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市场调查报告书
商品编码
1943631
生物基涂料市场-全球产业规模、份额、趋势、机会及预测(依原料、VOC含量、最终用户、地区及竞争格局划分,2021-2031年)Bio Based Coating Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Source, By VOC Content, By End User, By Region & Competition, 2021-2031F |
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全球生物基涂料市场预计将从 2025 年的 107.3 亿美元成长到 2031 年的 176.1 亿美元,复合年增长率达到 8.61%。
这些涂料是采用源自可再生生物质或农业原料的黏合剂和树脂製成的保护性和装饰性处理剂,显着降低了对石化燃料衍生前体的依赖。市场成长的主要驱动力是严格的挥发性有机化合物 (VOC)排放环境法规,以及製造商为避免石化产品价格波动而采取的策略性措施。此外,企业日益重视碳中和以及减少范围 3排放也是关键驱动因素,确保市场需求由长期环境目标而非短期市场趋势所支撑。
| 市场概览 | |
|---|---|
| 预测期 | 2027-2031 |
| 市场规模:2025年 | 107.3亿美元 |
| 市场规模:2031年 | 176.1亿美元 |
| 复合年增长率:2026-2031年 | 8.61% |
| 成长最快的细分市场 | 木製品 |
| 最大的市场 | 亚太地区 |
由于这些可再生原料的生产成本高于现有合成原料,因此使用它们的配方仍然是一个重大障碍,这可能会减缓其在成本敏感型工业领域的应用。儘管如此,上游供应链正变得越来越稳健,以满足不断增长的需求。根据欧洲生物生质塑胶)预测,全球生物基塑胶产能预计将从2025年的231万吨翻一番,到2030年达到约469万吨,这表明永续工业应用所需的材料基础正在迅速扩大。
企业永续性措施和雄心勃勃的碳足迹减排目标正在从根本上改变全球生物基涂料市场,製造商正积极转向可再生配方,以满足范围3的排放目标。这一战略转变也受到政府对挥发性有机化合物(VOC)的严格监管的进一步推动,这些监管要求建筑和工业领域必须使用低碳替代品才能遵守。行业领导者正在迅速调整产品系列,以满足这些环境标准,并在具有环保意识的客户群中赢得市场份额。例如,根据PPG于2024年5月发布的《2023年永续发展报告》,该公司44%的销售额来自永续性产品,其中包括为提高能源效率和减少排放开发的生物基涂料。
技术进步提升了生物基树脂的性能,并加强了可再生原料供应链,从而有效应对了成本和耐久性等传统挑战,进一步加速了市场扩张。将植物生物质转化为高性能化学构件的创新技术,使得涂料的生产能够在硬度和耐腐蚀性方面与现有的石化燃料基产品相媲美。科思创于2024年2月宣布运作先导工厂利用植物生物质来完全生产苯胺-二苯基甲烷二异氰酸酯(MDI)的关键前体,而MDI广泛应用于各种涂料中。这一里程碑式的进展也支撑了更广泛的成长趋势。 2024年,《欧洲涂料》杂誌预测,到2028年,生物基聚合物的复合年增长率将达到17%,显示该领域相关化学技术的强劲发展势头强劲。
与合成涂料相比,以可再生原料製成的涂料的高昂製造成本仍然是全球生物基涂料市场成长的主要障碍。儘管生物基树脂的技术性能正在不断提升,但将农业原料提炼成高效黏合剂的过程需要大量资金投入,其成本远高于提取石油化学原料的成本。这种价格溢价阻碍了成本敏感型工业部门的采用,这些部门的筹资策略优先考虑的是维持利润率而非环境指标。因此,大众市场製造商往往会推迟向永续涂料的转型,因为他们认为高昂的材料成本是一项难以转嫁给最终消费者的财务负担。
这种经济摩擦导致产业产能与实际市场渗透率之间存在显着脱节,高昂的价格有效地抑制了充分利用现有基础设施所需的需求量。根据欧洲生质塑胶协会2024年的数据,为这些涂料提供关键聚合物前驱物的生质塑胶产业的平均运转率约为58%。这一数字显示存在大量閒置产能,清楚地表明成本障碍阻碍了推动市场强劲成长所需的广泛商业性应用。
采用物料平衡认证正成为将可再生原料整合到全球生物基涂料市场的关键策略,使製造商能够避免建造专用生物精炼的高资本成本。这种方法允许化学企业在其现有裂解装置中将生物质(例如生物石脑油或沼气)与石化燃料进行共加工,并透过数学方法将永续成分归因于特定的最终产品。这种「即插即用」的能力使工业客户能够快速扩大规模,并即时减少碳足迹,而无需更改配方。BASF涂料事业部在2025年5月发布的新闻稿中强调,该公司的生物质平衡产品系列在2024年帮助减少了约800万公斤的二氧化碳排放。
同时,生物基阻隔涂层在纸质包装的应用正显着扩展。这主要是由于迫切需要替代无菌包装和食品容器中不可可再生铝和化石基塑胶层。植物来源聚合物分散体的创新应用提供了必要的抗氧、抗油和抗湿性能,使纸基解决方案能够与传统复合材料直接竞争,同时提高了可再生。越来越多的产品采用先进材料,也推动了这项转变。根据SIG于2025年2月发布的2024年度报告,2024年,采用SIG Terra(该公司以森林基聚合物和阻隔涂层为特色的永续包装)包装的食品量约为16.8亿升。
The Global Bio Based Coating Market is projected to expand from USD 10.73 Billion in 2025 to USD 17.61 Billion by 2031, achieving a compound annual growth rate (CAGR) of 8.61%. These coatings are protective or decorative treatments created using binders and resins sourced from renewable biomass or agricultural feedstocks, significantly lowering dependency on fossil-fuel precursors. Market growth is primarily driven by strict environmental regulations concerning volatile organic compound emissions and a strategic necessity for manufacturers to protect their operations from the price instability of petrochemicals. Additionally, the growing corporate commitment to carbon neutrality and the reduction of Scope 3 emissions serves as a vital driver, ensuring that demand is sustained by long-term environmental goals rather than fleeting market trends.
| Market Overview | |
|---|---|
| Forecast Period | 2027-2031 |
| Market Size 2025 | USD 10.73 Billion |
| Market Size 2031 | USD 17.61 Billion |
| CAGR 2026-2031 | 8.61% |
| Fastest Growing Segment | Woodwork |
| Largest Market | Asia Pacific |
Significant hurdles persist due to the higher production costs of these renewable formulations relative to established synthetic options, which can delay adoption in cost-sensitive industrial sectors. Despite this, the upstream supply chain is becoming more robust to meet rising demand. According to European Bioplastics, global production capacity for biobased plastics is expected to double, increasing from 2.31 million tonnes in 2025 to approximately 4.69 million tonnes by 2030, signaling a rapidly broadening material foundation for sustainable industrial applications.
Market Driver
Corporate sustainability mandates and ambitious carbon footprint reduction targets are fundamentally transforming the global bio-based coating market, as manufacturers aggressively shift toward renewable formulations to satisfy Scope 3 emission goals. This strategic transition is further enforced by rigorous government regulations on volatile organic compounds (VOCs), which necessitate the use of low-carbon alternatives in architectural and industrial settings to maintain compliance. Major industry leaders are swiftly adjusting their portfolios to meet these environmental standards, thereby securing market share among eco-conscious clients. For example, PPG's '2023 Sustainability Report', published in May 2024, revealed that 44% of the company's sales came from sustainably advantaged products, including bio-based paints developed to improve energy efficiency and decrease emissions.
Technological progress in bio-based resin performance and a strengthening supply chain for renewable raw materials are further expediting market scalability by resolving historical challenges related to cost and durability. Innovations in converting plant biomass into high-performance chemical building blocks enable the production of coatings that compete with fossil-fuel incumbents in terms of hardness and corrosion resistance. A significant milestone was achieved when Covestro announced in February 2024 the commissioning of a pilot plant to produce aniline entirely from plant biomass, a key precursor for methylene diphenyl diisocyanate (MDI) used in various coatings. This innovation underpins a broader growth trend; European Coatings projected in 2024 that the CAGR for bio-based polymers would reach 17% through 2028, indicating robust expansion for the sector's foundational chemistries.
Market Challenge
The elevated production cost of renewable formulations compared to synthetic alternatives remains a primary obstacle limiting the growth of the Global Bio Based Coating Market. While the technical capabilities of bio-based resins have advanced, refining agricultural feedstocks into effective binders is a capital-intensive process that far exceeds the cost of petrochemical extraction. This price premium discourages adoption in cost-sensitive industrial sectors where procurement strategies emphasize margin preservation over environmental metrics. Consequently, manufacturers in volume-heavy markets often postpone the transition to sustainable coatings, viewing the higher material costs as a financial burden that cannot be easily passed on to the end consumer.
This economic friction creates a noticeable gap between the industry's manufacturing potential and actual market uptake. High prices effectively suppress the demand volume requisite for utilizing existing infrastructure to its full potential. Data from European Bioplastics in 2024 indicated that the average utilization rate of the bioplastics industry, which supplies the essential polymer precursors for these coatings, was approximately 58 percent. This figure suggests that a significant portion of production capacity remains idle, serving as clear evidence that cost barriers are preventing the widespread commercial application necessary to drive robust market growth.
Market Trends
The adoption of mass balance certification is becoming a key strategy for integrating renewable feedstocks into the global bio-based coating market, allowing manufacturers to avoid the high capital costs associated with dedicated bio-refineries. This method enables chemical producers to co-process biomass, such as bio-naphtha or biogas, alongside fossil fuels within existing crackers, mathematically attributing the sustainable content to specific end-products. This "drop-in" capability facilitates rapid scalability and immediate carbon footprint reductions for industrial clients without requiring changes to formulations. A May 2025 press release from BASF regarding its coatings division highlighted that the company's portfolio of biomass-balanced products contributed to saving around 8 million kilograms of CO2 emissions in 2024.
Simultaneously, there is a substantial expansion in the use of bio-based barrier coatings within the paper packaging sector, driven by the critical need to replace non-recyclable aluminum and fossil-plastic layers in aseptic and food containers. Innovations in plant-based polymer dispersions are now providing necessary resistance to oxygen, grease, and moisture, allowing paper-based solutions to compete directly with traditional laminates while enhancing recyclability. This shift is supported by the growing volume of goods using these advanced materials. According to SIG's 'Annual Report 2024', released in February 2025, the volume of food packed with the company's SIG Terra sustainable packaging materials, utilizing forest-based polymers and barrier coatings, reached approximately 1.68 billion liters in 2024.
Report Scope
In this report, the Global Bio Based Coating Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:
Company Profiles: Detailed analysis of the major companies present in the Global Bio Based Coating Market.
Global Bio Based Coating Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: