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到 2030 年汽车室内空气品质改善解决方案的全球市场预测:按产品类型、车型、分销管道、应用和地区进行全球分析Automotive In-Cabin Air Quality Improvement Solutions Market Forecasts to 2030 - Global Analysis by Product, Vehicle Type, Distribution Channel, Application and By Geography |
根据Stratistics MRC预测,2024年全球汽车室内空气品质改善解决方案市场规模将达到10.572亿美元,预计2030年将达到24.073亿美元,预测期内复合年增长率为14.7%。
汽车车内空气品质改善解决方案是旨在改善车内空气质量,为乘客提供舒适健康空间的系统和技术。这些解决方案的常见范例包括空气清净机、先进的过滤系统(例如 HEPA 过滤器和活性碳过滤器)、湿度控制装置、离子产生器和紫外线消毒系统。它们透过帮助去除空气中的污染物、过敏原、灰尘、细菌、病毒和气味来支持更好的呼吸系统健康和整体健康。
根据国际汽车工业协会(OICA)预测,全球整体汽车销售量将从2019年的9,000万辆下降至2020年的7,800万辆。
人们对空气污染的担忧日益加剧
对空气污染的日益关注,加速了对改善车内空气品质解决方案的需求。随着都市区污染程度的上升,消费者要求更清洁、更健康的车内环境,以保护自己免受有害颗粒物、过敏原和毒素的侵害。这导致汽车配备了先进的过滤系统、空气清净机和空气品质感测器。因此,车内空气品质解决方案的市场正在扩大,特别是在空气污染程度较高的地区,推动了创新和采用。
初始安装成本高
安装先进的座舱空气净化系统的高昂初始成本可能会限制这些解决方案的采用,特别是在註重预算的汽车领域。虽然豪华汽车受益于此类系统,但成本仍然是大众市场汽车的障碍。因此,汽车製造商可能不愿意将这些技术融入低价定价模式中,这可能会限制市场渗透率。
电动车 (EV) 的扩张
电动车 (EV) 的日益普及正在对改善车内空气环境的解决方案产生影响。配备闭合迴路内装系统的电动车需要先进的空气品质解决方案,为乘客维持健康舒适的环境。随着电动车越来越普及,对高效能空气过滤系统、清净机和湿度控制技术以确保车内空气清洁的需求不断增加。这一趋势正在引导更多汽车製造商将先进的空气品质解决方案纳入其电动车模型中。
维护要求复杂
复杂的维护要求,例如频繁更换过滤器、离子发生器清洁和紫外线消毒器维护,可能会阻止消费者采用座舱空气净化解决方案。消费者可能会因为维护这些系统需要额外的时间、精力和成本而却步。这可能会减少整体采用率,尤其是在註重预算的市场中,其中便利性和低维护成本是优先考虑的。
COVID-19 大流行提高了人们对车内空气品质和卫生的认识,并显着增加了对车内空气品质改善解决方案的需求。随着消费者越来越担心空气中的病毒和细菌,汽车製造商正在将先进的过滤系统、紫外线净化器和空气消毒器融入他们的汽车中。这种健康意识的转变预计将维持市场成长。
预计乘用车市场在预测期内将是最大的市场
随着消费者健康意识的增强,汽车製造商正在将 HEPA 过滤器、离子发生器和紫外线消毒器等技术融入他们的汽车中,以改善空气品质并减少过敏原、污染物和细菌。这种趋势在中檔到豪华汽车中尤其明显,从而带来了市场成长、技术创新以及空气净化解决方案对广大消费者的可用性的增加。
过滤系统领域预计在预测期内复合年增长率最高。
由于 HEPA 过滤器和活性碳过滤器等先进过滤技术可以去除机舱空气中的有害颗粒、过敏原和污染物,从而改善乘客的健康和舒适度,过滤系统行业将在预测期内达到最高水平。随着消费者越来越重视空气品质,汽车製造商正在为各种车型配备这些过滤系统,推动各个车辆领域空气品质解决方案的市场成长和创新。
在预测期内,北美将占据最大的市场占有率,因为人们对空气污染、过敏原和呼吸系统健康问题的认识不断提高,预计将更多地采用先进的空气过滤技术,例如车辆中的紫外线消毒器和离子发生器。此外,日益严格的环境法规和电动车 (EV) 的日益普及(需要更先进的空气净化系统)正在推动创新和市场扩张。北美消费者专注于健康和舒适,进一步加速空气净化解决方案的整合。
由于污染水平上升、健康意识不断增强以及电动车 (EV) 的普及,预计亚太地区在预测期内的复合年增长率最高。随着中国、印度和日本等国家的都市化不断提高,消费者越来越关注车内的空气质量,从而推动了对 HEPA 过滤器、离子发生器和紫外线净化器等先进过滤系统的需求不断增加。此外,该地区有关排放气体和空气品质标准的严格法规正在推动汽车製造商整合这些解决方案,进一步推动市场成长。
According to Stratistics MRC, the Global Automotive In-Cabin Air Quality Improvement Solutions Market is accounted for $1057.2 million in 2024 and is expected to reach $2407.3 million by 2030 growing at a CAGR of 14.7% during the forecast period. Automobile in-cabin air quality enhancement solutions are systems and technologies intended to improve the air quality inside car cabins, giving occupants a more comfortable and healthy atmosphere. Air purifiers, sophisticated filtration systems (such HEPA and activated carbon filters), humidity control units, ionizers, and UV light-based sterilization systems are common examples of these solutions. They support improved respiratory health and general well-being by assisting in the removal of airborne pollutants, allergens, dust, bacteria, viruses, and smells.
According to the International Organization of Motor Vehicle Manufacturers (OICA), overall global automotive sales dropped from 90 million units in 2019 to 78 million units in 2020.
Rising Concerns over Air Pollution
Rising concerns over air pollution have accelerated the demand for automotive in-cabin air quality improvement solutions. As pollution levels increase in urban areas, consumers seek cleaner, healthier cabin environments to protect themselves from harmful particulate matter, allergens, and toxins. This has led to the integration of advanced filtration systems, air purifiers, and air quality sensors in vehicles. Consequently, the market for in-cabin air quality solutions is growing, especially in regions with high air pollution levels, driving innovation and adoption.
High Initial Cost of Installation
The high initial cost of installation for advanced in-cabin air quality systems can restrain the widespread adoption of these solutions, especially in budget-conscious vehicle segments. While premium vehicles benefit from these systems, cost remains a barrier for mass-market cars. As a result, automakers may be reluctant to integrate such technologies in lower-priced models, limiting market penetration.
Increase in Electric Vehicle (EV) Adoption
The increase in electric vehicle (EV) adoption has impacted the automotive in-cabin air quality improvement solutions. EVs, with their closed-loop cabin systems, require advanced air quality solutions to maintain a healthy and comfortable environment for passengers. As EVs gain popularity, there is a growing demand for high-efficiency air filtration systems, purifiers, and humidity control technologies to ensure clean air inside the cabin. This trend has led to more automakers integrating sophisticated air quality solutions into their electric vehicle models.
Complex Maintenance Requirements
The complex maintenance requirements such as frequent filter changes, cleaning of ionizers, and servicing UV sterilizers, can deter consumers from adopting automotive in-cabin air quality solutions. Consumers may be deterred by the added time, effort, and cost of maintaining these systems. This could reduce overall adoption, particularly in budget-conscious markets, where convenience and low upkeep are prioritized.
The COVID-19 pandemic heightened awareness of air quality and hygiene inside vehicles, significantly boosting demand for in-cabin air quality improvement solutions. Consumers became more concerned about airborne viruses and bacteria, driving automakers to integrate advanced filtration systems, UV purifiers, and air sterilizers into vehicles. This shift towards health-focused features is expected to sustain growth in the market.
The passenger cars segment is expected to be the largest during the forecast period
The passenger cars segment is expected to be the largest during the forecast period as consumers become more health-conscious, automakers are integrating technologies like HEPA filters, ionizers, and UV sterilizers into passenger vehicles to improve air quality and reduce allergens, pollutants, and bacteria. This trend is particularly strong in mid- to premium-range vehicles, leading to market growth, innovation, and improved accessibility of air quality solutions for a wider range of consumers.
The filtration systems segment is expected to have the highest CAGR during the forecast period
The filtration systems segment is expected to have the highest CAGR during the forecast period because advanced filtration technologies, such as HEPA and activated carbon filters, help remove harmful particles, allergens, and pollutants from the cabin air, improving passenger health and comfort. As consumers increasingly prioritize air quality, automakers are integrating these filtration systems into a wide range of vehicles, driving market growth and innovation in air quality solutions across different vehicle segments.
North America is projected to hold the largest market share during the forecast period as the rising awareness of air pollution, allergens, and respiratory health issues has led to greater adoption of advanced air filtration technologies like UV sterilizers, and ionizers in vehicles. Additionally, stricter environmental regulations and the growing popularity of electric vehicles (EVs), which require enhanced air quality systems, are driving innovation and market expansion. North American consumers' emphasis on wellness and comfort is further accelerating the integration of air quality solutions.
Asia Pacific is projected to witness the highest CAGR over the forecast period due to rising pollution levels, growing health awareness, and the increasing adoption of electric vehicles (EVs). As urbanization intensifies in countries like China, India, and Japan, consumers are more concerned about air quality inside their vehicles, driving demand for advanced filtration systems such as HEPA filters, ionizers, and UV purifiers. Additionally, stricter regulations on emissions and air quality standards in the region are encouraging automakers to integrate these solutions, further fueling market growth.
Key players in the market
Some of the key players in Automotive In-Cabin Air Quality Improvement Solutions Market include Axetris AG, CabinAir Sweden AB, Continental AG, Crispify Ltd., Ford Motor Company, LG Electronics, Mahle GmbH, MANN+HUMMEL International GmbH & Co. KG, Marelli Holdings Co., Ltd., Panasonic Corporation, Purafil, Inc. by Filtration Group Corporation, Renesas Electronics Corporation, Robert Bosch GmbH, Sensata Technologies, Inc., Sensirion AG, Steelbird International and Toyota Industries Corporation.
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Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.