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市場調査レポート
商品コード
1625347
農業における炭素隔離の世界市場:用途・製品・地域・政策・既存および今後の隔離法・将来の経路の分析・予測 (2024-2034年)Agriculture Carbon Sequestration Market - A Global and Regional Analysis: Focus on Application, Product, Policy Analysis, Existing Methodologies, Upcoming Methodologies, and Future Pathways - Analysis and Forecast, 2024-2034 |
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カスタマイズ可能
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農業における炭素隔離の世界市場:用途・製品・地域・政策・既存および今後の隔離法・将来の経路の分析・予測 (2024-2034年) |
出版日: 2025年01月08日
発行: BIS Research
ページ情報: 英文 159 Pages
納期: 1~5営業日
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農業における炭素隔離の市場規模は、2023年の1億5,500万米ドルから、予測期間中はCAGR 17.74%で推移し、2034年には9億1,290万米ドルに達すると予測されています。
気候変動を緩和し、土壌の健全性を高め、持続可能な農業を支援する上で不可欠な役割を果たす農業用の炭素隔離ソリューションの需要が急速に高まっています。土壌センサーや衛星画像などの先進技術を統合することで、農家は炭素吸収レベルを測定・監視できるようになり、効率と環境への影響を改善するデータ主導の意思決定が可能になります。さらに、再生農業技術の採用が拡大していることから、より信頼性が高く拡張性のある炭素隔離方法の必要性が高まっています。炭素モニタリングと検証システムの革新は、さまざまな農業経営における透明性とコンプライアンスを確保し、その採用をさらに強化しています。
農業における炭素隔離:イントロダクション
主要市場統計 | |
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予測期間 | 2024-2034年 |
2024年の評価 | 1億7,830万米ドル |
2034年予測 | 9億1,290万米ドル |
CAGR | 17.74% |
市場セグメンテーション:
セグメンテーション1:用途別
セグメンテーション2:タイプ別
セグメンテーション3:地域別
市場促進要因:政府の政策とインセンティブ
農業における炭素隔離の市場は、財政支援と環境目標を組み合わせた政府の政策とインセンティブによって形成されており、強力な成長エンジンとなっています。土壌の健全性を向上させ、排出量を削減するために土壌の炭素を隔離する再生農法は、EUのCAPエコスキームや米国のClimate-Smart Agriculture and Forestryプログラムなどによって奨励されています。これらの政策は、農家に経済的利益をもたらすことに加え、世界の気候変動目標にも合致しているため、広く採用されると考えられています。政府が支援するこうしたプログラムは、長期的には農業に革命をもたらし、気候変動への対応に不可欠な要素として位置づけられる可能性を秘めています。こうした政策には、温室効果ガスの排出量を大幅に削減し、回復力のある生態系を支え、炭素農法を従来の農業に組み込むことで炭素クレジット市場を通じた持続可能なビジネスソースを発展させる力があります。これらのことから、天然資源を節約し、世界の気候変動対策を推進する持続可能な農法は経済と環境に貢献するでしょう。
市場の課題:炭素市場における標準化の欠如
炭素市場には基準がないため、炭素クレジットの測定、検証、価格決定には一貫性がなく、特に農業部門においてはこれが問題となります。この問題を解決するには、国際的に認められた炭素貯留手続きの基準を作ることが重要です。EUのCAP対策や米国のGrowing Climate Solutions Actのようなプログラムの延長など、国際協力を通じて明確なプロトコルが確立されれば、より多くの事業者が市場に参入すると思われます。標準化は、透明性を促進し、価格変動を低下させ、炭素クレジットの正当性を高めることで、農地炭素市場の長期的な成長とスケーラビリティを促進すると考えられています。
市場機会:モニタリング・検証技術の開発
モニタリング・報告・検証 (MRV) 技術の開発により、農業における炭素隔離エコシステムには多くの可能性が示されます。炭素市場や規制当局の高まる要求に応えるため、企業はブロックチェーンベースのプラットフォームやAI主導の分析など、拡張性のあるMRVソリューションに投資することで、炭素隔離の透明でリアルタイムの追跡を提供することができます。これにより、より迅速に炭素クレジットを創出することが可能となり、これまで大きな入り口の障害を乗り越えなければならなかった中小規模の農場にとっては特に有利となります。このような技術革新は、ゆくゆくは炭素クレジットの正当性を強化し、参加者を増やし、世界中の炭素市場の拡大を後押しすると考えられています。企業は、検証プロセスを合理化し、データの質を保証することで、大規模な組織と緊密な関係を築き、新たな市場に参入することができます。これは最終的に、農業部門が炭素隔離技術をより広く採用する助けとなると予想されています。
当レポートでは、世界の農業における炭素隔離の市場を調査し、主要動向、市場影響因子の分析、法規制環境、技術開発・特許の動向、ケーススタディ、市場規模の推移・予測、各種区分・地域/主要国別の詳細分析、競合情勢、主要企業のプロファイルなどをまとめています。
範囲と定義
Agriculture Carbon Sequestration Market Overview
The agriculture carbon sequestration market was valued at $155.0 million in 2023 and is expected to grow at a CAGR of 17.74% and reach $912.9 million by 2034. The demand for agriculture carbon sequestration solutions has been rapidly increasing, driven by their essential role in mitigating climate change, enhancing soil health, and supporting sustainable farming practices. The integration of advanced technologies, such as soil sensors and satellite imagery, allows farmers to measure and monitor carbon capture levels, enabling data-driven decisions that improve efficiency and environmental impact. Moreover, the growing adoption of regenerative agriculture techniques has been driving the need for more reliable and scalable carbon sequestration methods. Carbon monitoring and verification system innovations have further strengthened their adoption, ensuring transparency and compliance across various farming operations.
Introduction to Agriculture Carbon Sequestration
KEY MARKET STATISTICS | |
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Forecast Period | 2024 - 2034 |
2024 Evaluation | $178.3 Million |
2034 Forecast | $912.9 Million |
CAGR | 17.74% |
Agriculture carbon sequestration refers to the process of capturing and storing atmospheric carbon dioxide (CO2) in agricultural soils, plants, and biomass to mitigate climate change and improve soil health. This practice involves techniques such as cover cropping, crop rotation, conservation tillage, agroforestry, and the application of biochar, which enhances the organic carbon content in soils. By integrating advanced technologies, such as sensors, satellite imagery, and AI-driven monitoring systems, agriculture carbon sequestration enables precise measurement and verification of carbon storage. Serving as a vital strategy in sustainable farming, it helps reduce greenhouse gas emissions, promotes biodiversity, enhances soil fertility, and supports long-term agricultural productivity.
Market Introduction
The agriculture carbon sequestration market has been gaining momentum as the need for sustainable farming practices and climate change mitigation increases. This market focuses on methods and technologies that enable the capture and storage of atmospheric carbon in agricultural soils, utilizing practices such as cover cropping, no-till farming, and agroforestry. With growing awareness of agriculture's role in reducing greenhouse gas emissions and supportive government policies, carbon credit incentives, and corporate sustainability goals, the adoption of carbon sequestration techniques has been expanding globally. As the demand for scalable, eco-friendly solutions intensifies, the agriculture carbon sequestration market is expected to witness significant growth, driven by advancements in monitoring technologies, data-driven approaches, and global commitments to net-zero emissions.
Industrial Impact
The industrial impact of the agriculture carbon sequestration market extends across the agricultural sector, promoting sustainable practices and addressing climate change challenges. The adoption of carbon sequestration techniques drives innovation in soil management, regenerative farming, and agroecological methods, fostering the development of integrated systems that balance productivity with environmental stewardship. This market stimulates collaboration among agritech firms, carbon credit providers, policymakers, and farmers, setting new industry benchmarks for sustainable agriculture. By aligning with global carbon reduction targets and sustainability goals, the market supports resource-efficient farming practices, enhances soil health, and helps combat climate change, reinforcing its critical role in the agricultural sector's transformation.
The key players operating in the agriculture carbon sequestration market include Soil Capital, Indigo Agriculture, Yara, Carbon8 Systems, Cool Farm Alliance, Corteva Agriscience, BASF, Syngenta, Carboculture, and Charm Industrial. These companies have been focusing on strategic partnerships, collaborations, and acquisitions to enhance their product offerings and expand their market presence.
Market Segmentation:
Segmentation 1: by Application
Crop Farming Application to Lead the Market (by Application)
In 2023, the crop farming segment led the agriculture carbon sequestration market. This dominance is because of the increasing global emphasis on regenerative agriculture practices that improve soil health while sequestering carbon. Techniques such as cover cropping, no-till farming, and agroforestry are being widely adopted to meet sustainability goals and enhance agricultural resilience against climate change. The strong push from governments and organizations toward promoting soil carbon storage and financial incentives, such as carbon credits, further accelerates the adoption of these practices. Additionally, growing consumer demand for sustainably sourced food and stringent environmental regulations are driving agribusinesses to integrate soil carbon enhancement techniques into their operations.
Segmentation 2: by Type
Natural-Based Solution to Lead the Market (by Type)
The agriculture carbon sequestration market is dominated by natural-based solutions due to their ability to deliver sustainable carbon capture while promoting ecosystem health. Practices such as agroforestry, wetland restoration, and regenerative farming utilize natural ecosystems to absorb and store atmospheric carbon effectively. These solutions are favored for their scalability, cost-efficiency, and multiple co-benefits, including biodiversity conservation and soil fertility improvement. Increased governmental and corporate support and consumer demand for eco-friendly agricultural practices drive adoption. Furthermore, advancements in monitoring technologies and carbon credit frameworks make natural-based solutions an economically viable and environmentally impactful approach to carbon sequestration in agriculture.
Segmentation 3: by Region
In 2023, North America accounted for a substantial 38.33% share of the global agriculture carbon sequestration market, valued at $59.4 million. This significant market presence has been driven by favorable government incentives and policies, including initiatives such as the USDA's Conservation Stewardship Program, which promotes regenerative farming practices and carbon credit generation. The region's advanced technological capabilities, particularly in precision agriculture and digital carbon monitoring platforms, further enhance the adoption of carbon sequestration techniques. Additionally, major players such as Indigo Ag, known for its innovative carbon farming programs, position North America as a key hub for sustainable agriculture practices and carbon credit trading.
Recent Developments in the Agriculture Carbon Sequestration Market
Demand - Drivers, Limitations, and Opportunities
Market Drivers: Government Policies and Incentives
The market for agricultural carbon sequestration is being shaped by government policies and incentives that combine financial support with environmental objectives, making it a powerful growth engine. Regenerative farming techniques, which sequester carbon in the soil to improve soil health and lower emissions, are encouraged by programs such as the EU's CAP Eco-Schemes and the U.S.'s Climate-Smart Agriculture and Forestry program. These policies will be widely adopted since they provide farmers with financial benefits and align with global climate objectives. Such government-backed programs have the potential to revolutionize agriculture in the long run and position it as a vital component of the climate change response. These policies have the ability to cut greenhouse gas emissions greatly, support resilient ecosystems, and develop a sustainable business source through carbon credit markets by integrating carbon farming into conventional agriculture. As a result, sustainable agricultural methods that save natural resources and advance global climate action can help the economy and the environment.
Market Challenges: Lack of Standardization in Carbon Markets
The measurement, verification, and pricing of carbon credits are inconsistent due to the absence of standards in the carbon markets, which is especially problematic for the agricultural sector. Creating internationally accepted standards for carbon sequestration procedures is crucial to resolving the issue. More players would enter the market if clear protocols were established through international cooperation, such as by extending programs such as the EU's CAP Measures and the U.S. Growing Climate Solutions Act. In the end, standardization would promote long-term growth and scalability for the farm carbon market by promoting transparency, lowering price volatility, and enhancing the legitimacy of carbon credits.
Market Opportunities: Development of Monitoring and Verification Technologies
There is a lot of potential for businesses in the agriculture carbon sequestration ecosystem due to the development of monitoring, reporting, and verification (MRV) technology. In order to meet the growing demands of carbon markets and regulators, enterprises may provide transparent, real-time tracking of carbon sequestration by investing in scalable MRV solutions such as blockchain-based platforms and AI-driven analytics. This makes it possible to generate carbon credits more quickly, which is especially advantageous for small and medium-sized farms that had to overcome significant entrance obstacles in the past. Over time, these innovations will strengthen the legitimacy of carbon credits, allowing for increased involvement and propelling the expansion of carbon markets throughout the world. Companies can forge closer ties with large organizations and penetrate new markets by streamlining the verification process and guaranteeing data quality. This will eventually help the agriculture sector adopt carbon sequestration techniques more widely.
How can this report add value to an organization?
Product/Innovation Strategy: The product segment helps the reader understand the different applications of agriculture carbon sequestration based on application (crop farming, livestock farming, and forestry) and by type (natural-based solution and technology-based solution). The market is expected to significantly expand with ongoing technological advancements, increased investments, and growing awareness of the importance of carbon sequestration. Therefore, the agriculture carbon sequestration business is a high-investment and high-revenue generating model.
Growth/Marketing Strategy: The agriculture carbon sequestration market has been growing at a rapid pace. The market offers enormous opportunities for existing and emerging market players. Some of the strategies covered in this segment are mergers and acquisitions, product launches, partnerships and collaborations, business expansions, and investments. The strategies preferred by companies to maintain and strengthen their market position primarily include product development.
Competitive Strategy: The key players in the agriculture carbon sequestration market analyzed and profiled in the study include professionals with expertise in the agriculture and carbon sequestration domains. Additionally, a comprehensive competitive landscape such as partnerships, agreements, and collaborations are expected to aid the reader in understanding the untapped revenue pockets in the market.
Research Methodology
Factors for Data Prediction and Modelling
Market Estimation and Forecast
This research study involves the usage of extensive secondary sources, such as certified publications, articles from recognized authors, white papers, annual reports of companies, directories, and major databases to collect useful and effective information for an extensive, technical, market-oriented, and commercial study of the agriculture carbon sequestration market.
The market engineering process involves the calculation of the market statistics, market size estimation, market forecast, market crackdown, and data triangulation (the methodology for such quantitative data processes is explained in further sections). The primary research study has been undertaken to gather information and validate the market numbers for segmentation types and industry trends of the key players in the market.
Primary Research
The primary sources involve industry experts from the agriculture carbon sequestration market and various stakeholders in the ecosystem. Respondents such as CEOs, vice presidents, marketing directors, and technology and innovation directors have been interviewed to obtain and verify both qualitative and quantitative aspects of this research study.
The key data points taken from primary sources include:
Secondary Research
This research study of the agriculture carbon sequestration market involves the usage of extensive secondary research, directories, company websites, and annual reports. It also makes use of databases, such as Hoovers, Bloomberg, Businessweek, and Factiva, to collect useful and effective information for an extensive, technical, market-oriented, and commercial study of the global market. In addition to the aforementioned data sources, the study has been undertaken with the help of other data sources and websites, such as IRENA and IEA.
Secondary research was done in order to obtain crucial information about the industry's value chain, revenue models, the market's monetary chain, the total pool of key players, and the current and potential use cases and applications.
The key data points taken from secondary research include:
Key Market Players and Competition Synopsis
The companies that are profiled in the agriculture carbon sequestration market have been selected based on inputs gathered from primary experts, who have analyzed company coverage, product portfolio, and market penetration.
Some of the prominent companies in this market are:
Companies that are not a part of the aforementioned pool have been well represented across different sections of the report (wherever applicable).
Scope and Definition