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市场调查报告书
商品编码
1679236
2030 年移动式谷物干燥机市场预测:按产品类型、燃料类型、容量、谷物类型、应用和地区进行的全球分析Mobile Grain Dryer Market Forecasts to 2030 - Global Analysis By Product Type (Batch Dryers, Continuous Flow Dryers and Mixed Flow Dryers), Fuel Type (Diesel, Gas and Electric), Capacity, Grain Type, Application and By Geography |
根据 Stratistics MRC 的数据,2024 年全球移动式谷物干燥机市值为 1.5635 亿美元,预计到 2030 年将达到 2.275 亿美元,预测期内的复合年增长率为 6.45%。
移动式谷物干燥机是有效降低收穫谷物水分含量、提高储存和品质维持率的重要农业工具。与固定式烘干机相比,移动式谷物烘干机的灵活性使农民能够将设备直接运输到田地或储存区域,从而减少收穫后和运输成本。此外,这些干燥机采用电力、柴油或丙烷等燃料运作,并采用先进的干燥技术,包括批量和连续干燥系统。为了最大限度地提高干燥效率并降低燃料消耗,许多最新的移动式谷物干燥机都配备了温度感测器、自动控制装置和节能设计。
根据美国经济研究局的数据,2024/25年度美国粗粒展望预测供应量将下降,主因是玉米产量下降。
对优质谷物的需求不断增加
消费者和监管机构越来越需要具有理想水分含量的高品质谷物,以确保食品安全和加工效率。过于潮湿的谷物会结块、难以研磨或被微生物污染,降低其市场价值。移动式谷物烘干机可帮助农民满足食品加工商、磨坊主和出口商设定的湿度标准。此外,有效干燥谷物的能力对于维持国际贸易关係和避免在谷物出口监管严格的国家因与湿度相关的品质问题而导致货物被拒收至关重要。
推出和持续成本高
对于许多农民,特别是开发中国家的农民来说,一个主要的障碍是购买移动式谷物烘干机的前期成本,尤其是一台自动化程度高且节能的烘干机。除了初始投资外,燃料消耗(丙烷、柴油、生物质)、维护和人事费用等持续的费用也增加了财务负担。此外,由于燃料价格波动导致的不可预测的营业成本,中小型农户可能不会投资此类干燥系统。现代谷物干燥机效率的提高意味着长期成本的节省,但初始成本仍然是广泛采用的障碍。
扩大环保节能干燥解决方案的使用
人们对碳排放和燃料价格的日益担忧推动了对节能、环保的谷物干燥技术的需求。为了减少对石化燃料的依赖并实现长期成本节约,製造商正在开发运作生物质、太阳能或混合动力的谷物烘干机。以农业废弃物为燃料的生物质谷物烘干机在传统燃料有限的农村地区越来越受欢迎。此外,儘管太阳能烘干机仍处于起步阶段,但人们对非洲和亚洲部分地区等日照时间较长的地区寄予厚望。
与其他干燥技术和工艺的竞争
移动式谷物干燥机市场正面临太阳能干燥、固定式谷物干燥机和公共干燥设施等替代干燥方法的严重威胁。较大规模的谷物加工企业更青睐固定式干燥机,因为其容量更大、自动化特性更明显、更有效率。太阳能干燥虽然耗时,但有时也被视为小农户的经济且永续的选择。此外,集中式干燥设施将消除对单独的移动式干燥机的需求,从而减少对合作农业模式的需求。随着替代干燥解决方案的进一步发展和越来越广泛的应用,移动式谷物干燥机的发展潜力可能会下降。
COVID-19 疫情对移动谷物烘干机市场产生了多重影响,扰乱了供应链,同时提高了人们对有效的收穫后谷物管理的认识。製造延迟、原材料短缺和运输限制暂时阻碍了生产和分配,而经济不确定性和农场收入下降导致一些地区推迟对机械化干燥解决方案的资本投资。但疫情也引发了人们对全球粮食供应链脆弱性的关注,人们更加关注粮食安全、减少收穫后和高效的粮食储存。因此,农民寻求自给自足、分散的干燥技术,以减少物流挑战并最大限度地减少对共用干燥设施的依赖。
连续流干燥机市场预计将在预测期内占据最大份额
预计连续流干燥机部分将在预测期内占据最大的市场占有率。由于谷物在干燥室内不断移动,这些干燥机提供了一致且均匀的干燥过程。该技术可确保持续降低水分并维持谷物质量,特别有利于商业谷物加工设施和大规模农业经营。农民和相关企业更喜欢连续流干燥机,因为它们可以有效地处理大量的谷物。此外,这些干燥机消费量的能量更少,具有自动湿度控制、更快的干燥时间、更高的燃料效率,并可与现代处理和储存系统无缝整合。
预计预测期内电动式部门的复合年增长率最高。
预计电力产业将在预测期内实现最高成长率。采用环保技术和农业部门对永续性的日益重视是这项快速成长的主要因素。按照国际环保倡议,电动式谷物烘干机具有许多优点,包括更低的排放气体、运作时的噪音更小以及减少对石化燃料的依赖。此外,它还可以实现精确的温度控制,从而提高谷物品质、减少损失,使其成为寻求最大限度提高效率和遵守环境法规的现代农业运作的首选。
预计预测期内北美地区将占据最大的市场占有率。这项优势归功于该地区先进的耕作方式、广泛普及的机械化农用设备以及对收穫后作物管理技术的大量投资。此外,领先的谷物干燥机製造商的存在、政府的支持措施以及支持永续农业的有利立法也刺激了该领域的市场扩张。此外,自动化、节能和电动干燥系统的日益流行趋势正在加速普及。
预计预测期内亚太地区将呈现最高的复合年增长率。该地区庞大的农业部门是这项快速成长的主要动力,中国、印度和印尼等国家生产大量的大米、小麦和其他作物。根据联合国粮食及农业组织(FAO)的数据,全球约90%的稻米产自亚洲。在亚太地区,人们越来越普遍地认识到收穫后严重损失对农业生产力的影响。此外,由于这一认识,移动式谷物烘干机的需求量很大,因为它们可以帮助农民有效地管理湿度水平,最大限度地减少损失,并全面改善该地区的粮食安全。
According to Stratistics MRC, the Global Mobile Grain Dryer Market is accounted for $156.35 million in 2024 and is expected to reach $227.50 million by 2030 growing at a CAGR of 6.45% during the forecast period. An important agricultural tool for effectively lowering the moisture content of harvested grains for improved storage and quality preservation is a mobile grain dryer. The flexibility of mobile grain dryers, as opposed to stationary dryers, enables farmers to transport the device straight to the field or storage location, cutting down on post-harvest losses and transportation expenses. Moreover, these dryers operate on fuels such as electricity, diesel, or propane and employ advanced drying technologies such as batch or continuous flow drying systems. In order to maximize drying efficiency while reducing fuel consumption, many contemporary mobile grain dryers are outfitted with temperature sensors, automated controls, and energy-efficient designs.
According to the U.S. Department of Agriculture's Economic Research Service, the 2024/25 U.S. coarse grains outlook anticipates reduced supplies, primarily due to a decrease in expected corn production.
Growing need for superior grains
High-quality grains with the ideal moisture content are becoming more and more in demand from consumers and regulatory agencies to guarantee food safety and processing effectiveness. Grain that is too wet may clump, be difficult to mill, and become contaminated by microorganisms, which will lower its market value. Farmers can satisfy the moisture standards set by food processors, millers, and exporters by using mobile grain dryers. Additionally, the ability to effectively dry grains is crucial for preserving international trade relationships and avoiding shipment rejections owing to moisture-related quality issues in nations with stringent grain export regulations.
Expensive start-up and ongoing expenses
A major obstacle for many farmers, especially those in developing nations, is the initial cost of buying mobile grain dryers, especially those with sophisticated automation and energy-saving features. The financial burden is increased by ongoing expenses like fuel consumption (propane, diesel, or biomass), maintenance, and labor costs in addition to the initial investment. Furthermore, small and medium-sized farmers may be discouraged from investing in these drying systems due to the unpredictable nature of operating costs caused by fluctuating fuel prices. Although the increased efficiency of modern grain dryers results in long-term cost savings, the initial cost barrier still prevents widespread adoption.
Growing use of eco-friendly and energy-efficient drying solutions
Energy-efficient and ecologically friendly grain drying technologies are becoming more and more in demand as worries about carbon emissions and fuel prices grow. Grain dryers that run on biomass, solar, or hybrid power are being developed by manufacturers to lessen reliance on fossil fuels and provide long-term cost savings. In rural regions with limited access to conventional fuels, biomass-based grain dryers-which run on agricultural waste-are becoming more and more popular. Moreover, even though they are still in their infancy, solar-powered dryers have a lot of promise for areas like Africa and some parts of Asia that receive a lot of sunlight.
Competition from other drying techniques and technologies
The market for mobile grain dryers is seriously threatened by alternative drying methods such as solar drying, fixed grain dryers, and cooperative drying facilities. Large-scale grain processing operations prefer fixed dryers because of their increased capacity, automation features, and higher efficiency. Even though it takes longer, solar drying is sometimes seen as an economical and sustainable choice for small-scale farmers. Furthermore, centralized drying facilities eliminate the need for separate mobile dryers, which lowers demand in cooperative farming models. The potential for growth of mobile grain dryers may be diminished if alternative drying solutions develop further and become more widely available.
The COVID-19 pandemic had a mixed effect on the market for mobile grain dryers, causing supply chains to be disrupted while also raising awareness of effective post-harvest grain management. Production and distribution temporarily slowed down due to manufacturing delays, shortages of raw materials, and transportation restrictions, and capital investments in mechanized drying solutions were delayed in some regions due to economic uncertainty and lower farmer incomes. However, the pandemic also brought attention to the vulnerabilities of global food supply chains, which resulted in a greater focus on food security, a decrease in post-harvest losses, and efficient grain storage. In turn, farmers sought self-sufficient, decentralized drying technologies to reduce logistical challenges and minimize reliance on shared drying facilities.
The Continuous Flow Dryers segment is expected to be the largest during the forecast period
The Continuous Flow Dryers segment is expected to account for the largest market share during the forecast period. Continuous grain movement through the drying chamber enables a consistent and even drying process in these dryers. This technique guarantees steady moisture reduction and preserves grain quality, making it especially beneficial for commercial grain processing facilities and large-scale farming operations. Farmers and agribusinesses favor continuous flow dryers because of their ability to handle large amounts of grain effectively. Moreover, these dryers offer lower energy consumption, automated moisture control, quicker drying times, improved fuel efficiency, and smooth integration with contemporary handling and storage systems.
The Electric segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the Electric segment is predicted to witness the highest growth rate. The adoption of eco-friendly technologies and the agricultural sector's growing emphasis on sustainability are the main drivers of this upsurge. In line with international environmental initiatives, electric grain dryers have a number of benefits, such as lower emissions, less noise during operation, and a diminished reliance on fossil fuels. Additionally, they are a desirable alternative for contemporary farming operations looking to maximize efficiency and comply with environmental regulations because of their capacity to precisely regulate temperature, which improves grain quality and lowers spoilage.
During the forecast period, the North America region is expected to hold the largest market share. The region's sophisticated farming methods, widespread use of mechanized farming equipment, and large investments in post-harvest grain management technologies are all responsible for this dominance. Furthermore, the market's expansion in this area is also fueled by the existence of top grain dryer producers, government assistance initiatives, and advantageous laws supporting sustainable agriculture. Adoption rates are also being accelerated by the growing trend toward automated, fuel-efficient, and electric-powered drying systems.
Over the forecast period, the Asia-Pacific region is anticipated to exhibit the highest CAGR. With nations like China, India, and Indonesia producing large amounts of rice, wheat, and other crops, the region's sizable agricultural sector is the main driver of this fast growth. About 90% of the world's rice is produced in Asia, according to the Food and Agriculture Organization (FAO). In the Asia-Pacific area, the substantial post-harvest losses that impact agricultural productivity are becoming more widely acknowledged. Moreover, the demand for mobile grain dryers is rising as a result of this awareness since they help farmers effectively control moisture levels and minimize spoiling, enhancing regional food security overall.
Key players in the market
Some of the key players in Mobile Grain Dryer market include AGCO Corporation, GSI (Grain Systems, Inc.), Buhler Group, Cimbria Inc, Mathews Company, Alvan Blanch Development Company Ltd., CFCAI Group, Zaffrani S.r.l., Sukup Manufacturing Co., Mecmar S.p.A., Bauer AG, Fratelli Pedrotti S.r.l., NECO Equipment, Pedrotti S.r.l. and Stela Laxhuber GmbH.
In July 2024, AGCO Corporation announced it has entered into a definitive agreement to sell the majority of its Grain & Protein business to American Industrial Partners ("AIP") in an all-cash transaction valued at $700 million, subject to working capital and other customary closing adjustments.
In June 2021, Switzerland's Buhler Group and Germany's Hosokawa Alpine Group have agreed a strategic collaboration that will accelerate and strengthen the production of healthier and more sustainable plant protein solutions with a focus on processing pulses into protein ingredients.
In April 2017, Sukup Manufacturing Co. is expanding its building product line with the acquisition of Pennsylvania-based SBC Building Systems. Sukup started out with a grain stirring machine in 1963 but has since expanded into grain bins, dryers, material handling equipment, and preengineered metal buildings.