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市場調查報告書
商品編碼
1766123
2032 年全球飼料市場預測:按產品類型、按作物類型、按動物類型、按產品形態、按分銷管道、按應用、按地區Forage Market Forecasts to 2032 - Global Analysis By Product Type, Crop Type, Animal Type, Product Form, Distribution Channel, Application and By Geography |
根據 Stratistics MRC 的數據,全球牧草市場預計在 2025 年達到 994 億美元,到 2032 年將達到 1,485 億美元,預測期內的複合年成長率為 5.9%。
覓食是指在戶外(例如森林或草原)尋找和採集自然食物和材料的行為。它通常與食草動物有關,但也適用於人類採集野生可食用植物和資源。在農業和生態學框架中,覓食一詞泛指牲畜食用的植物,例如草類、豆類和乾草。有效的覓食有助於永續土地利用,維持生態系統平衡,並提高綜合農業系統中資源的利用效率。
根據國家牧草和草地課程,適當的牧草管理(包括收穫、儲存和營養平衡)對於保持牧草價值和減少損失至關重要。
優質飼料的需求不斷增加
酪農和肉類生產者優先考慮飼料的營養價值,以提高產乳量和增重效率。富含蛋白質、纖維和易消化物質的優良牧草品種對於最佳化飼養策略至關重要。此外,商業性畜牧業的擴張也推動了對穩定可靠飼料來源的需求。這一趨勢在集約化畜牧業地區尤為明顯。
農民和製造商缺乏意識
儘管飼草科學取得了進展,但小農戶和飼料製造商的認知度仍然相對較低,尤其是在新興經濟體。許多農民仍然依賴傳統方法,不了解飼草檢查、保存和輪作的好處。這些知識缺口導致最佳利用,牲畜生產表現不佳。此外,缺乏培訓和推廣服務也阻礙了現代飼草管理實踐的採用。
先進的分析服務和客製化測試
先進的實驗室服務正在開發中,用於評估水分含量、營養平衡和污染情況,從而實現更精準的飼料配方。人們的意識不斷增強,推動了對客製化解決方案的需求,以便根據牛需求最佳化飼料配方。數位平台和農業技術解決方案也正在改善遠距諮詢服務的可近性。這些技術創新支持數據主導的決策,並促進農民和合作社的科學飼餵管理。
缺乏大量資本和技術專長
飼料加工和品質分析需要在檢測設備、收割機械和倉儲基礎設施方面投入大量資金。這種高額的資本投入往往會阻礙中小企業改善營運。此外,缺乏能夠操作分析設備和解讀結果的熟練人員也阻礙了其應用。因此,在分散的農業格局中,市場難以推廣先進的飼餵系統。
疫情擾亂了農業物流,導致牧草收割、運輸和配送延誤。行動限制和勞動力短缺影響了牧草作物的及時加工,尤其是在當季。但這場危機也促使人們轉向在地採購牧草採購和分散式飼餵系統,以維持生產連續性。許多生產商開始探索創新的保存技術,例如青貯飼料包裝和半乾青貯飼料,以延長青貯飼料的儲存壽命。
預計預測期內,儲存飼料部分將佔最大
預計在預測期內,儲存飼料部分將佔據最大的市場佔有率,因為它在確保全年牲畜營養穩定方面發揮作用。生產商擴大轉向青貯飼料、乾草和乾飼料來填補季節性飼料缺口。妥善儲存的飼料保存期限較長,不易腐爛,營養價值也較持久。在氣候變遷較大、飼料供應波動較大的地區,儲存飼料尤其普遍。
預計在預測期內,捆包部分將以最高的複合年成長率成長。
由於捆包處理、運輸和現場飼餵的便利性,預計在預測期內捆包市場將實現最高成長率。捆包有助於保持水分和營養,尤其是在使用塑膠薄膜等保護層包裹時。此外,其模組化外形規格允許可擴展存儲,並可輕鬆分配到不同的牲畜單元。機械化捆包機的採用率正在上升,從而提高了飼料農場的生產效率。
在預測期內,北美預計將佔據最大的市場佔有率,這得益於其高度組織化的畜牧業和對飼料品質的重視。該地區擁有成熟的飼料生產商、分析實驗室和飼料加工商網路。對永續農業實踐和精準飼餵系統的投資進一步推動了市場需求。此外,政府推動的飼料作物輪作和土壤保護措施也為飼料生產能力的提升提供了支持。
在預測期內,由於動物性蛋白質需求的不斷成長和牲畜數量的不斷增加,預計亞太地區將呈現最高的複合年成長率。印度、中國和印尼等新興經濟體正在擴大酪農和肉類產業,導致對高品質飼料的需求增加。快速的都市化和不斷變化的消費模式迫使各國政府透過戰略計畫來提高飼料安全性。這種不斷變化的情況使該地區成為加速飼料市場發展的熱點。
According to Stratistics MRC, the Global Forage Market is accounted for $99.4 billion in 2025 and is expected to reach $148.5 billion by 2032 growing at a CAGR of 5.9% during the forecast period. Forage is the practice of searching for and gathering naturally available food or materials, often in outdoor settings like forests or grasslands. Commonly linked to animals feeding on vegetation, it also extends to humans collecting wild edibles or resources. In agricultural and ecological frameworks, the term broadly covers plant matter like grasses, legumes, or hay consumed by livestock. Effective foraging contributes to sustainable land use, supports ecological balance, and enhances the efficiency of resource utilization within integrated farming systems.
According to the National Forage & Grassland Curriculum, proper forage management-including harvesting, storage, and nutrient balancing-is essential to maintain feed value and minimize losses.
Rising demand for high-quality forage
Dairy and meat producers are emphasizing the nutritional value of feed to enhance milk yields and weight gain efficiency. Superior forage varieties rich in proteins, fibers, and digestible matter are becoming essential in optimized feeding strategies. Moreover, the expansion of commercial livestock operations is reinforcing demand for consistent and reliable forage sources. This trend is especially pronounced in regions with intensive animal husbandry practices.
Insufficient farmer and manufacturer awareness
Despite advances in forage science, awareness among small-scale farmers and feed manufacturers remains relatively low, especially in emerging economies. Many still rely on traditional methods without understanding the benefits of forage testing, preservation, or crop rotation. This knowledge gap leads to suboptimal feed utilization and reduced livestock performance. Additionally, the lack of training and extension services hampers the adoption of modern forage management practices.
Advanced analytical services & customized testing
Advanced laboratory services are being developed to assess moisture levels, nutrient balance, and contamination, enabling more precise forage formulation. With rising awareness, demand is increasing for tailored solutions that optimize feed blends based on herd requirements. Digital platforms and agritech solutions are also enhancing accessibility to remote advisory services. These innovations are supporting data-driven decisions and promoting scientific fodder management among farmers and cooperatives.
Significant capital and lack technical expertise
Forage processing and quality analysis requires considerable investment in testing equipment, harvesting machinery, and storage infrastructure. This high capital requirement often deters small and medium-sized enterprises from upgrading their operations. Additionally, the shortage of skilled personnel capable of operating analytical devices or interpreting results further constrains adoption. As a result, the market faces barriers in scaling advanced forage systems across fragmented agricultural landscapes.
The pandemic disrupted agricultural logistics, leading to delays in forage harvesting, transportation, and delivery. Restrictions on movement and labor shortages especially impacted the timely processing of seasonal forage crops. However, the crisis also drove a shift toward locally sourced forage and decentralized feed systems to maintain continuity. Many producers began exploring innovative preservation techniques such as silage wrapping and haylage to extend forage shelf life.
The stored forage segment is expected to be the largest during the forecast period
The stored forage segment is expected to account for the largest market share during the forecast period driven by its role in enabling consistent livestock nutrition throughout the year. Producers are increasingly relying on silage, haylage, and dried forage to bridge seasonal feed gaps. Properly stored forage ensures longer shelf life, reduced spoilage, and sustained nutritional value. Its use is particularly prominent in regions with climatic variability where pasture availability fluctuates.
The bales segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the bales segment is predicted to witness the highest growth rate supported by its convenience in handling, transportation, and on-site feeding. Bale packaging helps retain moisture and nutrient integrity, especially when wrapped with protective layers like plastic films. Its modular form factor also allows scalable storage and easy distribution across different livestock units. Rising adoption of mechanized balers is streamlining production efficiency across forage farms.
During the forecast period, the North America region is expected to hold the largest market share owing o its highly organized livestock sector and strong emphasis on feed quality. The region boasts a well-established network of forage producers, analytical laboratories, and feed processors. Investments in sustainable agricultural practices and precision feeding systems are further propelling market demand. Moreover, government initiatives promoting forage crop rotation and soil conservation are supporting forage production capacity.
Over the forecast period, the Asia Pacific region is anticipated to exhibit the highest CAGR attributed to rising animal protein demand and increasing livestock populations. Emerging economies such as India, China, and Indonesia are expanding their dairy and meat industries, which in turn amplifies the need for quality forage. Rapid urbanization and shifting consumption patterns are prompting governments to improve feed security through strategic programs. This evolving landscape makes the region a hotspot for forage market acceleration.
Key players in the market
Some of the key players in Forage Market include Foragen Seeds, FMC Corporation, Royal Barenbrug Group, S&W Seed Company, Corteva Agriscience, Bayer Crop Science, Syngenta, Pioneer Hi-Bred International, DLF Seeds & Science, Allied Seed LLC, Pennington Seed Inc., Advanta Seeds Ltd, Diary Land Seeds, Malav Seeds Pvt Ltd, RAGT Seeds, and KWS SAAT SE
In June 2025, FMC and Corteva entered a collaboration agreement to co-market FMC's fluindapyr fungicide technology Adastrio(R) for corn and soybean growers in the U.S., aiming to improve disease control on ~175 million planted acres.
In May 2025, S&W Seed Companyaunched Double Team Forage Sorghum in collaboration with Corteva Agriscience, offering growers hybrid forage sorghum with dual-trait technology for enhanced yield and disease resistance.
In March 2025, Bayer Crop Science aunched Vyconic(TM) soybeans, the industry's first soybean variety with five-herbicide tolerance (dicamba, glufosinate, mesotrione, 2,4-D, glyphosate), unveiled at Commodity Classic for advanced weed management .
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.