solutions ASA, Fluor Corporation, and Honeywell International Inc. These companies are focusing on developing new technologies and solutions to meet the growing demand for CO2 capture and recovery. In terms of key strategies, companies are focusing on partnerships and collaborations to develop new technologies and expand their geographic reach. For example, in 2021, Air Products and Chemicals, Inc. announced a partnership with ACWA Power to develop a new project for CO2 capture and recovery in Saudi Arabia. In addition, companies are investing in research and development to develop new, more efficient technologies for CO2 capture and recovery. This includes the development of new solvents and other materials, as well as the integration of artificial intelligence and other advanced technologies into CO2 capture and recovery systems.
This study report represents analysis of each segment from 2021 to 2031 considering 2022 as the base year. Compounded Annual Growth Rate (CAGR) for each of the respective segments estimated for the forecast period of 2022 to 2031.
The current report comprises of quantitative market estimations for each micro market for every geographical region and qualitative market analysis such as micro and macro environment analysis, market trends, competitive intelligence, segment analysis, porters five force model, top winning strategies, top investment markets, emerging trends and technological analysis, case studies, strategic conclusions and recommendations and other key market insights.
The complete research study was conducted in three phases, namely: secondary research, primary research, and expert panel review. key data point that enables the estimation of CO2 Capture and Recovery market are as follows:
Micro and macro environment factors that are currently influencing the CO2 Capture and Recovery market and their expected impact during the forecast period.
Market forecast was performed through proprietary software that analyzes various qualitative and quantitative factors. Growth rate and CAGR were estimated through intensive secondary and primary research. Data triangulation across various data points provides accuracy across various analyzed market segments in the report. Application of both top down and bottom-up approach for validation of market estimation assures logical, methodical and mathematical consistency of the quantitative data.