The “Crude Tall Oil Derivatives Market” 2019 report provides market size (value and volume), market share, growth rate by types, applications, and combines both qualitative and quantitative methods to make micro and macro forecasts in different regions or countries. Crude Tall Oil Derivatives Market report also aims to provide useful and comprehensive insights into current market trends and future growth scenarios. Crude Tall Oil Derivatives market report contains information like SWOT analysis, business highlights, strength, weakness, threats and opportunities of industry.
Top Manufacturers of Crude Tall Oil Derivatives Market Are:
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Scope of the Report:
Crude Tall Oil Derivatives Market Report Answers the Following Questions:
- What will the market size and the growth rate be in 2024?
- What are the key factors driving the global Crude Tall Oil Derivatives market?
- What are the key market trends impacting the growth of the global Crude Tall Oil Derivatives market?
- What are the challenges to market growth?
- Who are the key vendors in the global Crude Tall Oil Derivatives market?
- What are the market opportunities and threats faced by the vendors in the global Crude Tall Oil Derivatives market?
- Trending factors influencing the market shares of the relevant regions.
- What are the key outcomes of the five forces analysis of the global Crude Tall Oil Derivatives market?
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Key Market Trends:
Increasing Production and Demand for Biodiesel
– Crude tall oil (CTO) derivatives are the by-products produced during the kraft pulping process and are used as a feedstock for the production of biodiesel. Biodiesel produced from crude tall oil has improved performance characteristics and lower emissions, as compared to petroleum diesel, due to negligible aromatic compound and sulfur content.
– The rise in demand for alternative fuel vehicles among consumers in the European Union and North America has increased the consumption of biodiesel, in recent years.
– The increasing concerns related to global climate change, improving energy stability, and increasing crude oil prices are expected to propel the demand for biodiesel, which in turn, is expected to increase the consumption of crude tall oil derivatives, during the forecast period.
– In addition, the implementation of government policies to promote biodiesel consumption in countries, such as United States, Argentina, Brazil, and Indonesia, is expected to increase the demand for crude tall oil derivatives for production of biodiesel, over the forecast period.
The Europe Region is Expected to Dominate the Market
– With over 46% of the global demand, Europe is the most promising market for crude tall oil derivatives, which is likely to dominate the market in the near future.
– Sweden and Finland account for over 40% of the demand for crude tall oil derivatives and Sweden is the major shareholder of the market demand in the region.
– Sweden has the long-term goal of generating zero net GHG emissions by 2050. A milestone for this goal is that by 2030, Sweden should have a vehicle fleet that is independent of fossil fuels. This milestone could be realized by powering around 50% of passenger cars running by biofuels and 20% by electricity, and more than 80% of urban buses by electricity. Such a development may drive the need for biofuels, thus, increasing the need for tall oil derivatives.
– Swedens large forestry industry is expected to be the main source for feedstock enabling a sustainable and resource efficient energy system. Sweden has had varying tax exemptions for biofuels since the early 1990s, which is recently extended until 2018.
– In Sweden, energy company Shttps://www.industryresearch.co/crude-tall-oil-derivatives-market-growth-trends-and-forecast-2019-2024–14245235 and the forest products company SCA have formed a partnership, in order to develop large-scale production of renewable fuels from tall oil. The planned production site is expected to be Shttps://www.industryresearch.co/crude-tall-oil-derivatives-market-growth-trends-and-forecast-2019-2024–14245235s refinery in Gothenburg, producing advanced renewable fuels from tall oil with a capacity of 100,000 metric ton per annum. SCA is presently expanding its kraft pulp mill in Ostrand and as a result, the production of tall oil from the mill may increase by more than 100%.
– Furthermore, Germany and United Kingdom are the growth wagons for the market demand in the region. The huge growth of Europe is quite instrumental in the expansion of the global crude tall oil derivatives market.
Market Dynamics: –
- Drivers: (Developing regions and growing markets)
- Limitations: (Regional, Key Player facing Issues, Future Barriers for growth)
- Opportunities: (Regional, Growth Rate, Competitive, Consumption)
The report provides key statistics on the market status of the Crude Tall Oil Derivatives Market manufacturers and is a valuable source of guidance and direction for companies and individuals interested in the Crude Tall Oil Derivatives .
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- Analyzing the size of the Crude Tall Oil Derivatives market on the basis of value and volume.
- Accurately calculating the market segments, consumption, and other dynamic factors of different sections of the global Crude Tall Oil Derivatives market.
- Determining the key dynamics of the Crude Tall Oil Derivatives market.
- Highlighting significant trends of the Crude Tall Oil Derivatives market in terms of manufacture, revenue, and sales.
- Deeply summarizing top players of the Crude Tall Oil Derivatives market and showing how they compete in the industry.
- Studying industry processes and costs, product pricing, and various trends related to them.
- Displaying the performance of different regions and countries in the global Crude Tall Oil Derivatives market.
Detailed TOC of Crude Tall Oil Derivatives Market Report 2019-2024:
1.1 Study Deliverables
1.2 Study Assumptions
1.3 Scope of the Study
2 RESEARCH METHODOLOGY
3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1.1 Increasing Production and Demand for Biodiesel
4.1.2 Rising Demand for Bio-based Chemicals in the End-user Industries
4.2.1 Increase in Availability of Cheaper Substitutes
4.2.2 Other Restraints
4.3 Industry Value-Chain Analysis
4.4 Porter’s Five Forces Analysis
4.4.1 Bargaining Power of Suppliers
4.4.2 Bargaining Power of Consumers
4.4.3 Threat of New Entrants
4.4.4 Threat of Substitute Products and Services
4.4.5 Degree of Competition
4.5 Production Capacities
4.6 Patent Analysis
4.7 Raw Material Analysis
4.8 Patent Analysis
4.9 Production Analysis
4.10 Trade Analysis
5 MARKET SEGMENTATION
5.1 By Fraction
5.1.1 Tall Oil Fatty Acid
18.104.22.168 Mining Chemicals
22.214.171.124 Soaps and Detergents
126.96.36.199 Dimer Acids
188.8.131.52 Other Tall Oil Fatty Acids
5.1.2 Distilled Tall Oil
184.108.40.206 Metal Working
220.127.116.11 Oil Field Chemicals
18.104.22.168 Other Distilled Tall Oils
5.1.3 Tall Oil Rosin
22.214.171.124 Rubber (Emulsifier Pol and Additive)
126.96.36.199 Printing Ink
188.8.131.52 Paper Sizing Chemical
184.108.40.206 Adhesives & Sealants
220.127.116.11 Other Types of Tall Oil Rosin
5.1.4 Tall Oil Pitch
5.2 By End-user Industry
5.2.3 Oil and Gas
5.2.4 Other End-user Industries
18.104.22.168 United Kingdom
22.214.171.124 Rest of Europe
126.96.36.199 South Korea
188.8.131.52 Rest of Asia-Pacific
5.3.3 North America
184.108.40.206 United States
5.3.4 Rest of the World
220.127.116.11 South Africa
18.104.22.168 Rest of the Countries
6 COMPETITIVE LANDSCAPE
6.1 Mergers and Acquisitions, Joint Ventures, Collaborations, and Agreements
6.2 Market Share Analysis**
6.3 Strategies Adopted by Leading Players
6.4 Company Profiles
6.4.1 Eastman Chemical Company
6.4.2 Forchem Oyj
6.4.3 Ingevity Corporation
6.4.4 Kraton Corporation
6.4.5 Mercer International Inc.
6.4.6 Pine Chemical Group Oy
6.4.7 Segezha Group
6.4.8 Ooo Torgoviy Dom Lesokhimik
6.4.9 UPM-Kymmene Oyj
6.4.10 Sunpine AB
6.4.11 Les Derives Resiniques Et Terpeniques SA
6.4.12 Neste OYJ
7 MARKET OPPORTUNITIES AND FUTURE TRENDS
7.1 Rising Demand from Oilfield Chemicals
7.2 Other Opportunities
7.3 Future of the Market
Name: Ajay More
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