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市场调查报告书
商品编码
1359568
光催化涂料市场 - 按类型(二氧化钛 (TiO2) 基、氧化锌 (ZnO) 基)、按基材(混凝土、玻璃、金属、塑胶、陶瓷)、按应用、按最终用途和预测,2023 年 - 2032Photocatalytic Coatings Market - By Type (Titanium Dioxide (TiO2)-Based, Zinc Oxide (ZnO)-Based), By Substrate (Concrete, Glass, Metal, Plastics, Ceramics), By Application, By End-use & Forecast, 2023 - 2032 |
由于消费者和企业对产品优势的认识不断增强,光催化涂料市场规模预计 2023 年至 2032 年复合年增长率为 9.5%。城市的快速扩张和现代化导致人们越来越关注永续性、环境品质和能源效率。光催化涂料透过改善空气品质、减少污染以及提高基础设施、交通系统和公共空间的清洁度,在解决这些问题方面发挥关键作用。它们还有助于创建自清洁表面并对抗空气污染,从而与智慧城市的目标完美契合。
此外,一些产业参与者专注于开发未来有效的解决方案,以应对日益严重的城市空气污染,同时有效加速基础设施的成长,进一步影响产业的成长。例如,2023年8月,立邦株式会社与华东师范大学、华东理工大学合作,于2023年8月启动“光催化净化涂料技术创新平台”,鼓励光催化技术的创新和应用。净化涂层技术。
光催化涂料市场分为类型、基材、应用、最终用途和区域。
就类型而言,氧化锌 (ZnO) 基光催化涂料市场预计将在 2023 年至 2032 年间获得显着增长,这主要是由于其高紫外线吸收和抗菌特性。氧化锌基光催化涂料因其减少空气污染、消除有害微生物和提供自清洁表面的能力而受到广泛欢迎。这些涂料在建筑、汽车和医疗保健等各个行业的广泛应用也将推动该领域的成长。
抗菌涂料应用领域的光催化涂料市场在 2022 年产生了可观的收入,预计到 2032 年将实现强劲增长。光催化涂料因其在光照下分解和中和细菌、病毒和真菌的能力而受到关注。 。随着全球健康问题的出现,对抑制有害微生物生长的表面和材料的需求显着飙升。光催化涂料在医疗保健设施、食品加工和公共交通以及其他卫生至关重要的领域的广泛应用将推动该领域的成长。
从地区来看,由于越来越多地采用包括光催化涂料在内的环保和永续技术,欧洲光催化涂料市场规模预计将在 2023 年至 2032 年间出现利润丰厚的成长。 COVID-19 大流行的爆发促使区域市场参与者专注于全面测试,以识别和研究光催化涂层系统对抗病毒的用途。例如,2023 年 6 月,总部位于布达佩斯的 Resysten Science and Research (Resysten) 在英国推出了其突破性的光催化涂层技术,用于大量收集空气污染气体。持续的研发合作和对永续性的高度重视也将促进市场的稳定成长。
Photocatalytic Coatings Market size is projected to depict 9.5% CAGR from 2023 to 2032, driven by the growing awareness among consumers and businesses about the product benefits. The rapid expansion and modernization of cities has led to the growing focus on sustainability, environmental quality, and energy efficiency. Photocatalytic coatings play pivotal role in addressing these concerns by improving air quality, reducing pollution, and enhancing the cleanliness of infrastructure, transportation systems, and public spaces. They also help create self-cleaning surfaces and combat air pollution for aligning perfectly with the goals of smart cities.
Furthermore, several industry players are focusing on the development of future efficient solutions to combat the rising urban air pollution while accelerating the infrastructure growth efficiently, further influencing the industry growth. For instance, in August 2023, Nippon Paint Co., Ltd., East China Normal University, and East China University of Science and Technology, launched the "Photocatalytic Purification Coating Technology Innovation Platform" in August 2023 to encourage innovations and the usage of photocatalytic purification coating technology.
The photocatalytic coatings market is segmented into type, substrate, application, end-use, and region.
With respect to type, the zinc oxide (ZnO)-based photocatalytic coatings market is anticipated to gain notable traction between 2023 and 2032 primarily due to their high UV-absorbing and antimicrobial properties. Zinc oxide-based photocatalytic coatings have gained wide popularity attributed to their ability to reduce air pollution, eliminate harmful microorganisms, and provide self-cleaning surfaces. The extensive application of these coatings in various industries, including construction, automotive, and healthcare will also propel the segment growth.
Photocatalytic coatings market from the anti-microbial coatings application segment generated considerable revenue in 2022 and is estimated to record robust growth through 2032. Photocatalytic coatings have gained prominence due to their ability to break down and neutralize bacteria, viruses, and fungi under exposure to light. In the wake of global health concerns, the demand for surfaces and materials that inhibit the growth of harmful microorganisms has significantly soared. The widespread application of photocatalytic coatings in healthcare facilities, food processing, and public transportation, among other areas where hygiene is paramount will boost the segment growth.
Regionally, the Europe photocatalytic coatings market size is projected to depict lucrative growth between 2023 and 2032 attributed to the increasing adoption of eco-friendly and sustainable technologies, including photocatalytic coatings. The onset of the COVID-19 pandemic pushed regional market participants to focus on comprehensive testing to identify and investigate the uses of photocatalytic coating systems against the virus. For instance, in June 2023, Budapest-based Resysten Science and Research (Resysten) introduced its ground-breaking photocatalytic coating technology in the U.K. for substantially collecting air-polluting gases. The ongoing R&D collaborations and the strong emphasis on sustainability will also add to steady market growth.