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市场调查报告书
商品编码
1341017
生物农药活性成分的全球市场:按成分类型、原产地、害虫类型、应用、作物类型、地区、机会、预测,2016-2030Biopesticide Active Ingredients Market Assessment, By Ingredient Type, By Source, By Pest Type, By Application, By Crop Type, By Region, Opportunities and Forecast, 2016-2030F |
2022 年生物农药活性成分的市场规模将达到 26 亿美元,预计在 2023-2030 年的预测期内将以 8.8% 的复合年增长率扩大,到 2030 年将达到 51 亿美元。 传统的合成农药被认为是危险化学品,威胁农作物产量、水生生物,甚至恶化人类健康。 这些农药对土壤生物多样性产生不利影响,减少土壤呼吸,削弱微生物活性,使其不适合可持续作物生产。 生物农药因其独特的特性(例如环境友好、可持续且具有特定的作用模式)而提供了更好的替代品。
在已知的生物农药中,苏云金芽孢桿菌(BT)是一种高效且广泛应用于生物农药的重要活性成分。 多年来对苏云金芽孢桿菌的成分进行了多种製剂技术,分析其具体作用的变化。 苏云金芽孢桿菌 (BT) 产生一种结晶蛋白(Cry 毒素),对昆虫特别有害,尤其是鳞翅目害虫(毛毛虫)的幼虫。 其作用机制是被毛虫害虫摄入后,BT晶体在幼虫中肠的碱性环境中溶解,并依次被鳞翅目特有的肠道□降解,转化为活性毒素蛋白。 这些应用和农作物有机饲料预计将推动生物农药活性成分的市场需求。
市场上大部分微生物生物农药(约 90%)均源自一种众所周知的细菌——苏云金芽孢桿菌 (BT),该细菌占生物农药的大部分。 美国作物保护市场份额在全球约为30亿美元,仅占全球市场的5%。 生物农药的市场份额不断增长,约占全球总量的10%。 美国市场有200多种产品,而欧盟(EU)市场只有60种类似产品。 欧盟按照与合成化学品相同的法规授权生物农药,这是在现有法规中添加一些条款以扩大生物农药市场的绝佳机会。 然而,农业各部门应实施严格的规定,为生物农药提供许可,以承认生物农药活动的价值,并使之成为易于实施的工具。 多个欧盟 (EU) 国家已实施新的安全食品法规,停止在植物保护中使用合成化学品,因为它们对人类和动物健康产生负面影响。 从监管角度来看,上述规定可能为生物农药活性成分市场创造重大机遇。
合成农药的大量消费及其有害影响刺激了对替代农药的寻找,从而催生了生物农药。 生物活性分子和水解□被认为对于害虫综合治理非常重要,因为几丁质□具有特定的性质,可以单独或组合地赋予杀菌、杀虫和杀线虫活性,适用于作物保护。 综合害虫管理(IPM)由联合国粮食及农业组织明确定义,旨在认真实施现有的害虫防治技术。 整合适当的方法可以控制害虫爆发并监测威胁人类健康和环境的有害农药干预措施。 几丁质□对非几丁质植物和脊椎动物无害,是害虫综合治理的一个有前途的组成部分。
本报告调查了全球生物农药活性成分市场,并按成分类型、原产地、害虫类型、应用、作物类型、地区和市场进入提供了市场概述。我们提供公司简介和更多。
The Biopesticide Active Ingredients Market size was valued at USD 2.6 billion in 2022, which is expected to reach USD 5.1 billion in 2030 with a CAGR of 8.8% for the forecast period between 2023 and 2030. Conventional synthetic pesticides are considered harmful chemicals, threaten crop yield and aquatic life, and even lead to the deterioration of human health. These agrochemical products are unsuitable for sustainable crop production as they negatively impact soil biodiversity, reduce soil respiration, and lessen the activities of microorganisms. Biopesticides are a better alternative due to their unique characteristics such as environmentally friendly, sustainable, and specific mode of action.
Among the known biological pesticides, Bacillus Thuringiensis (BT) are a prominent active ingredients which are effective and widely used in biopesticides. The different formulation technologies are executed on the composition of Bacillus Thuringiensis over the years to analyze the variation of its specific action. The Bacillus Thuringiensis (BT) bacterium generates crystalline proteins (Cry toxins) that are specifically noxious to insects, focusing on larvae of Lepidoptera pests (caterpillars). Its mode of action comprises of ingestion by a pest caterpillar, BT crystals solubilize in the alkaline environment of the larval midgut and are sequentially broken down by Lepidopteran-specific gut enzymes into active toxin proteins. These applications and organic feeds in the crop are expected to fuel the market demand for active biopesticide ingredients.
Majorly around 90% of microbial biopesticides on the market are derived from the well-known single bacterium Bacillus Thuringiensis (BT) which covers a vast portion of biological pesticides. The market share for crop protection in the United States is around USD 3 billion globally, just 5% of the global market. The increase in market share for biological pesticides corresponds to around 10% globally. Over 200 products are circulated across the United States market, while the European Union (EU) market comprises only 60 analogs. EU authorizes biopesticides by the same regulations as synthetic substances, where it has an excellent opportunity to add several provisions to the existing one for enhancing the market of biological pesticides. However, all agriculture departments should enforce stringent regulations to provide licensing for biopesticides to recognize the value of their activity and make it an easy-to-implement tool. In a few countries across the European Union, new safety food regulations are implemented, which withdraw the usage of synthetic chemicals in plant protection considering its adverse effects on human and animal health. The above-discussed provisions can generate enormous opportunities for the biopesticides active ingredient market in terms of regulations.
Massive consumption of synthetic pesticides and their harmful impacts stimulated the search for alternatives, leading to biological pesticides. Bioactive molecules and hydrolytic enzymes are considered very important for integrated pest management, where chitinases are suitable for crop protection due to their specific characteristics imparting fungicidal, insecticidal, and nematicidal activities individually or in combination. Integrated Pest Management (IPM) is explicitly defined by the Food and Agriculture Organization of the United Nations that operates with the objective of careful execution of available pest control techniques. Integrating appropriate methods consequently led to discouraging the application of pest populations and monitoring the interventions of harmful pesticides that threaten human health and the environment. Chitinases are harmless for plants and vertebrates that don't comprise Chitin and serve as a promising component for integrated pest management.
The IPM can be practiced with proper application to agricultural and non-agricultural applications such as gardens, homes, and workplaces. IPM practices are not a one-step process; instead consist of a series of pest management evaluations, proper decisions, and controls. Generally, it comprises four significant steps: setting action thresholds, monitoring, identifying pests, preventing, and controlling sequentially. The goal of implementing IPM practices has huge potential in the market to expand and create opportunities for the biopesticides active ingredients market.
The COVID-19 pandemic has led to unprecedented economic instability, supply chain disruptions, and workforce reductions. The supply of plant protection products (PPPs) comprised of active biopesticide ingredients was affected by imposed lockdown and quarantine protocols. In the early stage of the pandemic, China was severely hit regarding the production of PPPs, which declined sharply. The disturbance created by COVID-19 for the movement of PPPs from global suppliers to the base ground level has significantly reduced the conventional outcomes. To compensate for the losses, countries implement efforts to increase the production of biopesticides. The demand for crops was rising significantly, and to reach the farmer's demand into various applications of various biological pesticides in different crop productions. The global requirement for meeting food demand is exploding, which requires more crop production and, ultimately, biopesticides, giving the biopesticides active ingredients market to grow in different allied sectors.
The annexation of Russia on Ukraine has imposed various sanctions on natural gas supplies by European countries, severely impacting the European agrochemical industry. Natural gas is extensively used to drive active ingredient production. Ukraine and Russia are both key exporters of cereal and oilseed crops, where war led to the impact of cereal grains and sunflower oil seed stocks. The prevailing situation is gradually improving as countries focus on innovation and technological advancement to develop biological pesticides and grow favorable crops according to their conditions. This will reduce dependency on importer countries and provide a way for indigenous structure. Consequently, the market will explode for biopesticide active ingredients, which could fascinate investors to explore the market's potential.
Companies are continuously putting their efforts into reducing the dependence on synthetic chemicals and increasing the application of biological pesticides. The companies are generating various products which are organic and eco-friendly in usage across the arable lands. For instance, Syngenta AG has a wide range of crop protection products that comprise biopesticides. Their products are registered under trademark in the respective country, which includes individual unique characteristics and delivers significant results to crop protection. BANVEL/CADENCE, herbicide selective, has been extensively used in Argentina, Canada, France, Hungary, and Russia. A well-defined product for perennial broad-leaf weed control primarily focuses on corn and cereals extending its application to turf, pasture, and non-crop land.
Another product, ISABION, which lies in the category of biologicals/bio-stimulants, is complementary to crop nutrition and its protection. It is an amino acid and nutrient-based bio-stimulant that can enhance crop performance (growth, vigor, yield, quality). Likewise, there are opportunities for new biopesticide active ingredients specific to crop protection and improving various characteristics that will dominate the market.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work