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Ethylene Propylene Diene Monomer (EPDM) Market: Current Analysis and Forecast (2022-2028)
According to a new report published by UnivDatos Markets Insights, the Ethylene Propylene Diene Monomer (EPDM) Market is expected to grow at a CAGR of around 8% from 2022-2028. The analysis has been segmented into Manufacturing Process (Solution Polymerization Process, Slurry/Suspension Process, and Gas Phase Polymerization); Application (Building & Construction, Automotive, Plastic Modification, Military & Defense, Wire & Cable, Lubricant Additive, and Others); Region/Country.
The Ethylene Propylene Diene Monomer (EPDM) market report has been aggregated by collecting informative data on various dynamics such as market drivers, restraints, and opportunities. This innovative report makes use of several analyses to get a closer outlook on the Ethylene Propylene Diene Monomer (EPDM) market. The Ethylene Propylene Diene Monomer (EPDM) market report offers a detailed analysis of the latest industry developments and trending factors in the market that are influencing the market growth. Furthermore, this statistical market research repository examines and estimates the Ethylene Propylene Diene Monomer (EPDM) market at the global and regional levels.
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Market Overview
Ethylene Propylene Diene Monomer (EPDM) is a synthetic material obtained from natural gas and thermal cracking petroleum products such as naphtha. EPDM is widely used in low-slope buildings, automotive applications, and construction applications due to their longer durability and superior resistance to environmental factors such as UV, ozone, and other weather condition. In recent times, the EPDM witnessed significant demand due to its increasing demand from the automotive industry, manufacturing & construction industry attributed to its lower cost, higher moldability, and longer durability. Also, the EPDM could be used as an alternative to silicon rubber and could also be incorporated in the hose, O-ring, accumulator bladder, diaphragms, and connectors for wire & cables among many other applications on the account of their higher resistance towards tearing, abrasive, solvent, and temperature.
Factors such as technological advancement coupled with the growing number of industries and manufacturing units along with the new product launches in the market are some of the prominent factors that are positively influencing the market growth globally.
Some of the major players operating in the market include DowDuPont Inc., Exxon Mobil Corporation, Lion Elastomers, Johns Manville, SK Global Chemical Co. Ltd, Lanxess AG, Mitsui Chemical Inc., PetroChina Company Limited, Kumho Polychem, and Versalis S.p.A.
COVID-19 Impact
The recent covid-19 pandemic has disrupted the world and has brought a state of shock to the global economy. The global pandemic has impacted the manufacturing industry along with supply chain disruption, regulatory and policy changes, labor reliance, working capital management, and liquidity & solvency management. The Ethylene Propylene Diene Monomer (EPDM) market has been significantly affected during these times owing to the gap between supply and demand.
The global Ethylene Propylene Diene Monomer (EPDM) market report is studied thoroughly with several aspects that would help stakeholders in making their decisions more curated.
Based on application, the market is segmented into building & construction, automotive, plastic modification, military & defense, wire & cable, lubricant additive, and others. The automotive industry is expected to witness significant CAGR during the forecast period owing to the increasing automotive vehicle sale coupled with the adoption of EPDM-based products in the vehicle such as rear lamp gaskets, tire sidewalls, front & rear bumper, and inner tire tubes among others. Also, the EPDM-based material has excellent barriers against the road surface, engine vibration, and resistance against the weather such as UV light, acid rain, as well as atmospheric pollution and is expected to support the market growth in the coming time.
Based on the manufacturing process, the market is segmented into solution polymerization process, slurry/suspension process, and gas phase polymerization. The solution polymerization segment is expected to witness significant growth during the forecast period due to the higher concentration and lower required amount for the optimized performance. Additionally, solution polymerization is used to manufacture both crystalline and amorphous polymer grades and is expected to support market growth.
Ethylene Propylene Diene Monomer (EPDM) Market Geographical Segmentation Includes:
North America (United States, Canada, and Rest of North America)
Europe (Germany, United Kingdom, Spain, Italy, France, and the Rest of Europe)
Asia-Pacific (China, Japan, India, and the Rest of Asia-Pacific)
Rest of the World
Asia-Pacific is anticipated to grow at a substantial CAGR during the forecast period. This is mainly due to the rapid industrialization and growing automotive industries along with the electronic & electrical industry, consumer goods industry, and medical sector in the region. Also, the ongoing infrastructural projects and increasing disposable income of the individual are expected to support market growth in the coming time. Furthermore, EPDM has also been used as a substitute for thermoplastic olefins and thermoplastic vulcanizate in the manufacturing industry. Also, the lower cost of the raw material coupled with the lower cost of production associated with the lower labor cost propels the market for the EPDM. Moreover, the growing research & development activities, increasing investment, and technological investment are expected to derive the market in the coming time. For instance, in March 2022, Arlanxeo a Netherland-based firm announced to increase in its production capacity by 15% for its EPDM plant based in Changzhou, China.
The major players targeting the market include:
DowDuPont Inc.
Exxon Mobil Corporation
Lion Elastomers
Johns Manville
SK Global Chemical Co. Ltd
Lanxess AG
Mitsui Chemical Inc.
PetroChina Company Limited
Kumho Polychem
Versalis S.p.A.
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Competitive Landscape
The degree of competition among prominent global companies has been elaborated by analyzing several leading key players operating worldwide. The specialist team of research analysts sheds light on various traits such as global market competition, market share, most recent industry advancements, innovative product launches, partnerships, mergers, or acquisitions by leading companies in the Ethylene Propylene Diene Monomer (EPDM) market. The major players have been analyzed by using research methodologies for getting insight views on global competition.
Key questions resolved through this analytical market research report include:
• What are the latest trends, new patterns, and technological advancements in the Ethylene Propylene Diene Monomer (EPDM) market?
• Which factors are influencing the Ethylene Propylene Diene Monomer (EPDM) market over the forecast period?
• What are the global challenges, threats, and risks in the Ethylene Propylene Diene Monomer (EPDM) market?
• Which factors are propelling and restraining the Ethylene Propylene Diene Monomer (EPDM) market?
• What are the demanding global regions of the Ethylene Propylene Diene Monomer (EPDM) market?
• What will be the global market size in the upcoming years?
• What are the crucial market acquisition strategies and policies applied by global companies?
We understand the requirement of different businesses, regions, and countries, we offer customized reports as per your requirements of business nature and geography. Please let us know If you have any custom needs.
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businessindustry · 3 months
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Renewable Naphtha Market Key Players Profile Outlook and Forecast Till 2032
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The Reports and Insights, a leading market research company, has recently releases report titled “Renewable Naphtha Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2024-2032.” The study provides a detailed analysis of the industry, including the global Renewable Naphtha Market share, size, trends, and growth forecasts. The report also includes competitor and regional analysis and highlights the latest advancements in the market.
Report Highlights:
How big is the Renewable Naphtha Market?
The renewable naphtha market size reached US$ 472.4 Million in 2023. Looking forward, Reports and Insights expects the market to reach US$ 1,104.8 Million by 2032, exhibiting a growth rate (CAGR) of 9.9% during 2024-2032.
What are Renewable Naphtha?                                                                                                                                                                            
Renewable naphtha is a form of naphtha created from sustainable sources like biomass, algae, or waste products using methods such as pyrolysis, gasification, or fermentation. While chemically akin to conventional naphtha from fossil fuels, it serves as a greener alternative. This renewable naphtha can serve as a raw material for manufacturing different chemicals, including plastics, solvents, and fuels, offering a sustainable and eco-friendly substitute to traditional naphtha sourced from crude oil.
Request for a sample copy with detail analysis: https://www.reportsandinsights.com/sample-request/1592
What are the growth prospects and trends in the Renewable Naphtha industry?
The renewable naphtha market growth is driven by various factors. The market for renewable naphtha is experiencing notable growth, fueled by a heightened emphasis on sustainable options within the petrochemical sector. Environmental considerations and regulatory frameworks promoting renewable energy sources are propelling the adoption of renewable naphtha, sourced from biomass, algae, or waste materials. This eco-conscious alternative is increasingly utilized as a raw material for a range of chemicals, including plastics and solvents. Furthermore, advancements in conversion technologies and governmental support for renewable energy are driving further market expansion. Hence, all these factors contribute to renewable naphtha market growth.
What is included in market segmentation?
The report has segmented the market into the following categories:
By Feedstock:
Vegetable Oils
Animal Fats
Algal Biomass
Other Biomass
By Technology:
Hydrotreating
Deoxygenation
Hydrogenation
By Application:
Chemicals & Polymers
Fuels
Others
By End-Use Industry:
Petrochemicals
Transportation
Others
Segmentation By Region:
North America:
United States
Canada
Asia Pacific:
China
India
Japan
South Korea
Australia & New Zealand
Association of Southeast Asian Nations (ASEAN)
Rest of Asia Pacific
Europe:
Germany
The U.K.
France
Spain
Italy
Russia
Poland
BENELUX (Belgium, the Netherlands, Luxembourg)
NORDIC (Norway, Sweden, Finland, Denmark)
Rest of Europe
Latin America:
Brazil
Mexico
Argentina
Rest of Latin America
The Middle East & Africa:
Saudi Arabia
United Arab Emirates
South Africa
Egypt
Israel
Rest of MEA (Middle East & Africa)
Who are the key players operating in the industry?
The report covers the major market players including:
Neste Corporation
TotalEnergies
Repsol S.A.
Eni S.p.A.
Honeywell UOP
Chevron Corporation
Axens
INEOS Group AG
Preem AB
OMV Aktiengesellschaft
Enerkem Inc.
REG Life Sciences LLC
Clariant AG
Dow Inc.
LyondellBasell Industries N.V.
View Full Report: https://www.reportsandinsights.com/report/Renewable Naphtha-market
If you require any specific information that is not covered currently within the scope of the report, we will provide the same as a part of the customization.
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Reports and Insights consistently mееt international benchmarks in the market research industry and maintain a kееn focus on providing only the highest quality of reports and analysis outlooks across markets, industries, domains, sectors, and verticals. We have bееn catering to varying market nееds and do not compromise on quality and research efforts in our objective to deliver only the very best to our clients globally.
Our offerings include comprehensive market intelligence in the form of research reports, production cost reports, feasibility studies, and consulting services. Our team, which includes experienced researchers and analysts from various industries, is dedicated to providing high-quality data and insights to our clientele, ranging from small and medium businesses to Fortune 1000 corporations.
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chemanalystdata · 9 months
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Heavy Aromatic Naphtha Solvent Price, Monitor, Trend, Demand & Market Analysis | ChemAnalyst
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The Heavy Aromatic Naphtha Solvent market has witnessed dynamic fluctuations in prices, reflecting the intricate balance between supply and demand forces. As an essential component in various industries, such as petrochemicals, pharmaceuticals, and agriculture, Heavy Aromatic Naphtha Solvent plays a pivotal role in driving economic activities. The pricing trends of this solvent are influenced by a myriad of factors, encompassing global oil prices, geopolitical events, and market dynamics specific to the chemical industry.
One of the primary determinants of Heavy Aromatic Naphtha Solvent prices is the intricate relationship it shares with crude oil prices. As a derivative of crude oil, changes in the global oil market have a direct impact on the cost of production for Heavy Aromatic Naphtha Solvent. Fluctuations in oil prices, driven by geopolitical tensions, production levels, or economic trends, thus reverberate through the Heavy Aromatic Naphtha Solvent market. For instance, an increase in crude oil prices often leads to a rise in the cost of manufacturing Heavy Aromatic Naphtha Solvent, subsequently influencing market prices.
Furthermore, supply and demand dynamics within the petrochemical industry also contribute significantly to Heavy Aromatic Naphtha Solvent pricing. The demand for this solvent is intricately linked to its versatile applications across various sectors. Industries such as pharmaceuticals utilize Heavy Aromatic Naphtha Solvent as a crucial ingredient in the production of medicines and drugs. Similarly, in the agricultural sector, it finds use in pesticides and herbicides. The cyclic nature of demand from these sectors can exert pressure on market prices, with fluctuations in production requirements leading to corresponding shifts in Heavy Aromatic Naphtha Solvent costs.
Get Real Time Prices of Heavy Aromatic Naphtha Solvent: https://www.chemanalyst.com/Pricing-data/heavy-aromatic-naphtha-solvent-1177
The global economic landscape and geopolitical events can also act as catalysts for changes in Heavy Aromatic Naphtha Solvent prices. Economic downturns or geopolitical tensions may disrupt supply chains, impacting the availability of raw materials and the production process. Consequently, these disruptions can contribute to price volatility within the Heavy Aromatic Naphtha Solvent market. Market participants closely monitor these external factors, as they can serve as leading indicators of potential shifts in pricing trends.
Regulatory changes and environmental considerations have added another layer of complexity to the Heavy Aromatic Naphtha Solvent market. Stringent environmental regulations and a growing emphasis on sustainable practices have prompted industries to reevaluate their solvent choices. This shift towards eco-friendly alternatives or the development of green technologies can influence the demand for Heavy Aromatic Naphtha Solvent, thereby affecting its market prices. Manufacturers and suppliers are increasingly adapting to these regulatory changes, incorporating sustainability into their practices, which can have implications on production costs and, subsequently, pricing structures.
In conclusion, the Heavy Aromatic Naphtha Solvent market is characterized by a multifaceted interplay of factors that collectively determine its pricing trends. From the influence of crude oil prices and supply-demand dynamics within the petrochemical industry to global economic conditions and environmental considerations, the market is subject to a complex web of variables. Stakeholders in the Heavy Aromatic Naphtha Solvent industry must navigate these intricacies to make informed decisions, adapting to the evolving landscape of supply, demand, and regulatory frameworks. As the global economy continues to evolve, so too will the Heavy Aromatic Naphtha Solvent market, requiring vigilance and adaptability from industry participants to thrive in this dynamic environment.
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sanemyamen · 1 year
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Denatured Alcohol Market to Observe Strong Growth to Generate Massive Revenue in Coming Years
Latest business intelligence report released on Global Denatured Alcohol Market, covers different industry elements and growth inclinations that helps in predicting market forecast. The report allows complete assessment of current and future scenario scaling top to bottom investigation about the market size, % share of key and emerging segment, major development, and technological advancements. Also, the statistical survey elaborates detailed commentary on changing market dynamics that includes market growth drivers, roadblocks and challenges, future opportunities, and influencing trends to better understand Denatured Alcohol market outlook. List of Key Players Profiled in the study includes market overview, business strategies, financials, Development activities, Market Share and SWOT analysis are Commercial Alcohols (Canada),Warner Graham Company (United States),Dow Chemical (United States),BASF (Germany),SABIC (Saudi Arabia),Recochem (Canada),ADM (United States),Valero Energy Corporation (United States),Green Plains Renewable Energy (United States),Cargill (United States)
Denatured alcohol is also referred to as is ethanol, ethyl alcohol that is not fit for human consumption as they use to add one or more chemicals (denaturants) to this alcohol. The chemicals that are used are Denaturing which helps in referring to removing a property from the alcohol which is being able to drink it, hence these denatured alcohol contains ordinary ethyl alcohol. These are used in solvent, fuels for different applications such as burners, stoves and many more. It is observed that, in the United States, there is a much greater percentage of Methanol as compared to ethanol. Hence the application of this denatured alcohol in various products is driving nature. Key Market Trends: Acceptance of Methanol as the Main Additive used in the Manufacturing of Denatured Alcohol
Denatured Alcohol Owing to the Eco-Friendly Attributes and its Various Applications in Many Industries Opportunities: Building Commercial and Industrial Spaces has led them for Maintenance and Cleaning purpose, Hence Increasing the Demand for Denatured Alcohol Market
Market Growth Drivers: Rising Demand for Household Applications Coupled with Cosmetic Industry
Cumulating Different Applications as a Solvent and Fuel both Indoor and Outdoor Activities
Challenges: These Alcohols Dries out very Easily and can get Evaporated if not Stored Carefully
Issue related to the Odor and Appearance of these Alcohols that can Make it Difficult for the Consumer to Use
The Global Denatured Alcohol Market segments and Market Data Break Down by Type (Specially Denatured Alcohol (SDA), Completely Denatured Alcohol (CDA)), Application (Cleaning Solvent (Glass/Window Cleaning, Cleaning Paint Brushes (Oil Paint Based), Cleaning of Makeup, Grass Stains and Ink Stains, Cleaning of Metal Parts), Remove mold and Mildew, Woodworking and Restoring Furniture, Fuel, Other), Chemical Additives (Methanol, Isopropyl alcohol, Acetone, Methyl Ethyl Ketone, Denatonium, Methyl isobutyl ketone, Others (Naphtha)
Presented By
AMA Research & Media LLP
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petnews2day · 2 years
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Biobased Chemicals, Materials, Polymers, Plastics, Paints & Coatings and Fuel Global Market to 2033
New Post has been published on https://petnews2day.com/pet-industry-news/pet-financial-news/biobased-chemicals-materials-polymers-plastics-paints-coatings-and-fuel-global-market-to-2033/
Biobased Chemicals, Materials, Polymers, Plastics, Paints & Coatings and Fuel Global Market to 2033
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Dublin, Nov. 09, 2022 (GLOBE NEWSWIRE) — The “The Global Market for Biobased Chemicals, Materials, Polymers, Plastics, Paints & Coatings and Fuels to 2033” report has been added to ResearchAndMarkets.com’s offering.
Biobased materials refer to products that mainly consist of a substance (or substances) derived from living matter (biomass) and either occur naturally or are synthesized, or it may refer to products made by processes that use biomass. Materials from biomass sources include bulk chemicals, platform chemicals, solvents, polymers, and biocomposites.
The many processes to convert biomass components to value-added products and fuels can be classified broadly as biochemical or thermochemical.
In addition, biotechnological processes that rely mainly on plant breeding, fermentation, and conventional enzyme isolation also are used. New bio-based materials that may compete with conventional materials are emerging continually, and the opportunities to use them in existing and novel products are explored in this publication.
There is growing consumer demand and regulatory push for bio-based chemicals, materials, polymers, plastics, paints, coatings and fuels with high performance, good recyclability and biodegradable properties to underpin transition towards more sustainable manufacturing and products.
Contents include:
In-depth market analysis of bio-based chemical feedstocks, biopolymers, bioplastics, natural fibers and lignin, biofuels and bio-based coatings and paints.
Global production capacities, market volumes and trends,current and forecast to 2033.
Analysis of bio-based chemical including 11-Aminoundecanoic acid (11-AA), 1,4-Butanediol (1,4-BDO), Dodecanedioic acid (DDDA), Epichlorohydrin (ECH), Ethylene, Furan derivatives, 5-Chloromethylfurfural (5-CMF), 2,5-Furandicarboxylic acid (2,5-FDCA), Furandicarboxylic methyl ester (FDME), Isosorbide, Itaconic acid, 5 Hydroxymethyl furfural (HMF), Lactic acid (D-LA), Lactic acid – L-lactic acid (L-LA), Lactide, Levoglucosenone, Levulinic acid, Monoethylene glycol (MEG), Monopropylene glycol (MPG), Muconic acid, Naphtha, 1,5-Pentametylenediamine (DN5), 1,3-Propanediol (1,3-PDO), Sebacic acid and Succinic acid.
Analysis of synthetic bio-polymers and bio-plastics market including Polylactic acid (Bio-PLA), Polyethylene terephthalate (Bio-PET), Polytrimethylene terephthalate (Bio-PTT), Polyethylene furanoate (Bio-PEF), Polyamides (Bio-PA), Poly(butylene adipate-co-terephthalate) (Bio-PBAT), Polybutylene succinate (PBS) and copolymers, Polyethylene (Bio-PE), Polypropylene (Bio-PP)
Analysis of naturally produced bio-based polymers including Polyhydroxyalkanoates (PHA), Polysaccharides, Microfibrillated cellulose (MFC), Cellulose nanocrystals, Cellulose nanofibers, Protein-based bioplastics, Algal and fungal.
Analysis of market for biofuels.
Analysis of types of natural fibers including plant fibers, animal fibers including alternative leather, wool, silk fiber and down and polysaccharides.
Markets for natural fibers, including composites, aerospace, automotive, construction & building, sports & leisure, textiles, consumer products and packaging.
Production capacities of lignin producers.
In depth analysis of biorefinery lignin production.
Analysis of the market for bio-based, sustainable paints and coatings.
Analysis of types of bio-coatings and paints market. Including Alkyd coatings, Polyurethane coatings, Epoxy coatings, Acrylate resins, Polylactic acid (Bio-PLA), Polyhydroxyalkanoates (PHA), Cellulose, Rosins, Biobased carbon black, Lignin, Edible coatings, Protein-based biomaterials for coatings, Alginate etc.
Profiles of over 800 companies.
Story continues
Key Topics Covered:
1 EXECUTIVE SUMMARY
2 RESEARCH METHODOLOGY
3 THE GLOBAL PLASTICS MARKET 3.1 Global production 3.2 The importance of plastic 3.3 Issues with plastics use 3.4 Policy and regulations 3.5 The circular economy 3.6 Conventional polymer materials used in packaging 3.6.1 Polyolefins: Polypropylene and polyethylene 3.6.2 PET and other polyester polymers 3.6.3 Renewable and bio-based polymers for packaging 3.7 Comparison of synthetic fossil-based and bio-based polymers 3.8 End-of-life treatment of bioplastics
4 BIO-BASED CHEMICALS 4.1 Types 4.2 Production capacities 4.3 Bio-based adipic acid 4.4 11-Aminoundecanoic acid (11-AA) 4.5 1,4-Butanediol (1,4-BDO) 4.6 Dodecanedioic acid (DDDA) 4.7 Epichlorohydrin (ECH) 4.8 Ethylene 4.9 Furfural 4.10 5-Hydroxymethylfurfural (HMF) 4.11 5-Chloromethylfurfural (5-CMF) 4.12 2,5-Furandicarboxylic acid (2,5-FDCA) 4.13 Furandicarboxylic methyl ester (FDME) 4.14 Isosorbide 4.15 Itaconic acid 4.16 3-Hydroxypropionic acid (3-HP) 4.17 5 Hydroxymethyl furfural (HMF) 4.18 Lactic acid (D-LA) 4.19 Lactic acid – L-lactic acid (L-LA) 4.20 Lactide 4.21 Levoglucosenone 4.22 Levulinic acid 4.23 Monoethylene glycol (MEG) 4.24 Monopropylene glycol (MPG) 4.25 Muconic acid 4.26 Naphtha 4.27 Pentamethylene diisocyanate 4.28 1,3-Propanediol (1,3-PDO) 4.29 Sebacic acid 4.30 Succinic acid (SA)
5 BIOPOLYMERS AND BIOPLASTICS 5.1 Bio-based or renewable plastics 5.1.1 Drop-in bio-based plastics 5.1.2 Novel bio-based plastics 5.2 Biodegradable and compostable plastics 5.2.1 Biodegradability 5.2.2 Compostability 5.3 Advantages and disadvantages 5.4 Types of Bio-based and/or Biodegradable Plastics 5.5 Market leaders by biobased and/or biodegradable plastic types 5.6 Regional/country production capacities, by main types 5.6.1 Bio-based Polyethylene (Bio-PE) production capacities, by country 5.6.2 Bio-based Polyethylene terephthalate (Bio-PET) production capacities, by country 5.6.3 Bio-based polyamides (Bio-PA) production capacities, by country 5.6.4 Bio-based Polypropylene (Bio-PP) production capacities, by country 5.6.5 Bio-based Polytrimethylene terephthalate (Bio-PTT) production capacities, by country 5.6.6 Bio-based Poly(butylene adipate-co-terephthalate) (PBAT) production capacities, by country 5.6.7 Bio-based Polybutylene succinate (PBS) production capacities, by country 5.6.8 Bio-based Polylactic acid (PLA) production capacities, by country 5.6.9 Polyhydroxyalkanoates (PHA) production capacities, by country 5.6.10 Starch blends production capacities, by country 5.7 SYNTHETIC BIO-BASED POLYMERS 5.7.1 Polylactic acid (Bio-PLA) 5.7.1.1 Market analysis 5.7.1.2 Producers 5.7.2 Polyethylene terephthalate (Bio-PET) 5.7.2.1 Market analysis 5.7.2.2 Producers 5.7.3 Polytrimethylene terephthalate (Bio-PTT) 5.7.3.1 Market analysis 5.7.3.2 Producers 5.7.4 Polyethylene furanoate (Bio-PEF) 5.7.4.1 Market analysis 5.7.4.2 Comparative properties to PET 5.7.4.3 Producers 5.7.5 Polyamides (Bio-PA) 5.7.5.1 Market analysis 5.7.5.2 Producers 5.7.6 Poly(butylene adipate-co-terephthalate) (Bio-PBAT) 5.7.6.1 Market analysis 5.7.6.2 Producers 5.7.7 Polybutylene succinate (PBS) and copolymers 5.7.7.1 Market analysis 5.7.7.2 Producers 5.7.8 Polyethylene (Bio-PE) 5.7.8.1 Market analysis 5.7.8.2 Producers 5.7.9 Polypropylene (Bio-PP) 5.7.9.1 Market analysis 5.7.9.2 Producers 5.8 NATURAL BIO-BASED POLYMERS 5.8.1 Polyhydroxyalkanoates (PHA) 5.8.1.1 Types 5.8.1.2 Synthesis and production processes 5.8.1.3 Market analysis 5.8.1.4 Commercially available PHAs 5.8.1.5 Markets for PHAs 5.8.1.6 Producers 5.8.2 Polysaccharides 5.8.2.1 Microfibrillated cellulose (MFC) 5.8.2.2 Cellulose nanocrystals 5.8.2.3 Cellulose nanofibers 5.8.2.4 Bacterial Nanocellulose (BNC) 5.8.3 Protein-based bioplastics 5.8.3.1 Types, applications and producers 5.8.4 Algal and fungal 5.8.4.1 Algal 5.8.4.2 Mycelium 5.8.5 Chitosan 5.8.6 Microplastics alternatives 5.9 PRODUCTION OF BIOBASED AND SUSTAINABLE PLASTICS, BY REGION 5.9.1 North America 5.9.2 Europe 5.9.3 Asia-Pacific 5.9.3.1 China 5.9.3.2 Japan 5.9.3.3 Thailand 5.9.3.4 Indonesia 5.9.4 Latin America 5.10 MARKET SEGMENTATION OF BIOPLASTICS 5.10.1 Packaging 5.10.2 Consumer products 5.10.3 Automotive 5.10.4 Building & construction 5.10.5 Textiles 5.10.6 Electronics 5.10.7 Agriculture and horticulture 5.11 BIO-BASED CHEMICALS, BIOPOLYMERS AND BIOPLASTICS COMPANY PROFILES (325 company profiles)
6 NATURAL FIBERS 6.1 Manufacturing method, matrix materials and applications of natural fibers 6.2 Advantages of natural fibers 6.3 Commercially available next-gen natural fiber products 6.4 Market drivers for next-gen natural fibers 6.5 Challenges 6.6 Plants (cellulose, lignocellulose) 6.6.1 Seed fibers 6.6.1.1 Cotton 6.6.1.2 Kapok 6.6.1.3 Luffa 6.6.2 Bast fibers 6.6.2.1 Jute 6.6.2.2 Hemp 6.6.2.3 Flax 6.6.2.4 Ramie 6.6.2.5 Kenaf 6.6.3 Leaf fibers 6.6.3.1 Sisal 6.6.3.2 Abaca 6.6.4 Fruit fibers 6.6.4.1 Coir 6.6.4.2 Banana 6.6.4.3 Pineapple 6.6.5 Stalk fibers from agricultural residues 6.6.5.1 Rice fiber 6.6.5.2 Corn 6.6.6 Cane, grasses and reed 6.6.6.1 Switch grass 6.6.6.2 Sugarcane (agricultural residues) 6.6.6.3 Bamboo 6.6.6.4 Fresh grass (green biorefinery) 6.6.7 Modified natural polymers 6.6.7.1 Mycelium 6.6.7.2 Chitosan 6.6.7.3 Alginate 6.7 Animal (fibrous protein) 6.7.1 Wool 6.7.1.1 Alternative wool materials 6.7.1.2 Producers 6.7.2 Silk fiber 6.7.2.1 Alternative silk materials 6.7.3 Leather 6.7.3.1 Alternative leather materials 6.7.4 Fur 6.7.4.1 Producers 6.7.5 Down 6.7.5.1 Alternative down materials 6.8 MARKETS FOR NATURAL FIBERS 6.8.1 Composites 6.8.2 Applications 6.8.3 Natural fiber injection moulding compounds 6.8.3.1 Properties 6.8.3.2 Applications 6.8.4 Non-woven natural fiber mat composites 6.8.4.1 Automotive 6.8.4.2 Applications 6.8.5 Aligned natural fiber-reinforced composites 6.8.6 Natural fiber biobased polymer compounds 6.8.7 Natural fiber biobased polymer non-woven mats 6.8.7.1 Flax 6.8.7.2 Kenaf 6.8.8 Natural fiber thermoset bioresin composites 6.8.9 Aerospace 6.8.9.1 Market overview 6.8.10 Automotive 6.8.10.1 Market overview 6.8.10.2 Applications of natural fibers 6.8.11 Building/construction 6.8.11.1 Market overview 6.8.11.2 Applications of natural fibers 6.8.12 Sports and leisure 6.8.12.1 Market overview 6.8.13 Textiles 6.8.13.1 Market overview 6.8.13.2 Consumer apparel 6.8.13.3 Geotextiles 6.8.14 Packaging 6.8.14.1 Market overview 6.9 NATURAL FIBERS GLOBAL PRODUCTION 6.9.1 Overall global fibers market 6.9.2 Plant-based fiber production 6.9.3 Animal-based natural fiber production 6.10 NATURAL FIBER COMPANY PROFILES (178 company profiles)
7 LIGNIN 7.1 INTRODUCTION 7.2 LIGNIN PRODUCTON PROCESSES 7.3 MARKETS FOR LIGNIN 7.4 COMPANY PROFILES (75 company profiles)
8 BIOBASED AND RENEWABLE FUELS 8.1 BIOFUELS 8.2 ELECTROFUELS (E-FUELS) 8.3 GREEN AMMONIA 8.4 COMPANY PROFILES (114 company profiles)
9 BIO-BASED PAINTS AND COATINGS 9.1 The global paints and coatings market 9.2 Bio-based paints and coatings 9.3 Challenges using bio-based paints and coatings 9.4 Types of bio-based coatings and materials 9.5 Market for bio-based paints and coatings 9.6 Company profiles (130 company profiles)
10 REFERENCES
For more information about this report visit https://www.researchandmarkets.com/r/dbzix6
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Ethylbenzene Market Revenue Share & Revenue Growth Over The Forecast Period Upto 2027
Ethylbenzene Market stood at over USD 25 billion in 2027 and is expected to register a CAGR of over 2.8% during the forecast period.
The market is negatively impacted by COVID-19 in 2020. Considering the pandemic scenario, the construction and automotive manufacturing activities were stopped temporarily during the government-imposed lockdown, thus had decreased the demand for the ethylbenzene-based polymer and other products including automotive dashboards, exterior panels, styrene-acrylic emulsions, solvents, and reagents for paints and coatings, and others, which in turn has negatively impacted the demand for the ethylbenzene market. However, the demand for packaging, based on ethylbenzene’s derivative polystyrene has increased in the food and e-commerce packaging segment during the current situation, thereby stimulating the demand for the market studied.
The global demand for ethylbenzene has increased in the last couple of years. The growth of the global market is primarily driven by its increasing application in styrene production, chemical intermediates, and various end-use industries. Furthermore, the mergers and acquisitions in the chemical industry are also expected to fuel the market growth during the review period.
Competitive Analysis
Some of the key players operating in the global ethylbenzene market are.
Synthos S.A. (Germany)
Total S.A. (France)
Versalis (Italy)
ufu Xindi Chemical Research Limited Company. (China)
LyondellBasell Industries (The Netherlands)
Zhejiang Weishi Biotechnology Co.
Ltd (China)
SABIC (Saudi Arabia)
DowDuPont (US)
BASF SE (Europe)
Segment Analysis
The global ethylbenzene market has been segmented on the basis of application, end-use industry, and region.
Based on application, the global ethylbenzene market has been segmented into gasoline, paint & coatings, natural gas, asphalt & naphtha, diethylbenzene, and others. The gasoline segment accounted for more than half of the market share in terms of volume and value in 2018. Thus, an optimistic application outlook of ethylbenzene in end-use industries across the globe is expected to drive the demand during the forecast period. Pesticides is expected to be the fastest-growing segment in Asia-Pacific during the forecast period. The growth is attributed to the expanding chemical and paints & coatings industries.
By end-use industry, the global market has been segregated into polymers, construction, agricultural, packaging, paints & coatings, electronics, and other industrial. The polymers segment accounted for the largest market share owing to their increasing use in the production of styrene, which is later used to produce polystyrene, ABS resins, unsaturated polyester resins, SB latex, and SB rubber. Likewise, the increasing demand for ethylbenzene in intermediate chemical production is expected to boost the growth of the chemical segment.
Access Full Report: https://www.marketresearchfuture.com/reports/ethylbenzene-market-8028
Regional Analysis
The global ethylbenzene market, by region, has been segregated into North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa. Asia-Pacific held the largest market share in 2018, followed by North America and Europe. The surge in polymer production and the growth of the manufacturing industries are some of the prominent factors driving the demand for ethylbenzene across the globe.
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industrydatamarket · 2 years
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Solvent Naphtha Market size, industry outlook and forecast for 2028
The global “Solvent Naphtha Market” report 2022 highlights all of the dynamic elements affecting key growth factors, as well as the most recent trends and developments in the global industry. It gives a complete understanding of key manufacturers’ business development plans, current industry condition, growth areas, and future scope. The Solvent Naphtha market research seeks to give regional development, market driving factors, and sales revenue. With numerous research approaches such as SWOT and PESTLE analysis, it provides extensive research and analysis of key elements and emphasizes current market circumstances. In addition, the study contains valuable information on global players’ future plans and possibilities.
Enquire before purchasing this report
In accordance with the Solvent Naphtha market is set to grow at a CAGR of 3.95% over a forecast period (2022-2028).
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Global Solvent Naphtha Market Growth Rate, Sales Area and Its Competitors Forecast by 2022
Global Solvent Naphtha Market is segmented on the basis of product types, applications, and region. A flammable liquid distillate containing principally xylenes and higher aromatic hydrocarbons and usually boiling higher than ligroin, obtained especially from coal tar light oils or coke-over-gas light oils or from petroleum cracking, and used chiefly as a solvent and as a raw material for coumarone indene resins.
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Naphtha is crude oil refinery’s light product mostly used as either feedstock for petrochemical cracking or gasoline blending and reforming. With the development in technologies, naphtha could also be produced from condensate splitting and gas-to-liquid processing. Naphtha is classified, by type into Heavy Naphtha and Paraffinic Naphtha. Paraffinic naphtha is rich in olefins and best-suited for olefin/polyolefin production. Heavy naphtha is mainly used for gasoline reforming and aromatic production.
Solvent naphtha is catalytically reformed and desulfurized in certain refineries. Such naphtha is termed as virgin naphtha. The reformation re-structures or re-arranges hydrocarbon molecules in naphtha and also breaks certain molecules into petite ones for producing gasoline’s or petrol’s high-octane component. The other sources of naphtha include shale deposits, wood’s destructive distillation, tar sands, and coal tar. Some petroleum refineries do produce specialty naphthas that find applications in various purification processes.
Solvent Naphtha Market is classified, by product type into Paraffin Solvent, Cyclo Paraffin Solvent, C9 Solvent, and C10 Solvent. Naphtha solvent C9 of good quality is used by the paint, coating and printing industries. Solvent Naphtha Market is classified, by applications into Agrochemicals, Rubber & Resin, Printing Inks, Industrial Cleaning. Solvent Naphtha Market is segmented, geographically into North America, Europe (Eastern Europe, Western Europe), Asia Pacific, Latin America, Middle East and Africa.
Solvent Naphtha Market key players are:
·         Shell
·         Exxon Mobil
·         Total
·         Chevron Phillips
·         Calumet
·         Dow
·         Citgo
·         Reliance
·         KAPCO
·         Mitsubishi
·         CEPSA
·         JX Nippon Oil & energy
·         Neste
·         CPC Corporation
Browse Full Research Report @ https://www.millioninsights.com/industry-reports/solvent-naphtha-market     
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reportmania-blog · 6 years
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Solvent Naphtha Market- Drivers, Equipment Suppliers and Price Analysis to 2022
Global Solvent Naphtha Market is segmented on the basis of product types, applications, and region. A flammable liquid distillate containing principally xylenes and higher aromatic hydrocarbons and usually boiling higher than ligroin, obtained especially from coal tar light oils or coke-over-gas light oils or from petroleum cracking, and used chiefly as a solvent and as a raw material for coumarone indene resins.
Naphtha is crude oil refinery’s light product mostly used as either feedstock for petrochemical cracking or gasoline blending and reforming. With the development in technologies, naphtha could also be produced from condensate splitting and gas-to-liquid processing. Naphtha is classified, by type into Heavy Naphtha and Paraffinic Naphtha. Paraffinic naphtha is rich in olefins and best-suited for olefin/polyolefin production. Heavy naphtha is mainly used for gasoline reforming and aromatic production.
View Full Report with TOC @ https://www.millioninsights.com/industry-reports/solvent-naphtha-market
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Solvent naphtha is catalytically reformed and desulfurized in certain refineries. Such naphtha is termed as virgin naphtha. The reformation re-structures or re-arranges hydrocarbon molecules in naphtha and also breaks certain molecules into petite ones for producing gasoline’s or petrol’s high-octane component. The other sources of naphtha include shale deposits, wood’s destructive distillation, tar sands, and coal tar. Some petroleum refineries do produce specialty naphthas that find applications in various purification processes.
Solvent Naphtha Market is classified, by product type into Paraffin Solvent, Cyclo Paraffin Solvent, C9 Solvent, and C10 Solvent. Naphtha solvent C9 of good quality is used by the paint, coating and printing industries. Solvent Naphtha Market is classified, by applications into Agrochemicals, Rubber & Resin, Printing Inks, Industrial Cleaning. Solvent Naphtha Market is segmented, geographically into North America, Europe (Eastern Europe, Western Europe), Asia Pacific, Latin America, Middle East and Africa. Solvent Naphtha Market key players are Shell, Exxon Mobil, Total, Chevron Phillips, SK, Calumet, BP, Dow, Citgo, Reliance, KAPCO, Mitsubishi, CEPSA, JX Nippon Oil & Energy, Neste, and CPC Corporation.
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sagarg889 · 2 years
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n-Heptane Market 2022 | Present Scenario and Growth Prospects 2032
The global n- Heptane market is anticipated to expand at a steady 5.7% CAGR over the forecast period between 2022 and 2032, finds Future Market Insights (FMI) in a recent market analysis. The growth of the paints and coatings industry, which drives the n-Heptane market, is being fueled by rising automobile production and rising building and construction activities. Rising demand in the pharmaceutical industry also will support the growth of the market.
The demand for n-Heptane is also driven by the increasing number of regulations imposed on the use of solvents such as aromatic solvents and also boosting the market by increasing production capacity and plant efficiency.
N-heptane is often used as an industrial fuel, a cleaning agent, and a laboratory agent. Cleaner extracts are known to be produced with n-heptane.It has various advantages over dichloromethane solvent because of its comparatively nontoxic properties. In certain conditions, such as when employed as a solvent, the latter produces hydrochloric acid, which can destroy extraction equipment. Using n-heptane, this disadvantage might be easily overcome.
However, the rising demand from various industries is boosting the market. N-Heptane is used as a paint solvent and rubber cement thinner in paints & coating industry. It is also excellent for oil extraction and solvent extraction. Jun yuan Petroleum Group produces a high purity (99.9%) grade of n-Heptane which is widely used in laboratories in the United States as a non-polar solvent, botanical processing labs, etc.
Key Takeaways:
Growth of the pharmaceutical industry led to increase the demand of n heptane and pushing sales in the greater than 99% segment over the assessment period.
The global n-heptane market is likely to be dominated by Asia Pacific with China majorly driving the growth of the East Asia due to continuous growth in automotive, plastics and polymer, and adhesive and sealants industries.
By purity, demand for 95-99% is expected to surge at a 5.7% CAGR over the forecast period.
Sales of n- Heptane in the U.S. are anticipated to increase by 4.0% year-over-year in 2022.
China is expected to account for over 49.9% of the East Asia n- Heptane market share in 2022.
Competitive Landscape
Key market participants in the global n- Heptane market elaborated in the report includes Exxon Mobil Corp, Royal Dutch Shell plc., SK Global Chemical Co., Ltd., Haltermann Carless Deutschland GmbH, Chevron Phillips Chemical Company, Sankyo Chemical Co. Ltd, DHC Solvent Chemie GmbH, Gadiv Petrochemical Industries Ltd. and many others. and many others.
Companies operating in the global n- Heptane market are focusing on increasing their production capacities to boost their market footprint especially in the emerging economies. Furthermore, key market participants are focusing on mergers, acquisitions and collaborations strategies to expand their global presence and strengthen their distribution network. For instance:
On February 2018, Hanwha Total Petrochemical Company Limited began with the production of normal heptane, which can be integrated into various products such as pharmaceuticals, transport, storage, etc. Normal heptane is a by-product of naphtha cracking. The company spent US$ 455 Mn on its Naphtha Cracking Centre in South Chungcheong province.
More Insights into the N- Heptane Market Report
In its latest report, FMI offers an unbiased analysis of the Global N- Heptane market, providing historical data for the period of 2017-2021 and forecast statistics for the period of 2022-2032. In order to understand the global market potential, its growth, and scope, the market is segmented on the basis of purity (<95%, 95-99% and ≥99%), application (pharmaceuticals, paints & coatings, electronics, adhesives & sealants, plastic & polymers and others) across seven regions (North America, Latin America, Europe, East Asia, South Asia & Pacific, and Middle East & Africa).
For More Info - https://www.futuremarketinsights.com/reports/n-heptane-market
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businessindustry · 4 months
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Renewable Naphtha Market Key Players Profile Outlook and Forecast Till 2032
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The Reports and Insights, a leading market research company, has recently releases report titled “Renewable Naphtha Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2024-2032.” The study provides a detailed analysis of the industry, including the global Renewable Naphtha Market share, size, trends, and growth forecasts. The report also includes competitor and regional analysis and highlights the latest advancements in the market.
Report Highlights:
How big is the Renewable Naphtha Market?
The renewable naphtha market size reached US$ 472.4 Million in 2023. Looking forward, Reports and Insights expects the market to reach US$ 1,104.8 Million by 2032, exhibiting a growth rate (CAGR) of 9.9% during 2024-2032.
What are Renewable Naphtha?                                                                                                                                                                            
Renewable naphtha is a form of naphtha created from sustainable sources like biomass, algae, or waste products using methods such as pyrolysis, gasification, or fermentation. While chemically akin to conventional naphtha from fossil fuels, it serves as a greener alternative. This renewable naphtha can serve as a raw material for manufacturing different chemicals, including plastics, solvents, and fuels, offering a sustainable and eco-friendly substitute to traditional naphtha sourced from crude oil.
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What are the growth prospects and trends in the Renewable Naphtha industry?
The renewable naphtha market growth is driven by various factors. The market for renewable naphtha is experiencing notable growth, fueled by a heightened emphasis on sustainable options within the petrochemical sector. Environmental considerations and regulatory frameworks promoting renewable energy sources are propelling the adoption of renewable naphtha, sourced from biomass, algae, or waste materials. This eco-conscious alternative is increasingly utilized as a raw material for a range of chemicals, including plastics and solvents. Furthermore, advancements in conversion technologies and governmental support for renewable energy are driving further market expansion. Hence, all these factors contribute to renewable naphtha market growth.
What is included in market segmentation?
The report has segmented the market into the following categories:
By Feedstock:
Vegetable Oils
Animal Fats
Algal Biomass
Other Biomass
By Technology:
Hydrotreating
Deoxygenation
Hydrogenation
By Application:
Chemicals & Polymers
Fuels
Others
By End-Use Industry:
Petrochemicals
Transportation
Others
Segmentation By Region:
North America:
United States
Canada
Asia Pacific:
China
India
Japan
South Korea
Australia & New Zealand
Association of Southeast Asian Nations (ASEAN)
Rest of Asia Pacific
Europe:
Germany
The U.K.
France
Spain
Italy
Russia
Poland
BENELUX (Belgium, the Netherlands, Luxembourg)
NORDIC (Norway, Sweden, Finland, Denmark)
Rest of Europe
Latin America:
Brazil
Mexico
Argentina
Rest of Latin America
The Middle East & Africa:
Saudi Arabia
United Arab Emirates
South Africa
Egypt
Israel
Rest of MEA (Middle East & Africa)
Who are the key players operating in the industry?
The report covers the major market players including:
Neste Corporation
TotalEnergies
Repsol S.A.
Eni S.p.A.
Honeywell UOP
Chevron Corporation
Axens
INEOS Group AG
Preem AB
OMV Aktiengesellschaft
Enerkem Inc.
REG Life Sciences LLC
Clariant AG
Dow Inc.
LyondellBasell Industries N.V.
View Full Report: https://www.reportsandinsights.com/report/Renewable Naphtha-market
If you require any specific information that is not covered currently within the scope of the report, we will provide the same as a part of the customization.
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chemanalystdata · 1 year
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India Naphtha Market Size, Share, Growth & Forecast by FY2030 | ChemAnalyst
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According to ChemAnalyst report, “India Naphtha Market Analysis: Industry Market Size, Plant Capacity, Production, Operating Efficiency, Demand & Supply, Type, End-User Industries, Sales Channel, Regional Demand, Company Share, Foreign Trade, Port-Wise Import, FY2015-FY2032”, The India Naphtha Market is likely to grow at a CAGR of 5.16% during the forecasted period by FY2032. The end-use industries of Gasoline Blending, Steam Cracking, and Naphtha Reforming are anticipated to swell the demand for Naphtha in India in the forthcoming years.
Naphtha is a volatile, colourless hydrocarbon that is typically separated from petroleum refineries by boiling coal tar or fractional distilling crude oil. In order to manufacture high-octane gas, lighter fluid, and to clean metal, naphtha is typically used to dilute heavy oil. Naphtha is a crucial Petro-based raw material used for the production of gasoline, which is predominantly used in automotive industry. Naphtha is employed to dilute heavy oil to produce high-octane gas and lighter fluid. The demand for naphtha in the nation is anticipated to increase during the forecast period due to the increased use of chemicals that are predominantly manufactured from naphtha, such as ethylene, styrene, and butadiene, which are further used for the production of rubber, plastics, and solvents. Naphtha is primarily employed as a base material for the production of high-grade gasoline through the catalytic reforming process. India’s “Hydrocarbons Vision – 2025” aimed at expanding indigenous production of petroleum products and reducing the demand-supply gap by FY2025 is likely to support the Naphtha market expansion in the forecast period.
Read Full Report Here: https://www.chemanalyst.com/industry-report/india-naphtha-market-88
The India Naphtha Market is segmented based on type, end-use, sales channel, and region. Based on type, the global Naphtha market is divided into Light Naphtha and Heavy Naphtha. Heavy Naphtha is dominating the market. Light naphtha is used in steam crackers as a petrochemical feedstock to produce ethylene, which is then used to make polyethylene and other products. Light Naphtha is rich in olefins. Hence, it is the most preferred feed for steam crackers for producing a wide range of olefins /polyolefins such as ethylene, propylene, etc.  Heavy Naphtha is mainly used for the production of aromatic products such as Benzene, Toluene, Xylene, etc. In addition, Heavy Naphtha is also used in gasoline reforming to increase its octane number.
Based on end-use, the India Naphtha market is segregated into Gasoline Blending, Steam Cracking, Naphtha Reforming, and Others. Among these, Gasoline Blending is dominating the segment of Naphtha. This segment held roughly 62% of the Naphtha market in FY2023. Due to the increasing demand for high-octane fuel from the transportation industry, India’s Gasoline blending is anticipated to maintain its dominance in the forthcoming years. This industry is followed by Steam Cracking applications which are expanding exponentially due to the rigorous expansion of the domestic refiners with India’s rising focus on the “Make in India” policy. Additionally, rising demand for olefins and polyolefins for making plastics used in the construction, electrical and electronics, and packaging industries, as well as increasing use of aromatics in the production of edible oils, rubber, and personal care products, will further drive the market growth in the upcoming years.
Based on region, the India Naphtha Market is segregated into North, South, East, and West. In the historic period of FY2015-FY2023, West India has been dominating the market followed by East India.  is mostly due to an increase in naphtha demand in downstream industries and end-user industries including crude blending, steam cracking, motor petrol mixing, reformation to aromatics, etc.
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 “India Naphtha Market Analysis: Industry Market Size, Plant Capacity, Production, Operating Efficiency, Demand & Supply, Type, End-User Industries, Sales Channel, Regional Demand, Company Share, Foreign Trade, Port-Wise Import, FY2015-FY2032” Significant players in the India Naphtha market are Hindustan Petroleum Corporation Limited, Reliance Indusries Limited, HPCL-Mittal Energy Ltd (HMEL), Bharat Petroleum Corporation Limited, Oil and Natural Gas Corporation Limited, Indian Oil Corporation Limited, Nayara Energy Limited, Gail (India) Limited, Numaligarh Refinery Limited (NRL), and Others.
“Naphtha is a volatile, colourless hydrocarbon which is used to manufacture high-octane gas, lighter fluid, and to clean metal, naphtha is typically used to dilute heavy oil. Fast-growth rate of transportation sector coupled with rise in sale of vehicles across India is creating a demand for olefin-rich Naphtha for gasoline blending purposes which is anticipated to mainly drive the India Naphtha market in the forecast period by FY2032.  Furthermore, other applications of naphtha such as Steam Cracking also contributes finely to the market expansion. “Said Mr. Karan Chechi, Research Director with TechSci Research, a research-based management consulting firm promoting ChemAnalyst worldwide.
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ChemAnalyst is a subsidiary of Techsci Research, which was established in 2008, and has been providing exceptional management consulting to its clients across the globe for over a decade now. For the past four years, ChemAnalyst has been a prominent provider of Chemical commodity prices in more than 15 countries. We are a team of more than 100 Chemical Analysts who are committed to provide in-depth market insights and real-time price movement for 300+ chemical and petrochemical products. ChemAnalyst has reverberated as a preferred pricing supplier among Procurement managers and Strategy professionals worldwide. On our platform, we provide an algorithm-based subscription where users can track and compare years of historical data and prices based on grades and incoterms (CIF, CFR, FOB, & EX-Works) in just one go.
The ChemAnalyst team also assists clients with Market Analysis for over 1200 chemicals including assessing demand & supply gaps, locating verified suppliers, choosing whether to trade or manufacture, developing Procurement Strategies, monitoring imports and exports of Chemicals, and much more. The users will not only be able to analyze historical data for past years but will also get to inspect detailed forecasts for the upcoming years. With access to local field teams, the company provides high-quality, reliable market analysis data for more than 40 countries.
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researge · 3 years
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Global Ethyl Benzene Market Study 2014 - 2030
Analysis of the ETHYL BENZENE MARKET
A comprehensive market study on the ETHYL BENZENE MARKET Market provides an overview of the demand-supply and consumption patterns of Ethyl Benzene Market across six different regions. This market study describes the Ethyl Benzene Market Market, with focus on major countries and their subsequent demand for different segments. This report on the global Ethyl Benzene Market market offers a complete overview of various factors impacting positively or negatively on the overall growth of the Keyword market.
Distinct market estimations and forecasts are presented in this comprehensive Ethyl Benzene Market market study. Various secondary sources such as encyclopedia, directories, technical handbooks, company annual reports, industry association publications, magazine articles, world economic outlook, and databases have been referred to identify and collect information useful for this extensive commercial study of Ethyl Benzene Market. Moreover, both micro-economic and macro-economic factors have been considered to arrive at growth rate and size estimation in the short and long-term forecast. Prismane Consulting supplements this with primary research. The primary sources are experts from related industries and suppliers. For market forecast, and production / plant operating rates, we assume numerous reasons that drive production including new production capacity is brought on-stream, Planned, and unplanned outages of existing capacities and Subdued demand from end-use applications.
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The current COVID-19 pandemic is causing high and rising human costs worldwide. Isolation, nationwide lockdowns, and widespread closures to stop the spread of the virus have severely impacted the economy. As a result, the global economy declined by an around of -3.5% in 2020, much worse and below the 2008-2009 subprime mortgage crisis. The global economy has grown between 5% and 6% in 2021 and 2022 due to the normalization brought in the regional economic activities on back of the fading COVID-19 pandemic and stability in the crude oil prices. The economic activities have been aided by the new policies surrounding financial, agricultural, industrial, and manufacturing sector. The report on Ethyl Benzene Market Market studies and outlines the impact of COVID-19 and presents the forecasts for the short, mid and long-term. The report also covers Macro-economic factors like GDP, Population and World Economic integration, Economic & Energy Outlook, Industry & Policy Developments, End-use Industry / Applications Market, Reasoning & Analysis, Insightful Commentary, Market Review, Comparative Analysis, Latest Trends and market developments, Key players, Strategic Issues and Recommendations, Business Opportunity Assessment and much more.
Global Ethyl Benzene Demand Supply Analysis By Applications, (Volume, Value) (2014–2030)
     Strategic Issues
     Capacity Analysis – Plants and Projects (2014 – 2030)
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Global Ethyl Benzene Market, By Application
Styrene
Anti Knocking Agent
Diethyl Benzene
Natural Gas Recovery
Solvent in Paint
Asphalt & Naphtha Constituent
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petnews2day · 2 years
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Biobased Chemicals, Materials, Polymers, Plastics, Paints & Coatings and Fuel Global Market to 2033
New Post has been published on https://petnews2day.com/pet-industry-news/pet-financial-news/biobased-chemicals-materials-polymers-plastics-paints-coatings-and-fuel-global-market-to-2033/
Biobased Chemicals, Materials, Polymers, Plastics, Paints & Coatings and Fuel Global Market to 2033
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Dublin, Nov. 09, 2022 (GLOBE NEWSWIRE) — The “The Global Market for Biobased Chemicals, Materials, Polymers, Plastics, Paints & Coatings and Fuels to 2033” report has been added to ResearchAndMarkets.com’s offering.
Biobased materials refer to products that mainly consist of a substance (or substances) derived from living matter (biomass) and either occur naturally or are synthesized, or it may refer to products made by processes that use biomass. Materials from biomass sources include bulk chemicals, platform chemicals, solvents, polymers, and biocomposites.
The many processes to convert biomass components to value-added products and fuels can be classified broadly as biochemical or thermochemical.
In addition, biotechnological processes that rely mainly on plant breeding, fermentation, and conventional enzyme isolation also are used. New bio-based materials that may compete with conventional materials are emerging continually, and the opportunities to use them in existing and novel products are explored in this publication.
There is growing consumer demand and regulatory push for bio-based chemicals, materials, polymers, plastics, paints, coatings and fuels with high performance, good recyclability and biodegradable properties to underpin transition towards more sustainable manufacturing and products.
Contents include:
In-depth market analysis of bio-based chemical feedstocks, biopolymers, bioplastics, natural fibers and lignin, biofuels and bio-based coatings and paints.
Global production capacities, market volumes and trends,current and forecast to 2033.
Analysis of bio-based chemical including 11-Aminoundecanoic acid (11-AA), 1,4-Butanediol (1,4-BDO), Dodecanedioic acid (DDDA), Epichlorohydrin (ECH), Ethylene, Furan derivatives, 5-Chloromethylfurfural (5-CMF), 2,5-Furandicarboxylic acid (2,5-FDCA), Furandicarboxylic methyl ester (FDME), Isosorbide, Itaconic acid, 5 Hydroxymethyl furfural (HMF), Lactic acid (D-LA), Lactic acid – L-lactic acid (L-LA), Lactide, Levoglucosenone, Levulinic acid, Monoethylene glycol (MEG), Monopropylene glycol (MPG), Muconic acid, Naphtha, 1,5-Pentametylenediamine (DN5), 1,3-Propanediol (1,3-PDO), Sebacic acid and Succinic acid.
Analysis of synthetic bio-polymers and bio-plastics market including Polylactic acid (Bio-PLA), Polyethylene terephthalate (Bio-PET), Polytrimethylene terephthalate (Bio-PTT), Polyethylene furanoate (Bio-PEF), Polyamides (Bio-PA), Poly(butylene adipate-co-terephthalate) (Bio-PBAT), Polybutylene succinate (PBS) and copolymers, Polyethylene (Bio-PE), Polypropylene (Bio-PP)
Analysis of naturally produced bio-based polymers including Polyhydroxyalkanoates (PHA), Polysaccharides, Microfibrillated cellulose (MFC), Cellulose nanocrystals, Cellulose nanofibers, Protein-based bioplastics, Algal and fungal.
Analysis of market for biofuels.
Analysis of types of natural fibers including plant fibers, animal fibers including alternative leather, wool, silk fiber and down and polysaccharides.
Markets for natural fibers, including composites, aerospace, automotive, construction & building, sports & leisure, textiles, consumer products and packaging.
Production capacities of lignin producers.
In depth analysis of biorefinery lignin production.
Analysis of the market for bio-based, sustainable paints and coatings.
Analysis of types of bio-coatings and paints market. Including Alkyd coatings, Polyurethane coatings, Epoxy coatings, Acrylate resins, Polylactic acid (Bio-PLA), Polyhydroxyalkanoates (PHA), Cellulose, Rosins, Biobased carbon black, Lignin, Edible coatings, Protein-based biomaterials for coatings, Alginate etc.
Profiles of over 800 companies.
Story continues
Key Topics Covered:
1 EXECUTIVE SUMMARY
2 RESEARCH METHODOLOGY
3 THE GLOBAL PLASTICS MARKET 3.1 Global production 3.2 The importance of plastic 3.3 Issues with plastics use 3.4 Policy and regulations 3.5 The circular economy 3.6 Conventional polymer materials used in packaging 3.6.1 Polyolefins: Polypropylene and polyethylene 3.6.2 PET and other polyester polymers 3.6.3 Renewable and bio-based polymers for packaging 3.7 Comparison of synthetic fossil-based and bio-based polymers 3.8 End-of-life treatment of bioplastics
4 BIO-BASED CHEMICALS 4.1 Types 4.2 Production capacities 4.3 Bio-based adipic acid 4.4 11-Aminoundecanoic acid (11-AA) 4.5 1,4-Butanediol (1,4-BDO) 4.6 Dodecanedioic acid (DDDA) 4.7 Epichlorohydrin (ECH) 4.8 Ethylene 4.9 Furfural 4.10 5-Hydroxymethylfurfural (HMF) 4.11 5-Chloromethylfurfural (5-CMF) 4.12 2,5-Furandicarboxylic acid (2,5-FDCA) 4.13 Furandicarboxylic methyl ester (FDME) 4.14 Isosorbide 4.15 Itaconic acid 4.16 3-Hydroxypropionic acid (3-HP) 4.17 5 Hydroxymethyl furfural (HMF) 4.18 Lactic acid (D-LA) 4.19 Lactic acid – L-lactic acid (L-LA) 4.20 Lactide 4.21 Levoglucosenone 4.22 Levulinic acid 4.23 Monoethylene glycol (MEG) 4.24 Monopropylene glycol (MPG) 4.25 Muconic acid 4.26 Naphtha 4.27 Pentamethylene diisocyanate 4.28 1,3-Propanediol (1,3-PDO) 4.29 Sebacic acid 4.30 Succinic acid (SA)
5 BIOPOLYMERS AND BIOPLASTICS 5.1 Bio-based or renewable plastics 5.1.1 Drop-in bio-based plastics 5.1.2 Novel bio-based plastics 5.2 Biodegradable and compostable plastics 5.2.1 Biodegradability 5.2.2 Compostability 5.3 Advantages and disadvantages 5.4 Types of Bio-based and/or Biodegradable Plastics 5.5 Market leaders by biobased and/or biodegradable plastic types 5.6 Regional/country production capacities, by main types 5.6.1 Bio-based Polyethylene (Bio-PE) production capacities, by country 5.6.2 Bio-based Polyethylene terephthalate (Bio-PET) production capacities, by country 5.6.3 Bio-based polyamides (Bio-PA) production capacities, by country 5.6.4 Bio-based Polypropylene (Bio-PP) production capacities, by country 5.6.5 Bio-based Polytrimethylene terephthalate (Bio-PTT) production capacities, by country 5.6.6 Bio-based Poly(butylene adipate-co-terephthalate) (PBAT) production capacities, by country 5.6.7 Bio-based Polybutylene succinate (PBS) production capacities, by country 5.6.8 Bio-based Polylactic acid (PLA) production capacities, by country 5.6.9 Polyhydroxyalkanoates (PHA) production capacities, by country 5.6.10 Starch blends production capacities, by country 5.7 SYNTHETIC BIO-BASED POLYMERS 5.7.1 Polylactic acid (Bio-PLA) 5.7.1.1 Market analysis 5.7.1.2 Producers 5.7.2 Polyethylene terephthalate (Bio-PET) 5.7.2.1 Market analysis 5.7.2.2 Producers 5.7.3 Polytrimethylene terephthalate (Bio-PTT) 5.7.3.1 Market analysis 5.7.3.2 Producers 5.7.4 Polyethylene furanoate (Bio-PEF) 5.7.4.1 Market analysis 5.7.4.2 Comparative properties to PET 5.7.4.3 Producers 5.7.5 Polyamides (Bio-PA) 5.7.5.1 Market analysis 5.7.5.2 Producers 5.7.6 Poly(butylene adipate-co-terephthalate) (Bio-PBAT) 5.7.6.1 Market analysis 5.7.6.2 Producers 5.7.7 Polybutylene succinate (PBS) and copolymers 5.7.7.1 Market analysis 5.7.7.2 Producers 5.7.8 Polyethylene (Bio-PE) 5.7.8.1 Market analysis 5.7.8.2 Producers 5.7.9 Polypropylene (Bio-PP) 5.7.9.1 Market analysis 5.7.9.2 Producers 5.8 NATURAL BIO-BASED POLYMERS 5.8.1 Polyhydroxyalkanoates (PHA) 5.8.1.1 Types 5.8.1.2 Synthesis and production processes 5.8.1.3 Market analysis 5.8.1.4 Commercially available PHAs 5.8.1.5 Markets for PHAs 5.8.1.6 Producers 5.8.2 Polysaccharides 5.8.2.1 Microfibrillated cellulose (MFC) 5.8.2.2 Cellulose nanocrystals 5.8.2.3 Cellulose nanofibers 5.8.2.4 Bacterial Nanocellulose (BNC) 5.8.3 Protein-based bioplastics 5.8.3.1 Types, applications and producers 5.8.4 Algal and fungal 5.8.4.1 Algal 5.8.4.2 Mycelium 5.8.5 Chitosan 5.8.6 Microplastics alternatives 5.9 PRODUCTION OF BIOBASED AND SUSTAINABLE PLASTICS, BY REGION 5.9.1 North America 5.9.2 Europe 5.9.3 Asia-Pacific 5.9.3.1 China 5.9.3.2 Japan 5.9.3.3 Thailand 5.9.3.4 Indonesia 5.9.4 Latin America 5.10 MARKET SEGMENTATION OF BIOPLASTICS 5.10.1 Packaging 5.10.2 Consumer products 5.10.3 Automotive 5.10.4 Building & construction 5.10.5 Textiles 5.10.6 Electronics 5.10.7 Agriculture and horticulture 5.11 BIO-BASED CHEMICALS, BIOPOLYMERS AND BIOPLASTICS COMPANY PROFILES (325 company profiles)
6 NATURAL FIBERS 6.1 Manufacturing method, matrix materials and applications of natural fibers 6.2 Advantages of natural fibers 6.3 Commercially available next-gen natural fiber products 6.4 Market drivers for next-gen natural fibers 6.5 Challenges 6.6 Plants (cellulose, lignocellulose) 6.6.1 Seed fibers 6.6.1.1 Cotton 6.6.1.2 Kapok 6.6.1.3 Luffa 6.6.2 Bast fibers 6.6.2.1 Jute 6.6.2.2 Hemp 6.6.2.3 Flax 6.6.2.4 Ramie 6.6.2.5 Kenaf 6.6.3 Leaf fibers 6.6.3.1 Sisal 6.6.3.2 Abaca 6.6.4 Fruit fibers 6.6.4.1 Coir 6.6.4.2 Banana 6.6.4.3 Pineapple 6.6.5 Stalk fibers from agricultural residues 6.6.5.1 Rice fiber 6.6.5.2 Corn 6.6.6 Cane, grasses and reed 6.6.6.1 Switch grass 6.6.6.2 Sugarcane (agricultural residues) 6.6.6.3 Bamboo 6.6.6.4 Fresh grass (green biorefinery) 6.6.7 Modified natural polymers 6.6.7.1 Mycelium 6.6.7.2 Chitosan 6.6.7.3 Alginate 6.7 Animal (fibrous protein) 6.7.1 Wool 6.7.1.1 Alternative wool materials 6.7.1.2 Producers 6.7.2 Silk fiber 6.7.2.1 Alternative silk materials 6.7.3 Leather 6.7.3.1 Alternative leather materials 6.7.4 Fur 6.7.4.1 Producers 6.7.5 Down 6.7.5.1 Alternative down materials 6.8 MARKETS FOR NATURAL FIBERS 6.8.1 Composites 6.8.2 Applications 6.8.3 Natural fiber injection moulding compounds 6.8.3.1 Properties 6.8.3.2 Applications 6.8.4 Non-woven natural fiber mat composites 6.8.4.1 Automotive 6.8.4.2 Applications 6.8.5 Aligned natural fiber-reinforced composites 6.8.6 Natural fiber biobased polymer compounds 6.8.7 Natural fiber biobased polymer non-woven mats 6.8.7.1 Flax 6.8.7.2 Kenaf 6.8.8 Natural fiber thermoset bioresin composites 6.8.9 Aerospace 6.8.9.1 Market overview 6.8.10 Automotive 6.8.10.1 Market overview 6.8.10.2 Applications of natural fibers 6.8.11 Building/construction 6.8.11.1 Market overview 6.8.11.2 Applications of natural fibers 6.8.12 Sports and leisure 6.8.12.1 Market overview 6.8.13 Textiles 6.8.13.1 Market overview 6.8.13.2 Consumer apparel 6.8.13.3 Geotextiles 6.8.14 Packaging 6.8.14.1 Market overview 6.9 NATURAL FIBERS GLOBAL PRODUCTION 6.9.1 Overall global fibers market 6.9.2 Plant-based fiber production 6.9.3 Animal-based natural fiber production 6.10 NATURAL FIBER COMPANY PROFILES (178 company profiles)
7 LIGNIN 7.1 INTRODUCTION 7.2 LIGNIN PRODUCTON PROCESSES 7.3 MARKETS FOR LIGNIN 7.4 COMPANY PROFILES (75 company profiles)
8 BIOBASED AND RENEWABLE FUELS 8.1 BIOFUELS 8.2 ELECTROFUELS (E-FUELS) 8.3 GREEN AMMONIA 8.4 COMPANY PROFILES (114 company profiles)
9 BIO-BASED PAINTS AND COATINGS 9.1 The global paints and coatings market 9.2 Bio-based paints and coatings 9.3 Challenges using bio-based paints and coatings 9.4 Types of bio-based coatings and materials 9.5 Market for bio-based paints and coatings 9.6 Company profiles (130 company profiles)
10 REFERENCES
For more information about this report visit https://www.researchandmarkets.com/r/dbzix6
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wither3344 · 3 years
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Aromatic Solvents Market
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industrydatamarket · 2 years
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solvent naphtha Market Share, Growth by Business Developments 2022 to 2028
The global solvent naphtha market provides a logically structured study that includes some significant research findings, data, projections, and insights. By thoroughly investigating all axes of the worldwide solvent naphtha market, the study successfully provides a balanced and comprehensive body of research data with both theoretical and statistical importance. The research includes a wide range of analytical findings, such as the quantification of the global solvent naphtha market's size, share, and volume, which are further subdivided in accordance with particular criteria. As part of the forecast projecting future growth, the statistical and theoretical components of the solvent naphtha market dynamics are investigated.
The study mainly focuses on the growth-inducing factors, examining their impact on the worldwide solvent naphtha market's growth. The recorded changes in the worldwide solvent naphtha market growth is explained in detail, and the growth inducers and inhibiting factors are justified. This allows predictions of likely fluctuations in revenue growth and traction during the specified forecast period. The assessment of current market events, trends, opportunities, and problems goes hand in hand with the determination of the influencing elements. The study on the worldwide solvent naphtha market also identifies the main dangers and strengths facing the sector, providing crucial business information.
Analysts forecast that the global solvent naphtha market will grow at a CAGR of 5.1% during the period 2022-2028.
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The main prominent players are:  Shell, ExxonMobil, Total, Chevron Phillips, SK, Calumet, Idemitsu, BP, DowDuPont, Citgo, Reliance, KAPCO, Mitsubishi, CEPSA, Ganga Rasayanie, JX Nippon Oil & Energy, Neste, CPC, Gulf Chemicals and Industrial Oils, Sinopec, CNPC, Jiangsu Hualun, Changshu Alliance Chemical, Suzhou Jiutai and others.
Global solvent naphtha Market Split by Product Type and Application
This report segments the global solvent naphtha Market on the basis of following types:
Paraffin Solvent
CycloParaffin Solvent
C9 Solvent
C10 Solvent
Other
On the basis of application, the global market for solvent naphtha is segmented into:
Paints & Coatings
Agro Chemicals
Rubber & Resin
Printing Inks
Industrial Cleaning
Other
REGIONAL ANALYSIS
North America (USA, Canada, Mexico)
Europe (Germany, France, UK, Russia, Italy)
Asia Pacific (China, Japan, South Korea, India, Southeast Asia)
South America (Brazil, Argentina, Colombia, etc.)
Middle East and Africa (Saudi Arabia, United Arab Emirates, Egypt, Nigeria, and South Korea)
Strategic Points Covered in solvent naphtha Market Catalog:
Introduction, Market Driving Force Product Research Objectives, and Research Scope of Global solvent naphtha Market (2022-2028).
The study objectives of this report are:
Focuses on the key global solvent naphtha companies, to define, describe and analyze the sales volume, value, market share, market competition landscape and recent development.
To project the value and sales volume of solvent naphtha submarkets, with respect to key regions.
To analyze competitive developments such as expansions, agreements, new product launches, and acquisitions in the market.
To study and analyze the global solvent naphtha market size (value & volume) by company, key regions, products and end user, breakdown data from Last Five Years, and forecast to 2028.
To understand the structure of solvent naphtha market by identifying its various sub segments.
To share detailed information about the key factors influencing the growth of the market (growth potential, opportunities, drivers, industry-specific challenges and risks).
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… To be continue
solvent naphtha market
Chapter 1: solvent naphtha Market Overview, Drivers, Restraints, and Opportunities, Segmentation Overview
Chapter 2: Market Competition by Manufacturers
Chapter 3: Production by region
Chapter 4: Consumption by Regions
Chapter 5: Production, by Types, Revenue and Market Share by Types
Chapter 6: Consumption, by Applications, Market Share (%) and Growth Rate by Applications
Chapter 7: Profiling and Comprehensive Analysis of Producers
Chapter 8: Analysis of Production Costs, Analysis of Raw Materials, Regional Production Expenses.
Chapter 9: Industrial Chain, Sourcing Strategy, and Downstream Buyers
Chapter 10: Marketing Strategy Analysis, Distributors/Dealers
Chapter 11: Analysis of Market Effect Factors
Chapter 12: Market Forecasts
Chapter 13: solvent naphtha Market Research Findings and Conclusions, Appendix, Methodology and Data Source.
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Finally, the researchers released information on the precise analysis of Global solvent naphtha. It also assesses the long-term patterns and platforms that support market expansion. The research report also assesses the level of competitiveness. The market has been thoroughly examined using the SWOT analysis and Porter's five scans. It also helps in managing the risks and obstacles of the company. It also includes considerable research on sales techniques.
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