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市場調查報告書
商品編碼
1558338
2030 年琥珀酸市場預測:按類型、應用程式、最終用戶和地區分類的全球分析Succinic Acid Market Forecasts to 2030 - Global Analysis By Type (Bio-based Succinic Acid and Petro-based Succinic Acid), Application, End User and By Geography |
根據 Stratistics MRC 的數據,2024 年全球琥珀酸市場規模為 3.106 億美元,預計在預測期內將以 11.7% 的複合年成長率成長,到 2030 年達到 6.033 億美元。
琥珀酸是無色結晶質固體,熔點185-187°C。琥珀酸主要以陰離子琥珀酸鹽的形式存在,在克雷布斯循環中發揮重要作用,克雷布斯循環是生物體能量產生的重要代謝途徑。作為二質子酸,琥珀酸可以貢獻兩個質子並進行兩次連續的去質子化反應,pKa值為4.3和5.6。琥珀酸源自琥珀,用作合成多種化學品的前體,包括聚合物、樹脂和藥物。
根據歐洲生物塑膠協會的數據,2021 年,包裝佔全球生質塑膠市場的 48%(115 萬噸),並且仍然是這些材料的主要市場類別。
對生物基化學品的需求不斷成長
由於生物基琥珀酸對環境友善且對環境的影響較小,因此與石化衍生的琥珀酸相比,人們對生物基琥珀酸的偏好日益成長。這種轉變是由消費者對永續產品的需求和更嚴格的法規所推動的。生物基琥珀酸正在成為生物生物分解性塑膠生產中化學品的替代品,利用永續材料的趨勢。
商業化挑戰
生物基琥珀酸產量低且分離過程集中密集,使得製造商很難以有競爭力的價格生產它,從而限制了其應用。因此,主要的生物基生產工廠已關閉,導致需求減少和設施因高成本和技術挑戰而關閉,阻礙了市場成長。
生物技術的進步
生物技術改進了生產生物琥珀酸的發酵過程。微生物菌株和發酵條件的創新提高了產量和效率,使生物基琥珀酸與石化替代品相比具有高度競爭力。這項進步至關重要,因為它降低了生產成本並提高了生物琥珀酸在各種應用中的可行性。
來自化石替代品的競爭
化石基琥珀酸的可負擔性可能會阻止工業界採用生物基替代品,從而減慢永續產品的採用速度。這種不情願會抑制生物基生產技術的創新和投資。琥珀酸市場面臨供應過剩問題,需求低迷的行業,尤其是汽車和消費品,推動了市場成長。
COVID-19 大流行對琥珀酸市場產生了重大影響,擾亂了供應鏈並減少了汽車、消費品和藥品等關鍵行業的需求。由於工廠關閉和生產因封鎖和旅行限制而停止,製造商的銷售和收益下降。然而,隨著該行業逐漸重新開放,預計對琥珀酸,尤其是生物基產品的需求將回升。
生物基琥珀酸領域預計將在預測期內成為最大的領域
由於人們對環境問題的認知不斷提高以及向永續性的轉變正在推動對生物基琥珀酸的需求,預計生物基琥珀酸將在預測期內達到高峰。隨著消費者和工業界尋求石化產品的環保替代品,生物琥珀酸在藥品、食品、個人護理和生質塑膠等各種應用中越來越受歡迎。
風味增強劑領域預計在預測期內複合年成長率最高
由於其無毒和抗菌特性,風味增強劑領域預計在預測期內複合年成長率最高。這符合健康趨勢,並支持生物基琥珀酸作為永續選擇的成長。製造商可以使用琥珀酸作為風味增強劑來使他們的產品脫穎而出並吸引尋求創新食品選擇的消費者。
預計歐洲在預測期內將佔據最大的市場佔有率。在歐洲,由於消費者越來越偏好生物基產品作為替代品,預計產品需求將停滯不前。在歐洲,琥珀酸廣泛用於個人護理和化妝品行業。德國和英國不同地區的飛機製造商的存在帶動了航太業的成長。
預計北美地區在預測期內的複合年成長率最高,因為該地區有各種建設和擴大新生產設施的機會。透過可再生原料的微生物轉化生產琥珀酸作為石油短缺時期實現永續發展的一種手段在北美引起了人們的興趣。
According to Stratistics MRC, the Global Succinic Acid Market is accounted for $310.6 million in 2024 and is expected to reach $603.3 million by 2030 growing at a CAGR of 11.7% during the forecast period. Succinic acid is a colorless, crystalline solid with a melting point of 185-187°C. It is primarily found in its anion, succinate, which plays a crucial role in the Krebs cycle, a key metabolic pathway for energy production in living organisms. As a diprotic acid, it can donate two protons and undergo two successive deprotonation reactions with pKa values of 4.3 and 5.6. Succinic acid is derived from amber and is used as a precursor in the synthesis of various chemicals, including polymers, resins, and pharmaceuticals
According to European Bioplastics, with 48% (1.15 million tonnes) of the global market for bioplastics in 2021, packaging will continue to be the leading market category for these materials.
Growing demand for bio-based chemicals
The preference for bio-based succinic acid over petrochemical-derived succinic acid is growing due to its eco-friendly nature and reduced environmental impact. This shift is driven by consumer demand for sustainable products and stricter regulations. Bio-based succinic acid is emerging as an alternative to chemicals in biodegradable plastics production, leveraging the trend towards sustainable materials.
Commercialization challenges
The adoption of bio-based succinic acid has been limited due to its low yields and cost-intensive separation processes, making it difficult for manufacturers to produce at competitive prices. This has led to the closure of major bio-based production plants, resulting in reduced demand and the closure of facilities due to the high costs and technical challenges which impedes the market growth.
Advancements in biotechnology
Biotechnology has led to improved fermentation processes for producing bio-succinic acid. Innovations in microbial strains and fermentation conditions have increased yields and efficiency, making bio-based succinic acid more competitive with petrochemical alternatives. This advancement is crucial as it reduces production costs and enhances the viability of bio-succinic acid in various applications.
Competition from fossil-based alternatives
The affordability of fossil-based succinic acid can deter industries from adopting bio-based alternatives, leading to slower adoption rates for sustainable products. This reluctance can stifle innovation and investment in bio-based production technologies. The market for succinic acid is experiencing oversupply issues, particularly in low-demand sectors like automotive and consumer products drives the growth of the market.
The COVID-19 pandemic significantly impacted the succinic acid market, disrupting supply chains and reducing demand across key sectors such as automotive, consumer products, and pharmaceuticals. Lockdowns and movement restrictions led to factory closures and halted production, resulting in decreased sales and revenue for manufacturers. However, as industries gradually reopened, a resurgence in demand for succinic acid, particularly bio-based variants, is anticipated.
The bio-based succinic acid segment is expected to be the largest during the forecast period
The bio-based succinic acid is expected to be the largest during the forecast period owing to the rising awareness of environmental issues and the shift towards sustainability are driving demand for bio-based succinic acid. As consumers and industries seek eco-friendly alternatives to petrochemical products, bio-succinic acid is gaining traction across various applications, including pharmaceuticals, food, personal care, and bioplastics.
The flavor enhancer segment is expected to have the highest CAGR during the forecast period
The flavor enhancer segment is expected to have the highest CAGR during the forecast period due to its non-toxic and antimicrobial properties. This aligns with health trends and supports the growth of bio-based succinic acid, a sustainable option. Manufacturers can differentiate their products by using succinic acid as a flavor enhancer, attracting consumers seeking innovative food options.
Europe is projected to hold the largest market share during the forecast period the rising healthcare and agricultural sectors in the region. Europe is expected to witness a stagnant product demand due to the growing preference for bio-based products among consumers as a drop-in replacement. In Europe, succinic acid is extensively used in the personal care & cosmetics industry. The strong presence of aircraft manufacturers in various parts of Germany and the U.K. has led to the growth of the aerospace sector.
North America is projected to witness the highest CAGR over the forecast period attributed to the presence of various opportunities to build and expand new production facilities in the region. The production of succinic acid from the microbial conversion of renewable feedstock has piqued interest in North America as a means to achieve sustainable development in this era of petroleum scarcity.
Key players in the market
Some of the key players in Succinic Acid market include Anhui Sunsing Chemicals, BASF SE, Corbion N.V., Dow Chemicals, Ernesto Ventos S.A., Gadiv Petrochemical Industries Ltd, GC Innovation America, Kawasaki Kasei Chemicals Ltd, Linyi Lixing Chemical Co. Ltd, Mitsubishi Chemical Corporation, Myriant, Nippon Shokubai, Novomer Inc, Parchem, Reverdia, Succinity Gmbh and The Chemical Company
In September 2024, Dow announced the introduction of its first bio-circular product* for the flooring industry, an addition to the ENGAGE(TM) REN Polyolefin Elastomers (POE) product portfolio. The flooring innovation* will be used in the manufacturing of carpet tile backing to provide dimensional stability and adhesion support for fibers.
In July 2024, BASF has introduced Haptex(R) 4.0, sustainable synthetic leather that aims to address environmental concerns associated with traditional synthetic leathers. This innovative product is designed to meet the growing demand for eco-friendly materials in the fashion and automotive industries.
In July 2024, BASF and 'Pragati' extends full transparency & traceability to bio-based footwear solutions with SuCCESS code. This initiative focuses on enhancing sustainability within the footwear industry by ensuring that castor oil and its derivatives