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市場調查報告書
商品編碼
1626544
2024 年至 2031 年靜電除塵市場(按類型、技術、最終用戶和地區劃分)Electrostatic Precipitator Market by Type (Wet ESP, Dry ESP), Technology (Plate-Wire ESP, Flat Plate ESP), End-user (Power Generation, Cement, Steel, Chemicals, Others), & Region for 2024-2031 |
由於嚴格的環境法規和不斷增加的工業空氣污染控制要求,靜電除塵器 (ESP) 市場呈上升趨勢。據 Verified Market Research 分析師稱,ESP 市場規模預計在 2024 年將達到 58.4 億美元,到 2031 年將達到 81.9 億美元。
ESP 市場的成長主要得益於各行業實施嚴格的排放法規以及人們對空氣品質的認識不斷提高。預計 2024 年至 2031 年期間市場複合年增長率為 4.30%。靜電除塵器市場定義/概述
靜電除塵器是一種空氣污染控制裝置,它利用感應靜電荷的力量從氣流中去除顆粒。在各行各業中,這些系統用於捕捉廢氣中的粒狀物、灰塵和其他污染物,防止它們排放到大氣中。
此外,現代靜電除塵器去除亞微米級細懸浮微粒的效率也得到認可。該技術不斷改進,以提高收集效率並降低能耗,使其成為工業空氣污染控制越來越有吸引力的選擇。
世界各國政府正在實施更嚴格的空氣品質法規,以限制工業產生的顆粒物排放。美國環保署(EPA)加強了國家環境空氣品質標準(NAAQS),將可接受的PM2.5水準降低至12μg/m3。這些法律鼓勵了靜電集塵器的發展以滿足排放標準。
全球向綠色發電的轉變和燃煤電廠的升級正在推動該產業的發展。根據國際能源總署(IEA)的預測,到2023年,煤炭仍將佔全球發電量的36.7%左右,因此發電廠需要安裝靜電除塵器等有效的空調設備,以滿足環境標準。技術產生巨大的需求。
此外,印度和中國等國家的快速工業成長也導致排放量增加,因此必須實施有效的污染控制系統。根據世界銀行的數據,預計2022年中國工業增加價值將成長10%,同時,重工業領域將擴大使用靜電集塵器,以限制這些地區的污染。
最大的問題之一是安裝靜電集塵器的初始成本高,尤其是對於中小型企業而言。根據歐盟委員會的報告,為一個中型工業廠房建造一套靜電除塵器系統的成本約為150萬至200萬歐元,持續的維護成本也增加了財務負擔。由於成本較高,它尚未普及,尤其是在中小企業中。
與其他過濾技術相比,靜電集塵器在捕捉細懸浮微粒(PM2.5)方面效果較差。根據世界衛生組織 (WHO) 的數據,PM2.5 是一個重大的健康風險,每年導致約 700 萬人死於與污染相關的疾病。 ESP 不足以充分捕捉如此小的顆粒,這使得更嚴格的空氣品質法規的實現變得複雜。
此外,袋式除塵器和洗滌器在某些應用中優於靜電除塵器。根據美國能源部的報告,織物過濾器去除粒狀物的效率為 99.9%,而靜電集塵器的效率為 99.5%。更有效率的技術競爭日益激烈,阻礙了靜電集塵器市場的擴張。
The electrostatic precipitator (ESP) market is driven upward by stringent environmental regulations and increasing industrial air pollution control requirements. By analysts from Verified Market Research, it has been estimated that the ESP market will reach a valuation of USD 8.19 Billion by 2031, having been valued at USD 5.84 Billion in 2024.
The growth of the ESP market is primarily propelled by the enforcement of strict emission control norms across various industries, coupled with rising awareness about air quality. A CAGR of 4.30% is expected to be achieved by the market from 2024 to 2031.
Electrostatic Precipitator Market: Definition/Overview
Electrostatic precipitators are air pollution control devices by which particles from gas streams are removed using the force of an induced electrostatic charge. In various industries, these systems are utilized to capture fine particles, dust, and other pollutants from exhaust streams before they are released into the atmosphere.
Furthermore, the efficiency of modern ESPs in removing particulate matter as small as submicron levels is recognized. Technology is continuously improving to enhance collection efficiency and reduce energy consumption, making it an increasingly attractive option for industrial air pollution control.
Governments around the world are implementing stronger air quality regulations to limit particulate matter emissions from industry. The U.S. Environmental Protection Agency (EPA) has tightened the National Ambient Air Quality Standards (NAAQS) to reduce acceptable PM2.5 levels to 12 μg/m3. Such laws are promoting the development of electrostatic precipitators to meet emission standards.
The global shift toward greener power generation and coal-based plant upgrades is driving the industry. According to the International Energy Agency (IEA), coal will still account for approximately 36.7% of worldwide electricity output in 2023, resulting in a significant demand for effective air pollution control technology such as electrostatic precipitators in power plants to meet environmental standards.
Furthermore, Rapid industrial growth in nations like India and China is driving up emissions, necessitating the implementation of effective pollution control systems. According to World Bank data, China's industrial value added increased by 10% in 2022, coinciding with a greater use of electrostatic precipitators in heavy sectors to limit pollution in these regions.
One of the most significant problems is the high initial cost of installing electrostatic precipitators, particularly in small and medium-sized businesses. According to a report by the European Commission, the cost of constructing an ESP system for a medium-sized industrial plant varies between €1.5 and €2 million, with continuing maintenance charges adding to the financial burden. The hefty expenses discourage widespread adoption, particularly among smaller players.
Electrostatic precipitators are less successful at capturing tiny particulate matter (PM2.5) than other filtration technologies. According to the World Health Organization (WHO), PM2.5 is a substantial health risk, accounting for approximately 7 million deaths per year owing to pollution-related disorders. The inadequacy of ESPs to adequately catch such small particles complicates achieving more stringent air quality regulations.
Furthermore, fabric filters and scrubbers are outperforming electrostatic precipitators in several applications. According to a report from the United States Department of Energy, cloth filters remove particulate matter with 99.9% efficiency, compared to 99.5% for ESPs. The increasing competition for more efficient technologies hinders ESP market expansion.
The Dry ESP segment is expected to dominate the market during the forecast period. With dry ESPs, several advantages over wet systems are offered, including lower operating costs and simpler maintenance requirements. Their effectiveness in handling high-temperature gas streams is appreciated, making them particularly suitable for applications in power plants and cement industries.
The ability of dry ESPs to operate without water is valued in regions where water resources are scarce. Energy efficiency is also achieved by these systems, as no energy is expended on water pumping or treatment. The segment's growth is further supported by ongoing technological improvements that are enhancing collection efficiency and reducing power consumption.
The power generation segment is projected to dominate the ESP market during the forecast period. In thermal power plants, large volumes of flue gas containing particulate matter are generated, necessitating effective emission control systems. The reliability and efficiency of ESPs in handling high gas volumes are recognized, making them a preferred choice for this industry.
Coal-fired power plants are required to meet strict emission standards. The adoption of advanced ESP systems is driven by these requirements. The segment's growth is also influenced by the modernization of existing power plants and the installation of new ones in developing regions.
According to VMR Analyst, Asia Pacific is estimated to dominate the electrostatic precipitator market during the forecast period. The Asia-Pacific area is experiencing a rapid increase in its older population, which is boosting healthcare demand. According to the United Nations, the number of persons aged 60 and more in Asia-Pacific is predicted to triple from 606 million in 2020 to nearly 1.3 billion in 2050. This spike increases the demand for chronic disease management and innovative healthcare solutions, giving the region a competitive advantage in the market.
Cardiovascular disorders, the primary cause of death, are becoming more common in the Asia-Pacific area because of lifestyle changes and urbanization. According to the World Health Organization (WHO), low- and middle-income nations, many of which are in Asia, accounted for more than 75% of cardiovascular disease fatalities in 2020. The increased illness load increases the demand for medicines like Angiotensin Receptor Blockers (ARBs).
Furthermore, governments throughout Asia-Pacific are expanding healthcare spending and infrastructure development to meet increased demand. For example, China's National Health Commission plans to invest more than USD 1 trillion in healthcare in 2020, to improve access to medical services and expand treatment options. This investment is driving the rise of pharmaceutical markets, particularly ARBs, by making treatments more accessible.
The North American region is expected to experience the fastest growth in the electrostatic precipitator market during the projected period. North America has a high prevalence of hypertension and cardiovascular illness, which drives the market for Angiotensin Receptor Blockers (ARBs). According to the CDC, nearly half of all individuals in the United States (47%) have hypertension, indicating a greater need for antihypertensive therapies such as ARBs to manage the condition and avoid consequences.
North America's well-developed healthcare system enables extensive access to modern treatments, including ARBs. According to the Centers for Medicare & Medicaid Services (CMS), the United States would spend approximately USD 4.1 trillion on healthcare in 2020, with a focus on extending drug access and improving patient outcomes, driving the market for ARBs.
Furthermore, the availability of affordable generic ARBs has increased their popularity in North America. According to the FDA, generic pharmaceuticals account for 90% of all prescriptions filled in the country, allowing patients with hypertension and cardiovascular disorders to obtain cheap treatments, hence boosting the region's ARB market growth.
The ESP market's competitive landscape is characterized by the presence of both established players and new entrants. Competition based on technological innovation, pricing strategies, and after-sales service is observed.
Major players operating in the electrostatic precipitator market include:
Babcock & Wilcox Enterprises, Inc.
FLSmidth & Co. A/S
General Electric
Siemens AG
Ducon Technologies Inc.
Sumitomo Heavy Industries, Ltd.
Thermax Limited
Fujian Longking Co., Ltd.
Hamon Corporation
KC Cottrell Co., Ltd.
In May 2023, Babcock & Wilcox announced a contract to supply an advanced electrostatic precipitator for a large waste-to-energy plant in Europe. The project will enhance emissions control and contribute to reducing environmental pollution in the region.
In March 2022, FLSmidth introduced its next-generation electrostatic precipitator technology designed for large-scale industrial applications. This innovation improves particulate matter collection efficiency by 10%, enabling companies to meet stricter environmental regulations in the cement and steel sectors.