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市場調查報告書
商品編碼
1636662
Iprodione市場預測至 2030 年:按產品類型、應用、最終用戶和地區進行的全球分析Iprodione Market Forecasts to 2030 - Global Analysis By Product Type (Iprodione 50% WP, Iprodione 50% SC, Iprodione 25% EC and Iprodione 50% WDG ), Application, End User and By Geography |
根據 Stratistics MRC 的數據,全球Iprodione市場預計在 2024 年價值為 2.5453 億美元,預計到 2030 年將達到 4.3875 億美元,預測期內的複合年成長率為 9.5%。
Iprodione是一種常見的殺菌劑,主要用於農業實務中控制多種真菌疾病。它屬於二羧醯亞胺家族。它對影響觀賞植物、水果、蔬菜作物和其他作物的真菌疾病有很好的效果。此外,Iprodione還能阻止必需酵素的產生,進而抑制真菌的生長和繁殖。Iprodione被植物吸收,並作為系統性殺菌劑發揮作用,阻止真菌感染的蔓延。
據聯合國糧食及農業組織(FAO)稱,全球對包括Iprodione在內的殺菌劑的需求源於保護作物免受真菌感染和確保糧食安全的需要。 2022年,農業農藥總使用量為370萬噸,較2021年增加4%。
對蔬菜和水果的興趣日益濃厚
隨著飲食習慣的改變、健康趨勢以及有機和植物性飲食的流行,世界各地對新鮮水果和蔬菜的需求不斷增加,作物保護變得越來越重要。Iprodione對葡萄、蘋果、草莓等水果以及番茄、黃瓜等蔬菜中的黴菌感染特別有效。此外,Iprodione等殺菌劑在農業領域的應用也越來越廣泛,旨在維持農產品品質的高標準、延長保存期限、滿足消費者對更新鮮、更多樣化食品的需求。
殺菌劑抵抗力增強
與許多其他農藥一樣,Iprodione的頻繁使用導致一些地區出現了抗藥性。隨著時間的推移,真菌可能會對藥物治療產生抗藥性,從而降低殺菌劑的療效。這種抗藥性使農民不再使用該產品作為可靠的作物保護解決方案,並導致他們尋找替代殺菌劑和綜合蟲害管理策略。此外,在抗藥性普遍存在的地區,農民可能不願意依賴不再提供最佳控制效果的產品,這可能會導致對Iprodione的需求減少。
有機農業的傳播
有機農業通常不使用合成化學品,但經過有機認證的殺菌劑和生物防治劑越來越受歡迎。雖然Iprodione不是有機農藥,但它可以在綜合害蟲管理系統中與其他生物防治劑結合使用,用於傳統和有機農業系統。此外,隨著對有機農產品的需求不斷增加,像Iprodione這樣的殺菌劑市場可以從混合方法中受益,以更有針對性和可控的方式同時使用有機和合成。
替代殺菌劑的威脅
與其他具有更高功效、更好的抗藥性管理和更環保的方法的殺菌劑相比,Iprodione的市場競爭非常激烈。各種化學類別的殺菌劑和生物防治劑越來越受歡迎,因為它們可以針對更多種類的真菌病原體,或者因為它們被認為是更安全、更永續的替代品。此外,由微生物、植物抽取物等製成的生物農藥和天然殺菌劑的出現,對Iprodione等傳統化學殺菌劑構成了威脅。
COVID-19 疫情以多種方式影響了Iprodione市場。由於全球供應鏈中斷,包括生產、運輸和原料供應延遲,Iprodione和其他農藥的分銷受到阻礙。在高度依賴進口的地區尤其如此。然而,疫情讓人們更加重視農業生產力和糧食安全,農民把作物保護放在了首要位置。在某些地區,由於農業被認為是必要的,對Iprodione等殺菌劑的需求保持相對穩定。
預計在預測期內, Iprodione 50% WP(可濕性粉劑)市場將成為最大的市場。
預計Iprodione50% WP(可濕性粉末)市場將主導Iprodione市場。該配方在農業領域有許多應用,特別是在觀賞植物、水果和蔬菜等作物的真菌病害管理中。可濕性粉劑由於價格低廉、對規模化種植者而言、藥效良好、且易與水混合等特點,被廣泛使用。農民通常更喜歡粉塵,因為它穩定、易於使用並且能適應不同的環境條件。此外,可濕性粉劑在市場上有著悠久的歷史,在作物保護領域有著廣泛的應用,並佔據主導市場佔有率。
預計預測期內觀賞植物部分將出現最高的複合年成長率。
在Iprodione市場中,觀賞植物部分預計將以最高的複合年成長率成長。Iprodione經常用於觀賞植物,以防止可能損害花卉、灌木和其他觀賞植物的美觀和市場價值的真菌疾病。隨著對觀賞植物的需求不斷增加,特別是在園藝、景觀美化和花卉栽培行業,像Iprodione這樣的有效作物保護產品變得越來越必要。此外,由於對觀賞植物的需求不斷增加以及對保持植物健康和外觀的重視程度不斷提高,該領域的市場正在迅速擴大。
由於亞太地區農業規模龐大且對農作物保護產品的需求不斷成長,預計Iprodione市場將由亞太地區主導。Iprodione在中國和印度等農業大國被廣泛用於防治水果、蔬菜、穀物和觀賞植物的真菌疾病。需要有效的殺菌劑來提高作物產量,而且由於該地區人口的不斷成長和糧食需求的不斷增加,這種需求也日益成長。此外,亞太地區觀賞植物和園藝產業的成長極大地提升了該地區在Iprodione市場的主導地位。
由於農業活動的增加和先進作物保護解決方案的使用增加,南美洲預計將見證Iprodione市場最高的複合年成長率。巴西和阿根廷等以大規模生產穀物、穀類、水果和蔬菜而聞名的國家,對異Iprodione的需求日益成長,以保護作物免受真菌疾病的侵害並提高產量。此外,Iprodione的採用也推動了該地區農產品出口的成長以及對永續農業實踐的日益關注,這兩者都有助於推動市場的爆炸性擴張。
According to Stratistics MRC, the Global Iprodione Market is accounted for $254.53 million in 2024 and is expected to reach $438.75 million by 2030 growing at a CAGR of 9.5% during the forecast period. Iprodione is a common fungicide that is mainly used in agricultural practices to control a variety of fungal diseases. It is a member of the dicarboximide class. It works well against fungal diseases that affect crops like ornamental plants, fruits, and vegetables. Moreover, iprodione disrupts the growth and reproduction of fungi by preventing the production of essential enzymes. It is absorbed by plants and acts as a systemic fungicide, halting the spread of fungal infections.
According to the Food and Agriculture Organization (FAO), the global demand for fungicides, including iprodione, is driven by the need to protect crops from fungal infections and ensure food security. In 2022, total pesticides use in agriculture was 3.70 million tonnes, marking a 4% increase with respect to 2021.
Growing interest in vegetables and fruits
Crop protection has become increasingly important due to the rising demand for fresh fruits and vegetables worldwide, which is being driven by shifting dietary habits, health consciousness, and the widespread adoption of organic and plant-based diets. When it comes to fungus infections on fruits like grapes, apples, and strawberries, as well as vegetables like tomatoes and cucumbers, iprodione works especially well. Additionally, fungicides like Iprodione are being used more and more by the agricultural industry to maintain high standards of produce quality, increase shelf life, and satisfy consumer demands for fresher, more varied food options.
Increasing resistance to fungicides
Iprodione's frequent use has caused resistant fungal strains to appear in some areas, much like it has with many other agricultural chemicals. Fungi may become resistant to chemical treatments over time, decreasing the effectiveness of the fungicide. Because of this resistance, farmers are less inclined to use the product as a dependable crop protection solution and are more likely to look for alternative fungicides or integrated pest management strategies. Furthermore, farmers may be hesitant to depend on a product that no longer offers the best control in regions where resistance is pervasive, which could result in a decline in demand for Iprodione.
Growing use of organic farming methods
While synthetic chemicals are generally avoided in organic farming, certified organic fungicides and biocontrol products are becoming more and more popular. Even though it isn't organic, iprodione can be used in both conventional and organic farming when combined with other biocontrol agents in an integrated pest management system. Moreover, the market for fungicides, such as Iprodione, may benefit from hybrid approaches that use both organic and synthetic solutions in a more targeted and controlled manner as the demand for organic produce continues to rise.
Threat of alternative fungicides
The market for Iprodione is highly competitive with other fungicides that may provide greater efficacy, better management of resistance, or less environmental impact. Fungicides from various chemical classes, as well as biological control agents, are gaining popularity because they can target a greater variety of fungal pathogens or because they are perceived as safer and more sustainable alternatives. Additionally, the emergence of biopesticides and natural fungicides, such as those made from microorganisms or plant extracts, poses a growing threat to conventional chemical fungicides like Iprodione.
The COVID-19 pandemic affected the iprodione market in a variety of ways. The distribution of Iprodione and other agricultural chemicals was hampered by global supply chain disruptions, which included production, transportation, and raw material availability delays. This was especially noticeable in areas that depended significantly on imports. However, the pandemic brought about a greater emphasis on agricultural productivity and food security, which prompted farmers to give crop protection top priority. Because agriculture was considered necessary, the demand for fungicides like Iprodione remained comparatively stable in some areas.
The Iprodione 50% WP (Wettable Powder) segment is expected to be the largest during the forecast period
The Iprodione market is expected to be dominated by the Iprodione 50% WP (Wettable Powder) segment. Applications for this formulation are numerous in agriculture, especially in the management of fungal diseases in crops such as ornamental plants, fruits, and vegetables. Wettable powders are widely used because they are inexpensive for large-scale farming, provide good coverage, and are simple to combine with water. Because of their stability, ease of application, and adaptability to a range of environmental conditions, farmers generally prefer them. Moreover, their dominant market share is a result of wettable powders' long history on the market and their extensive application in crop protection.
The Ornamental Plants segment is expected to have the highest CAGR during the forecast period
In the Iprodione market, the Ornamental Plants segment is anticipated to grow at the highest CAGR. Iprodione is frequently used on ornamental plants to prevent fungal diseases that can harm flowers, shrubs, and other decorative plants' aesthetic appeal and market value. Effective crop protection products like Iprodione are becoming more and more necessary as the demand for ornamental plants rises, especially in the gardening, landscaping, and floral industries. Additionally, the market for this segment is expanding quickly due to the growing demand for ornamental plants as well as the growing emphasis on preserving the health and appearance of plants.
The market for Iprodione is expected to be dominated by the Asia Pacific region due to its large agricultural sector and growing need for crop protection products. To fight fungal diseases in fruits, vegetables, cereals, and ornamental plants, nations like China and India, which engage in extensive farming, use Iprodione extensively. Effective fungicides are needed to increase crop productivity, which has been made more urgent by the region's expanding population and rising food demand. Furthermore, the growth of the ornamental plant and horticulture sectors in Asia-Pacific greatly adds to the region's dominance in the Iprodione market.
Due to the growing agricultural activities and the rising use of advanced crop protection solutions, the South American region is anticipated to have the highest CAGR in the Iprodione market. The need for Iprodione to shield crops from fungal diseases and boost yields is being driven by nations like Brazil and Argentina, which are well-known for their extensive production of cereals, grains, fruits, and vegetables. Moreover, iprodione adoption is also being aided by the region's increasing exports of agricultural goods and the increased focus on sustainable farming methods, which are both driving the market's explosive expansion.
Key players in the market
Some of the key players in Iprodione market include E.I. Dupont De Nemours & Company, Apparent Ag, Kanto Chemical Co., Inc, Syngenta AG, Toronto Research Chemicals Inc., MedChemExpress, Bayer CropScience AG, Dow AgroSciences, MilliporeSigma, Imtrade CropScience, BASF SE, UPL Ltd, Monsanto, Double A Vineyards and Biosynth.
In December 2024, BASF has signed a binding agreement to sell its Food and Health Performance Ingredients business, including the production site in Illertissen, Germany, to Louis Dreyfus Company (LDC), a leading global merchant and processor of agricultural goods including high-quality, plant-based ingredients. BASF's Food and Health Performance Ingredients portfolio plays a vital role in addressing growing trends in human nutrition.
In May 2024, MilliporeSigma announced the signing of a definitive agreement to acquire Mirus Bio for US$ 600 million. Mirus Bio, part of Gamma Biosciences, is a life science company based in Madison, Wisconsin, USA that specializes in the development and commercialization of transfection reagents, such as TransIT-VirusGEN(R).
In February 2024, Syngenta Crop Protection and Lavie Bio Ltd, announced an agreement for the discovery and development of new biological insecticidal solutions. The collaboration will leverage Lavie Bio's unique technology platform to rapidly identify and optimize bio-insecticide candidates, as well as Syngenta's extensive global research, development and commercialization capabilities.