China Air Quality Control Systems Market Overview, 2030
China’s air quality control systems industry is expected to grow at over 6.75% CAGR from 2025 to 2030, driven by growing environmental concerns and government initiatives to combat
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The air quality control systems market in China is undergoing a significant transformation as the country prioritizes environmental sustainability amid rising industrialization and urban expansion. China has long grappled with severe air pollution challenges driven by a high dependence on coal-fired power generation, manufacturing, and rapid urban growth. These issues have spurred national policies, technological upgrades, and stricter environmental regulations, including the Blue Sky Protection Campaign and five-year development plans targeting a reduction in particulate matter and gaseous emissions. As a result, air quality control systems have become essential across sectors ranging from power generation to automotive and heavy industry. The market is witnessing a notable increase in demand for advanced systems that not only reduce emissions but also comply with international environmental standards. Factors such as growing public awareness about health impacts of air pollution, pressure on industrial facilities to minimize their environmental footprint, and increasing investments in cleaner technologies are reshaping the air quality control landscape across the country. The shift is further supported by China's commitment to carbon neutrality by 2060, which includes intermediate goals like peaking carbon emissions before 2030. This creates a favorable market environment for the adoption of sophisticated air pollution control systems.
According to the research report "China Air Quality Control Systems Market Overview, 2030," published by Bonafide Research, the China Air Quality Control Systems Market is anticipated to grow at more than 6.75% CAGR from 2025 to 2030. In tandem with growing environmental consciousness, China is investing heavily in innovation and modernization of its air pollution control technologies, which is catalyzing the growth of the air quality control systems market. Government mandates are pushing industries to retrofit existing infrastructures with compliant technologies and adopt more efficient systems capable of controlling multiple pollutants simultaneously. The growth of urbanization has also led to an increase in the number of indoor air quality control installations, especially in commercial buildings, industrial units, and public institutions, where occupational health and indoor air standards are closely monitored. Moreover, China’s massive industrial base, including the steel, cement, power generation, and chemical sectors, provides a broad demand base for high-capacity systems like electrostatic precipitators, fabric filters, and flue gas desulfurization units. As these sectors modernize, legacy pollution control technologies are being replaced or supplemented with selective catalytic reduction units, catalytic converters, and thermal oxidizers, ensuring better performance, lower emissions, and regulatory compliance. International collaboration and technology transfer, especially from European and North American companies with strong expertise in air quality control, are further enhancing the technological depth of the market. Despite the initial capital costs involved, there is an increasing preference for hybrid and multi-functional systems that offer long-term operational cost savings and robust compliance capabilities.
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Electrostatic precipitators remain a cornerstone of emission control, particularly in power generation and metal processing sectors, due to their remarkable efficiency in trapping fine particulate matter. These systems, though capital-intensive, offer long-term reliability and are commonly installed in coal-fired power plants, a dominant source of energy in China. Alongside this, flue gas desulfurization units are gaining traction owing to their crucial role in limiting sulfur dioxide emissions, a major contributor to acid rain and respiratory illnesses. China’s widespread reliance on coal and heavy industrial processes necessitates extensive FGD implementation, particularly in thermal power plants and cement kilns. Scrubber systems, both wet and dry, are also widely deployed across waste incineration and chemical manufacturing units, where multi-phase pollutants are common. Wet scrubbers, using alkaline solutions or water, are particularly useful in industries where high-humidity or sticky particles are present, whereas dry scrubbers offer more economical operation in arid regions. Selective catalytic reduction technology is expanding rapidly, driven by national targets to reduce nitrogen oxide emissions, especially in the context of China's transport and energy sectors. Power stations, marine vessels, and industrial boilers are actively adopting SCR systems for compliance and environmental performance. Fabric filters or baghouses, often found in cement and biomass industries, are also integral for particulate removal, delivering very high capture rates. Additional technologies such as catalytic converters are increasingly relevant in the automotive space, as emission standards tighten in line with international norms. Thermal oxidizers have also seen a rise in installations in petrochemical, pharmaceutical, and paint manufacturing sectors where volatile organic compounds are released. Niche innovations, such as hybrid ESP-baghouse systems and activated carbon injection for mercury control, are being piloted or integrated in industries with stringent compliance requirements, offering tailored solutions for complex pollutant streams.
In the power generation industry, which remains heavily reliant on coal despite growing renewable energy investments, the deployment of advanced AQCS such as ESP, FGD, and SCR systems is imperative for emission control. These systems are frequently incorporated into large-scale facilities to manage emissions of sulfur dioxide, nitrogen oxides, particulates, and trace metals. Cement manufacturing, a key contributor to China’s construction boom, also relies extensively on baghouses and ESPs to curb the dust and gaseous pollutants generated during clinker production. Furthermore, the automotive industry, both in terms of manufacturing and end-use vehicle emissions, represents a crucial application area for technologies such as catalytic converters, SCR systems, and thermal oxidizers. The move toward stricter vehicular emissions standards, particularly in urban hubs, is encouraging automakers and regulators to adopt more advanced exhaust treatment systems. In the chemical and petrochemical sectors, air quality control is vital due to the prevalence of volatile organic compounds and other hazardous emissions. Facilities here are adopting a combination of thermal oxidizers, wet scrubbers, and catalytic oxidizers based on specific emission profiles. The mining and metal processing sectors also exhibit considerable demand for dry scrubbers, ESPs, and fabric filters to manage the substantial particulate loads and acidic gases generated during smelting and ore processing. Although pharmaceuticals may not produce massive emissions, the sector still necessitates precise VOC management and cleanroom air quality solutions, where advanced filters and oxidizers come into play. Additionally, in sectors like food processing and pulp and paper manufacturing, controlling odor and sulfur-based emissions has become increasingly important. Here, biofilters and scrubbers are gaining preference due to their effectiveness and environmental compatibility, reinforcing the diverse utility of AQCS across China’s industrial spectrum.
Indoor systems are especially relevant in environments where air quality directly impacts worker safety, product quality, or process outcomes. Facilities such as semiconductor fabs, pharmaceutical labs, and electronics manufacturing units utilize highly specialized systems like HEPA filters, local exhaust systems, catalytic oxidizers, and carbon adsorption units to maintain pollutant-free indoor environments. These setups are essential in cleanroom settings where even minimal airborne contaminants can lead to defects in high-precision products. Additionally, rising awareness about occupational health and indoor air quality regulations is encouraging the deployment of localized air purification units in offices, public buildings, and healthcare institutions. Indoor AQCS also play a role in educational institutions and hospitality venues where air quality is linked to public health outcomes. On the other hand, ambient systems are installed to treat emissions before they are discharged into the outdoor atmosphere, thus helping industries meet national and regional air pollution control mandates. These include large-scale installations such as electrostatic precipitators, scrubbers, flue gas desulfurization units, and tall-stack thermal oxidizers that capture and neutralize harmful pollutants from industrial stacks. The application of ambient AQCS is especially significant in power plants, steel factories, cement plants, and chemical complexes where emissions, if left untreated, contribute to smog formation, acid rain, and public health crises. Due to the sheer scale of emissions from these operations, ambient AQCS typically involve robust systems capable of handling high volumes and varying pollutant compositions.
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Manmayi Raval
Research Consultant
Considered in this report
• Historic Year: 2019
• Base year: 2024
• Estimated year: 2025
• Forecast year: 2030
Aspects covered in this report
• Air Quality Control System Market with its value and forecast along with its segments
• Various drivers and challenges
• On-going trends and developments
• Top profiled companies
• Strategic recommendation
By Application
• Power Generation
• Cement Industry
• Automotive
• Chemical & Petrochemical
• Metal Processing & Mining
• Pharmaceuticals
• Others (Food processing, Pulp & Paper)
By Product type
• Indoor
• Ambient
The approach of the report:
This report consists of a combined approach of primary as well as secondary research. Initially, secondary research was used to get an understanding of the market and listing out the companies that are present in the market. The secondary research consists of third-party sources such as press releases, annual report of companies, analyzing the government generated reports and databases. After gathering the data from secondary sources primary research was conducted by making telephonic interviews with the leading players about how the market is functioning and then conducted trade calls with dealers and distributors of the market. Post this we have started doing primary calls to consumers by equally segmenting consumers in regional aspects, tier aspects, age group, and gender. Once we have primary data with us we have started verifying the details obtained from secondary sources.
Intended audience
This report can be useful to industry consultants, manufacturers, suppliers, associations & organizations related to agriculture industry, government bodies and other stakeholders to align their market-centric strategies. In addition to marketing & presentations, it will also increase competitive knowledge about the industry.
Table of Contents
1. Executive Summary
2. Market Structure
2.1. Market Considerate
2.2. Assumptions
2.3. Limitations
2.4. Abbreviations
2.5. Sources
2.6. Definitions
3. Research Methodology
3.1. Secondary Research
3.2. Primary Data Collection
3.3. Market Formation & Validation
3.4. Report Writing, Quality Check & Delivery
4. China Geography
4.1. Population Distribution Table
4.2. China Macro Economic Indicators
5. Market Dynamics
5.1. Key Insights
5.2. Recent Developments
5.3. Market Drivers & Opportunities
5.4. Market Restraints & Challenges
5.5. Market Trends
5.5.1. XXXX
5.5.2. XXXX
5.5.3. XXXX
5.5.4. XXXX
5.5.5. XXXX
5.6. Supply chain Analysis
5.7. Policy & Regulatory Framework
5.8. Industry Experts Views
6. China Air Quality Control System Market Overview
6.1. Market Size By Value
6.2. Market Size and Forecast, By Technology
6.3. Market Size and Forecast, By Application
6.4. Market Size and Forecast, By Product type
6.5. Market Size and Forecast, By Region
7. China Air Quality Control System Market Segmentations
7.1. China Air Quality Control System Market, By Technology
7.1.1. China Air Quality Control System Market Size, By Electrostatic Precipitators (ESP), 2019-2030
7.1.2. China Air Quality Control System Market Size, By Flue Gas Desulfurization (FGD), 2019-2030
7.1.3. China Air Quality Control System Market Size, By Scrubbers (Wet & Dry), 2019-2030
7.1.4. China Air Quality Control System Market Size, By Selective Catalytic Reduction (SCR), 2019-2030
7.1.5. China Air Quality Control System Market Size, By Fabric Filters (Baghouses), 2019-2030
7.1.6. China Air Quality Control System Market Size, By Catalytic Converters, 2019-2030
7.1.7. China Air Quality Control System Market Size, By Thermal Oxidizers, 2019-2030
7.1.8. China Air Quality Control System Market Size, By Others (Mercury Control Systems, Hybrid Systems), 2019-2030
7.2. China Air Quality Control System Market, By Application
7.2.1. China Air Quality Control System Market Size, By Power Generation, 2019-2030
7.2.2. China Air Quality Control System Market Size, By Cement Industry, 2019-2030
7.2.3. China Air Quality Control System Market Size, By Automotive, 2019-2030
7.2.4. China Air Quality Control System Market Size, By Chemical & Petrochemical, 2019-2030
7.2.5. China Air Quality Control System Market Size, By Metal Processing & Mining, 2019-2030
7.2.6. China Air Quality Control System Market Size, By Pharmaceuticals, 2019-2030
7.3. China Air Quality Control System Market, By Product type
7.3.1. China Air Quality Control System Market Size, By Indoor, 2019-2030
7.3.2. China Air Quality Control System Market Size, By Ambient, 2019-2030
7.4. China Air Quality Control System Market, By Region
7.4.1. China Air Quality Control System Market Size, By North, 2019-2030
7.4.2. China Air Quality Control System Market Size, By East, 2019-2030
7.4.3. China Air Quality Control System Market Size, By West, 2019-2030
7.4.4. China Air Quality Control System Market Size, By South, 2019-2030
8. China Air Quality Control System Market Opportunity Assessment
8.1. By Technology, 2025 to 2030
8.2. By Application, 2025 to 2030
8.3. By Product type, 2025 to 2030
8.4. By Region, 2025 to 2030
9. Competitive Landscape
9.1. Porter's Five Forces
9.2. Company Profile
9.2.1. Company 1
9.2.1.1. Company Snapshot
9.2.1.2. Company Overview
9.2.1.3. Financial Highlights
9.2.1.4. Geographic Insights
9.2.1.5. Business Segment & Performance
9.2.1.6. Product Portfolio
9.2.1.7. Key Executives
9.2.1.8. Strategic Moves & Developments
9.2.2. Company 2
9.2.3. Company 3
9.2.4. Company 4
9.2.5. Company 5
9.2.6. Company 6
9.2.7. Company 7
9.2.8. Company 8
10. Strategic Recommendations
11. Disclaimer
Table 1: Influencing Factors for Air Quality Control System Market, 2024
Table 2: China Air Quality Control System Market Size and Forecast, By Technology (2019 to 2030F) (In USD Million)
Table 3: China Air Quality Control System Market Size and Forecast, By Application (2019 to 2030F) (In USD Million)
Table 4: China Air Quality Control System Market Size and Forecast, By Product type (2019 to 2030F) (In USD Million)
Table 5: China Air Quality Control System Market Size and Forecast, By Region (2019 to 2030F) (In USD Million)
Table 6: China Air Quality Control System Market Size of Electrostatic Precipitators (ESP) (2019 to 2030) in USD Million
Table 7: China Air Quality Control System Market Size of Flue Gas Desulfurization (FGD) (2019 to 2030) in USD Million
Table 8: China Air Quality Control System Market Size of Scrubbers (Wet & Dry) (2019 to 2030) in USD Million
Table 9: China Air Quality Control System Market Size of Selective Catalytic Reduction (SCR) (2019 to 2030) in USD Million
Table 10: China Air Quality Control System Market Size of Fabric Filters (Baghouses) (2019 to 2030) in USD Million
Table 11: China Air Quality Control System Market Size of Catalytic Converters (2019 to 2030) in USD Million
Table 12: China Air Quality Control System Market Size of Thermal Oxidizers (2019 to 2030) in USD Million
Table 13: China Air Quality Control System Market Size of Others (Mercury Control Systems, Hybrid Systems) (2019 to 2030) in USD Million
Table 14: China Air Quality Control System Market Size of Power Generation (2019 to 2030) in USD Million
Table 15: China Air Quality Control System Market Size of Cement Industry (2019 to 2030) in USD Million
Table 16: China Air Quality Control System Market Size of Automotive (2019 to 2030) in USD Million
Table 17: China Air Quality Control System Market Size of Chemical & Petrochemical (2019 to 2030) in USD Million
Table 18: China Air Quality Control System Market Size of Metal Processing & Mining (2019 to 2030) in USD Million
Table 19: China Air Quality Control System Market Size of Pharmaceuticals (2019 to 2030) in USD Million
Table 20: China Air Quality Control System Market Size of Indoor (2019 to 2030) in USD Million
Table 21: China Air Quality Control System Market Size of Ambient (2019 to 2030) in USD Million
Table 22: China Air Quality Control System Market Size of North (2019 to 2030) in USD Million
Table 23: China Air Quality Control System Market Size of East (2019 to 2030) in USD Million
Table 24: China Air Quality Control System Market Size of West (2019 to 2030) in USD Million
Table 25: China Air Quality Control System Market Size of South (2019 to 2030) in USD Million
Figure 1: China Air Quality Control System Market Size By Value (2019, 2024 & 2030F) (in USD Million)
Figure 2: Market Attractiveness Index, By Technology
Figure 3: Market Attractiveness Index, By Application
Figure 4: Market Attractiveness Index, By Product type
Figure 5: Market Attractiveness Index, By Region
Figure 6: Porter's Five Forces of China Air Quality Control System Market
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