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市場調査レポート
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建設用ポリマー市場の2030年までの予測:ポリマータイプ別、建設活動別、用途別、エンドユーザー別、地域別の世界分析Construction Polymers Market Forecasts to 2030 - Global Analysis By Polymer Type (Thermosetting Plastic, Thermoplastic and Other Polymer Types), Construction Activity (New Construction and Renovation), Application, End User and By Geography |
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建設用ポリマー市場の2030年までの予測:ポリマータイプ別、建設活動別、用途別、エンドユーザー別、地域別の世界分析 |
出版日: 2025年01月01日
発行: Stratistics Market Research Consulting
ページ情報: 英文 200+ Pages
納期: 2~3営業日
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Stratistics MRCによると、建設用ポリマーの世界市場は2024年に1,564億2,000万米ドルとなり、予測期間中のCAGRは7.5%で成長し、2030年までには2,414億米ドルに達すると予測されています。
建設用ポリマーは、建築・建設分野で構造物の有効性、寿命、性能を向上させるために頻繁に使用される多目的材料です。建設用ポリマーは、軽量で引張強度が高く、化学物質や環境条件に強いことで知られています。これらの特性は、エネルギー効率の向上とメンテナンスコストの削減に役立ちます。
欧州化学工業協議会(CEFIC)によると、建設部門はポリマーの最大消費者のひとつであり、欧州におけるポリマー総消費量の約20%を占めています。CEFICは、断熱材や配管などの建設用途におけるポリマーの使用が、エネルギー効率と持続可能性に寄与することを強調しています。
環境に優しい材料への関心の高まり
建設業界では、環境への悪影響を軽減するため、持続可能な手法を導入するよう求められています。建設用ポリマーは、再生不可能な資源、特にバイオベースやリサイクル可能なものへの依存を減らすことができるため、ますます人気が高まっています。LEED(Leadership in Energy and Environmental Design)とBREEAM(Building Research Establishment Environmental Assessment Method)は、これらの資源を利用して取得できる2つのグリーンビルディング認証です。さらに、建設用ポリマーの採用は、減税や補助金を通じて持続可能な材料の使用を促進する政府や組織によっても後押しされています。
原材料の価格変動
建設用ポリマーは、そのほとんどが天然ガスや原油などの石油化学製品から作られており、製造コストはこれらの原材料の価格変動に大きく影響されます。この変動要因には、サプライチェーンの混乱、地政学的緊張、世界の需給ダイナミクスの変化などがあります。例えば、2022年のロシアとウクライナの紛争は、エネルギーと原材料価格の上昇を引き起こし、建設用ポリマーを含む多くの産業に影響を与えました。さらに、原材料価格の変動は、メーカーが安定した価格設定を維持することを困難にし、潜在的な購入者がこれらの材料を大規模に使用する意欲をそぐ可能性があります。
持続可能なグリーン建材への関心の高まり
気候変動対策への世界の取り組みが強化されるにつれ、建設業界では持続可能な手法や資材の重要性がますます高まっています。バイオベースやリサイクル可能な建設用ポリマーは、こうした動向から大きな可能性を秘めています。トウモロコシのデンプンやサトウキビのような再生可能資源を原料とするバイオプラスチックのような環境に優しい材料は、高分子化学の進歩によって可能になりました。さらに、LEEDやBREEAMのような、持続可能な材料の使用を重視するグリーンビルディング認証プログラムも、政府や団体によって導入されつつあります。
建築分野における技術開発
一部のポリマーは3Dプリンティングやモジュール建築に使用されていますが、グラフェンをベースとした複合材料や自己修復特性を持つスマート材料のような新材料は、一部の用途でポリマーに取って代わる可能性があります。例えば、グラフェンで強化されたセメントは優れた強度と耐久性を発揮し、インフラプロジェクトにおけるポリマー改質材料の課題となっています。3Dプリンティング、プレハブ化、ナノテクノロジーといった建設技術の急速な進歩により、従来の建設用ポリマーの使用は脅威にさらされています。さらに、こうした技術的混乱に対応できない企業は、競争優位性を失う危険性があります。
建設用ポリマーの市場は、COVID-19の大流行によって大きな影響を受けました。その主な理由は、サプライチェーンの中断、労働力不足、操業停止によって建設活動に大規模な混乱が生じたためです。接着剤、シーリング材、断熱材などの建設用ポリマーのニーズは、多数の不動産やインフラプロジェクトの延期や中止の結果、一時的に減少しました。さらに、原料価格の変動や物流の困難さによって、ポリマー・メーカーの生産・流通問題はさらに悪化しました。これは、建設活動の再開、インフラプロジェクトに対する政府投資の増加、パンデミック後の建築戦略における持続可能でエネルギー効率の高い材料の重視の高まりなど、多くの要因によるものです。
パイプ・継手分野は予測期間中最大になる見込み
パイプ・継手分野は、予測期間中、建設用ポリマー市場で最大のシェアを占めると予測されます。この分野では、排水、給水、配管システムに使用されるポリマーベースの材料を幅広くカバーしています。この分野では、ポリ塩化ビニル(PVC)、ポリプロピレン(PP)、ポリエチレン(PE)が、費用対効果、耐腐食性、耐久性、施工の容易さなどの理由から、主要材料として使用されています。これらのポリマーは寿命が長く、メンテナンスの必要性が少ないため、住宅と商業施設の両方の建設プロジェクトで広く使用されています。さらに、持続可能で効果的なインフラ整備の必要性が高まった結果、この分野は成長しています。
予測期間中、住宅・不動産建設分野が最も高いCAGRが見込まれる
建設用ポリマー市場では、住宅不動産建設分野が最も高いCAGRで成長すると予測されます。集合住宅、一戸建て住宅、集合住宅などの住宅建設は、住宅不動産建設セグメントに含まれます。さらに、柔軟性、耐久性、環境要因への耐性を備えた材料へのニーズが、この市場における建設用ポリマーの需要を押し上げています。ポリ塩化ビニル(PVC)のようなポリマーは、その手頃な価格と性能から、窓枠、屋根材、配管システムなどの用途で頻繁に利用されています。
米国が主な貢献国であることから、北米地域が建設用ポリマー市場で最大のシェアを占めると予想されます。確立された建設産業、環境に優しい建築材料への需要の高まり、ポリマー製造技術の開発がこの地域の主な推進力となっています。インフラ、商業、住宅プロジェクトにおける床材、断熱材、屋根材へのポリマーの使用増加が、北米市場の拡大を支えています。さらに、グリーンビルディング技術やエネルギー効率の高い建築ソリューションの人気の高まりも、高性能建設用ポリマーのニーズに拍車をかけています。
予測期間中、建設用ポリマー市場はアジア太平洋地域で最も高いCAGRが見込まれます。この力強い拡大の背景には、都市化の進展、インフラ整備の急速な進展、韓国、中国、インドなどの国々における環境に優しい建築材料へのニーズの高まりがあります。さらに、ポリ塩化ビニル(PVC)、ポリエチレン(PE)、ポリプロピレン(PP)など、屋根材、床材、防水材、断熱材に幅広く利用される建設用ポリマーの世界のニーズは、この地域の建設部門の成長に大きく影響されています。
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.
According to Stratistics MRC, the Global Construction Polymers Market is accounted for $156.42 billion in 2024 and is expected to reach $241.40 billion by 2030 growing at a CAGR of 7.5% during the forecast period. Construction polymers are multipurpose materials that are frequently used in the building and construction sector to improve the effectiveness, longevity, and performance of structures. Construction polymers are well-known for being lightweight, having a high tensile strength, and being resistant to chemicals and environmental conditions. These properties help to improve energy efficiency and lower maintenance costs.
According to the European Chemical Industry Council (CEFIC), the construction sector is one of the largest consumers of polymers, accounting for approximately 20% of the total polymer consumption in Europe. CEFIC highlights that the use of polymers in construction applications, such as insulation and piping, contributes to energy efficiency and sustainability.
Growing interest in eco-friendly materials
There is pressure on the construction sector to implement sustainable practices in order to lessen its negative effects on the environment. Construction polymers are becoming more and more popular because they can lessen reliance on non-renewable resources, particularly bio-based and recyclable varieties. LEED (Leadership in Energy and Environmental Design) and BREEAM (Building Research Establishment Environmental Assessment Method) are two green building certifications that can be obtained with the aid of these resources. Moreover, the adoption of construction polymers is also being fueled by governments and organizations that promote the use of sustainable materials through tax breaks and subsidies.
Price volatility for raw materials
Construction polymers are mostly made from petrochemical products like natural gas and crude oil, and their production costs are greatly affected by the volatility of these raw materials. Some of the factors that contribute to this volatility include supply chain disruptions, geopolitical tensions, and changes in global demand-supply dynamics; for instance, the 2022 conflict between Russia and Ukraine caused energy and raw material prices to rise, which affected a number of industries, including construction polymers. Additionally, the volatility of raw material prices makes it difficult for manufacturers to maintain stable pricing, which can discourage potential buyers from using these materials on a large scale.
Growing interest in sustainable and green building materials
Sustainable practices and materials are becoming more and more important in the construction industry as global efforts to combat climate change intensify. Bio-based and recyclable building polymers have a big chance owing to this trend. Environmentally friendly materials, like bioplastics derived from renewable resources like corn starch and sugarcane, have been made possible by advancements in polymer chemistry. Furthermore, green building certification programs like LEED and BREEAM, which emphasize the use of sustainable materials, are being introduced by governments and organizations.
Technological developments in the building sector
While some polymers are used in 3D printing and modular construction, new materials like graphene-based composites and smart materials with self-healing properties could potentially replace polymers in some applications. For instance, graphene-enhanced cement offers superior strength and durability, challenging polymer-modified materials in infrastructure projects. The traditional use of construction polymers is under threat from rapid advancements in construction technologies, such as 3D printing, prefabrication, and nanotechnology. Moreover, businesses that do not adjust to these technological disruptions risk losing their competitive advantage.
The market for construction polymers was significantly impacted by the COVID-19 pandemic, mainly because of the extensive disruptions in construction activities brought on by supply chain interruptions, labor shortages, and lockdowns. The need for construction polymers like adhesives, sealants, and insulation materials temporarily decreased as a result of the postponement or cancellation of numerous real estate and infrastructure projects. Furthermore, production and distribution problems for polymer manufacturers were made worse by shifting raw material prices and logistical difficulties. This was due to a number of factors, including the resumption of construction activities, increased government investments in infrastructure projects, and a growing emphasis on sustainable and energy-efficient materials in post-pandemic building strategies.
The Pipes & Fittings segment is expected to be the largest during the forecast period
The Pipes & Fittings segment is anticipated to hold the largest share in the Construction Polymers Market over the course of the estimation period. This section covers a range of polymer-based materials used in drainage, water supply, and plumbing systems. This segment uses polyvinyl chloride (PVC), polypropylene (PP), and polyethylene (PE) as key materials because of their cost-effectiveness, corrosion resistance, durability, and ease of installation. Because of their long lifespan and minimal maintenance needs, these polymers are widely used in both residential and commercial construction projects. Moreover, this segment is growing as a result of the growing need for sustainable and effective infrastructure.
The Housing Real Estate Construction segment is expected to have the highest CAGR during the forecast period
In the construction polymers market, the housing real estate construction segment is anticipated to grow at the highest CAGR. The construction of residential structures, such as apartment complexes, single-family homes, and multi-family units, is included in the Housing Real Estate Construction segment. Additionally, the need for materials that provide flexibility, durability, and resistance to environmental factors is what drives the demand for construction polymers in this market. Because of their affordability and performance qualities, polymers like polyvinyl chloride (PVC) are frequently utilized in applications like window frames, roofing materials, and piping systems.
With the United States as the main contributor, the North American region is expected to hold the largest share of the construction polymers market. An established construction industry, rising demand for environmentally friendly building materials, and developments in polymer manufacturing technology are the main drivers of this region. The rising use of polymers in infrastructure, commercial, and residential projects-for flooring, insulation, and roofing-supports the expansion of the North American market. Furthermore, the need for high-performance construction polymers is also being fueled by the growing popularity of green building techniques and energy-efficient building solutions.
During the forecast period, the construction polymers market is expected to grow at the highest CAGR in the Asia Pacific region. This strong expansion is fueled by rising urbanization, fast infrastructure development, and a growing need for environmentally friendly building materials in nations like South Korea, China, and India. Moreover, the worldwide need for construction polymers, such as polyvinyl chloride (PVC), polyethylene (PE), and polypropylene (PP), which are extensively utilized in roofing, flooring, waterproofing, and insulation, is greatly influenced by the region's growing construction sector.
Key players in the market
Some of the key players in Construction Polymers market include Avient Corporation, Covestro, 3M Company, E.I Dupont De Nemours and Company, Formosa Plastics Corp, BASF SE, Solvay S.A., H.B. Fuller Company, Evonik Industries AG, Arkema S.A., SCG Chemicals Co., Ltd., Exxon Mobil Corporation, Croda International Plc, Reliance Industries Limited and Henkel AG & Co. KGaA.
In November 2024, High-performance polymer manufacturer Covestro (India) Private Limited has entered into a long-term power purchase agreement (PPA) with Amplus Solar Shakti Private Limited to significantly reduce its carbon footprint while enhancing operational efficiency. Under the terms of the 25-year agreement with Amplus Solar Shakti Private Limited, a subsidiary of Amplus Energy Solutions PTE Ltd, Singapore, Covestro (India) will leverage solar power to fulfil 60% of its annual energy requirements at the Greater Noida facility.
In July 2024, BASF and ENGIE signed a 7-year Biomethane Purchase Agreement (BPA). Under the BPA, ENGIE will supply BASF with 2.7 to 3.0 terawatt hours of biomethane throughout the term of the agreement. BASF uses certified biomethane at its Ludwigshafen/Germany and Antwerp/Belgium sites as a sustainable alternative to fossil raw materials in its manufacturing process.
In March 2024, 3M and HD Hyundai Korea Shipbuilding & Marine Engineering (KSOE) have signed a joint research project agreement to develop large liquid hydrogen storage tanks using Glass Bubbles from 3M - a high-strength, low-density hollow glass microsphere. The collaborative research will focus on developing a high-performance vacuum insulation system for liquified hydrogen storage and transportation.