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Bio-Based Emulsion Polymers Market - Global Industry Analysis, Forecast 2015 – 2023

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Emulsion polymers are molecules with high molecular weight that are dispersed in water, and can be used either in solid or liquidform. Emulsion polymerization is a free radical process used to manufacture various commercially vital polymers. It incl
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REPORT DESCRIPTION
Transparency Market Research Reports incorporated a definite business overview and investigation inclines on “Bio-Based
Emulsion Polymers Market - Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2015 - 2023” This
report likewise incorporates more illumination about fundamental review of the business including definitions, requisitions and
worldwide business sector industry structure.
Emulsion polymers are molecules with high molecular weight that are dispersed in water, and can be used either in solid or
liquidform. Emulsion polymerization is a free radical process used to manufacture various commercially vital polymers. It
includes emulsification of one or more monomers in a continuous aqueous phase and its stabilization by a surfactant. The key
applications of emulsion polymers are in industries such as: paints and coatings, paper and paperboard, adhesives, and carpet
manufacturing industries. The most common types of emulsion polymers in the market include: acrylics, styrene butadiene
latex, and vinyl acetate polymers. However, of late, the market has started to shift its focus towards bio-based emulsion
polymers. The market for bio-based emulsion polymers is currentlylimited and is expected to grow considerablyduring the
forecast period.
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Several companies such as Trinseo S.A. and EcoSynthetix, Inc. have developed latex for application in paints and coatings, and
paper coating applications based on starch derived from corn and tapioca. The overall market for emulsion polymers is driven by
applications in paints and coatings, and paper coating. The emulsion polymers are used as binders in these applications. Apart
from that,it is used in adhesives and as a concrete additive. The conventional emulsion polymers such as styrene butadiene
latex and acrylics are downstream derivatives of crude oil, and emit volatile organic compounds which are toxic to the
environment.
Due to the stringent environmental regulations with respect to volatile organic compounds (VOCs) and rising prices of oil, biobased emulsion polymers hold a great potential for the future growth of the market. The two types of technologies that can be
used are: bio-based sugar macromer technology, and bio-based latex polymer technology. The former uses sugar macromer as
a raw material for the synthesis of polymer, and the latter uses starch derived from corn, rice, potato, and tapioca, materials
that are available in abundance around the world. New hybrid vinyl copolymers such as vinyl acetate, styrene-butadiene (SB),
acrylics, and styrene acrylate (SA) can be used to synthesize sugar copolymer latex. In addition, acrylic monomers derived from
plant oils such as soybean, castor, cotton, and corn can be used to produce acrylic hybrid latex. Polymers derived from biobased latex polymer technology are renewable and provide improved performance as compared to other polymers such as SB
and SA latex, and are expected to receive significant attention in the near future. The bio renewable content of bio-based
emulsion polymers is up to 30%.
North America and Europe hold a majority of the marketshare for bio-based emulsion polymers. Regulatory issues coupled with
consumer awareness in favor of bio-based products augur well for bio-based emulsion polymers in these regions. The demand
for bio-based emulsion polymers is comparatively low in the Asia Pacific region, except for Japan. However, since demand for
conventional emulsion polymers is the highest in the region with the best growth prospects, the demand for bio-based emulsion
polymers is also expected to rise gradually.
Several established chemical companies are involved in the production of bio-based emulsion polymers. Some key companies
operating in this market include: Trinseo S.A., BASF SE, Dow Chemical Company, and Ecosynthetix, Inc. Many companies have
initiated pilot projects and production is expected to commence at a commercial scale in the near future.
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This research report analyzes this market on the basis of its market segments, major geographies, and current
market trends. Geographies analyzed under this research report include
•
North America
•
Asia Pacific
•
Europe
•
Middle East and Africa
•
Latin America
This report provides comprehensive analysis of
•
Market growth drivers
•
Factors limiting market growth
•
Current market trends
•
Market structure
•
Market projections for upcoming years
This report is a complete study of current trends in the market, industry growth drivers, and restraints. It provides market
projections for the coming years. It includes analysis of recent developments in technology, Porter’s five force model analysis
and detailed profiles of top industry players. The report also includes a review of micro and macro factors essential for the
existing market players and new entrants along with detailed value chain analysis.
Reasons for Buying this Report
This report provides pin-point analysis for changing competitive dynamics
It provides a forward looking perspective on different factors driving or restraining market growth
It provides a six-year forecast assessed on the basis of how the market is predicted to grow
It helps in understanding the key product segments and their future
It provides pin point analysis of changing competition dynamics and keeps you ahead of competitors
It helps in making informed business decisions by having complete insights of market and by making in-depth analysis of market
segments
It provides distinctive graphics and exemplified SWOT analysis of major market segments
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