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市场调查报告书
商品编码
1755965
2032年农用薄膜市场预测:按材料类型、应用、最终用户和地区分類的全球分析Agricultural Films Market Forecasts to 2032 - Global Analysis By Material Type, Application, End User and By Geography |
根据 Stratistics MRC 的预测,全球农用薄膜市场规模预计在 2025 年达到 140.5 亿美元,到 2032 年将达到 288.1 亿美元,复合年增长率为 10.8%。
农用薄膜是用于农业的特种塑料,用于保护植物并提高农业产量。这些薄膜用于除草、调节温度和保湿,包括地膜、温室膜和青贮膜。这些薄膜可以减少对农药的需求,改善土壤质量,并有助于建立可控的小气候。这些薄膜通常由聚乙烯製成,因此具有生物分解性和抗紫外线的潜力。农业薄膜对现代农业至关重要,它可以透过高效的生产方式提高产量、延长生长季节并减少对环境的影响。
根据联合国粮食及农业组织 (FAO) 的数据,到 2050 年全球粮食需求预计将增加 60%,凸显了农膜在提高作物生产力和粮食安全方面发挥的关键作用。
保护作物并提高产量
农膜透过调节温度和保持土壤水分来提高作物产量。它们还能有效防御杂草、害虫和恶劣天气,从而减少对化学药剂的需求。随着农民寻求永续有效的耕作方式,对此类薄膜的需求持续成长。透过提高产量和改善作物品质来提高盈利,推动了薄膜的采用。因此,薄膜技术的进步正在推动市场成长。
初期投资高
农民,尤其是低度开发国家,往往缺乏购买现代塑胶薄膜的财力。专用设备、维修和安装的成本更是雪上加霜。此外,有限的资金筹措管道也阻碍了技术的采用。如果小农户看不到任何潜在效益,他们可能会认为这些技术有风险。这导致高昂的进入成本,阻碍了市场扩张和渗透。
现代农业技术引进
滴灌和精密农业等技术增加了对塑胶薄膜的需求,这些薄膜可最大限度地提高农业产量和用水量。覆盖膜、温室膜和青贮膜是保护作物和提高产量所必需的。在现代技术驱动的受控条件下,农膜至关重要。透过减少化学品使用和限制土壤侵蚀,这些薄膜促进了永续农业的发展。随着越来越多的农民采用尖端技术,对创新有效的薄膜解决方案的需求持续增长。
来自替代耕作方法的竞争
由于水耕和有机农业等农业实践避免使用合成化学涂层,塑胶薄膜的需求正在下降。此外,传统的覆盖方式使用堆肥和稻草等有机资源,无需使用塑胶薄膜。此外,政府的激励措施和消费者对环保方法的需求正在抑制塑胶薄膜的使用。创新的智慧农业技术和生物分解性的替代品正在进一步将人们的注意力从传统的薄膜产品上转移开来。这种转变减少了对塑胶基解决方案的依赖,限制了潜在的客户群,并阻碍了产业成长。
COVID-19的影响
新冠疫情对农膜市场造成了重大衝击,扰乱了全球供应链,并延迟了原料的供应。封锁和劳动力短缺扰乱了生产和运输,导致生产停滞。然而,农产品需求依然强劲,推动了对保护性和提高生产率的薄膜的需求。粮食安全成为优先事项,导致包括地膜和温室薄膜在内的先进农业投入品的使用增加。疫情后的復苏努力和政府支持进一步推动了成长,增强了市场的韧性和长期潜力。
预计低密度聚乙烯(LDPE)部分在预测期内将占据最大份额。
低密度聚乙烯 (LDPE) 凭藉其卓越的柔韧性和耐用性,预计将在预测期内占据最大的市场占有率。其强大的耐湿性、耐化学性和抗紫外线性能使其成为温室覆盖物、地膜和青贮饲料包装的理想选择。 LDPE 薄膜透过优化土壤温度和保湿性,有助于提高作物产量。此外,LDPE 的可回收性和成本效益支持永续农业实践。这些优势使其在各种农业应用中广泛应用,从而推动了整体市场的成长。
预计预测期内,谷物种植领域将以最高的复合年增长率成长。
在预测期内,由于对保护膜和促生长膜的需求不断增长,预计谷物种植领域将实现最高成长率。这些薄膜有助于保湿、防除杂草和调节温度,这对于产量产量谷物生产至关重要。谷物种植面积广阔,需要广泛使用覆盖物和温室薄膜来优化生长条件。此外,农膜还可以保护谷物免受病虫害和环境损害,从而减少收穫后的损失。谷物种植中农膜的日益普及正在推动技术创新,扩大特种农膜市场。
由于粮食需求成长、可耕地有限以及向高效农业技术的转变,预计亚太地区将在预测期内占据最大的市场占有率。中国和印度等国家正在越来越多地采用地膜和温室薄膜来提高作物产量并节约用水。政府补贴、优惠的农业政策以及庞大的小农户群体是关键的成长要素。该市场的特点是大规模生产、成本竞争以及人们对环保和抗紫外线薄膜日益增长的兴趣。
预计北美地区在预测期内的复合年增长率最高,这得益于先进农业技术的采用以及人们对提高作物产量的日益重视。青贮饲料和温室薄膜的需求正在上升,尤其是在美国和加拿大,这为永续农业实践提供了支持。促进环境永续性的严格法规也推动了生物分解性薄膜的使用。此外,该地区拥有强大的研发能力和领先的製造商,这推动了薄膜性能(例如抗紫外线、耐久性和气候适应性)的创新。
According to Stratistics MRC, the Global Agricultural Films Market is accounted for $14.05 billion in 2025 and is expected to reach $28.81 billion by 2032 growing at a CAGR of 10.8% during the forecast period. Agricultural films are speciality plastics used in agriculture to protect plants and increase agricultural yields. These films, which are used for weed control, temperature regulation, and moisture retention, include mulching films, greenhouse films, and silage films. They lessen the need for pesticides, enhance soil quality, and assist establish a regulated microclimate. These films, which are often composed of polyethylene, have the potential to be both biodegradable and UV-resistant. By increasing yields, prolonging growing seasons, and reducing environmental impact through resource-efficient production methods, agricultural films are essential to modern farming.
According to the United Nations Food and Agriculture Organization (FAO), global food demand is projected to grow by 60% by 2050, highlighting the critical role of agricultural films in enhancing crop productivity and food security.
Enhanced crop protection and yield
Agricultural films increase crop productivity by controlling temperature and retaining soil moisture. They also lessen the need for chemical inputs by providing protection from weeds, pests, and inclement weather. The demand for these films keeps growing as farmers look for sustainable and effective farming practices. Increased profitability from higher yields and higher-quality crops promotes adoption. As a result, advancements in film technology are speeding up market growth.
High initial investment
Farmers frequently lack the funds to purchase contemporary plastic films, particularly in underdeveloped nations. The burden is increased by the price of specialised equipment, maintenance, and installation. Adoption is further discouraged by limited access to finance choices. Small-scale farmers might view the technology as dangerous because it doesn't promise profits. High entry costs therefore impede market expansion and penetration.
Adoption of modern farming techniques
The need for plastic films that maximise agricultural output and water use is growing as a result of technologies like drip irrigation and precision farming. In order to protect crops and increase yield, mulch, greenhouse, and silage films are necessary. Agricultural films are essential in regulated conditions that are promoted by modern techniques. By lowering the usage of chemicals and soil erosion, these films promote sustainable farming. The demand for creative and effective film solutions keeps growing as more farmers use cutting-edge methods.
Competition from alternative practices
The demand is decreased by methods like hydroponics and organic farming, which frequently avoid synthetic coatings. The need of plastic films is also eliminated by traditional mulching with organic resources like compost or straw. Furthermore, the use of plastic film is discouraged by government incentives and customer desire for environmentally beneficial methods. Innovative smart agricultural techniques and biodegradable substitutes further deflect focus away from traditional film goods. This change reduces reliance on plastic-based solutions and restricts the prospective client base, which impedes industry growth.
Covid-19 Impact
The COVID-19 pandemic significantly impacted the agricultural films market by disrupting global supply chains and delaying raw material availability. Lockdowns and labor shortages hindered manufacturing and transportation, causing production slowdowns. However, the demand for agricultural produce remained strong, driving the need for protective and productivity-enhancing films. As food security gained priority, adoption of advanced farming materials, including mulching and greenhouse films, increased. Post-pandemic recovery efforts and government support further accelerated growth, reinforcing the market's resilience and long-term potential.
The low-density polyethylene (LDPE) segment is expected to be the largest during the forecast period
The low-density polyethylene (LDPE) segment is expected to account for the largest market share during the forecast period, due to its excellent flexibility and durability. Its strong resistance to moisture, chemicals, and UV radiation makes it ideal for greenhouse covers, mulching films, and silage wraps. LDPE films help improve crop yield by optimizing soil temperature and moisture retention. Additionally, LDPE's recyclability and cost-effectiveness support sustainable farming practices. These advantages drive its widespread adoption across various agricultural applications, boosting overall market growth.
The grain farming segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the grain farming segment is predicted to witness the highest growth rate by increasing the demand for protective and growth-enhancing films. These films help in moisture retention, weed control, and temperature regulation, which are critical for high-yield grain production. The vast acreage of grain crops requires extensive use of mulching and greenhouse films to optimize growth conditions. Additionally, agricultural films reduce post-harvest losses by protecting grains from pests and environmental damage. This growing adoption in grain farming drives innovation and expands the market for specialized agricultural films.
During the forecast period, the Asia Pacific region is expected to hold the largest market share due to growing food demand, limited arable land, and a shift toward high-efficiency farming techniques. Countries like China and India are seeing increased adoption of mulch and greenhouse films to boost crop productivity and conserve water. Government subsidies, favorable agricultural policies, and a large base of smallholder farmers are key growth factors. The market here is characterized by high-volume production, cost competitiveness, and rising interest in eco-friendly and UV-stabilized film variants.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, owing to the adoption of advanced farming technologies and increasing awareness about crop yield enhancement. Rising demand for silage and greenhouse films, especially in the U.S. and Canada, supports sustainable farming practices. Stringent regulations promoting environmental sustainability are also encouraging the use of biodegradable films. Additionally, the region benefits from strong R&D initiatives and the presence of leading manufacturers, fostering innovation in film properties such as UV resistance, durability, and climate adaptability.
Key players in the market
Some of the key players profiled in the Agricultural Films Market include Berry Global Inc., BASF SE, Dow Inc., RKW Group, Trioplast Industrier AB, Groupe Barbier, Plastika Kritis S.A., Coveris, Rani Plast, Armando Alvarez Group, Polifilm Group, ExxonMobil Corporation, Kuraray Co., Ltd., Novamont S.p.A., Industrial Development Company Sal, Sigma Plastics Group, Geminor and Agriplast Tech India Private Limited.
In November 2024, Berry Global announced an agreement to merge with Amcor in an all-stock transaction. This merger aimed to create a global leader in consumer and healthcare packaging solutions, with a broader flexible film and converted film offering for customers, including those in the agricultural sector.
In September 2024, BASF partnered with MANRRS (Minorities in Agriculture, Natural Resources and Related Sciences) and AFA (Agriculture Future of America) to create the CORE Synergy program. This initiative aims to empower current and future agricultural leaders by providing transformational training opportunities, thereby fostering diversity and innovation in the agriculture industry.
In July 2024, BASF introduced Tinuvin(R) NOR(R) 211 AR, a high-performance heat and light stabilizer designed to enhance the durability of agricultural plastics. This product is particularly effective in environments with intense UV radiation, thermal stress, and exposure to inorganic chemicals like sulfur and chlorine.