市场调查报告书
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到 2030 年家禽粪便生物肥料市场预测:按类型、作物类型、分销管道、应用和地区进行的全球分析Poultry Manure Biofertilizer Market Forecasts to 2030 - Global Analysis By Type (Solid Biofertilizers and Liquid Biofertilizers), Crop Type, Distribution Channel, Application and By Geography |
根据 Stratistics MRC 的数据,预测期内全球鸡粪生物肥料市场的复合年增长率为 8.7%。
鸡粪生物肥料是由鸡粪製成的有机肥料,富含有益微生物,可增强土壤肥力和植物生长。这些生物肥料是由鸡粪加工而成,富含氮、磷、钾和人体必需的微量营养素等营养成分。细菌、真菌和放线菌等微生物分解有机物,增加养分利用率并强化土壤结构。它还可以固氮,减少化学肥料的使用,并保护植物免受有害病原体的侵害。
对土壤健康和化肥消耗的担忧
使用大量化学肥料的传统耕作方法会导致土壤劣化,降低生产力并降低对害虫和环境压力的抵抗能力。为了解决这个问题,农民越来越多地使用有机肥料,例如鸡粪生物肥料。这种有机肥料透过添加必需营养素和促进微生物活性来恢復土壤健康。因此,作为改善和维持土壤品质的永续解决方案,家禽粪便生物肥料的市场正在扩大。
品质和标准化不一致
由于家禽饮食、收集方法和加工技术等因素的影响,家禽粪便的营养成分差异很大。这可能会导致施肥量的变化,进而影响植物生长和土壤健康。有些批次可能缺乏必需营养素,而有些则可能过量,导致营养失衡。这种异质性可能导致作物产量不可预测,降低农民的信心,并可能导致他们放弃使用家禽粪便生物肥料,转而使用更可靠的替代品,例如合成肥料。
全球对有机和永续农业方法的偏好日益增长
消费者对有机产品的环境和健康益处的认识导致对有机食品的需求激增。这一变化是由对食品中合成农药、化肥和化学添加剂的担忧所推动的。有机农业依靠鸡粪生物肥料等天然投入,被视为更干净、更健康的替代方案。农民越来越多地使用有机肥料,例如鸡粪生物肥料。因此,随着永续农业实践变得更加普遍,鸡粪生物肥料越来越多地被用来培育健康肥沃的土壤。
与化肥的竞争
化学肥料可以立即提供养分,刺激作物生长,但鸡粪生物肥料需要更长的时间才能分解。这种对化学溶液的偏好在竞争激烈的农业环境中普遍存在。儘管有土壤劣化和水污染等环境问题,但经济奖励往往胜过这些问题。廉价化肥的短期经济效益掩盖了鸡粪生物肥料的长期永续性,使得有机肥料儘管具有生态学效益却更具吸引力。
COVID-19 的影响
COVID-19 大流行扰乱了家禽粪便生物肥料市场,影响了供应链、劳动力供应和家禽生产。关闭减少了家禽养殖活动,并限制了生物肥料原料的取得。此外,经济的不确定性已使农民偏好具有成本效益的化学肥料。然而,这场流行病也提高了人们对永续农业的认识,并增加了对有机生物肥料的兴趣。在对环保耕作方法的需求增加和政府推广生物基肥料的激励措施的支持下,大流行后的復苏预计将促进成长。
固态生物肥料产业预计将在预测期内成为最大的产业
在预测期内,由于多种微生物培养物与鸡粪生物肥料竞争固氮、增磷和土壤改良效益,因此预计固态生物肥料领域将主导市场占有率。其广泛的微生物成分可能会吸引寻求有针对性的解决方案并转移市场占有率的农民。先进的微生物技术将固态生物肥料定位为一种现代替代品,提供更有效和科学客製化的解决方案,特别是对于精通技术的农民而言。
预计土壤处理产业在预测期内复合年增长率最高。
在预测期内,土壤处理领域将出现最高的成长率,因为轮作、覆盖作物和石灰等土壤处理方法有望改善土壤肥力和结构,并减少对家禽粪生物肥料等外部投入的依赖。然而,这些耕作方法的市场渗透取决于意识和宣传。实行先进土壤处理的农民有潜力使用生物肥料作为补充投入,为利基有机农业领域提供成长机会。
北美严格的环境法规鼓励有机农业,导致对鸡粪等生物肥料的需求增加。美国和加拿大的有机认证标准正在推动家禽粪生物肥料市场的发展,而永续性宣传活动和支持生物基肥料的政府奖励正在进一步提振成长前景。
随着亚太国家促进永续农业以应对因过度使用化学肥料而导致的土壤劣化和污染,预计亚太地区将在预测期内实现最高的复合年增长率。印度的 NPOF 和中国的绿色发展政策等政府计画鼓励使用生物肥料。由于农业是一项主要经济活动,小农正在采用生物肥料,以经济高效且环境友善的方式提高作物产量。
According to Stratistics MRC, the Global Poultry Manure Biofertilizers Market is growing at a CAGR of 8.7% during the forecast period. Poultry manure biofertilizers are organic fertilizers made from poultry waste, enriched with beneficial microorganisms that enhance soil fertility and plant growth. These biofertilizers are created by processing poultry manure, which is rich in nutrients like nitrogen, phosphorus, potassium, and essential micronutrients. Microorganisms like bacteria, fungi, and actinomycetes break down organic matter, improve nutrient availability, and enhance soil structure. They also help fix nitrogen, reduce chemical fertilizer use, and protect plants from harmful pathogens.
Depleting soil health and chemical fertilizer concerns
Conventional farming practices relying heavily on chemical fertilizers can lead to soil degradation, making it less productive and less resilient to pests, diseases, and environmental stressors. To combat this, farmers are increasingly using organic amendments like poultry manure biofertilizers, which restore soil health by adding essential nutrients and promoting microbial activity. Thus, the market for poultry manure biofertilizers is expanding as a sustainable solution to improve and maintain soil quality.
Inconsistent quality and standardization
Poultry manure can have significant variations in nutrient content due to factors like the poultry's diet, collection method, and processing technique. This can cause uneven fertilization, affecting plant growth and soil health. Some batches may be deficient in essential nutrients, while others may have excessive amounts, leading to nutrient imbalances. Unpredictable crop yields can result from these inconsistencies, reducing farmers' confidence and potentially deterring them from using poultry manure biofertilizers in favor of more reliable alternatives like synthetic fertilizers.
Increasing global preference for organic and sustainable farming practices
Consumer awareness of the environmental and health benefits of organic products has led to a surge in demand for organic food. This shift is driven by concerns over synthetic pesticides, fertilizers, and chemical additives in food. Organic farming, which relies on natural inputs like poultry manure biofertilizers, is seen as a cleaner, healthier alternative. Farmers are increasingly using organic fertilizers like poultry manure biofertilizers. Thus, as sustainable farming practices gain popularity, poultry manure biofertilizers are being increasingly used to foster healthy, fertile soils.
Competition from chemical fertilizers
Chemical fertilizers offer immediate nutrient availability, leading to crop growth, while poultry manure biofertilizers take time to decompose. This preference for chemical solutions is prevalent in high-stakes agricultural environments. Despite environmental concerns like soil degradation and water contamination, economic incentives often outweigh these concerns. The immediate financial benefits of cheaper chemical fertilizers can overshadow the long-term sustainability of poultry manure biofertilizers, making organic alternatives more appealing despite their ecological advantages.
Covid-19 Impact
The COVID-19 pandemic disrupted the poultry manure biofertilizers market by impacting supply chains, labor availability, and poultry production. Lockdowns led to reduced poultry farming activities, limiting raw material availability for biofertilizers. Additionally, economic uncertainties shifted farmer preferences towards cost-effective chemical fertilizers. However, the pandemic also increased awareness of sustainable farming, boosting interest in organic biofertilizers. Post-pandemic recovery is expected to drive growth, supported by rising demand for eco-friendly agricultural practices and government incentives promoting bio-based fertilizers.
The solid biofertilizers segment is expected to be the largest during the forecast period
Over the forecasted timeframe, the solid biofertilizers segment is anticipated to dominate the market share owing to diverse microbial cultures that compete with poultry manure biofertilizers for nitrogen-fixing, phosphorus-solubilizing, and soil-conditioning benefits. Their broader microbial composition appeals to farmers seeking targeted solutions, potentially diverting market share. Advanced microbial technology positions solid biofertilizers as a modern alternative, particularly among tech-savvy farmers, offering more effective and scientifically tailored solutions.
The soil treatment segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the soil treatment segment segment is predicted to witness the highest growth rate due to soil treatment methods like crop rotation, cover cropping, and liming improve soil fertility and structure, reducing reliance on external inputs like poultry manure biofertilizers. However, their market uptake depends on awareness and advocacy. Farmers using advanced soil treatment practices may use biofertilizers as complementary inputs, offering growth opportunities in niche organic farming segments.
During the estimation period, the North America region is expected to capture the largest market share owing to North America's stringent environmental regulations encourage organic farming practices, leading to increased demand for biofertilizers like poultry manure. Organic certification standards in the U.S. and Canada have boosted the market for poultry manure biofertilizers and Sustainability campaigns and government incentives supporting bio-based fertilizers further enhance growth prospects.
The Asia Pacific region is expected to achieve the highest CAGR during the forecast period due to Asia Pacific countries are promoting sustainable agriculture to combat soil degradation and pollution caused by chemical fertilizer overuse. Government programs like India's NPOF and China's Green Development policies encourage biofertilizer use. As agriculture is a key economic activity, smallholder farmers are adopting biofertilizers to enhance crop yields in a cost-effective and environmentally friendly manner.
Key players in the market
Some of the key players in Poultry Manure Biofertilizers market include Australian Bio Fert Pty Ltd, BASF SE, Bio Greens Sustainable Solutions Pvt Ltd, Biola, CropAgro, Ductor Oy, Fabon Agro, Indian Organic Fertilizers PVT Ltd, Jaipur Bio Fertilizers, Lallemand Inc., National Fertilizers Limited, Novozymes, Nutrisoil Pty Ltd, OMRI, Perfect Blend LLC and Soil Technology Corp.
In November 2024, BASF announced that it will invest in additional production capacity for its X3D(R) technology, a new additive manufacturing technology for catalysts based on 3D printing. The plant will produce catalysts on an industrial scale and is expected to be operational in 2026.
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