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市場調査レポート
商品コード
1738803
バイオベースプロピレングリコールの世界市場規模:用途別、エンドユーザー別、地域範囲別および予測Global Biobased Propylene Glycol Market Size By Application (Solvent, Chemical Intermediates, Unsaturated Polyester Resin, Antifreeze & Coolant), By End-User (Cosmetics, Pharmaceuticals, Food & Beverage), By Geographic Scope And Forecast |
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バイオベースプロピレングリコールの世界市場規模:用途別、エンドユーザー別、地域範囲別および予測 |
出版日: 2025年05月06日
発行: Verified Market Research
ページ情報: 英文 202 Pages
納期: 2~3営業日
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バイオベースプロピレングリコール市場規模は、2024年に45億1,000万米ドルと評価され、2026~2032年にかけてCAGR 4.4%で成長し、2032年には63億6,000万米ドルに達すると予測されます。
バイオベースプロピレングリコール(バイオベースPG)は、従来型プロピレングリコールに代わる再生可能な代替品です。
バイオベースプロピレングリコールは、植物由来の糖類や植物油などの再生可能資源から生産されます。
この種のPGは、水素化分解として知られるプロセスを経て製造されます。このプロセスでは、バイオディーゼル製造の製品別や植物由来のグリセリンを、高温高圧下で水素にさらします。
この反応により、グリセリンはバイオベースのプロピレングリコールに変換されます。バイオベースのPGは、再生可能な資源に由来し、化石燃料への依存を大幅に減らすことができるため、従来型PGよりもサステイナブル選択肢を記載しています。
この方法は、環境意識の高まりと、より環境に優しくサステイナブル産業プラクティスを目指す動きと一致しています。
世界のバイオベースプロピレングリコール市場を形成している主要市場力学は以下の通りです。
持続可能性への懸念と環境規制:環境の持続可能性に関する意識の高まりに伴い、消費者や政府は従来型石油ベースのプロピレングリコール(PG)生産による影響を精査しています。石油ベースのPGの抽出と加工は、温室効果ガスの排出と環境悪化の原因となるため、よりサステイナブル代替品へのシフトが促されています。植物の糖のような再生可能な原料から得られるバイオベースのPGは、これらの懸念に効果的に対処する、よりエコフレンドリー選択肢として浮上しています。温室効果ガスの排出削減や廃棄物管理の改善を目的とした環境規制の強化は、バイオベースPGの採用をさらに後押ししています。こうした規制は、世界の持続可能性の目標に沿い、よりエコフレンドリー生産方法に移行するための説得力のある事例を産業に生み出します。
エコフレンドリー製品に対する需要の高まり:持続可能性に向けた動向は、化粧品、医薬品、飲食品など様々なセグメントでエコフレンドリー製品に対する需要の高まりにつながっています。バイオベースPGは、持続可能でエコフレンドリー製品に対する消費者の嗜好の高まりに合致しています。バイオベースPGを配合することで、メーカーは環境意識の高い消費者にアピールし、持続可能性を重視した製品ラインを開発することができます。この需要は、環境への影響を最小限に抑え、企業の社会的責任を強化する製品への明確なシフトとともに、市場力学を再構築しています。
バイオベースPGの性能上の利点:バイオベースPGは、石油ベースPGに匹敵する、場合によってはそれを上回る性能特性を発揮する能力が認められています。バイオベースPGは、さまざまな用途に必要な基本特性を維持しながら、純度の向上やアレルゲンの可能性の低減など、その他の特典を記載しています。このような性能上の利点により、バイオベースPGは、持続可能性と高い製品品質の両立を目指すメーカーにとって魅力的な選択肢となっています。バイオベースPGの開発は、従来型PGの性能基準を満たすだけでなく、全体的な環境と健康上の利益にも貢献します。
バイオベース産業に対する政府の支援:バイオベース製品の導入が進むにつれ、多くの政府が税制優遇措置、助成金、補助金などの支援策を実施しています。こうした財政支援は、バイオベース代替品への移行に伴う経済的負担を軽減し、産業のイノベーションを刺激することを目的としています。生産コストを引き下げ、バイオベースPGの競合を高めることで、政府の施策はメーカーにバイオベースのソリューションへの投資と採用を促す上で重要な役割を果たしています。
技術の進歩:最近の発酵とバイオコンバージョン技術の進歩により、バイオベースPG生産の効率と費用対効果が大幅に改善されました。生産技術の向上は生産量の増加とコスト削減につながり、バイオベースPGの普及をより現実的な選択肢にしています。こうした技術革新は、生産能力を拡大するだけでなく、バイオベースPGの価格を引き下げる可能性もあり、さまざまな産業での採用をさらに後押ししています。
用途の拡大:バイオベースPGは、バイオプラスチック、潤滑油、パーソナルケア製品の生産に新たな役割を果たすなど、従来型用途以外の用途も見いだされつつあります。このような新しいセグメントへの多様化は、バイオベースPGの市場の可能性を広げ、さらなる成長機会を開きます。産業がサステイナブル解決策をますます求める中、バイオベースPGは様々な用途で重要な役割を果たし、よりサステイナブル循環型経済に貢献する態勢を整えています。
主要課題
コスト高:バイオベースのプロピレングリコールは、従来型石油ベースのPGに比べて製造コストが高いです。これは、バイオベースのPG生産に必要な先進的技術と特殊なプロセスによるところが大きいです。厳しい利益率で経営しているメーカーにとって、バイオベースPGのコスト高が採用の大きな障壁となっています。特にコスト変動に敏感で、より高価な代替品への投資に消極的な企業にとっては、高価格帯がその魅力を制限しています。
限られた生産能力:バイオベースのPG施設は、従来型PG生産の確立されたインフラと比較して、生産能力の制約に直面しています。バイオベースPGの生産規模は比較的小さいため、大規模な需要に対応することが難しいなど、サプライチェーンの課題につながる可能性があります。このような生産能力の限界は、バイオベースPGの普及を妨げ、供給に矛盾を生じさせ、メーカーがバイオベースPGを主成分として信頼することを困難にします。
技術的課題と原料の入手可能性:バイオベースPGの生産には、複雑なプロセスと特殊な技術が必要であり、その実現は困難です。さらに、植物由来の糖類など、サステイナブル原料の安定供給確保もハードルとなります。これらの原料の入手可能性と品質は変動する可能性があり、バイオベースPG生産の安定性と拡大性に影響を与えます。こうした技術的課題を克服し、信頼性の高い原料供給を確保することは、バイオベースPGの長期的な実行可能性にとって極めて重要です。
認識とインフラの欠如:バイオベースPGの利点や用途に関する消費者や製造業者の認識不足。利害関係者は、その利点を明確に理解することなく、既存の石油系代替品からの切り替えをためらうため、この認識不足はバイオベースPGの採用を遅らせる可能性があります。さらに、サステイナブル原料の収集と加工に必要なインフラは、すべての地域で一様に整備されているわけではないため、サプライチェーンが複雑化し、特定の地域でのバイオベースPGの利用が制限されています。
厳しい規制と認証:バイオベースPGは、その安全性と環境の持続可能性を確保するために、さまざまな規制や認証を遵守しなければならないです。これらの認証を取得するプロセスは長く複雑であるため、バイオベースPGを市場に導入しようとするメーカーにとっては難題となります。規制要件に対応し、必要な認可を確保することは、製品の上市を遅らせ、バイオベースPGの総コストを押し上げる可能性があります。
既存企業との競合:従来型PG市場は、充実した生産インフラと広範な流通網の恩恵を受ける既存企業が支配的です。こうした既存企業は、既存システムの惰性と、新技術への転換に必要な多額の投資のために、バイオベースの代替品の採用に時間がかかる可能性があります。その結果、バイオベースPGは、市場に固着し変化に強い従来型PGメーカーとの厳しい競合に直面することになります。
主要動向
コスト競合の重視:メーカーは、バイオベースのプロピレングリコール(PG)のコスト競合を高める戦略を積極的に追求しています。これには発酵技術の革新が含まれ、効率と収率を向上させることで生産コストの削減を目指します。さらに、原料の利用を最適化することで、廃棄物を最小限に抑え、原料に関連する費用を削減することができます。生産能力が拡大すれば、規模の経済がコストをさらに押し下げ、バイオベースのPGは、従来型石油ベースのPGに比べて、より入手しやすく競合ものになります。
バイオリファイナリーの統合:バイオベースのPG生産を既存のバイオリファイナリーに統合すること。このアプローチでは、バイオ燃料製造のために既に整備されているインフラやプロセスを活用し、製品別や廃棄物の流れを効率的に利用することができます。バイオベースのPGをバイオリファイナリーの操業に組み込むことで、メーカーはプロセス全体の効率を高め、コストを削減し、操業の持続可能性を高めることができます。この統合はまた、資源利用を最大化し、廃棄物を最小化し、より循環的でサステイナブル生産モデルに貢献します。
第二世代原料の開発:第二世代原料の開発がますます重視されています。こうした代替物には、非食用作物、農業廃棄物、廃水処理プロセスからの製品別などが含まれます。こうした原料を利用することで、食糧生産との競合が緩和されるだけでなく、従来型農業資源への依存を減らすことでバイオベースPGの持続可能性が高まります。このような第二世代原料へのシフトは、バイオベースPGをより環境にやさしく、資源効率に優れたものにするための大きな進歩です。
新たな用途への拡大:バイオベースPGは、従来型用途にとどまらず、さまざまな新規用途が検討されています。これには、バイオベースのポリウレタン・フォームや高性能潤滑油への配合、さらにはバイオ燃料の添加剤としての可能性などが含まれます。こうした新たな用途への拡大は、バイオベースPGの多用途性と可能性を浮き彫りにし、さまざまな産業における成長と革新の機会を記載しています。用途を多様化することで、バイオベースPGはより幅広い市場のニーズに対応し、新たな顧客層を惹きつけることができます。
サプライチェーンを通じた透明性と持続可能性:バイオベースPGのサプライチェーン全体を通じて、透明性と持続可能性を確保することがますます重視されるようになっています。これには、原料の原産地の追跡、製造プロセスにおける環境への影響の最小化、バイオベースPGの真の持続可能性の利点を実証するためのライフサイクル評価の実施などが含まれます。このようなプラクティスを採用することで、メーカーは消費者や利害関係者との信頼を築き、従来型代替品と比較してバイオ由来PGの環境的・社会的メリットを強調することができます。
地域の生産拠点:バイオベースPGの需要が伸び続ける中、地域的な生産拠点が出現する可能性が高いです。こうしたハブは、地域市場のニーズに応え、輸送コストを削減し、特定地域における原料供給に関する課題に対処します。地域に生産拠点を開発することで、サプライチェーンの効率を向上させ、地域の経済発展を促進し、バイオベースPGのより安定的かつ迅速な供給を確保することができます。生産拠点を分散化することで、製造業者は地域の需要によりよく対応し、物流の課題をより効果的に解決することができます。
Biobased Propylene Glycol Market size was valued at USD 4.51 Billion in 2024 and is projected to reach USD 6.36 Billion by 2032, growing at a CAGR of 4.4% from 2026 to 2032.
Biobased propylene glycol (bio-based PG) is a renewable alternative to traditional propylene glycol.
Bio-based propylene glycol is produced from renewable resources, such as plant-based sugars or vegetable oils.
This form of PG is created through a process known as hydrogenolysis. In this process, glycerin, which is a byproduct of biodiesel production or derived from plant materials, is subjected to hydrogen under high temperature and pressure.
This reaction converts glycerin into bio-based propylene glycol. Bio-based PG offers a more sustainable alternative to traditional PG, as it is derived from renewable sources and can significantly reduce reliance on fossil fuels.
This method aligns with increasing environmental awareness and the push towards greener, more sustainable industrial practices.
The key market dynamics that are shaping the global Biobased Propylene Glycol Market include:
Sustainability Concerns and Environmental Regulations: With increasing awareness about environmental sustainability, consumers and governments are scrutinizing the impact of traditional, petroleum-based propylene glycol (PG) production. The extraction and processing of petroleum-based PG contribute to greenhouse gas emissions and environmental degradation, prompting a shift towards more sustainable alternatives. Bio-based PG, derived from renewable feedstocks like plant sugars, emerges as a greener option, addressing these concerns effectively. Stricter environmental regulations aimed at reducing greenhouse gas emissions and improving waste management further incentivize the adoption of bio-based PG. These regulations create a compelling case for industries to transition to more eco-friendly production practices, aligning with global sustainability goals.
Growing Demand for Eco-Friendly Products: The trend towards sustainability has led to a heightened demand for eco-friendly products across various sectors, including cosmetics, pharmaceuticals, and food and beverages. Bio-based PG aligns with this growing consumer preference for sustainable and environmentally responsible products. By incorporating bio-based PG into their formulations, manufacturers can appeal to eco-conscious consumers and develop product lines that emphasize sustainability. This demand is reshaping market dynamics, with a clear shift towards products that minimize environmental impact and enhance corporate social responsibility.
Performance Benefits of Bio-Based PG: Bio-based PG is recognized for its ability to deliver performance characteristics comparable to, and in some cases exceeding, those of petroleum-based PG. It maintains the essential properties needed for various applications while offering additional benefits such as improved purity and reduced allergen potential. These performance advantages make bio-based PG an appealing choice for manufacturers seeking to balance sustainability with high product quality. The development of bio-based PG not only meets the performance standards of traditional PG but also contributes to overall environmental and health benefits.
Government Support for Bio-Based Industries: Increasing adoption of bio-based products, many governments are implementing supportive measures such as tax incentives, grants, and subsidies. These financial supports are designed to reduce the economic burden of transitioning to bio-based alternatives and stimulate innovation in the industry. By lowering production costs and making bio-based PG more competitive, government policies play a crucial role in encouraging manufacturers to invest in and adopt bio-based solutions.
Technological Advancements: Recent advancements in fermentation and bioconversion technologies have significantly improved the efficiency and cost-effectiveness of bio-based PG production. Enhanced production techniques have led to increased output and reduced costs, making bio-based PG a more viable option for widespread use. These technological innovations are not only expanding production capacities but also potentially lowering the prices of bio-based PG, further driving its adoption in various industries.
Expanding Applications: Bio-based PG is finding applications beyond its traditional uses, with emerging roles in the production of bioplastics, lubricants, and personal care products. This diversification into new sectors broadens the market potential for bio-based PG and opens up additional growth opportunities. As industries increasingly seek sustainable solutions, bio-based PG is poised to play a key role in various applications, contributing to a more sustainable and circular economy.
Key Challenges
Higher Cost: High cost for the production of bio-based propylene glycol compared to the traditional petroleum-based PG. This is largely due to the advanced technologies and specialized processes required for bio-based PG production. For manufacturers operating with tight profit margins, the elevated cost of bio-based PG is a significant barrier to adoption. The higher price point limits its appeal, particularly for companies that are sensitive to cost fluctuations and are reluctant to invest in more expensive alternatives.
Limited Production Capacity: Bio-based PG facilities face constraints in production capacity compared to the well-established infrastructure of traditional PG production. The relatively small scale of bio-based PG production can lead to supply chain challenges, including difficulties in meeting large-scale demand. This limitation in production capacity can hinder the widespread adoption of bio-based PG and create inconsistencies in supply, making it challenging for manufacturers to rely on bio-based PG as a primary ingredient.
Technical Challenges and Feedstock Availability: The production of bio-based PG involves complex processes and specialized technology that is challenging to implement. Additionally, securing a consistent supply of sustainable feedstocks, such as plant-based sugars, presents another hurdle. The availability and quality of these feedstocks can fluctuate, impacting the stability and scalability of bio-based PG production. Overcoming these technical challenges and ensuring a reliable feedstock supply are critical for the long-term viability of bio-based PG.
Lack of Awareness and Infrastructure: Lack of awareness among the consumers and manufacturers regarding the benefits and applications of bio-based PG. This lack of awareness can slow the adoption of bio-based PG, as stakeholders are hesitant to switch from established petroleum-based alternatives without a clear understanding of the advantages. Furthermore, the infrastructure needed to collect and process sustainable feedstocks is not uniformly developed across all regions, complicating the supply chain and limiting the availability of bio-based PG in certain areas.
Stringent Regulations and Certifications: Bio-based PG must adhere to a variety of regulations and certifications to ensure its safety and environmental sustainability. The process of obtaining these certifications can be both lengthy and complex, posing a challenge for manufacturers seeking to introduce bio-based PG to the market. Navigating regulatory requirements and securing the necessary approvals can delay product launches and add to the overall cost of bio-based PG.
Competition from Established Players: The traditional PG market is dominated by established players who benefit from well-developed production infrastructure and extensive distribution networks. These incumbents may be slow to adopt bio-based alternatives due to the inertia of existing systems and the significant investment required to switch to new technologies. As a result, bio-based PG faces stiff competition from traditional PG producers who are entrenched in the market and resistant to change.
Key Trends
Focus on Cost Competitiveness: Manufacturers are actively pursuing strategies to enhance the cost competitiveness of bio-based propylene glycol (PG). This includes innovations in fermentation technologies, which aim to lower production costs by increasing efficiency and yield. Additionally, optimizing feedstock utilization helps to minimize waste and reduce expenses associated with raw materials. As production capacities expand, economies of scale can further drive down costs, making bio-based PG more accessible and competitive compared to traditional petroleum-based PG.
Integration of Biorefineries: The integration of bio-based PG production into existing biorefineries. This approach leverages the infrastructure and processes already in place for biofuel production, allowing for the efficient use of co-products and waste streams. By incorporating bio-based PG into biorefinery operations, manufacturers can improve overall process efficiency, reduce costs, and enhance the sustainability of their operations. This integration also maximizes resource utilization and minimizes waste, contributing to a more circular and sustainable production model.
Development of Second-Generation Feedstocks: The growing emphasis on developing second-generation feedstocks. These alternatives include non-food crops, agricultural waste, and byproducts from wastewater treatment processes. Utilizing such feedstocks not only alleviates competition with food production but also enhances the sustainability of bio-based PG by reducing reliance on conventional agricultural resources. This shift towards second-generation feedstocks represents a significant advancement in making bio-based PG more environmentally friendly and resource-efficient.
Expansion into New Applications: Bio-based PG is being explored for a variety of novel applications beyond its traditional uses. This includes its incorporation into bio-based polyurethane foams, high-performance lubricants, and even as a potential additive in biofuels. The expansion into these new applications highlights the versatility and potential of bio-based PG, offering opportunities for growth and innovation in various industries. By diversifying its applications, bio-based PG can address a broader range of market needs and attract new customer segments.
Transparency and Sustainability Throughout the Supply Chain: The increasing emphasis on ensuring transparency and sustainability throughout the bio-based PG supply chain. This involves tracking the origins of feedstocks, minimizing the environmental impact of production processes, and conducting lifecycle assessments to demonstrate the true sustainability benefits of bio-based PG. By adopting these practices, manufacturers can build trust with consumers and stakeholders, and highlight the environmental and social benefits of bio-based PG compared to traditional alternatives.
Regional Production Hubs: As the demand for bio-based PG continues to grow, regional production hubs are likely to emerge. These hubs will cater to local market needs, reduce transportation costs, and address challenges related to feedstock availability in specific regions. Establishing regional production facilities can improve supply chain efficiency, enhance local economic development, and ensure a more stable and responsive supply of bio-based PG. By decentralizing production, manufacturers can better meet regional demands and navigate logistical challenges more effectively.
Here is a more detailed regional analysis of the global Biobased Propylene Glycol Market:
Asia Pacific
The Asia-Pacific region is poised for significant growth in the global bio-based propylene glycol market, driven by the expansion of end-user industries such as construction, transportation, and marine is a major catalyst.
Increasing usage of bio-based propylene glycol because of its low freezing point. It is an environmentally friendly and sustainable process.
The rapid development of the building and construction sector in emerging countries such as China, India, and South Korea.
As these countries continue to industrialize and urbanize, there is a growing demand for sustainable and bio-based solutions. The rising emphasis on environmental sustainability and stringent regulations on petroleum-based products are pushing industries towards greener alternatives.
Additionally, the pharmaceutical-grade applications of bio-based propylene glycol are seeing increased demand, driven by its use in a range of products from cosmetics to food and beverages.
Large firms are investing in advanced manufacturing technologies to commercialize bio-based chemicals, aiming for long-term sustainability. This trend is creating lucrative market opportunities as companies seek to align with environmental and regulatory standards.
The rising disposable income, evolving consumer preferences, and heightened awareness of the benefits of bio-based products are also contributing to the market's growth in the Asia-Pacific region.
This region's focus on sustainability and environmental responsibility is anticipated to further drive the adoption of bio-based propylene glycol across various industries.
North America
North America is anticipated to witness the fastest growth in the global bio-based propylene glycol market during the forecast period.
The increasing demand for sustainable and eco-friendly products is a key driver, supported by stringent regulations that promote the use of green ingredients.
The region's robust market infrastructure, technological advancements, and presence of key players in bio-based propylene glycol production further strengthen its position.
North America benefits from favorable government policies that incentivize the adoption of environmentally friendly products.
This region is characterized by a growing consumer base that prioritizes sustainability, aligning well with the market's shift toward bio-based alternatives.
Additionally, North America, alongside Europe, is expected to lead the market due to stringent regulations concerning carbon emissions, greenhouse gases, and sustainability initiatives.
The U.S. and Brazil, two significant producers of corn and soy, play a crucial role in securing the raw materials necessary for bio-based feedstock production.
This regional advantage ensures a stable supply chain for bio-based propylene glycol, further supporting North America's market leadership.
The combination of regulatory support, technological innovation, and resource availability positions North America as a pivotal player in the global bio-based propylene glycol market.
The Global Biobased Propylene Glycol Market is segmented on the basis of Application, End-User, And Geography.
Based on Application, the Global Bio-Based Propylene Glycol Market is bifurcated into Solvents, Chemical Intermediates, Unsaturated Polyester Resin, and Antifreeze & Coolant. The antifreeze & coolant segment showing significant growth in the global bio-based propylene glycol market. Bio-based propylene glycol (PG) is emerging as an environmentally friendly alternative to traditional coolants, aligning with the increasing demand for sustainable products. Unlike conventional coolants derived from petroleum, bio-based PG is made from renewable resources, making it a more eco-conscious choice. In terms of performance, bio-based PG delivers comparable freeze protection and heat transfer properties to those of traditional coolants. This ensures that it meets the essential functional requirements of effective cooling while supporting sustainability goals.
Based on End-User, the Global Bio-Based Propylene Glycol Market is bifurcated into Cosmetics, Pharmaceuticals, and Food & Beverage. The Pharmaceuticals segment showing significant growth in the Global Bio-Based Propylene Glycol Market owing to the increasing demand for bio-based and natural ingredients in the pharmaceutical industry aligns well with the properties of bio-based propylene glycol (PG). Its low toxicity and biocompatibility make bio-based PG an ideal choice for various pharmaceutical applications, where safety and compatibility are crucial. Additionally, stringent regulations within the pharmaceutical sector often favor the use of traceable and sustainable ingredients. Bio-based PG, with its eco-friendly and renewable origins, meets these regulatory requirements, further promoting its adoption in pharmaceutical formulations.
The "Global Biobased Propylene Glycol Market" study report will provide valuable insight with an emphasis on the global market including some of the major players such as DuPont (DuPont de Nemours, Inc.), Braskem S.A., PTT Global Chemical Public Company Limited, Dow, Inc., Metabolic Explorer, BioAmber, Inc., Reverdia, Susterra, Inc., Corbion Purac, Myriant Corporation.
Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.