1. 方法論と範囲
1.1. 調査方法
1.2. 調査目的と調査範囲
2. 定義と概要
3. エグゼクティブ・サマリー
3.1. 添加物別スニペット
3.2. コーティングタイプ別
3.3. 作物別スニペット
3.4. 工程別スニペット
3.5. 地域別スニペット
4. ダイナミクス
4.1. 影響要因
4.1.1. 推進要因
4.1.1.1. 農業生産性向上へのニーズの高まり
4.1.1.2. 種子コーティング材市場の発展
4.1.2. 阻害要因
4.1.2.1. 種子コーティング材の高コスト
4.1.3. 機会
4.1.4. 影響分析
5. 産業分析
5.1. ポーターのファイブフォース分析
5.2. サプライチェーン分析
5.3. 価格分析
5.4. 規制分析
5.5. ロシア・ウクライナ戦争の影響分析
5.6. DMI意見
6. 添加物別
6.1. はじめに
6.1.1. 添加剤別の市場規模分析と前年比成長率分析(%)
6.1.2. 市場魅力度指数:添加剤別
6.2. ポリマー
6.2.1. 序論
6.2.2. 市場規模分析と前年比成長率分析(%)
6.2.3. 高分子ゲル
6.2.4. 高吸水性
6.3. 着色剤
6.4. ペレットバインダー
6.5. その他
7. コーティングタイプ別
7.1. はじめに
7.2. コーティングタイプ別市場規模分析と前年比成長率分析(%)
7.3. 市場魅力度指数(コーティングタイプ別
7.4. バイオベースコーティング
7.4.1. はじめに
7.4.2. 市場規模分析と前年比成長率分析(%)
7.5. 合成コーティング
8. 作物別
8.1. はじめに
8.2. 作物別の市場規模分析と前年比成長率分析(%) 8.3.
8.3. 市場魅力度指数(作物別
8.4. 穀物・穀類
8.4.1. はじめに
8.4.2. 市場規模分析と前年比成長率分析(%)
8.5. 油糧作物と豆類
8.6. 果物・野菜
8.7. 芝・観賞用
8.8. その他
9. プロセス別
9.1. はじめに
9.2. 市場規模分析と前年比成長率分析(%), プロセス別
9.3. 市場魅力度指数, プロセス別
9.4. フィルムコーティング
9.4.1. はじめに
9.4.2. 市場規模分析と前年比成長率分析(%)
9.5. 包あん
9.6. ペレット化
10. 地域別
10.1. はじめに
10.1.1. 地域別市場規模分析および前年比成長率分析(%)
10.1.2. 市場魅力度指数、地域別
10.2. 北米
10.2.1. 序論
10.2.2. 主な地域別ダイナミクス
10.2.3. 市場規模分析および前年比成長率分析(%), 添加剤別
10.2.4. 市場規模分析および前年比成長率分析 (%)、コーティングタイプ別
10.2.5. 市場規模分析および前年比成長率分析 (%)、作物別
10.2.6. 市場規模分析および前年比成長率分析(%), プロセス別
10.2.7. 市場規模分析および前年比成長率分析(%), 国別
10.2.7.1. 米国
10.2.7.2. カナダ
10.2.7.3. メキシコ
10.3. ヨーロッパ
10.3.1. はじめに
10.3.2. 主な地域別ダイナミクス
10.3.3. 市場規模分析および前年比成長率分析(%)、添加剤別
10.3.4. 市場規模分析および前年比成長率分析 (%)、コーティングタイプ別
10.3.5. 市場規模分析および前年比成長率分析 (%)、作物別
10.3.6. 市場規模分析および前年比成長率分析(%), プロセス別
10.3.7. 市場規模分析および前年比成長率分析(%), 国別
10.3.7.1. ドイツ
10.3.7.2. イギリス
10.3.7.3. フランス
10.3.7.4. イタリア
10.3.7.5. スペイン
10.3.7.6. その他のヨーロッパ
10.4. 南米
10.4.1. はじめに
10.4.2. 地域別主要市場
10.4.3. 市場規模分析および前年比成長率分析(%), 添加剤別
10.4.4. 市場規模分析および前年比成長率分析 (%)、コーティングタイプ別
10.4.5. 市場規模分析および前年比成長率分析 (%)、作物別
10.4.6. 市場規模分析および前年比成長率分析(%), プロセス別
10.4.7. 市場規模分析および前年比成長率分析(%), 国別
10.4.7.1. ブラジル
10.4.7.2. アルゼンチン
10.4.7.3. その他の南米諸国
10.5. アジア太平洋
10.5.1. 序論
10.5.2. 主な地域別ダイナミクス
10.5.3. 市場規模分析および前年比成長率分析(%), 添加剤別
10.5.4. 市場規模分析および前年比成長率分析 (%)、コーティングタイプ別
10.5.5. 市場規模分析および前年比成長率分析 (%)、作物別
10.5.6. 市場規模分析および前年比成長率分析(%), プロセス別
10.5.7. 市場規模分析および前年比成長率分析(%), 国別
10.5.7.1. 中国
10.5.7.2. インド
10.5.7.3. 日本
10.5.7.4. オーストラリア
10.5.7.5. その他のアジア太平洋地域
10.6. 中東・アフリカ
10.6.1. 序論
10.6.2. 主な地域別ダイナミクス
10.6.3. 市場規模分析および前年比成長率分析(%)、添加剤別
10.6.4. 市場規模分析および前年比成長率分析 (%)、コーティングタイプ別
10.6.5. 市場規模分析および前年比成長率分析 (%)、作物別
10.6.6. 市場規模分析および前年比成長率分析(%), プロセス別
11. 競争環境
11.1. 競争シナリオ
11.2. 市場ポジショニング/シェア分析
11.3. M&A分析
12. 企業プロフィール
12.1. BASF SE
12.1.1. 会社概要
12.1.2. 製品ポートフォリオと内容
12.1.3. 財務概要
12.1.4. 主な展開
12.2. Clariant International
12.3. Chromatech Incorporated
12.4. Incotec Group
12.5. German Seeds Technology
12.6. BrettYoung
12.7. Azelis Holding S.A.
12.8. Michelman, Inc.
12.9. Imerys S.A.
12.10. Solvay (*リストは除く)
13. 付録
13.1. ソルベイについて
13.2. お問い合わせ
Global Seed Coating Materials Market reached US$ 1.9 billion in 2023 and is expected to reach US$ 3.2 billion by 2031, growing with a CAGR of 6.7% during the forecast period 2024-2031.
Seed coating materials are applied to seeds to enhance their performance and safeguard them during the initial growth phase. The coatings improve germination rates, increase resistance to diseases and deliver essential nutrients. The seed coating material market is expanding as it aims to improve seed performance and protection using specialized coatings.
The coatings, available in chemical, biological and polymer forms, perform diverse functions including pest control, nutrient delivery and environmental protection. The market is advancing due to technological innovations and the rising demand for greater agricultural productivity. Advancements in coating materials, emphasizing sustainability and efficiency, are shaping the industry's future.
North America dominates the global seed coating material market through its rapid modernization and technological advancements. The region's 167% rise in renewable energy adoption over the past decade highlights its commitment to sustainability and efficiency. Coupled with the growing use of seed coatings to optimize performance and yield, North America’s focus on reducing waste and enhancing production secures its leading role in the global market.
Market Dynamics
Rising Need For Enhanced Agricultural Productivity
As the global population is projected to increase by over 2.3 billion by 2050, especially in developing nations and urban areas, there is an urgent need for more efficient agricultural practices to meet the rising demand for food. The need for enhanced agricultural productivity became essential. Seed coatings are important in improving seed germination, promoting healthier seedling growth and protecting against pests and diseases.
Seed coatings ensure more robust plant development and higher yields by incorporating nutrients, growth regulators and protective agents. They also help seeds withstand environmental stresses, reduce the need for additional inputs and contribute to more sustainable farming practices. The choice and composition of seed materials in seed coatings are crucial for ensuring that coatings perform their intended functions effectively, driving market growth.
Developments In The Seed Coating Materials Market
Recent advancements are driving the global seed coating materials market by addressing the dual goals of enhancing crop yields and environmental sustainability. Innovations like microbe-inoculated coatings and polysaccharide-based solutions improve seed growth and reduce reliance on synthetic chemicals. Nanofibrous and nanomaterials-based coatings offer advanced technology for controlled nutrient release and better seed protection.
Hydrogel coatings enhance moisture retention and support growth in varying climates, while biomass-derived treatments promote sustainability through waste recycling. These developments cater to the growing demand for efficient, eco-friendly agricultural solutions, thus propelling market growth and meeting both productivity and environmental goals.
High Costs of Seed Coating Materials
The high costs associated with production and application restrain the market expansion. The expenses related to raw materials, advanced technology and the application process can add to a higher cost end of the process that is burdensome for smaller players in the market, potentially limiting their ability to compete and grow. Additionally, economic downturns and fluctuations impact agricultural investment, leading farmers and agricultural companies to reduce spending on seed coatings.
Market Segment Analysis
The global seed coating materials market is segmented based on additives, coating type, crops, process and region.
Affordability and Ease of Application of Film Coating
The global seed coating materials market is segmented based on process into film coating, encrusting and pelleting. The film coating segment dominated the market. Film coating leads the global seed coating materials market due to its versatility, cost-effectiveness and performance-enhancing benefits. This method applies to a wide variety of seed types and conditions, offering a thin, even layer that can be customized with growth-promoting substances, nutrients or pesticides.
The film coating functions without significantly altering the size and shape of the seed. Its cost-efficiency makes it an attractive option for both large-scale and smaller agricultural operations. Additionally, film coating enhances seed handling, reduces damage during planting and provides protection against diseases and pests, improving overall seed germination and growth and enhancing segment growth.
Market Geographical Share
High Agricultural Productivity and Technological Advancements in North America
North America, particularly US, demonstrates dominance in the global seed coating market through its significant agricultural productivity and technological advancements. With family farms and ranches accounting for 90% of total agricultural production value and a notable increase in farm productivity, such as a more than 360% rise in corn yield since 1950—the region showcases its efficiency and scale in farming.
The emphasis on high output and efficiency translates into a strong demand for advanced agricultural technologies, including seed coatings, which enhance crop performance and protection. Additionally, the US exports US$ 174.9 billion worth of agricultural products annually, underscoring the importance of maintaining quality and consistency, in areas where seed coatings play a critical role.
Market Competitive Landscape
The major global players in the market include BASF SE, Clariant International, Chromatech Incorporated, Incotec Group, German Seeds Technology, BrettYoung, Azelis Holding S.A., Michelman, Inc., Imerys S.A. and Solvay.
Russia-Ukraine War Impact
The Russia-Ukraine war has significantly affected the global seed coating materials market by disrupting supply chains and driving up costs due to shortages of essential raw materials from the region. Higher transportation and production costs are being transferred throughout the supply chain, impacting pricing and adoption. The conflict has also altered trade routes and logistics, influencing companies to find alternative sources and adjust their strategies.
AI Impact
AI is revolutionizing the global seed coating market by enhancing product development and efficiency. AI is driving innovation in the seed coating material market by improving efficiency, precision and customization. All these ultimately support better agricultural outcomes. It allows for precise formulation, reducing costs and improving effectiveness.
By Additive
Polymers
Polymer Gels
Superabsorbent
Colorants
Pellet Binders
Others
By Coating Type
Bio-based Coating
Synthetic Coating
By Crops
Grains & Cereals
Oil Crops & Pulses
Fruits & Vegetables
Turf & Ornamental
Others
By Process
Film Coating
Encrusting
Pelleting
By Region
North America
US
Canada
Mexico
Europe
Germany
UK
France
Italy
Spain
Rest of Europe
South America
Brazil
Argentina
Rest of South America
Asia-Pacific
China
India
Japan
Australia
Rest of Asia-Pacific
Middle East and Africa
Key Developments
In February 2024, Milliken do Brasil has launched Milli Solum and Milli Fusion seed coating polymers in Brazil, certified by Syngenta's Seedcare Institute, offering greater flexibility for seed treatment customization.
In May 2022, Syngenta Seedcare has launched VICTRATO®, a new seed treatment using TYMIRIUM technology to protect crops from nematodes and soil-borne diseases. Safe for beneficial insects and soil health, it supports no-tillage practices and aims to mitigate significant yield losses.
In December 2021, BASF launched its new Flo Rite Pro 2805 seed coating polymer that boosts seed treatment effectiveness by enhancing ingredient adhesion and retention, while also supporting environmental and worker safety.
Why Purchase the Report?
To visualize the global seed coating materials
Market Segmentation based on additive, coating type, crops, process and region, as well as understand key commercial assets and players.
Identify commercial opportunities by analyzing trends and co-development.
Excel spreadsheet containing a comprehensive dataset of the seed coating materials market, covering all levels of segmentation.
PDF report consists of a comprehensive analysis after exhaustive qualitative interviews and an in-depth study.
Product mapping available as excel consisting of key products of all the major players.
The global seed coating materials market report would provide approximately 70 tables, 64 figures and 253 pages.
Target Audience 2024
Manufacturers/ Buyers
Industry Investors/Investment Bankers
Research Professionals
Emerging Companies
1. Methodology and Scope
1.1. Research Methodology
1.2. Research Objective and Scope of the Report
2. Definition and Overview
3. Executive Summary
3.1. Snippet by Additive
3.2. Snippet by Coating Type
3.3. Snippet by Crops
3.4. Snippet by Process
3.5. Snippet by Region
4. Dynamics
4.1. Impacting Factors
4.1.1. Drivers
4.1.1.1. Rising Need for Enhanced Agricultural Productivity
4.1.1.2. Developments in the Seed Coating Materials Market
4.1.2. Restraints
4.1.2.1. High Costs Seed Coating Materials
4.1.3. Opportunity
4.1.4. Impact Analysis
5. Industry Analysis
5.1. Porter's Five Force Analysis
5.2. Supply Chain Analysis
5.3. Pricing Analysis
5.4. Regulatory Analysis
5.5. Russia-Ukraine War Impact Analysis
5.6. DMI Opinion
6. By Additive
6.1. Introduction
6.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Additive
6.1.2. Market Attractiveness Index, By Additive
6.2. Polymers
6.2.1. Introduction
6.2.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
6.2.3. Polymer Gels
6.2.4. Superabsorbent
6.3. Colorants
6.4. Pellet Binders
6.5. Others
7. By Coating Type
7.1. Introduction
7.2. Market Size Analysis and Y-o-Y Growth Analysis (%), By Coating Type
7.3. Market Attractiveness Index, By Coating Type
7.4. Bio-based Coating
7.4.1. Introduction
7.4.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
7.5. Synthetic Coating
8. By Crops
8.1. Introduction
8.2. Market Size Analysis and Y-o-Y Growth Analysis (%), By Crops
8.3. Market Attractiveness Index, By Crops
8.4. Grains & Cereals
8.4.1. Introduction
8.4.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
8.5. Oil Crops & Pulses
8.6. Fruits & Vegetables
8.7. Turf & Ornamental
8.8. Others
9. By Process
9.1. Introduction
9.2. Market Size Analysis and Y-o-Y Growth Analysis (%), By Process
9.3. Market Attractiveness Index, By Process
9.4. Film Coating
9.4.1. Introduction
9.4.2. Market Size Analysis and Y-o-Y Growth Analysis (%)
9.5. Encrusting
9.6. Pelleting
10. By Region
10.1. Introduction
10.1.1. Market Size Analysis and Y-o-Y Growth Analysis (%), By Region
10.1.2. Market Attractiveness Index, By Region
10.2. North America
10.2.1. Introduction
10.2.2. Key Region-Specific Dynamics
10.2.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Additive
10.2.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Coating Type
10.2.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Crops
10.2.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Process
10.2.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.2.7.1. US
10.2.7.2. Canada
10.2.7.3. Mexico
10.3. Europe
10.3.1. Introduction
10.3.2. Key Region-Specific Dynamics
10.3.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Additive
10.3.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Coating Type
10.3.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Crops
10.3.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Process
10.3.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.3.7.1. Germany
10.3.7.2. U.K.
10.3.7.3. France
10.3.7.4. Italy
10.3.7.5. Spain
10.3.7.6. Rest of Europe
10.4. South America
10.4.1. Introduction
10.4.2. Key Region-Specific Dynamics
10.4.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Additive
10.4.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Coating Type
10.4.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Crops
10.4.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Process
10.4.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.4.7.1. Brazil
10.4.7.2. Argentina
10.4.7.3. Rest of South America
10.5. Asia-Pacific
10.5.1. Introduction
10.5.2. Key Region-Specific Dynamics
10.5.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Additive
10.5.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Coating Type
10.5.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Crops
10.5.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Process
10.5.7. Market Size Analysis and Y-o-Y Growth Analysis (%), By Country
10.5.7.1. China
10.5.7.2. India
10.5.7.3. Japan
10.5.7.4. Australia
10.5.7.5. Rest of Asia-Pacific
10.6. Middle East and Africa
10.6.1. Introduction
10.6.2. Key Region-Specific Dynamics
10.6.3. Market Size Analysis and Y-o-Y Growth Analysis (%), By Additive
10.6.4. Market Size Analysis and Y-o-Y Growth Analysis (%), By Coating Type
10.6.5. Market Size Analysis and Y-o-Y Growth Analysis (%), By Crops
10.6.6. Market Size Analysis and Y-o-Y Growth Analysis (%), By Process
11. Competitive Landscape
11.1. Competitive Scenario
11.2. Market Positioning/Share Analysis
11.3. Mergers and Acquisitions Analysis
12. Company Profiles
12.1. BASF SE
12.1.1. Company Overview
12.1.2. Product Portfolio and Description
12.1.3. Financial Overview
12.1.4. Key Developments
12.2. Clariant International
12.3. Chromatech Incorporated
12.4. Incotec Group
12.5. German Seeds Technology
12.6. BrettYoung
12.7. Azelis Holding S.A.
12.8. Michelman, Inc.
12.9. Imerys S.A.
12.10. Solvay (*LIST NOT EXHAUSTIVE)
13. Appendix
13.1. About Us and Services
13.2. Contact Us
| ※参考情報 種子コーティング材は、種子の表面を覆う材料であり、主に種子の発芽率を向上させることや、病害虫から種子を保護することを目的としています。このコーティング材は、種子自体の成長促進だけでなく、農業全般においても重要な役割を果たしています。 種子コーティング材の主な種類としては、栄養素を含むもの、防虫・防 Disease 錠剤を含むもの、発芽促進剤を含むものなどが存在します。栄養素を含む種子コーティングは、肥料成分を包み込み、種子が発根を始める際に必要な栄養を供給します。一方、防虫・防 Disease 錠剤のコーティングは、病気の蔓延を防ぐ薬剤が含まれており、種子が安全に成長できる環境を提供します。また、発芽促進剤を含むものは、特定の物質をコーティングすることで発芽を早めることが期待されます。 種子コーティング材の用途は多岐にわたります。例えば、農業においては、コーティングされた種子を用いることで、圃場での発芽率を向上させ、収穫量を増やすことができます。また、都市農業などの小規模な栽培にも利用され、家庭菜園やプランター栽培などでの手軽な栽培をサポートしています。さらに、種子コーティングは、特に気候変動や環境ストレスに晒された地域において、耐性を向上させる手段としても重要です。 関連技術としては、種子コーティングプロセスが挙げられます。このプロセスでは、まず種子を前処理し、その後、コーティング剤を均一に適用するための機械や技術が必要です。新しい材料や技術の導入により、コーティングの厚さや均一性を改善し、さらに機能性を持たせることが可能となります。最近では、ナノテクノロジーが取り入れられ、非常に微細な粒子を使ったコーティング技術も注目されています。このような技術革新が、より効率的で持続可能な農業を実現するための鍵となります。 また、種子コーティング材は、生物的農法や持続可能な農業へ向けた取り組みとも連携しています。化学 pesticide 材を使用せず、生物由来の材料を用いたコーティングが開発されており、より環境に優しい農業の実現を目指しています。このように、種子コーティング技術は、農業の環境配慮と生産性向上を同時に追求する重要なツールとなっています。 種子コーティング材は、今後の農業においてますます重要性を増していくと考えられます。種子の品質向上や生育促進、環境ストレスへの対策など、多様なニーズに応えるための研究や開発が期待されており、持続可能な農業の実現に寄与する可能性があります。新しい技術と材料の開発が進む中で、種子コーティング材は農業の未来を支える重要な要素となるでしょう。農業従事者にとって、こうしたコーティング技術の理解と活用は、より高い収益と環境保全を両立させるために欠かせないものとなります。 |
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・種子コーティング材の世界市場予測は?
→DataM Intelligence社は2031年の種子コーティング材の世界市場規模を32億米ドルと予測しています。
・種子コーティング材市場の成長率は?
→DataM Intelligence社は種子コーティング材の世界市場が2024年~2031年に年平均6.7%成長すると展望しています。
・世界の種子コーティング材市場における主要プレイヤーは?
→「BASF SE、Clariant International、Chromatech Incorporated、Incotec Group、German Seeds Technology、BrettYoung、Azelis Holding S.A.、Michelman, Inc.、Imerys S.A.、Solvayなど ...」を種子コーティング材市場のグローバル主要プレイヤーとして判断しています。
※上記FAQの市場規模、市場予測、成長率、主要企業に関する情報は本レポートの概要を作成した時点での情報であり、最終レポートの情報と少し異なる場合があります。
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