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市场调查报告书
商品编码
1766123
2032 年全球饲料市场预测:按产品类型、按作物类型、按动物类型、按产品形态、按分销管道、按应用、按地区Forage Market Forecasts to 2032 - Global Analysis By Product Type, Crop Type, Animal Type, Product Form, Distribution Channel, Application and By Geography |
根据 Stratistics MRC 的数据,全球牧草市场预计在 2025 年达到 994 亿美元,到 2032 年将达到 1,485 亿美元,预测期内的复合年增长率为 5.9%。
觅食是指在户外(例如森林或草原)寻找和采集自然食物和材料的行为。它通常与食草动物有关,但也适用于人类采集野生可食用植物和资源。在农业和生态学框架中,觅食一词泛指牲畜食用的植物,例如草类、豆类和干草。有效的觅食有助于永续土地利用,维持生态系统平衡,并提高综合农业系统中资源的利用效率。
根据国家牧草和草地课程,适当的牧草管理(包括收穫、储存和营养平衡)对于保持牧草价值和减少损失至关重要。
优质饲料的需求不断增加
酪农和肉类生产者优先考虑饲料的营养价值,以提高产乳量和增重效率。富含蛋白质、纤维和易消化物质的优良牧草品种对于优化饲养策略至关重要。此外,商业性畜牧业的扩张也推动了对稳定可靠饲料来源的需求。这一趋势在集约化畜牧业地区尤为明显。
农民和製造商缺乏意识
儘管饲草科学取得了进展,但小农户和饲料製造商的认知度仍然相对较低,尤其是在新兴经济体。许多农民仍然依赖传统方法,不了解饲草检查、保存和轮作的好处。这些知识缺口导致最佳利用,牲畜生产表现不佳。此外,缺乏培训和推广服务也阻碍了现代饲草管理实践的采用。
先进的分析服务和客製化测试
先进的实验室服务正在开发中,用于评估水分含量、营养平衡和污染情况,从而实现更精准的饲料配方。人们的意识不断增强,推动了对客製化解决方案的需求,以便根据牛需求优化饲料配方。数位平台和农业技术解决方案也正在改善远距咨询服务的可近性。这些技术创新支持数据主导的决策,并促进农民和合作社的科学饲餵管理。
缺乏大量资本和技术专长
饲料加工和品质分析需要在检测设备、收割机械和仓储基础设施方面投入大量资金。这种高额的资本投入往往会阻碍中小企业改善营运。此外,缺乏能够操作分析设备和解读结果的熟练人员也阻碍了其应用。因此,在分散的农业格局中,市场难以推广先进的饲餵系统。
疫情扰乱了农业物流,导致牧草收割、运输和配送延误。行动限制和劳动力短缺影响了牧草作物的及时加工,尤其是在当季。但这场危机也促使人们转向在地采购牧草采购和分散式饲餵系统,以维持生产连续性。许多生产商开始探索创新的保存技术,例如青贮饲料包装和半干青贮饲料,以延长青贮饲料的储存寿命。
预计预测期内,储存饲料部分将占最大
预计在预测期内,储存饲料部分将占据最大的市场占有率,因为它在确保全年牲畜营养稳定方面发挥作用。生产商越来越多地转向青贮饲料、干草和干饲料来填补季节性饲料缺口。妥善储存的饲料保存期限较长,不易腐烂,营养价值也较持久。在气候变迁较大、饲料供应波动较大的地区,储存饲料尤其普遍。
预计在预测期内,捆包部分将以最高的复合年增长率成长。
由于捆包处理、运输和现场饲餵的便利性,预计在预测期内捆包市场将实现最高成长率。捆包有助于保持水分和营养,尤其是在使用塑胶薄膜等保护层包裹时。此外,其模组化外形规格允许可扩展存储,并可轻鬆分配到不同的牲畜单元。机械化捆包机的采用率正在上升,从而提高了饲料农场的生产效率。
在预测期内,北美预计将占据最大的市场占有率,这得益于其高度组织化的畜牧业和对饲料品质的重视。该地区拥有成熟的饲料生产商、分析实验室和饲料加工商网络。对永续农业实践和精准饲餵系统的投资进一步推动了市场需求。此外,政府推动的饲料作物轮作和土壤保护措施也为饲料生产能力的提升提供了支持。
在预测期内,由于动物性蛋白质需求的不断增长和牲畜数量的不断增加,预计亚太地区将呈现最高的复合年增长率。印度、中国和印尼等新兴经济体正在扩大酪农和肉类产业,导致对高品质饲料的需求增加。快速的都市化和不断变化的消费模式迫使各国政府透过战略计画来提高饲料安全性。这种不断变化的情况使该地区成为加速饲料市场发展的热点。
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.