Le captage et la séquestration du carbone (CSC) est un procédé qui vise à réduire la quantité de dioxyde de carbone (CO2) rejetée dans l'atmosphère en le captant et en le stockant de manière à l'empêcher de contribuer au changement climatique. Le CSC comprend trois étapes principales : le captage des émissions de CO2, le transport du CO2 capté vers un site de stockage et son stockage de manière sûre et sécurisée.
La capture des émissions de CO2 peut être effectuée par plusieurs méthodes, notamment la capture post-combustion, la capture pré-combustion et la combustion oxycombustion. La capture post-combustion consiste à capturer le CO2 libéré lors de la combustion de combustibles fossiles, tels que le charbon ou le gaz naturel . La capture pré-combustion consiste à capturer le CO2 produit pendant le processus de conversion des combustibles fossiles en un gaz pouvant être brûlé pour produire de l'énergie. La combustion oxycombustion consiste à brûler des combustibles fossiles dans un mélange d'oxygène et de CO2 recyclé, ce qui permet de capturer plus facilement le CO2. Une fois le CO2 capturé, il est transporté vers un site de stockage, généralement une formation géologique telle qu'un réservoir de pétrole ou de gaz épuisé, une formation saline ou une veine de charbon. Le CO2 est ensuite injecté dans la formation et stocké de manière à l'empêcher de s'échapper dans l'atmosphère. Cela peut être réalisé par plusieurs mécanismes, tels que le piégeage du CO2 dans les pores de la roche ou en le dissolvant dans les fluides de la formation.
La CCS a le potentiel de réduire considérablement les émissions de CO2 des centrales électriques et d’autres installations industrielles, contribuant ainsi à atténuer le changement climatique. Cependant, elle est également confrontée à plusieurs défis, notamment des coûts élevés, des difficultés techniques et des inquiétudes quant à la sûreté et à la sécurité à long terme du CO2 stocké.
The Carbon Capture and Sequestration (CCS) market is increasing due to a combination of factors, including growing global concern about climate change and the need to reduce greenhouse gas emissions, as well as government policies and incentives that encourage investment in CCS technologies. Many countries have set ambitious targets to reduce their greenhouse gas emissions, and CCS is seen as a key technology to help meet these targets. In addition, CCS can be used to reduce emissions from a variety of industrial processes, such as cement production and steel manufacturing, which are difficult to decarbonize using other methods. Governments around the world have introduced policies and incentives to support the development and deployment of CCS technologies.
Another factor driving the growth of the CCS market is the increasing availability of funding and investment from both public and private sources. This includes funding from governments, development banks, and private investors, as well as partnerships between companies and research institutions. Advancements in CCS technology have also contributed to the growth of the market.
| ATTRIBUTE | DETAILS |
| Study period | 2020-2029 |
| Base year | 2021 |
| Estimated year | 2022 |
| Forecasted year | 2022-2029 |
| Historical period | 2018-2020 |
| Unit | Value (USD Billion) |
| Segmentation | By Service, By Application, By Region |
| By Service |
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| By Application |
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| By Region |
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The global carbon capture and sequestration market is expected to grow at 14.6 % CAGR from 2020 to 2029. It is expected to reach above USD 23.5 Billion by 2029 from USD 7.1 Billion in 2020.
North America accounted for the largest market in the Carbon Capture and Sequestration market. North America held more than 35 % of the Carbon Capture and Sequestration market revenue share in 2020.
Increasing environmental concerns and growing demand for co2-EOR techniques drives the carbon capture and sequestration market growth.
CCS presents a significant opportunity to reduce greenhouse gas emissions from various sectors, including power, cement, steel, and oil and gas. With many countries and companies setting ambitious climate targets, CCS can help accelerate the transition to a low-carbon economy. CCS can also provide economic benefits, such as job creation and economic growth. CCS projects require a skilled workforce to design, build, and operate the facilities, creating employment opportunities in local communities. In addition, CCS can stimulate economic growth by supporting the development of new industries, such as carbon capture technology and storage services.
The global Carbon Capture and Sequestration market is segmented based on service, application and region. By service, the market is bifurcated into capture, transportation, and storage. By application, the market is bifurcated into EOR process, industrial, agriculture, and others.
By service transportation segment dominating in the carbon capture and sequestration market. Transportation of CO2 can be done via pipeline, ship, or truck. Pipelines are the most commonly used method of transporting CO2, as they are efficient and cost-effective for transporting large volumes of CO2 over long distances. Ships and trucks are typically used for shorter distances or when there is no pipeline infrastructure available. The transportation segment of the CCS market is dominated by pipeline companies that specialize in the transport of CO2. These companies have significant expertise and experience in the design, construction, and operation of CO2 pipelines, and they have established networks of pipelines that can transport CO2 to storage sites In addition to pipeline companies, there are also companies that provide services related to CO2 transport, such as storage and handling, as well as engineering and construction firms that design and build CO2 transport infrastructure.
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By application industrial segment dominating the carbon capture and sequestration market. Due to its being the largest source of carbon dioxide (CO2) emissions globally. The industrial sector includes a wide range of industries, such as power generation, cement production, iron and steel manufacturing, and chemical production, which all emit significant amounts of CO2. CCS technologies are particularly well-suited to reducing emissions from the industrial sector as many of these industries have few viable alternatives for reducing their emissions. For example, in power generation, CCS can be used to capture CO2 emissions from coal-fired power plants, which are still widely used in many countries, especially in developing economies. In addition to power generation, CCS can also be used to reduce emissions from other industrial processes, such as cement production and steel manufacturing, which are particularly difficult to decarbonize using other methods.
The Carbon Capture and Sequestration market key players include Aker Solutions, Fluor Corporation, Hitachi Ltd., Linde AG, Mitsubishi Heavy Industries, ExxonMobil Corporation, General Electric, Halliburton, Honeywell International Inc., Schlumberger Limited, Shell Global, Siemens AG.
Recent Developments: In Alberta, Canada, Shell revealed its plans to build a sizable carbon capture and storage (CCS) complex. Over the course of ts existence, the plant is expected to capture 300 million tonnes of carbon dioxide from its chemical and refinery plant storage. Carbon Engineering and Storegga announced plans for the first significant direct air capture (DAC) facility in the United Kingdom, which is expected to have a 0.5–1 MTPA capacity.The Carbon Capture and Sequestration market by region includes North America, Asia-Pacific (APAC), Europe, South America, and Middle East & Africa (MEA).
The United States has been a leader in CCS research and development, with numerous demonstration projects and research initiatives over the past decade. The U.S. government has also provided significant funding and support for CCS technologies, including tax credits, grants, and loan guarantees. The oil and gas industry in North America has been a major driver of CCS technology, particularly in Canada. In Canada, the oil sands industry is a significant source of greenhouse gas emissions, and companies have been exploring CCS as a way to reduce their carbon footprint. The Canadian government has also provided funding and incentives for CCS projects, particularly in the oil and gas industry.
The power sector in North America is a significant source of CO2 emissions, and many utilities in the region are exploring CCS as a way to reduce their carbon footprint. In particular, the use of coal-fired power plants in the United States has declined in recent years, but many existing plants still emit significant amounts of CO2. CCS can be used to capture CO2 emissions from these plants and store them underground. The regulatory environment in North America has been favorable to CCS, with supportive policies and regulations at both the federal and state/provincial levels. For example, in the United States, the Environmental Protection Agency's Clean Air Act allows for the regulation of CO2 emissions, which has encouraged utilities and industrial companies to explore CCS as a compliance option.
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