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市场调查报告书
商品编码
1790015
二氧化碳市场规模、份额和趋势分析报告:按来源、应用、地区和细分市场预测,2025 年至 2033 年Carbon Dioxide Market Size, Share & Trends Analysis Report By Source (Hydrogen, Ethyl Alcohol, Ethylene Oxide, Substitute Natural Gas ), By Application (Food & Beverage, Oil & Gas, Medical), By Region, And Segment Forecasts, 2025 - 2033 |
二氧化碳市场摘要
预计 2024 年全球二氧化碳市场价值将达到 117.987 亿美元,到 2033 年预计将达到 199.976 亿美元,2025 年至 2033 年的复合年增长率为 6.0%。二氧化碳 (CO2) 在提高采收率(EOR) 方面的使用不断扩大,主要是由于石油蕴藏量减少和对原油进口的高度依赖,尤其是在亚洲。
石油蕴藏量(尤其是在亚太地区),以及对原油进口的高度依赖,促使人们采用提高采收率 (EOR) 技术,以最大限度地提高开采效率。全球原油和天然气需求的不断增长进一步扩大了供需缺口,使得 EOR 显得尤为重要。此外,印度、中国、印尼和马来西亚等国推出了扶持性政府政策、基础设施建设计划和财政奖励,鼓励外商投资,并推动石油天然气产业在 EOR 应用中使用二氧化碳。
随着提高采收率)的日益普及,二氧化碳产业预计将大幅成长。主要驱动因素包括原油价格波动、成熟油井数量增加,以及从緻密砂岩和碳酸盐岩等传统型蕴藏物开采碳氢化合物的需求日益增长。
基于二氧化碳的EOR技术进步,例如在生产过程中捕获和再利用二氧化碳的创新技术,正在提高采收率,同时减少环境影响。提高原油产量和减少排放的双重效益使二氧化碳EOR成为颇具吸引力的解决方案。此外,政府支持的措施和优惠的税收制度正在加速亚太和拉丁美洲的外商投资和基础建设。虽然北美目前凭藉其成熟的传统型能源产业处于领先地位,但亚太、拉丁美洲和中东等高成长市场预计将凭藉快速的工业化和政策支持占据更大的份额。
二氧化碳在医疗领域的应用在全球日益重要。二氧化碳气体主要用作各种外科手术中的气腹腔,包括关节镜、内视镜检查和腹腔镜检查。它可以充气并稳定体内腔体,提高手术部位的可视性。此外,二氧化碳在手术过程中还可用于增加脑部血流量并辅助呼吸。在医疗应用中,二氧化碳采用专门设计的镀铬钢瓶输送,并配有阀门。
碳排放对大气的有害影响是全球气候变迁的主要因素。儘管世界各国已投入巨资,透过创新部署捕碳封存(CCS)技术以及在某些地区实施碳定价来减少碳污染,但许多国家仍需实现其气候变迁目标。
碳捕获、利用和储存(CCUS)是一种旨在减少各种产业排放的技术,包括钢铁生产、发电、提炼、钢铁、水泥製造、石化等。碳封存技术是捕获、运输、储存和利用排放的碳。
大气中的碳排放是全球气候变迁的主要原因之一。世界各国投入巨资,努力遏止碳污染,包括引进CCS技术创新及征收碳排放税。然而,大多数国家仍面临着未能实现其既定气候变迁目标的严峻挑战。各国政府已采取后续措施,减少电力产业的碳排放,并持续努力控制发电厂的温室气体排放。碳排放定价的总量管制与交易制度的引入刺激了发电、化学加工、石油和天然气以及钢铁等各行业的CCS应用。
儘管二氧化碳对气候变迁有负面影响,但它也有多种利用方式,例如作为各种工业过程的原料和潜在的燃料来源。了解这些机会的一种方法是研究现有的碳捕获和利用技术研究。碳捕获技术有可能显着减少发电和水泥生产等工业程的排放。相较之下,利用科技可以将捕获的碳转化为宝贵的资源,例如建筑材料、化学品和燃料。
Carbon Dioxide Market Summary
The global carbon dioxide market size was estimated at USD 11,798.7 million in 2024 and is projected to reach USD 19,997.6 million by 2033, growing at a CAGR of 6.0% from 2025 to 2033. The increasing application of carbon dioxide (CO2) in enhanced oil recovery (EOR) is primarily driven by depleting oil reserves and a heavy reliance on crude oil imports, especially in Asia.
Declining oil reserves and a heavy reliance on crude oil imports, particularly in the Asia Pacific region, have fueled the adoption of EOR methods to maximize extraction efficiency. Rising global demand for crude oil and natural gas is further widening the supply-demand gap, making EOR more critical. In addition, supportive government policies, infrastructure development initiatives, and financial incentives in countries like India, China, Indonesia, and Malaysia are encouraging foreign investment and advancing the use of CO2 in EOR applications in the oil & gas industry.
The carbon dioxide industry is expected to grow significantly due to its increasing adoption in enhanced oil recovery (EOR) technologies, particularly gas injection methods. Key drivers include fluctuating crude oil prices, a rising number of mature oil wells, and the growing need to extract hydrocarbons from unconventional reserves like tight sands and carbonate formations.
Technological advancements in CO2-based EOR, including innovations that capture and reuse CO2 from production processes, enhance recovery rates while reducing environmental impact. This dual benefit, higher oil output and lower emissions, makes CO2-EOR an attractive solution. In addition, government-backed initiatives in Asia Pacific and Latin America, along with favorable tax regimes, are accelerating foreign investments and infrastructure development. While North America currently leads due to its established unconventional energy sector, high-growth markets like Asia Pacific, Central & South America, and the Middle East are poised to gain a larger share due to rapid industrialization and policy support.
The use of CO2 in the medical field is becoming increasingly important worldwide. CO2 gas is primarily employed as an insufflation agent in various surgical procedures, including arthroscopy, endoscopy, and laparoscopy. It helps inflate and stabilize cavities within the human body, improving the visibility of the surgical area. In addition, CO2 is utilized during surgeries to enhance blood flow to the brain and assist with respiration. For medical applications, CO2 is supplied with specially designed chromium-plated steel cylinders equipped with valves.
The harmful effects of carbon emissions in the atmosphere are significant contributors to global climate change. While countries worldwide have invested heavily in reducing carbon pollution by introducing innovations in Carbon Capture and Storage (CCS) technology and implementing carbon pricing in some areas, many nations still need to achieve their climate goals.
Carbon capture, utilization, and storage (CCUS) is a technology designed to lower emissions from various industries, including steel production, power generation, refining, iron production, cement manufacturing, and petrochemicals. Carbon sequestration technologies encompass capturing, transporting, storing, and utilizing carbon emissions.
Carbon emissions in the atmosphere are among the major causes of global climate change. Although countries around the world have invested heavily in efforts to curb carbon pollution by introducing innovations in CCS technology and implementing carbon taxes in some considered, most of the countries still stand at a serious phase of not achieving the targeted climate goals. Various governments have taken subsequent steps to reduce carbon emissions from the power sector and are making continuous efforts to curb the greenhouse gas emissions from power plants. The provision of the cap-and-trade system, which puts a price on carbon emissions, is stimulating the CCS installations across several industries, such as power generation, chemical processing, oil & gas, iron & steel, and others.
Despite its negative impact on climate change, carbon dioxide can also be utilized in several ways, including as a feedstock for various industrial processes and as a potential fuel source. One approach to understanding these opportunities is to examine the existing research on carbon capture and utilization technologies. Carbon capture technologies have the potential to significantly reduce emissions from industrial processes such as power generation and cement production. In contrast, utilization technologies can transform captured carbon into valuable Sources such as building materials, chemicals, and fuels.
Global Carbon Dioxide Market Report Segmentation
This report forecasts revenue growth at global, regional, and country levels and provides an analysis of the latest industry trends in each of the sub-segments from 2021 to 2033. For this study, Grand View Research has segmented the global carbon dioxide market report based on source, application, and region: