Asia Pacific Air Quality Control System Market - Growth, Trends, and Forecasts (2023 - 2028)

Asia Pacific Air Quality Control System Market - Growth, Trends, and Forecasts (2023 - 2028)

Asia-Pacific Air Quality Control System Market is projected to register a CAGR of over 4.55% during the forecast period.

COVID-19 negatively impacted the market in 2020. Presently the market is likely to reach pre-pandemic levels.

Key Highlights
  • Over the medium term, factors, such as the development of industrial infrastructure, coupled with government-led initiatives to curb harmful emissions, are expected to provide impetus to the Asia-Pacific Air Quality Control Systems (AQCS) market.
  • On the other hand, the renewable power generation capacity has increased significantly in the last decade, and a similar trend is expected to continue, in turn, increasing the share of renewables in Asia-Pacific power generation during the forecast period, which is likely to restrain the growth of the Asia-Pacific air quality control system in the coming years.
  • Nevertheless, the High Efficiency, Low Emission (HELE) coal-fired power plants have been installed in countries such as China and India. This type of power plant requires high-efficiency AQCS to achieve low emissions. This is likely to open new avenues for advanced AQCS-related investments by the end-user industries during the forecast period.
  • China is expected to be the significant market for AQCS during the forecast period.
Asia Pacific Air Quality Control System Market TrendsPower Generation Industry Segment to Witness Significant Growth
  • Power plants are the largest sources of emission of SO2, mercury, and acid gases. In the power sector, coal accounts for about 98% of SO2 emissions, 94% of mercury emissions, 86% of NOx emissions, and 83% of fine particulate emissions.
  • The growing concerns regarding environmental pollution and the government’s actions to curb the same are driving the growth of the AQCS market. Stringent international and government regulations, such as the Clean Air Act (CAA) and the Mercury and Air Toxics Standards, enforce the installation of systems that monitor and curb emissions to bring them to a safer level in power generation companies using fossil fuels.
  • Further, despite the shrinking number of coal-based power plants globally, the countries (such as India) are still endorsing the new coal-based power generation projects. About 31 GW of power plants is under construction. Due to overcapacity and competition from cheaper renewables, low plant-load factors have made it difficult for coal plants to recover their investments. Despite these unfavorable market conditions for coal-based power, the governments in the region continue to invest in new plants.
  • • In July 2022, Through its subsidiary, JERA Power Taketoyo G.K., JERA Co., Inc. began commercial operation of Unit 5 of the Taketoyo Thermal Power Station located at 1-1 Ryugu, Taketoyo-Cho, Chita County, Aichi Prefecture, Japan. The company has been replacing aging equipment for the past couple of years. This high-efficiency coal-fired power plant is equipped with Ultra-Supercritical (USC) power generation technology.
  • As of 2022, the Quang Trach 1 Coal-fired Power Plant is under construction in Vietnam with a capacity of 1.2 gigawatts, and the estimated plant investment is USD 1.27 billion. The project is expected to be commissioned by 2025 and generate up to 8.4 billion kilowatt-hours of electricity annually.
  • Hence, the power industry is expected to witness significant growth for AQCS during the forecast period.
China is Expected to Witness Significant Growth
  • The rapid growth in the Chinese economy, particularly the industrial sector, including power generation, cement manufacturing, and chemicals and metal processing, has led to significant growth in the emission of air pollutants in the country.
  • Hence, the Government of China has recognized the severity of air pollution due to high energy consumption and the need to control pollution.
  • While most countries experienced dramatic reductions in emissions in 2020 due to COVID-19, China was one of only a few countries where emissions increased in 2021. China released 11.47 billion metric tons of carbon dioxide in 2021, making it the world's largest polluter at the time.
  • For instance, the State Council of China issued the Air Pollution Prevention and Control Action Plan in September 2013, which sets quantitative targets to improve the air quality in the country within specified time limits.
  • In addition, all newly constructed and existing power plants have been subjected to mercury emission standards from 2015. These environmental regulations have further propelled the demand for air quality control systems in the country.
  • In May 2022, A new Action Plan on Controlling New Pollutants has been announced by the General Office of the State Council of China. By 2025, the plan intends to screen chemicals of high concern in large quantities for environmental risks, continuously update a list of key regulated new pollutants after releasing the first edition in 2022, and implement environmental risk management measures, such as bans, restrictions, and discharge limits for key regulated new pollutants. Another objective of the project is to develop in phases legal systems and frameworks for managing the environmental risks associated with toxic and hazardous chemicals in order to control new pollutants strictly.
  • Hence, factors, such as rising emissions, due to the growth in economic activities and the stringent regulations put forth by the government, have been driving the growth of the air quality control systems market in China.
Asia Pacific Air Quality Control System Industry Overview

The Asia-Pacific Air Quality Control System Market is fragmented. Some of the key players (not in particular order) in this market include Mitsubishi Hitachi Power Systems Ltd, Thermax Ltd, John Wood Group PLC, General Electric Company, and Fujian Longking Co. Ltd.

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1 INTRODUCTION
1.1 Scope of the Study
1.2 Market Definition
1.3 Study Assumptions
2 EXECUTIVE SUMMARY
3 RESEARCH METHODOLOGY
4 MARKET OVERVIEW
4.1 Introduction
4.2 Market Size and Demand Forecast in USD billion, till 2027
4.3 Recent Trends and Developments
4.4 Government Policies and Regulations
4.5 Market Dynamics
4.5.1 Drivers
4.5.2 Restraints
4.6 Supply Chain Analysis
4.7 Porter's Five Forces Analysis
4.7.1 Bargaining Power of Suppliers
4.7.2 Bargaining Power of Consumers
4.7.3 Threat of New Entrants
4.7.4 Threat of Substitutes Products and Services
4.7.5 Intensity of Competitive Rivalry
5 MARKET SEGMENTATION
5.1 Application
5.1.1 Power Generation Industry
5.1.2 Cement Industry
5.1.3 Chemical Industry
5.1.4 Iron and Steel Industry
5.1.5 Other Applications
5.2 Type
5.2.1 Electrostatic Precipitators (ESP)
5.2.2 Flue Gas Desulfurization (FGD) and Scrubbers
5.2.3 Selective Catalytic Reduction (SCR)
5.2.4 Fabric Filters
5.2.5 Other Types
5.3 Geography
5.3.1 India
5.3.2 China
5.3.3 Japan
5.3.4 Australia
5.3.5 Rest of Asia-Pacific
6 COMPETITIVE LANDSCAPE
6.1 Mergers and Acquisitions, Joint Ventures, Collaborations, and Agreements
6.2 Strategies Adopted by Leading Players
6.3 Company Profiles
6.3.1 Mitsubishi Hitachi Power Systems Ltd
6.3.2 Thermax Ltd
6.3.3 John Wood Group PLC
6.3.4 Babcock & Wilcox Enterprises Inc.
6.3.5 General Electric Company
6.3.6 Fujian Longking Co. Ltd
6.3.7 Gea Bischoff
6.3.8 Hamon Corporation
6.3.9 Horiba Ltd
6.3.10 Andritz AG
7 MARKET OPPORTUNITIES AND FUTURE TRENDS

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