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市場調查報告書
商品編碼
1885830
生物基平台化學品市場機會、成長促進因素、產業趨勢分析及預測(2025-2034年)Bio-Based Platform Chemicals Market Opportunity, Growth Drivers, Industry Trend Analysis, and Forecast 2025 - 2034 |
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2024 年全球生物基平台化學品市場價值為 220 億美元,預計到 2034 年將以 15.7% 的複合年成長率成長至 950 億美元。

向永續發展的轉型和技術的快速發展,使得這些生物基化學構件從一個相對較小的類別躍升為重要的工業優先事項。該領域的擴張速度遠超傳統化學品市場,顯示其對脫碳努力和循環經濟模式的影響力日益增強,而這些模式又受到不斷演變的政策框架和日益提高的企業永續發展目標的影響。隨著投資的加速和生質能供應的改善,成熟的發酵過程使得生產規模化程度更高。成長模式分佈廣泛:亞太地區受惠於豐富的資源,歐洲得益於完善的監管體系,而北美則憑藉著充足的原料供應而發展迅速。 C3基分子、醣類衍生原料和生物基材料等關鍵領域正被眾多產業所接受,從聚合物到高價值特種用途。除了商業上的強勁勢頭,與化石基化學品相比,這些產品還能顯著降低碳排放強度,使其成為未來低碳製造路徑的重要組成部分。
| 市場範圍 | |
|---|---|
| 起始年份 | 2024 |
| 預測年份 | 2025-2034 |
| 起始值 | 220億美元 |
| 預測值 | 950億美元 |
| 複合年成長率 | 15.7% |
2024年,C3衍生平台化學品市佔率達到27%,預計2034年將以15.1%的複合年成長率成長。此類別受益於高度發展的發酵過程以及與下游化學合成路線的廣泛相容性。這些路線支援生產各種材料,廣泛應用於包裝、紡織和高性能應用等領域。豐富的原料來源和工業規模的生產能力相結合,鞏固了該類別作為生物基材料開發基石的地位。
2024年,醣類原料市佔率達35.1%,預計2025年至2034年將以14.8%的複合年成長率成長。其主導地位得益於長期完善的加工基礎設施以及與發酵技術的緊密結合。高糖含量和成熟的生產規模化能力也持續鞏固了其在產業中的地位。然而,人們對土地利用以及與糧食系統潛在重疊的擔憂日益加劇,這正逐步推動人們對下一代原料的興趣。木質纖維素原料,包括農業和林業殘餘物以及專用能源作物,正作為替代原料湧現,旨在為生物基化學品生產的長期供應穩定性提供支持。
2024年,北美生物基平台化學品市場佔據25.9%的市場佔有率,並正經歷顯著擴張。該地區成熟的農業網路和豐富的木質纖維素資源,以及強大的生物乙醇產業,為擴大生物基化學品生產規模創造了機會。持續的研究計畫和政府扶持計畫正在加速技術進步,而氣候政策和清潔能源激勵措施則吸引了投資,並促進了更廣泛的商業化應用。
全球生物基平台化學品市場的主要參與者包括 Braskem SA、Corbion NV、Cargill, Incorporated、BASF SE、Roquette Freres、DuPont de Nemours, Inc.、Genomatica, Inc.、Evonik Industries AG、Avantium NV、Mitsubishi Chemical Holdings Corporation、Royal DSM 實體、PTT Global T檢視這些公司正透過旨在擴大技術能力、確保可靠的原料管道和加速商業化部署的策略來鞏固其市場地位。許多公司正與研究機構建立合作關係,以推進新的轉化技術並提高製程收率。對大型生物煉製廠的投資和原料來源的多元化正在增強供應的韌性。一些企業也與包裝、聚合物和特種化學品領域的製造商簽訂長期供應協議,以確保市場需求的穩定。
The Global Bio-Based Platform Chemicals Market was valued at USD 22 billion in 2024 and is estimated to grow at a CAGR of 15.7% to reach USD 95 billion by 2034.

The transition toward sustainability and rapid advances in technology have shifted these bio-derived chemical building blocks from a relatively small category to a significant industrial priority. The sector is expanding at a pace far above that of conventional chemical markets, signaling its growing influence on decarbonization efforts and circular-economy models shaped by evolving policy frameworks and escalating corporate sustainability targets. As investments accelerate and biomass availability improves, production is becoming more scalable through established fermentation practices. Growth patterns are widely distributed, with Asia Pacific benefiting from strong resource availability, Europe supported by structured regulations, and North America advancing through substantial feedstock supply. Key segments such as C3-based molecules, sugar-derived inputs, and bio-oriented materials are gaining acceptance in multiple industries, from polymers to high-value specialty uses. Beyond commercial momentum, these products contribute meaningful reductions in carbon intensity compared with fossil-derived chemicals, positioning them as essential components of future low-carbon manufacturing pathways.
| Market Scope | |
|---|---|
| Start Year | 2024 |
| Forecast Year | 2025-2034 |
| Start Value | $22 Billion |
| Forecast Value | $95 Billion |
| CAGR | 15.7% |
The C3-derived platform chemicals segment held 27% share in 2024 and is forecast to grow at a 15.1% CAGR through 2034. This category benefits from highly developed fermentation processes and broad compatibility with downstream chemical pathways. These routes support the creation of a wide variety of materials used in sectors such as packaging, textiles, and performance applications. The combination of readily available feedstock sources and industrial-scale production capabilities strengthens the position of this segment as a cornerstone of bio-oriented material development.
The sugar-derived feedstocks segment captured a 35.1% share in 2024 and is projected to grow at a CAGR of 14.8% from 2025 to 2034. Their dominance is supported by a longstanding processing infrastructure and strong alignment with fermentation-based technologies. High sugar content and proven production scalability continue to reinforce their role in the industry. However, rising concerns over land use and potential overlap with food systems are gradually accelerating interest in next-generation feedstocks. Lignocellulosic inputs, including agricultural and forestry residues as well as dedicated energy crops, emerging as alternatives aimed at supporting long-term supply stability for bio-based chemical production.
North America Bio-Based Platform Chemicals Market held a 25.9% share in 2024 and is experiencing significant expansion. The region's established agricultural networks and abundant lignocellulosic material, combined with a strong bioethanol sector, are creating opportunities to scale bio-based chemical manufacturing. Ongoing research initiatives and supportive government programs are accelerating technological advances, while climate-driven policies and clean-energy incentives are attracting investment and enabling broader commercialization.
Major companies active in the Global Bio-Based Platform Chemicals Market include Braskem S.A., Corbion N.V., Cargill, Incorporated, BASF SE, Roquette Freres, DuPont de Nemours, Inc., Genomatica, Inc., Evonik Industries AG, Avantium N.V., Mitsubishi Chemical Holdings Corporation, Royal DSM N.V., PTT Global Chemical Public Company Limited, and Novozymes A/S. Companies in the Bio-Based Platform Chemicals Market are strengthening their positions through strategies designed to expand technological capacity, secure reliable feedstock channels, and accelerate commercial deployment. Many firms are forming partnerships with research institutions to advance new conversion technologies and improve process yields. Investments in large-scale biorefineries and diversification of feedstock sources are enhancing supply resilience. Several players are also entering into long-term supply agreements with manufacturers in packaging, polymers, and specialty sectors to ensure consistent market demand.