The report analyzes and presents an overview of “Bio-based Ethylene Market – Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2017 – 2025” worldwide.
The main objective of this report is to define, describe, and forecast the global “Bio-based Ethylene” market on the basis of types of applications, major sectors, deployment models, organization size, and regions. The report contains an analysis of the major factors influencing the growth of the market (drivers, restraints, opportunities, and challenges). It aims to strategically analyze the micromarkets with respect to individual growth trends, prospects, and their contribution to the market. The report attempts to forecast the market size for 5 major regions, namely, North America, Europe, Asia Pacific (APAC), Middle East and Africa (MEA), and Latin America. It contains key vendor profiles and comprehensively analyzes their core competencies. The report also tracks and analyzes competitive developments, including partnerships, collaborations, acquisitions, new product developments, and R&D activities in the market.
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Bio-ethylene (bio-based ethylene) is produced from bio-based material. Traditional ethylene, on the other hand, is manufactured from fossil fuels through thermochemical processes. Similar to traditional ethylene, bio-ethylene can be used as a raw material for a variety of organic chemicals and plastics. Bio-ethylene is generally produced from bioethanol. Fermentation of pre-treated biomass results in the production of bioethanol. Bioethanol is primarily used as a blend in transportation fuel.
The bio-ethylene market can be segmented based on raw materials used for production, application, end-user industry, and region. Production of bio-ethylene can be attained from sugars, starch, and ligno-cellulosic biomass. The sub-segments can be further divided into sugary biomass which includes sugarcane, sugar beets, sweet sorghum; starchy biomass which includes wheat, corn and barley; and ligno-cellulosic biomass which is obtained from wood, straw, and grasses. Bio-ethylene is employed in the production of several organic chemicals and plastics such as high and low density polyethylene (HDPE and LDPE), polyethylene chloride (PVC), polystyrene (PS), and polyethylene terephthalate (PET). In terms of end-user industry, the market can be classified into packaging, detergents, lubricants, and additives. Based on region, the bio-ethylene market can be divided into Asia Pacific, Europe, Middle East & Africa, North America, and Latin America.
The global bio-ethylene market has not attained maturity except in Brazil. Stringent rules and regulations regarding the environment are expected to propel the market of bio-ethylene. Bio-based ethylene reduces the emission of greenhouse gases (GHG) by lessening the usage of fossil fuels. Till date, reduction of GHGs and petrochemical energy through bio-based ethylene has been achieved up to 50% and 65%, respectively, as compared to the use of traditional ethylene. Bio-based ethylene is expected to reduce the dependence on fossil fuels; however, the cost of fossil fuels and bio-ethylene is a crucial factor in deciding the extent of their usage. The cost of producing bio-ethylene is high due to the availability and low-price of biomass feedstock. This acts as a restraint to the bio-ethylene market. The cost of bio-ethylene is almost 1.5 to 2 times higher than that of petrochemical ethylene.
However, bio-plastics are inexpensive as compared to petrochemical plastics. Ligno-cellulosic biomass is expensive than sugar and starch biomass and the cost of producing from ligno-cellulosic material is also high. Production of sugarcane is low-priced in Brazil. Large-scale production of sugarcane is done in India, South America, and some parts of Asia. Corn is produced in large quantities in the U.S. Europe accounts for one-third of the global production of sugar beets. Food versus fuel is a limiting factor in the production of bio-ethylene from sugar and starch feedstock. Ligno-cellulosic biomass can be grown on unfertile land. Bioethanol, the precursor of bio-ethylene, is primarily used for transportation fuel, though it can be in other applications too. This restricts the large-scale production of bio-based ethylene. Similarly, demand for biomass feedstock for application in heat, electricity, and biofuels production is expected to increase in the near future.
Brazil is the largest market of bioethanol. The production of bioethanol in Brazil is higher than that of petrochemical ethanol. Brazil and the U.S. contribute to more than half of the global production of bioethanol. India and Brazil have the advantage of availability of inexpensive biomass. China is an emerging market for bio-ethylene in terms of production. Asia Pacific is projected to constitute a major market share in the near future due to the vast availability of biomass. Demand for bio-ethylene is estimated to soar in Europe due to the rise in awareness about health and environment and regulations for bio-based production. North America is estimated to expand during the forecast period led by the technological advancements and research and development activities in the region. Major players in the global bio based ethylene market include Atol, Cargill, The Dow Chemical Company, and Alberta.
The report offers a comprehensive evaluation of the market. It does so via in-depth qualitative insights, historical data, and verifiable projections about market size. The projections featured in the report have been derived using proven research methodologies and assumptions. By doing so, the research report serves as a repository of analysis and information for every facet of the market, including but not limited to: Regional markets, technology, types, and applications.
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The study is a source of reliable data on:
Market segments and sub-segments
Market trends and dynamics
Supply and demand
Value chain and stakeholder analysis
The regional analysis covers:
North America (U.S. and Canada)
Latin America (Mexico, Brazil, Peru, Chile, and others)
Western Europe (Germany, U.K., France, Spain, Italy, Nordic countries, Belgium, Netherlands, and Luxembourg)
Eastern Europe (Poland and Russia)
Asia Pacific (China, India, Japan, ASEAN, Australia, and New Zealand)
Middle East and Africa (GCC, Southern Africa, and North Africa)
The report has been compiled through extensive primary research (through interviews, surveys, and observations of seasoned analysts) and secondary research (which entails reputable paid sources, trade journals, and industry body databases). The report also features a complete qualitative and quantitative assessment by analyzing data gathered from industry analysts and market participants across key points in the industry’s value chain.
A separate analysis of prevailing trends in the parent market, macro- and micro-economic indicators, and regulations and mandates is included under the purview of the study. By doing so, the report projects the attractiveness of each major segment over the forecast period.
Highlights of the report:
A complete backdrop analysis, which includes an assessment of the parent market
Important changes in market dynamics
Market segmentation up to the second or third level
Historical, current, and projected size of the market from the standpoint of both value and volume
Reporting and evaluation of recent industry developments
Market shares and strategies of key players
Emerging niche segments and regional markets
An objective assessment of the trajectory of the market
Recommendations to companies for strengthening their foothold in the market
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