Market by Technology, Application, and Regional Outlook | Forecast 2023-2030
Flue gas desulfurization (FGD) technology is used to remove sulfur
dioxide (SO2) from the exhaust gases produced by industrial processes,
especially those involving the combustion of fossil fuels, such as coal, oil,
and natural gas. These gases, often referred to as flue gases, contain harmful
pollutants that contribute to air pollution, acid rain, and various health and
environmental issues.
FGD systems are vital components in industrial facilities, particularly
power plants, to mitigate environmental pollution by reducing sulfur dioxide
(SO2) emissions released during the combustion of fossil fuels. These systems
employ various technologies, such as wet or dry scrubbers, to capture sulfur
compounds from the flue gases before they are released into the atmosphere.
According to Triton Market Research’s report, the Global Flue Gas Desulfurization Market is likely to grow with a CAGR of 4.93% over the forecast period 2023-2030. The market was valued at $21754.15 million in 2022 and is expected to reach a revenue of $31952.98 million by 2030.
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MARKET PERFORMANCE – DRIVERS,
CHALLENGES, AND OPPORTUNITIES
The
market is driven by several key factors, including stringent environmental
regulations, growing public awareness regarding environmental sustainability,
and health concerns fostering a demand for cleaner air and reduced pollution. Moreover, the expansion of the power
generation and industrial sectors, particularly in emerging economies,
amplifies the need for efficient FGD systems. Additionally, economic
incentives, technological advancements, and the pursuit of sustainable energy
solutions further boost the FGD market. The burgeoning global population and
expanding industries necessitate a higher production of electricity, often
reliant on coal-fired power plants. However, coal combustion is a significant
source of sulfur dioxide emissions. To mitigate environmental damage and comply
with stringent emissions regulations, the implementation of flue gas
desulfurization systems becomes imperative, ensuring sustainable energy
production.
On the other hand, high
initial and operational costs associated with implementing FGD systems limit
the market’s growth.
The substantial investment required for the installation and maintenance of FGD
technologies can deter companies, especially smaller enterprises, from adopting
these systems. Additionally, the complexity of integrating these systems into
existing industrial infrastructures and the need for skilled personnel to
operate and maintain these systems contribute to cost challenges.
Nevertheless, flue gas desulfurization (FGD) gypsum, a by-product of coal-fired power plants, is increasingly being recognized for its role as a valuable soil conditioner, creating significant opportunities for the market. FGD gypsum, due to its high calcium and sulfur content, exhibits the ability to enhance soil quality by improving aggregation, reclaiming sodic soils, and increasing water penetration. This environmentally and economically viable approach boosts soil quality and encourages crop production, aligning with sustainable agricultural practices. As the demand for FGD gypsum grows and more businesses invest in FGD systems, the market for this versatile soil conditioner is expected to expand, offering valuable advantages for agriculture and environmental sustainability.
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KEY GEOGRAPHIES COVERED:
• North America:
United States and Canada
• Europe: United
Kingdom, France, Germany, Spain, Italy, and Rest of Europe
• Asia-Pacific:
China, Japan, India, South Korea, ASEAN Countries, Australia & New Zealand,
and Rest of Asia-Pacific
• Latin America:
Brazil, Mexico, and Rest of Latin America
• Middle East and Africa: United Arab Emirates, Saudi Arabia, Turkey, South Africa, and Rest of
Middle East & Africa
SEGMENTATION ANALYSIS – FLUE
GAS DESULFURIZATION MARKET:
• Market by Technology:
o Wet
FGD Systems
o Spray
Dry FGD Systems
o Dry
FGD Systems
Wet FGD Systems leads the
market in terms of revenue.
These systems have gained favor due to their high removal efficiency, which
successfully captures a considerable part of sulfur compounds from flue gas.
Wet FGD systems can reach removal rates of more than 90%, ensuring compliance
with rigorous environmental laws governing emissions. Moreover, they can
successfully treat flue gases with high and low sulfur concentrations, making
them adaptable to various fuel types and power generation configurations. Furthermore,
wet FGD systems are known for their strong reliability and controllability,
which contribute to stable operations and consistent emission reductions.
Governments and regulatory organizations are increasingly demanding stringent
emission limitations, requiring industries to deploy effective pollution
control technology such as wet FGD systems.
• Market by Application:
o Power
Generation
o Chemical
o Iron
& Steel
o Cement
Manufacturing
o Other
Applications
Power Generation is estimated to progress with the highest CAGR during the forecast period. Sulfur dioxide (SO2) emissions from power plants are significant sources leading to respiratory problems and environmental damage. Furthermore, the power generation industry necessitates regular and dependable operation in order to meet the energy needs of communities and enterprises. FGD systems offer a viable option for reducing sulfur emissions while allowing power plants to achieve a critical balance between environmental responsibility and energy output. Flue gas sulfur compounds can corrode and damage plant components, resulting in costly maintenance and repairs. FGD systems extend the life of power plant infrastructure and save operational costs.
COMPETITIVE LANDSCAPE:
The flue gas desulfurization market by company profile helps dive into
data about the key players in this industry. The strategic initiatives for each
of the companies considered have been covered in detail.
Expansions (February 2023):
Andritz AG
Andritz secured an order from EON Energy Projects GmbH to supply
a thermal power boiler. The boiler’s technology, shipment,
deployment, and installation, together with all necessary additional machinery
and a flue gas cleaning system, are included in the deal.
Collaboration (July 2021):
Andritz AG and GE Steam Power
Andritz collaborated with GE Steam Power, enabling the acquisition of a
product portfolio that covers a spectrum of industrial applications, including
dedusting, dry/semi-dry treatment of flue gases, and industrial scrubbing. This
comprehensive range includes products such as condensation scrubbers and
innovative solutions for recovering low-temperature heat.
KEY BENEFITS OF THE REPORT:
● Triton Market Research has a collective experience of 25-30 years in the industry, with its analysts and experts encompassing the most infallible research methodology for its market intelligence and industry analysis.
● Our research methodology helps in achieving a broader consensus of the market size, shape, and industry trends within each industry segment.
● The strategy adopted in designing the research methodology includes the amalgamation of the information assembled from primary and secondary sources, with the assistance of analytical tools to construct the forecast and predictive models.
●
The scope of the market report comprises the current scenario of
the global flue gas desulfurization market, along with the detailed overview of
the industry outlook, market dynamics, segmentation analysis, regional outlook,
and competitive landscape for the period 2023-2030.
FAQs:
Q 1) What challenges are
associated with FGD system implementation?
Answer: High initial capital costs, the need for proper disposal of
generated by-products (e.g., gypsum), potential water usage concerns in wet FGD
systems, and adapting to varying fuel compositions and plant configurations are
challenges associated with FGD systems. Addressing these challenges requires
careful planning, investment, and continuous technological advancements.
Q 2) What are the economic
benefits of using FGD systems?
Answer: FGD systems help power plants and industries comply with
emission regulations, avoiding costly fines and penalties. Additionally, they
extend the operational life of equipment by reducing corrosion and wear caused
by sulfur compounds, resulting in long-term cost savings and enhanced
operational efficiency.
1. GLOBAL
FLUE GAS DESULFURIZATION MARKET - SUMMARY
2. INDUSTRY
OUTLOOK
2.1. IMPACT
ANALYSIS ON THE FLUE GAS DESULFURIZATION MARKET
2.1.1. COVID-19
IMPACT
2.2. PORTER’S
FIVE FORCES ANALYSIS
2.2.1. THREAT
OF NEW ENTRANTS
2.2.2. THREAT
OF SUBSTITUTES
2.2.3. BARGAINING
POWER OF BUYERS
2.2.4. BARGAINING
POWER OF SUPPLIERS
2.2.5. THREAT
OF COMPETITIVE RIVALRY
2.3. MARKET
MATURITY ANALYSIS
2.4. REGULATORY
FRAMEWORK
2.5. KEY
MARKET STRATEGIES
2.5.1. COLLABORATIONS
2.5.2. PRODUCT
LAUNCHES
2.5.3. ACQUISITIONS
2.5.4. BUSINESS
DIVESTITURES & EXPANSIONS
2.6. MARKET
DRIVERS
2.6.1. DETRIMENTAL
IMPACT OF SULFUR DIOXIDE EMISSIONS ON THE ENVIRONMENT AND HEALTH
2.6.2. STRICT
EMISSION NORMS CONFER A REGULATORY PUSH FOR THE WIDESPREAD ADOPTION OF FGD
SYSTEMS
2.6.3. AIRBORNE
DISEASES POSING SERIOUS THREAT TO PUBLIC HEALTH
2.7. MARKET
CHALLENGES
2.7.1. INDUSTRIAL
SLOWDOWNS LEAD TO MARKET CONTRACTION
2.7.2. RISING
DEPENDENCE ON RENEWABLE ENERGY
2.7.3. HIGH INITIAL
CAPITAL INVESTMENT
2.8. MARKET
OPPORTUNITIES
2.8.1. ADVANCEMENTS
IN FGD TECHNOLOGIES
2.8.2. FGD
GYPSUM’S USE AS A SOIL CONDITIONER
2.8.3. UTILIZING
DATA-DRIVEN MODELS FOR REAL-TIME OPTIMIZATION OF FGD PROCESSES
2.8.4. TAILORED
FGD SOLUTIONS TARGETING SPECIFIC INDUSTRIES
2.9. ANALYST
PERSPECTIVE
3. GLOBAL
FLUE GAS DESULFURIZATION MARKET – BY TECHNOLOGY
3.1. WET
FGD SYSTEMS
3.2. SPRAY
DRY FGD SYSTEMS
3.3. DRY
FGD SYSTEMS
4. GLOBAL
FLUE GAS DESULFURIZATION MARKET – BY APPLICATION
4.1. POWER
GENERATION
4.2. CHEMICAL
4.3. IRON
& STEEL
4.4. CEMENT
MANUFACTURING
4.5. OTHER
APPLICATIONS
5. GLOBAL
FLUE GAS DESULFURIZATION MARKET – BY REGIONAL OUTLOOK
5.1. NORTH
AMERICA
5.1.1. MARKET
BY TECHNOLOGY
5.1.2. MARKET
BY APPLICATION
5.1.3. COUNTRY
ANALYSIS
5.1.3.1. UNITED
STATES
5.1.3.1.1. UNITED
STATES FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.1.3.2. CANADA
5.1.3.2.1. CANADA
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.2. EUROPE
5.2.1. MARKET
BY TECHNOLOGY
5.2.2. MARKET
BY APPLICATION
5.2.3. COUNTRY
ANALYSIS
5.2.3.1. UNITED
KINGDOM
5.2.3.1.1. UNITED
KINGDOM FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.2.3.2. GERMANY
5.2.3.2.1. GERMANY
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.2.3.3. FRANCE
5.2.3.3.1. FRANCE
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.2.3.4. ITALY
5.2.3.4.1. ITALY
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.2.3.5. SPAIN
5.2.3.5.1. SPAIN
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.2.3.6. REST
OF EUROPE
5.2.3.6.1. REST
OF EUROPE FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.3. ASIA-PACIFIC
5.3.1. MARKET
BY TECHNOLOGY
5.3.2. MARKET
BY APPLICATION
5.3.3. COUNTRY
ANALYSIS
5.3.3.1. CHINA
5.3.3.1.1. CHINA
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.3.3.2. JAPAN
5.3.3.2.1. JAPAN
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.3.3.3. INDIA
5.3.3.3.1. INDIA
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.3.3.4. SOUTH
KOREA
5.3.3.4.1. SOUTH
KOREA FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.3.3.5. ASEAN
COUNTRIES
5.3.3.5.1. ASEAN
COUNTRIES FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.3.3.6. AUSTRALIA
& NEW ZEALAND
5.3.3.6.1. AUSTRALIA
& NEW ZEALAND FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.3.3.7. REST
OF ASIA-PACIFIC
5.3.3.7.1. REST
OF ASIA-PACIFIC FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.4. LATIN
AMERICA
5.4.1. MARKET
BY TECHNOLOGY
5.4.2. MARKET
BY APPLICATION
5.4.3. COUNTRY
ANALYSIS
5.4.3.1. BRAZIL
5.4.3.1.1. BRAZIL
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.4.3.2. MEXICO
5.4.3.2.1. MEXICO
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.4.3.3. REST
OF LATIN AMERICA
5.4.3.3.1. REST
OF LATIN AMERICA FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.5. MIDDLE
EAST AND AFRICA
5.5.1. MARKET
BY TECHNOLOGY
5.5.2. MARKET
BY APPLICATION
5.5.3. COUNTRY
ANALYSIS
5.5.3.1. UNITED
ARAB EMIRATES
5.5.3.1.1. UNITED
ARAB EMIRATES FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.5.3.2. TURKEY
5.5.3.2.1. TURKEY
FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.5.3.3. SAUDI
ARABIA
5.5.3.3.1. SAUDI
ARABIA FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.5.3.4. SOUTH
AFRICA
5.5.3.4.1. SOUTH
AFRICA FLUE GAS DESULFURIZATION MARKET FORECAST & PROSPECTS
5.5.3.5. REST
OF MIDDLE EAST & AFRICA
5.5.3.5.1. REST
OF MIDDLE EAST & AFRICA FLUE GAS DESULFURIZATION MARKET FORECAST &
PROSPECTS
6. COMPETITIVE
LANDSCAPE
6.1. ANDRITZ
AG
6.1.1. OVERVIEW
6.1.2. PRODUCT
PORTFOLIO
6.1.3. KEY
STRENGTHS
6.1.4. KEY
CHALLENGES
6.2. BABCOCK
& WILCOX ENTERPRISES INC
6.2.1. OVERVIEW
6.2.2. PRODUCT
PORTFOLIO
6.2.3. KEY
STRENGTHS
6.2.4. KEY
CHALLENGES
6.3. CHIYODA
CORPORATION
6.3.1. OVERVIEW
6.3.2. PRODUCT
PORTFOLIO
6.3.3. KEY
STRENGTHS
6.3.4. KEY
CHALLENGES
6.4. DOOSAN
LENTJES GMBH
6.4.1. OVERVIEW
6.4.2. PRODUCT
PORTFOLIO
6.4.3. KEY
STRENGTHS
6.4.4. KEY
CHALLENGES
6.5. DUCON
TECHNOLOGIES INC
6.5.1. OVERVIEW
6.5.2. PRODUCT
PORTFOLIO
6.5.3. KEY
STRENGTHS
6.5.4. KEY
CHALLENGES
6.6. FLSMIDTH
AS
6.6.1. OVERVIEW
6.6.2. PRODUCT
PORTFOLIO
6.6.3. KEY
STRENGTHS
6.6.4. KEY
CHALLENGES
6.7. FUJIAN
LONGKING CO LTD
6.7.1. OVERVIEW
6.7.2. PRODUCT
PORTFOLIO
6.7.3. KEY
STRENGTHS
6.7.4. KEY
CHALLENGES
6.8. GENERAL
ELECTRIC COMPANY
6.8.1. OVERVIEW
6.8.2. PRODUCT
PORTFOLIO
6.8.3. KEY
STRENGTHS
6.8.4. KEY
CHALLENGES
6.9. HAMON
GROUP
6.9.1. OVERVIEW
6.9.2. PRODUCT
PORTFOLIO
6.9.3. KEY
STRENGTHS
6.9.4. KEY
CHALLENGES
6.10. JOHN
WOOD GROUP PLC
6.10.1. OVERVIEW
6.10.2. PRODUCT
PORTFOLIO
6.10.3. KEY
STRENGTHS
6.10.4. KEY
CHALLENGES
6.11. KAWASAKI
HEAVY INDUSTRIES LTD
6.11.1. COMPANY
OVERVIEW
6.11.2. PRODUCT
PORTFOLIO
6.11.3. KEY
STRENGTHS
6.11.4. KEY
CHALLENGES
6.12. MARSULEX
ENVIRONMENTAL TECHNOLOGIES
6.12.1. COMPANY
OVERVIEW
6.12.2. PRODUCT
PORTFOLIO
6.12.3. KEY
STRENGTHS
6.12.4. KEY
CHALLENGES
6.13. MITSUBISHI
HITACHI POWER SYSTEMS LTD
6.13.1. COMPANY
OVERVIEW
6.13.2. PRODUCT
PORTFOLIO
6.13.3. KEY
STRENGTHS
6.13.4. KEY
CHALLENGES
6.14. RAFAKO
SA
6.14.1. COMPANY
OVERVIEW
6.14.2. PRODUCT
PORTFOLIO
6.14.3. KEY
STRENGTHS
6.14.4. KEY
CHALLENGES
6.15. THERMAX
LTD
6.15.1. COMPANY
OVERVIEW
6.15.2. PRODUCT
PORTFOLIO
6.15.3. KEY
STRENGTHS
6.15.4. KEY
CHALLENGES
7. RESEARCH
METHODOLOGY & SCOPE
7.1. RESEARCH
SCOPE & DELIVERABLES
7.2. SOURCES
OF DATA
7.3. RESEARCH
METHODOLOGY
TABLE 1: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY REGIONAL OUTLOOK, 2023-2030 (IN $ MILLION)
TABLE 2: REGULATORY FRAMEWORK
TABLE 3: LIST OF COLLABORATIONS
TABLE 4: LIST OF PRODUCT LAUNCHES
TABLE 5: LIST OF ACQUISITIONS
TABLE 6: LIST OF BUSINESS
DIVESTITURES & EXPANSIONS
TABLE 7: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY TECHNOLOGY, 2023-2030 (IN $ MILLION)
TABLE 8: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY APPLICATION, 2023-2030 (IN $ MILLION)
TABLE 9: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY REGIONAL OUTLOOK, 2023-2030 (IN $ MILLION)
TABLE 10: NORTH AMERICA FLUE
GAS DESULFURIZATION MARKET, BY COUNTRY OUTLOOK, 2023-2030 (IN $ MILLION)
TABLE 11: NORTH AMERICA FLUE
GAS DESULFURIZATION MARKET, BY TECHNOLOGY, 2023-2030 (IN $ MILLION)
TABLE 12: NORTH AMERICA FLUE
GAS DESULFURIZATION MARKET, BY APPLICATION, 2023-2030 (IN $ MILLION)
TABLE 13: EUROPE FLUE GAS
DESULFURIZATION MARKET, BY COUNTRY OUTLOOK, 2023-2030 (IN $ MILLION)
TABLE 14: EUROPE FLUE GAS
DESULFURIZATION MARKET, BY TECHNOLOGY, 2023-2030 (IN $ MILLION)
TABLE 15: EUROPE FLUE GAS
DESULFURIZATION MARKET, BY APPLICATION, 2023-2030 (IN $ MILLION)
TABLE 16: ASIA-PACIFIC FLUE
GAS DESULFURIZATION MARKET, BY COUNTRY OUTLOOK, 2023-2030 (IN $ MILLION)
TABLE 17: ASIA-PACIFIC FLUE
GAS DESULFURIZATION MARKET, BY TECHNOLOGY, 2023-2030 (IN $ MILLION)
TABLE 18: ASIA-PACIFIC FLUE
GAS DESULFURIZATION MARKET, BY APPLICATION, 2023-2030 (IN $ MILLION)
TABLE 19: LATIN AMERICA FLUE
GAS DESULFURIZATION MARKET, BY COUNTRY OUTLOOK, 2023-2030 (IN $ MILLION)
TABLE 20: LATIN AMERICA FLUE
GAS DESULFURIZATION MARKET, BY TECHNOLOGY, 2023-2030 (IN $ MILLION)
TABLE 21: LATIN AMERICA FLUE
GAS DESULFURIZATION MARKET, BY APPLICATION, 2023-2030 (IN $ MILLION)
TABLE 22: MIDDLE EAST AND
AFRICA FLUE GAS DESULFURIZATION MARKET, BY COUNTRY OUTLOOK, 2023-2030 (IN $
MILLION)
TABLE 23: MIDDLE EAST AND
AFRICA FLUE GAS DESULFURIZATION MARKET, BY TECHNOLOGY, 2023-2030 (IN $ MILLION)
TABLE 24: MIDDLE EAST AND
AFRICA FLUE GAS DESULFURIZATION MARKET, BY APPLICATION, 2023-2030 (IN $
MILLION)
FIGURE 1: MARKET MATURITY
ANALYSIS
FIGURE 2: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY TECHNOLOGY, 2022 & 2030 (IN %)
FIGURE 3: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY WET FGD SYSTEMS, 2023-2030 (IN $ MILLION)
FIGURE 4: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY SPRAY DRY FGD SYSTEMS, 2023-2030 (IN $ MILLION)
FIGURE 5: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY DRY FGD SYSTEMS, 2023-2030 (IN $ MILLION)
FIGURE 6: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY APPLICATION, 2022 & 2030 (IN %)
FIGURE 7: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY POWER GENERATION, 2023-2030 (IN $ MILLION)
FIGURE 8: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY CHEMICAL, 2023-2030 (IN $ MILLION)
FIGURE 9: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY IRON & STEEL, 2023-2030 (IN $ MILLION)
FIGURE 10: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY CEMENT MANUFACTURING, 2023-2030 (IN $ MILLION)
FIGURE 11: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY OTHER APPLICATIONS, 2023-2030 (IN $ MILLION)
FIGURE 12: GLOBAL FLUE GAS
DESULFURIZATION MARKET, BY REGIONAL OUTLOOK, 2022 & 2030 (IN %)
FIGURE 13: UNITED STATES FLUE
GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 14: CANADA FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 15: UNITED KINGDOM FLUE
GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 16: GERMANY FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 17: FRANCE FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 18: ITALY FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 19: SPAIN FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 20: REST OF EUROPE FLUE
GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 21: CHINA FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 22: JAPAN FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 23: INDIA FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 24: SOUTH KOREA FLUE
GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 25: ASEAN COUNTRIES
FLUE GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 26: AUSTRALIA & NEW
ZEALAND FLUE GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 27: REST OF
ASIA-PACIFIC FLUE GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 28: BRAZIL FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 29: MEXICO FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 30: REST OF LATIN
AMERICA FLUE GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 31: UNITED ARAB
EMIRATES FLUE GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 32: TURKEY FLUE GAS
DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 33: SAUDI ARABIA FLUE
GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 34: SOUTH AFRICA FLUE
GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)
FIGURE 35: REST OF MIDDLE EAST
& AFRICA FLUE GAS DESULFURIZATION MARKET 2023-2030 (IN $ MILLION)