global sulphuric acid market forecast 2025 - brochure
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M a r k e t I n t e l l i g e n c e . C o n s u l t i n g
Global Sulphuric Acid Market , By Manufacturing Process , By Application,
By Region, Competit ion Forecast and Opportunities , 2011 - 2025
© TechSci Research
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S. No. Content
1. Product Overview
2. Research Methodology
3. Analyst View
4. Global Sulphuric Acid Market Outlook
4.1. Market Size & Forecast
4.1.1. By Value
4.1.2. By Volume
4.2. Market Share & Forecast
4.2.1. By Manufacturing Process
4.2.2. By Application
4.2.3. By Region
4.2.4. By Company
5. Market Attractive Index Analyses
6. Global Sulphuric Acid Market Regional Analysis
6.1. Asia-Pacific Sulphuric Acid Market Outlook
6.1.1. Market Size & Forecast
6.1.1.1. By Value
6.1.1.2. By Volume
6.1.2. Market Share & Forecast
6.1.2.1. By Manufacturing Process
6.1.2.2. By Application
6.1.2.3. By Country
6.1.2.3.1. China Sulphuric Acid Market Outlook
T a b l e o f C o n t e n t s
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S. No. Content
6.1.2.3.2. India Sulphuric Acid Market Outlook
6.1.2.3.3. Indonesia Sulphuric Acid Market Outlook
6.1.2.3.4. Japan Sulphuric Acid Market Outlook
6.1.2.3.5. Kazakhstan Sulphuric Acid Market Outlook
6.1.2.3.6. Philippines Sulphuric Acid Market Outlook
6.1.2.3.7. South Korea Sulphuric Acid Market Outlook
6.1.2.3.8. Malaysia Sulphuric Acid Market Outlook
6.2. North America Sulphuric Acid Market Outlook
6.2.1. Market Size & Forecast
6.2.1.1. By Value
6.2.1.2. By Volume
6.2.2. Market Share & Forecast
6.2.2.1. By Manufacturing Process
6.2.2.2. By Application
6.2.2.3. By Country
6.2.2.3.1. United States Sulphuric Acid Market Outlook
6.2.2.3.2. Canada Sulphuric Acid Market Outlook
6.2.2.3.3. Mexico Sulphuric Acid Market Outlook
6.3. Middle East & Africa Sulphuric Acid Market Outlook
6.3.1. Market Size & Forecast
6.3.1.1. By Value
T a b l e o f C o n t e n t s
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S. No. Content
6.3.1.2. By Volume
6.3.2. Market Share & Forecast
6.3.2.1. By Manufacturing Process
6.3.2.2. By Application
6.3.2.3. By Country
6.3.2.3.1. South Africa Sulphuric Acid Market Outlook
6.3.2.3.2. Morocco Sulphuric Acid Market Outlook
6.3.2.3.3. Saudi Arabia Sulphuric Acid Market Outlook
6.3.2.3.4. Tunisia Sulphuric Acid Market Outlook
6.3.2.3.5. Egypt Sulphuric Acid Market Outlook
6.3.2.3.6. Turkey Sulphuric Acid Market Outlook
6.3.2.3.7. Iran Sulphuric Acid Market Outlook
6.3.2.3.8. Democratic Republic of Congo Sulphuric Acid Market Outlook
6.3.2.3.9. UAE Sulphuric Acid Market Outlook
6.4. Europe Sulphuric Acid Market Outlook
6.4.1. Market Size & Forecast
6.4.1.1. By Value
6.4.1.2. By Volume
6.4.2. Market Share & Forecast
6.4.2.1. By Manufacturing Process
6.4.2.2. By Application
T a b l e o f C o n t e n t s
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S. No. Content
6.4.2.3. By Country
6.4.2.3.1. Russian Federation Sulphuric Acid Market Outlook
6.4.2.3.2. Germany Sulphuric Acid Market Outlook
6.4.2.3.3. Spain Sulphuric Acid Market Outlook
6.4.2.3.4. Finland Sulphuric Acid Market Outlook
6.4.2.3.5. Poland Sulphuric Acid Market Outlook
6.4.2.3.6. Austria Sulphuric Acid Market Outlook
6.4.2.3.7. Czech Republic Sulphuric Acid Market Outlook
6.5. South America Sulphuric Acid Market Outlook
6.5.1. Market Size & Forecast
6.5.1.1. By Value
6.5.1.2. By Volume
6.5.2. Market Share & Forecast
6.5.2.1. By Manufacturing Process
6.5.2.2. By Application
6.1.2.3. By Country
6.5.2.3.1. Chile Sulphuric Acid Market Outlook
6.5.2.3.2. Brazil Sulphuric Acid Market Outlook
6.5.2.3.3. Cuba Sulphuric Acid Market Outlook
6.5.2.3.4. Peru Sulphuric Acid Market Outlook
6.5.2.3.5. Colombia Sulphuric Acid Market Outlook
T a b l e o f C o n t e n t s
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T a b l e o f C o n t e n t s
S. No. Content
7. Market Dynamics
7.1. Drivers
7.2. Challenges
8. Market Trends & Development
8.1. Increasing Consumption of Sulphur for Manufacturing Sulphuric Acid
8.2. Volatility in Raw Material Prices
8.3. New Sulphur Burners to Change European Trade Flows
8.4. Asia-Pacific Sulphuric Acid Market in Recovery Phase
8.5. China- From Net Importer to Net Exporter
8.6. Rising Demand for Metal Leaching
8.7. Production of Sulphuric Acid from SO2 Emission
8.8. Spray Technology to Optimize Sulphur Burning
9. Import –Export Analysis
10. Competitive Landscape
10.1. The Mosaic Company
10.2. J R Simplot
10.3. Agrium Inc.
10.4. Potash Corporation of Saskatchewan Inc.
10.5. Akzo Nobel N.V. (AMS: AKZA)
10.6. CF Industries Holdings, Inc.
10.7. LSB Industries Inc.
10.8. BASF SE
10.9. Yara International ASA
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T a b l e o f C o n t e n t s
S. No. Content
10.10 Bagfas Bandirma Gubre Fabrikalari A.S.
10.11 Rashtriya Chemicals and Fertilizers Ltd.
10.12 Ube Industries Limited
10.13 Grupa Azoty S.A.
10.14 Coromandel International Limited
10.15 Zuari Agro Chemicals Ltd.
10.16 Southern States Chemical
10.17 Israel Chemicals Ltd
10.18 Indian Farmers Fertiliser Cooperative Limited (IFFCO)
10.19 Eurochem Group AG
10.20 Industrial Chemicals Ltd.
11. Strategic Recommendations
12. About Us & Disclaimer
© TechSci Research
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Baseline Methodology :
For the study of Global Sulphuric Acid Market, TechSci Research has gathered information through an exhaustive
search of credible databases and organizations such as Department of Fertilizers, Ministry of Chemicals & Fertilizers,
Fertilizer Association of India, Food And Agriculture Organization Of The United Nations etc., including our internal
database. Our team of analysts has then prudently evaluated all the collected information and presented the same
in chronological order to depict a meaningful and clear picture of the sulphuric acid market across the globe. While
compiling the data, we have also cross checked all the collected information from multiple sources and data
warehouses, so that we can present the most accurate and precise information of the concerned industry. For the
purpose of calculating the overall global market for sulphuric acid, consumption of sulphuric acid and production of
phosphate fertilizers have been thoroughly analyzed and demand for each segment is projected separately to arrive
at a reasonable figure for Global Sulphuric Acid Market size by 2025.
Secondary Research
Analysis of Data from credible
sources such as Fertilizer
Association of India, Food And
Agriculture Organization Of The
United Nations
Trade analysis of Global
Sulphuric Acid Market
Company annual reports, white
papers, investor presentations
and financial reports
Primary Research
Identifying Key Opinion Leaders
Questionnaire Design
In-depth Interviews
Coverage across Value Chain
Data Analysis
Bottom-Up approach for the
calculation of the Global
Sulphuric Acid market size
Impact analysis of drivers and
challenges to the growth of the
market for Global Sulphuric Acid
Market
Historical trend examination
Statistical analysis to project
the growth of Global Sulphuric
Acid Market
R e s e a r c h M e t h o d o l o g y
Note: In this report, 1 Million Tons has been assumed to be equivalent to 1 Million Metric Tonne
© TechSci Research
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R e s e a r c h M e t h o d o l o g y
Global
Sulphuric
Acid Market
Optimistic
Likely
D1
D2
D3
Short term Medium term Long term
D1
D2
D3
Short term Medium term Long term
XX% + 4% CAGR
• Qualitative to quantitative conversion
• Assigning weightage to drivers
• Statistical evaluation• Developing the actual
forecast based on both the cases
High MediumDegree of impact
• Market indicators expected to outperform during the forecast period
• Market expected to gain traction with increasing impact of drivers
• Market indicators expected to perform at average level during the forecast period
• Market expected to slow down with decreasing impact of drivers
Forecasting Methodology
XX% CAGR
XX% + 2% CAGR
Low
Conservative
© TechSci Research
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R e s e a r c h M e t h o d o l o g y
LIKELY
OPTIMISTIC
IMPACT OF GROWTH DRIVERS
11.0%
12.0%
13.0%
14.0%
10.0%
9.0%
GROWTH FACTOR
LOW
EXP
ECTE
DH
IGH This scenario is characterized by higher
impact of economic and market growth factors on Global Sulphuric Acid Market
This scenario is characterized bymoderate impact of economic andmarket growth factors GlobalSulphuric Acid Market
In this scenario impact of economic aswell as market growth factors iscomparatively very low on GlobalSulphuric Acid Market
P r o d u c t O v e r v i e w
Sulphuric acid is also called oil of vitriol and is a dense, colorless, oily and corrosive mineral acid, which is one of
the most-used chemical for various industrial purposes across the globe. Sulphuric acid is produced by two
major processes, lead chamber and contact process. Both of these processes include oxidization of sulphur di-
oxide and its dissolution in water. Lead chamber process is a conventional method to produce sulphuric acid
which is majorly used in manufacturing of fertilizers, while contact process produces more concentrated
sulphuric acid and requires purest for of available raw materials.
Sulphuric acid is majorly utilized for production of phosphate fertilizers, especially wet-process phosphoric acid.
However, sulphuric acid consumption in chemical synthesis, metal processing and other industrial applications is
gaining popularity. Other important applications are in petroleum refining, steel pickling, rayon & staple fiber,
alum, explosives, detergents, plastics and fibers etc.
Sulphuric acid is produced in 4 main steps:
a) Extraction of elemental sulphur
b) Conversion of elemental sulphur to sulphur di-oxide (SO2)
c) Conversion of sulphur di-oxide to sulphur tr-ioxide (SO3)
d) Conversion of sulphur tr-ioxide to sulphuric acid.
Three main processes to produce sulphuric acid differ by the raw material that is used to make intermediate
sulphur di-oxide (SO2) gas. After formation of sulphur di-oxide, the manufacturing processes convert it to
sulphuric acid in a similar way. 11
Metal Sulphide SO2% Raw Gases
O2% Process Gases
SO2%Variability in time
ZnS containing ores XXXX XXXX XXXX XXXX
CuS containing ores XXXX XXXX XXXX XXXX
PbS containing ores
– sintering
– other lead smelters
XXXX XXXX XXXX XXXX
XXXX XXXX XXXX XXXX
XXXX XXXX XXXX XXXX
Table 1: Principal Metal Sulphides Producing Sulphur Di-Oxide
Burning of sulphur is most widely used method for producing sulphuric acid across the world. Elemental sulphur
is recovered from desulphurization of natural gas or crude oil. Around 87% of global sulphur produced is used
for the manufacturing of sulphuric acid.
Many metal ores occur as sulphides and they emit gases, which contain sulphur di-oxide that is released when it
is roasted during metallurgical processes. This SO2 is further processed to produce sulphuric acid. For instance,
in the process of extraction of copper metal, sulphuric acid is recovered as a by-product from off-gases
generated from smelting and converting furnaces.
Pyrite roasting is another method for producing sulphuric acid, wherein pyrite ores are roasted in fluidized beds.
The gases released from the roasters contain high content of sulphur di-oxide, which is converted to sulphuric
acid.
P r o d u c t O v e r v i e w
12
Source:XXXXXNote: These are dummy figures; please purchase our report for actual data
I n d u s t r y B r i e f
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Sulphuric Acid Market Size to Cross $18 Billion by 2020
According to TechSci Research report, “Global Sulphuric Acid Market, By Manufacturing Process, ByApplication, By Region Competition Forecast and Opportunities, 2011 - 2025”, the global sulphuric acidmarket is projected to register sales of $18 Billion in 2020, on account of surging demand for phosphatefertilizers such as DAP (diammonium phosphate), MAP (monoammonium phosphate), TSP (triplesuperphosphate), SSP (single superphosphate), etc. Global demand for phosphate fertilizers is projected toincrease from 42.1 million tons in 2015 to 45.6 million tons by 2019. Furthermore, global phosphoric acidproduction is anticipated to increase from 46 million tons in 2015 to 51.9 million tons by 2019, therebyaugmenting consumption of sulphuric acid for production of phosphate fertilizers in the coming years. Thus,expanding capacity to produce more phosphates, coupled with growing application of sulphuric acid as a rawmaterial for chemical manufacturing processes and in metal leaching are further expected to drive globalsulphuric acid market through 2025.
Global sulphuric acid market was dominated by Asia-Pacific in 2015, and the trend is anticipated to continuethrough 2025, owing to vast production capacity of sulphuric acid and phosphate fertilizers. The region houseselemental sulphur and base metal smelters in countries such as China, India, South Korea and Japan.Moreover, sulphur combustion dominated global sulphuric acid market in 2015, and is expected to furthercontinue dominating the market through 2025, owing to increasing desulphurization of fuels. Furthermore,sulphur combustion provides economic benefits to refinery and petrochemical plant owners, as they can easilycapture sulphur through installation of a desulphurization unit.
“Europe is expected to witness imbalance in demand and supply equilibrium of sulphuric acid in the comingyears, on account of declining demand from traditional customers of European smelters. However, owing togrowing demand for phosphate fertilizers in APAC, coupled with expanding production capacity in variousregions across the globe to drive global sulphuric acid market through 2025.”, said Mr. Karan Chechi, ResearchDirector with TechSci Research, a research based global management consulting firm.
2011
2012
2013
2014
2015
2016E
2017F
2018F
2019F
2020F
2021F
2022F
2023F
2024F
2025F
Value 1.002.003.004.005.00 7.008.009.0010.011.012.013.014.015.016.0
S a m p l e D a t a - S n a p s h o t
Global Sulphuric Acid Market Size, By Value,
2011-2025F (USD Billion)
14
© TechSci ResearchSource:XXXXXNote: These are dummy figures; please purchase our report for actual data
Global Sulphuric Acid Market Share, By Region, By Volume, 2011-2025F
10% 10% 10% 10% 10% 10% 10% 10% 10% 10% 10% 10% 10% 10% 10%
15% 15% 15% 15% 15% 15% 15% 15% 15% 15% 15% 15% 15% 15% 15%
20% 20% 20% 20% 20% 20% 20% 20% 20% 20% 20% 20% 20% 20% 20%
25% 25% 25% 25% 25% 25% 25% 25% 25% 25% 25% 25% 25% 25% 25%
30% 30% 30% 30% 30% 30% 30% 30% 30% 30% 30% 30% 30% 30% 30%
2011 2012 2013 2014 2015 2016E2017F2018F2019F2020F2021F2022F2023F2024F2025F
Asia-Pacific North America Middle East & Africa
Europe South America
Global Sulphuric Acid Market Attractiveness Index, By
Region, By Volume, 2015-2025F
0.00%
1.00%
2.00%
3.00%
4.00%
5.00%
6.00%
0.00 1.00 2.00 3.00 4.00 5.00 6.00
Asia-Pacific
Middle East & Africa
EuropeNorth America
South America
United States, 25.0%
Canada, 25.0%
Mexico, 25.0%
Rest Of the …
United States, Canada and Mexico
Share in Global Sulphur Production,
By Volume, 2014
United States, Canada and Mexico
Share in Global Copper Mine
Production, By Volume, 2014
United States, 25.0%
Canada, 25.0%
Mexico, 25.0%
Rest Of the …
12
34
5
Global Phosphate Fertilizer
Production , By Region*
2014 (Million Tons)
1
2
3
4
5
2015 2016E 2017F 2018F 2019F
Global Demand for
Phosphate Fertilizer, 2015-
2019F (Million Tons)
Asia-Pacific Sulphuric Acid Share, By
Manufacturing Process, By Volume, 2011-2025F
10%10%10%10%10%10%10%10%10%10%10%10%10%10%10%
20%20%20%20%20%20%20%20%20%20%20%20%20%20%20%
70%70%70%70%70%70%70%70%70%70%70%70%70%70%70%
Sulphur Combustion Smelting Pyrite Roasting
R e p o r t O r d e r i n g
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Application, By Region, Competition Forecast and Opportunities, 2011 - 2025
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A b o u t U s & D i s c l a i m e r
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The contents of this report are based on information generally available to the public from sources believed to be reliable. No representation is madethat it is timely, accurate or complete. TechSci Research has taken due care and caution in compilation of data as this has been obtained from varioussources including which it considers reliable and first hand. However, TechSci Research does not guarantee the accuracy, adequacy or completeness ofany information and it is not responsible for any errors or omissions or for the results obtained from the use of such information and especially statesthat it has no financial liability whatsoever to the subscribers / users of this report. The information herein, together with all estimates and forecasts,can change without notice. All the figures provided in this document are indicative of relative market size and are strictly for client’s internalconsumption. Usage of the same for purpose other than internal will require prior approval of TechSci Research.