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市场调查报告书
商品编码
1753997
1,4丁二醇市场报告(按类型、衍生物(四氢呋喃、聚对苯二甲酸丁二醇酯、γ-丁内酯、聚氨酯等)、最终用途行业和地区)2025-20331,4 Butanediol Market Report by Type, Derivative (Tetrahydrofuran, Polybutylene Terephthalate, Gamma-Butyrolactone, Polyurethane, and Others), End Use Industry, and Region 2025-2033 |
2024年,全球1,4丁二醇市场规模达81亿美元。展望未来, IMARC Group预计到2033年,该市场规模将达到132亿美元,2025-2033年期间的复合年增长率(CAGR)为5.29%。由于溶剂、塑胶和纤维生产领域的需求不断增长,该市场正在稳步扩张。此外,在持续的技术创新和各主要产业工业化进程的推动下,1,4丁二醇在製药、汽车和纺织等领域的应用不断扩大,也显着促进了市场成长。
1,4丁二醇 (C4H10O2) 是一种无色、油性、黏稠液体,在水和其他化学物质中具有高溶解度。它是一种伯醇,也是一种由乙炔、丁烷、丙烯和丁二烯等石油基原料製成的有机化合物。它广泛用于工业环境中作为溶剂,以及用于製造某些类型的塑胶、弹性纤维和聚氨酯。 1,4丁二醇因其优异的环保特性和对工人的健康风险极低,也被用作有机化工和精细化工的原料。因此,它在纺织、汽车、化学、电气和电子、造纸、医疗保健和製药行业中有着广泛的应用。
电子和汽车产业需求不断成长
全球1,4丁二醇 (BDO) 市场正在经历成长,主要得益于其在电子和汽车行业的应用日益增长。 1,4丁二醇是聚对苯二甲酸丁二醇酯 (PBT) 树脂製造过程中不可或缺的成分,而PBT树脂在这些行业中被广泛用于生产耐用的塑胶零件,例如外壳或连接器。例如,2024年5月,矢崎株式会社和东丽株式会社合作生产了一种新型再生PBT树脂,专门用于製造汽车线束连接器。此外,电子产品和汽车越来越多地采用轻量化材料来减轻重量并提高效率,这进一步刺激了对1,4丁二醇的需求。此外,随着电子和汽车产业持续快速成长,对1,4丁二醇等高性能材料的需求预计将持续成长,从而推动市场扩张。
个人护理和医药领域的应用日益增多
1,4 丁二醇市场分析表明,个人护理和製药行业的应用不断扩大,显着推动了需求成长。 1,4 丁二醇作为四氢呋喃 (THF) 生产的关键原料,发挥着至关重要的作用,而四氢呋喃通常用于製造个人护理产品和医用纺织品中常见的氨纶纤维。例如,2024 年 5 月,莱卡公司与大连化学株式会社 (DCC) 合作,利用 1,4 丁二醇生产低影响 PTMEG,这是生物基莱卡纤维或氨纶纤维的关键成分。此外,1,4 丁二醇广泛应用于各种药物製剂的赋形剂和溶剂的开发。此外,随着客户对增强型药品和个人护理产品的需求不断增长,预计对多功能化学品的需求将进一步推动这些领域的市场成长,从而拓宽 1,4 丁二醇的市场范围。根据产业报告,到 2026 年,印度个人护理市场预计将成长 4.5%。
倾向于永续生产技术
随着製造商们纷纷寻求生物基生产技术,对永续发展的日益增长的关注正对1,4丁二醇市场产生重大影响。生物基1,4丁二醇通常源自再生原料,由于其与传统的石化生产方法相比对环境的影响较小,因此发展势头迅速。此外,这种趋势与日益严格的全球环境监管政策以及客户对环保产品的需求相契合。此外,一些公司正在积极投资绿色生产方法和技术,以满足对永续材料日益增长的需求。因此,根据1,4丁二醇市场研究表明,预计该产品的采用将加速,从而在满足对环保製造解决方案的需求的同时,为市场提供新的成长途径。根据2023年1月发表在《绿色化学》杂誌上的一篇研究文章,一种从琥珀酸生产生物基1,4-丁二醇的环保方法已被成功开发。此方法表现出1,4-丁二醇优异的长期稳定性,且不影响其功能活性,产率达91.2%。
The global 1,4 butanediol market size reached USD 8.1 Billion in 2024. Looking forward, IMARC Group expects the market to reach USD 13.2 Billion by 2033, exhibiting a growth rate (CAGR) of 5.29% during 2025-2033. The market is experiencing stable expansion due to its amplifying demand in producing solvents, plastics, and fibers. Moreover, its expanding applications in sectors like pharmaceuticals, automotive, and textiles significantly bolster market growth, supported by continuous technological innovations and magnifying industrialization across major industries.
1,4 butanediol (C4H10O2) is a colorless, oily, and viscous liquid with high solubility in water and other chemicals. It is a primary alcohol and an organic compound produced from petroleum-based substrates such as acetylene, butane, propylene, and butadiene. It is widely used in industrial settings as a solvent and in the manufacturing of some types of plastics, elastic fibers, and polyurethanes. 1,4 butanediol is also used as a raw material in both the organic and fine chemical industries for its excellent environmental characteristics and minimal health risks to workers. As a result, it finds extensive applications across the textile, automotive, chemical, electrical and electronics, papermaking, healthcare, and pharmaceutical industries.
Growing Demand from Electronics and Automotive Sectors
The global 1,4 butanediol (BDO) market is witnessing growth principally driven by its increasing utilization in the electronics and automotive sectors. 1,4 butanediol is an integral component in the manufacturing of polybutylene terephthalate (PBT) resins, which are extensively leveraged in these industries to produce durable plastic components, like housings or connectors. For instance, in May 2024, Yazaki Corporation and Toray Industries collaborated to produce a new recycled PBT resin particualrly for manufacturing connectors for automotive wire harnesses. Moreover, the heightening adoption of lightweight materials in electronic products and vehicles to lower weight and enhance efficacy has further bolstered the need for 1,4 butanediol. In addition, as the electronics and automotive industries continue to grow rapidly, the demand for superior-performance materials like 1,4 butanediol is anticipated to propel, boosting the market expansion.
Increasing Applications in Personal Care and Pharmaceuticals
The 1,4 butanediol market analysis indicates that the expanding applications in the personal care and pharmaceutical industries is notably driving the demand. 1,4 butanediol plays a crucial role as a key raw material in the production of tetrahydrofuran (THF), which is generally utilized in manufacturing spandex fibers generally found in personal care products as well as medical textiles. For instance, in May 2024, The LYCRA Company collaborated with Dairen Chemical Corporation (DCC) to produce low-impact PTMEG, a key ingredient for bio-based LYCRA fiber or spandex fiber, from 1, 4 butanediol. In addition, 1,4 butanediol is extensively leveraged in the development of excipients and solvents for a broad range of pharmaceutical formulations. Moreover, as customer need for enhanced pharmaceuticals and personal care products escalates, the demand for versatile chemicals is anticipated to further boost market growth in these sectors, consequently broadening the 1,4 butanediol market scope. As per industry reports, by 2026, personal care market is projected to grow by 4.5% in India.
Inclination Toward Sustainable Production Techniques
The magnifying inclination towards sustainability is significantly impacting the 1,4 butanediol market as manufacturers are currently seeking bio-based production techniques. Bio-based 1,4 butanediol, typically derived from renewable feedstocks, is rapidly gaining momentum due to its lower environmental impact in comparison to conventional petrochemical-based production methods. Moreover, this inclination aligns with the increasing global environmental regulatory policies and customer demand for environmentally friendly products. In addition, several companies are actively investing in green production methods and technologies to address the rising requirement for sustainable materials. Consequently, the adoption of this product is expected to accelerate, as indicated by the 1,4 butanediol market research, offering new growth avenues in the market while addressing the demand for environmentally safe manufacturing solutions. According to a research article published in the journal Green Chemistry in January 2023, an eco-friendly method for the production of bio-based 1,4-butanediol from succinic acid was successfully developed. This method exhibited exceptional prolonged stability of 1,4-butanediol without hampering its functional activity, attaining a 91.2% yield rate.