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市场调查报告书
商品编码
1662742
2030 年丁醛市场预测:按产品类型、等级、应用和地区进行的全球分析Butyraldehyde Market Forecasts to 2030 - Global Analysis By Product Type, Grade, Application and By Geography |
根据 Stratistics MRC 的数据,全球丁醛市场预计 2024 年将达到 2,315.2 亿美元,到 2030 年将达到 3,673.9 亿美元,复合年增长率为 8.0%。
丁醛是一种含有四个碳原子的脂肪族醛,可用作各种工业化学品的原料。它主要由丙烯氢甲酰化而成,主要用途包括生产丁醇、溶剂、塑化剂和合成橡胶的重要原料。此外,丁醛对于树脂、香料以及杀虫剂和除草剂等农业化学品的合成至关重要。它们的反应性,特别是它们进行缩合和聚合反应的能力,使它们成为广泛用于各行各业的各种化学品合成的关键步骤。
根据化学书,丁醛的分子式为C4H8O,分子量为72.11。主要用作合成树脂、橡胶硫化促进剂、溶剂、塑化剂生产的中间体。
塑化剂需求不断增加
丁醛是合成丁醇的必需原料,也是柠檬酸三丁酯(TBC)、邻苯二甲酸二丁酯(DBP)等塑化剂的原料。这些塑化剂使聚氯乙烯(PVC)等聚合物更加柔韧、耐用且更易于加工。由于医疗设备、汽车、包装和建筑等领域对轻质、柔性材料的需求不断增加,对丁醛基塑化剂的需求也日益增长。此外,新兴经济体的快速都市化和基础设施发展进一步加速了这一需求。
原物料价格波动
合成丁醛的基本原料是石油化学衍生物丙烯。天然气、原油价格的波动直接影响丙烯价格,进而影响丁醛的生产成本。与其他化学中间体相比,由于原料成本的上升,丁醛基产品可能面临的竞争较少,降低製造商的利润率。此外,对石化燃料原料的依赖引发了人们对其长期永续性的质疑,促使企业寻找可能需要大量基础设施和研发投资的替代原料。
农化业成长
丁醛用作生产杀虫剂、除草剂和其他农业化学製剂的中间体。随着世界人口的增长和农业生产力成为优先考虑的问题,对作物保护化学品的需求也日益增加。新兴国家,特别是亚太和拉丁美洲的国家,正在大力投资农业现代化,从而增加先进农药的使用。此外,提高效率和减少环境影响的农药配方的新发展为丁醛衍生产品开闢了新的市场。
严格的环境法规
人们对环境污染的担忧源于生产丁醛的化学过程,该过程会产生挥发性有机化合物(VOC)和其他排放。在全球范围内,各国政府都在加强环境法,要求化学品製造商遵守更严格的排放控制准则和永续性标准。满足这些监管变化所需的大量投资,包括废弃物管理、排放控制系统和清洁技术,将导致营运成本上升。然而,由于欧盟等国家的环境法规越来越严格,对不遵守法规的行业征收碳排放税和罚款,丁醛製造商面临财务困难。
受新冠疫情影响,丁醛市场供需受到较大影响。在疫情高峰期,製造工厂被迫关闭,导致生产延迟和原材料供应短缺。这个问题加上物流挑战和国际贸易限制,导致丁醛製造商的供应链出现瓶颈并增加成本。经济不确定性导致包装、建筑和汽车产业等领域对塑化剂和合成橡胶等丁醛基产品的需求下降。但疫情增加了医疗保健和食品包装等一些产业对耐用、安全、卫生的材料的需求。
预计预测期内正丁醇部分将达到最大幅度成长。
预计预测期内正丁醇将占据最大的市场占有率。正丁醇占据主导地位,因为它广泛用作油漆、清漆和被覆剂的溶剂,同时也是製造合成树脂、塑化剂和药物的重要中间体。由于正丁醇是黏合剂、密封剂和工业清洗的重要成分,建筑业和汽车业的扩张进一步推动了需求。它在纺织品加工、橡胶和印刷油墨中的应用也正在提高其市场地位。此外,随着正丁醇长期市场潜力的扩大,对生物基化学品的不断增长的需求也刺激了对永续生产技术的更多研究。
预计预测期内食品级部分将以最高的复合年增长率成长。
预计食品级部分在预测期内将呈现最高的成长率。食品级丁醛的需求受到香精香料行业的推动,在该行业中,丁醛是合成多种调味剂和芳香化合物的关键成分。消费者对加工食品和方便食品的偏好日益增加,进一步刺激了对优质风味添加剂的需求,从而推动了食品丁醛市场的成长。此外,确保食品安全和品质的严格法规促使製造商采用食品级化学品,从而推动了该领域的成长。
预计预测期内亚太地区将占据最大的市场占有率。这种主导地位主要得益于汽车和建筑业的扩张,这推动了对油漆、被覆剂和黏合剂的需求,而这些都是丁醛衍生物的重要应用。由于中国对住宅和基础设施计划的大量投资,丁醛的消费量正在增加,从而推动了对高性能涂料的需求。此外,该地区快速的工业化和经济扩张进一步加强了该地区在全球丁醛市场的主导地位。
由于化学製造业的强劲成长以及对黏合剂和塑胶等最终产品的需求不断增长,预计北美在预测期内将呈现最高的复合年增长率。美国拥有成熟的工业基础和大量的研发投入,在其中扮演着尤为重要的角色。该地区重视创新并致力于创造高性能材料,特别是在建筑和汽车领域,正在推动对丁醛衍生物的需求。此外,强大的供应链基础设施和重要化学公司的存在也支持北美市场的扩张。
According to Stratistics MRC, the Global Butyraldehyde Market is accounted for $231.52 billion in 2024 and is expected to reach $367.39 billion by 2030 growing at a CAGR of 8.0% during the forecast period. Butyraldehyde is a four-carbon aliphatic aldehyde that is used to make a wide range of industrial chemicals. It is mainly made by hydroformylating propene, and its primary uses include the production of butyl alcohol, a crucial raw material for solvents, plasticizers, and synthetic rubber. Moreover, butyraldehyde is essential for the synthesis of resins, flavors, and fragrances, as well as agricultural chemicals like insecticides and herbicides. Its reactivity-particularly its capacity to go through condensation and polymerization reactions-makes it a crucial step in the synthesis of many different kinds of chemicals for use in a wide range of industries.
According to Chemical Book, butyraldehyde has a molecular formula of C4H8O and a molecular weight of 72.11. It is used mainly as an intermediate in the production of synthetic resins, rubber vulcanization accelerators, solvents, and plasticizers.
Growing plasticizer demand
Butyraldehyde is essential for the synthesis of butanol, which is then used to make plasticizers like tributyl citrate (TBC) and dibutyl phthalate (DBP). Polyvinyl chloride (PVC) and other polymers are made more flexible, durable, and processable by these plasticizers. The need for butyraldehyde-based plasticizers is growing as a result of the growing demand for lightweight, flexible materials in sectors like medical devices, automotive, packaging, and construction. Additionally, this demand has been further fueled by emerging economies' rapid urbanization and infrastructure development.
Price fluctuations for raw materials
A crucial raw material for the synthesis of butyraldehyde is propylene, a petrochemical derivative. The price volatility of natural gas and crude oil has a direct effect on propylene prices, which in turn affects the cost of producing butyraldehyde. In comparison to alternative chemical intermediates, butyraldehyde-based products may become less competitive due to high raw material costs, which can also reduce manufacturers' profit margins. Furthermore, the dependence on raw materials derived from fossil fuels raises questions about sustainability over the long run, leading businesses to look for alternative feedstocks that might necessitate large infrastructure and R&D investments.
Growth in the agrochemical industry
Butyraldehyde is used as an intermediate in the production of pesticides, herbicides, and other agrochemical formulations. As the world's population grows and agricultural productivity becomes a priority, there is a growing need for crop protection chemicals. Emerging economies, especially in Asia-Pacific and Latin America, are investing heavily in agricultural modernization, which increases the use of advanced agrochemicals. Additionally, new developments in agrochemical formulations that increase efficiency and lessen environmental impact open up new markets for products derived from butyraldehyde.
Strict environmental rules
Concerns regarding environmental pollution are raised by the chemical processes used in the production of butyraldehyde, which produce volatile organic compounds (VOCs) and other emissions. Globally, governments are strengthening environmental laws, requiring chemical producers to adhere to more stringent emission control guidelines and sustainability standards. Operating costs will rise as a result of the significant investments needed to comply with these changing regulations in waste management, emissions control systems, and cleaner technologies. However, butyraldehyde manufacturers face financial difficulties due to strict environmental regulations in places like the European Union, which impose high carbon taxes and penalties on noncompliant industries.
The market for butyraldehyde was significantly impacted by the COVID-19 pandemic, which caused supply and demand to shift. Manufacturing facilities had to close during the pandemic's peak, which caused production to lag and raw material supplies to become scarcer. This, along with logistical difficulties and limitations on international trade, led to supply chain snags and higher expenses for producers of butyraldehyde. Due to economic uncertainty, demand for butyraldehyde-based products like plasticizers and synthetic rubber decreased in sectors like packaging, construction, and the automotive industry. Nonetheless, the pandemic also raised demand for long-lasting, secure, and hygienic materials in some industries, like healthcare and food packaging.
The N-Butanol segment is expected to be the largest during the forecast period
The N-Butanol segment is expected to account for the largest market share during the forecast period. Its widespread use as a solvent in paints, varnishes, and coatings, as well as its function as a crucial intermediate in the manufacturing of synthetic resins, plasticizers, and medications, are the reasons for its dominance. Since N-butanol is an essential ingredient in adhesives, sealants, and industrial cleaners, the expanding construction and automotive industries have further increased demand for it. Its use in textile processing, rubber, and printing inks has also improved its standing in the market. Furthermore, expanding N-butanol's long-term market potential, the growing demand for bio-based chemicals has also spurred more research into sustainable production techniques.
The Food Grade segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the Food Grade segment is predicted to witness the highest growth rate. The demand for food-grade butyraldehyde in the flavor and fragrance sector, where it is used as a crucial component in the synthesis of numerous flavouring agents and aroma compounds, is what is driving this growth. The demand for premium flavor additives has been further reinforced by consumers' growing inclination for processed and convenience foods, which has fueled the growth of the food-grade butyraldehyde market. Moreover, manufacturers have adopted food-grade chemicals as a result of strict regulations guaranteeing food safety and quality, which has accelerated the segment's growth.
During the forecast period, the Asia-Pacific region is expected to hold the largest market share, propelled by significant consumption in nations such as China and India. The primary cause of this dominance is the expanding automotive and construction industries, which have raised demand for paints, coatings, and adhesives-all crucial applications for butyraldehyde derivatives. Butyraldehyde consumption has increased in China as a result of large investments in housing and infrastructure projects, which have increased the demand for high-performance coatings. Additionally, the region's dominant position in the global butyraldehyde market is further cemented by its quick industrialization and economic expansion.
Over the forecast period, the North American region is anticipated to exhibit the highest CAGR, driven by the strong growth of the chemical manufacturing industry and the rising demand for final goods like adhesives and plastics. Because of its sophisticated industrial base and significant R&D expenditures, the United States in particular plays a crucial role. The demand for butyraldehyde derivatives has increased as a result of the region's emphasis on innovation and the creation of high-performance materials, particularly in the construction and automotive sectors. Furthermore, a strong supply chain infrastructure and the existence of significant chemical companies also support the market's expansion in North America.
Key players in the market
Some of the key players in Butyraldehyde market include BASF SE, Dow Chemical Company, Eastman Chemical Company, LG Chem Ltd., Mitsubishi Chemical Corporation, KH Neochem Co., Ltd., Tokyo Chemical Industry Co., Ltd., Evonik Industries AG, Beijing Yunbang Biosciences Co.Ltd., Toronto Research Chemicals, OXEA Corporation, Solvay S.A., Merck KGaA, Perstorp Holding AB and Thermo Fisher Scientific Inc.
In July 2024, BASF and ENGIE signed a 7-year Biomethane Purchase Agreement (BPA). Under the BPA, ENGIE will supply BASF with 2.7 to 3.0 terawatt hours of biomethane throughout the term of the agreement. BASF uses certified biomethane at its Ludwigshafen/Germany and Antwerp/Belgium sites as a sustainable alternative to fossil raw materials in its manufacturing process.
In May 2024, Dow Chemical International Private Limited and Glass Wall Systems India signed an agreement for Dow to supply DOWSIL(TM) Facade Sealants from Dow's Decarbia(TM) portfolio of reduced-carbon solutions, for Glass Wall System's curtain wall system. A first-of-its-kind global initiative, this collaboration demonstrates an unwavering dedication from organizations in the building and infrastructure industry to reduce embodied carbon in building materials.
In February 2024, Eastman Chemical has signed an agreement with the European recycling firm Dentis Group to secure postconsumer polyethylene terephthalate (PET) for the methanolysis-based depolymerization plant it is building in Port-Jerome-sur-Seine, France. Dentis will supply Eastman with 30,000 metric tons (t) of PET from plants in France, Italy, and Spain.