Urea Formaldehyde Market Expected to Deliver Dynamic Progression until 2027

An up-to-date research report has been disclosed by FactMR highlighting the titled “Urea Formaldehyde Market Expected to Deliver Dynamic Progression until 2027” which delivers an outlook of current market value as well as the expected forecast including Rate on Investment (ROI) together with growing CAGR during 2018-2027. The report studies the urea formaldehyde market worldwide, especially in North America, Europe, Southeast Asia, India and Other Regions with production, size, growth, revenue, consumption, import and export in these regions.

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The urea formaldehyde market remains highly fragmented, with a number of mid-sized and emerging players competing for market share. The growing regulations are influencing market players to develop urea formaldehyde based adhesives with lower formaldehyde emissions. The leading players in the market, including BASF SE, Advachem, Ashland Inc., Ineos Group, Georgia-Pacific, and Hexion Inc account for around 8% – 10% of the urea-formaldehyde market.

Some of the key players operating in the global urea formaldehyde market are BASF SE, Advachem, Ashland Inc., Ineos Group, Georgia-Pacific, Acron Group, Hexion Inc., CHIMICA POMPONESCO S.P.A., OJSV “Perechin timber and chemical plant”, PJSC METAFRAX, Achema, Asta Chemicals Sdn. Bhd., etc. 

Growing Applications in Thriving Wood Industry Generating Opportunities 

Urea formaldehyde (UF) products, commonly referred to as aminoplasts, are increasingly gaining traction in the wood industry on account of their cost-effectiveness and robust strength. They are being widely used in the wood industry for manufacturing particleboards, fibrous boards, medium density fiber boards, and granular boards. Owing to their numerous features, such as cost-effectiveness, resistance to mold formation, easy adaptability in diverse curing conditions, low cure temperature, exceptional thermal properties, and excellent water solubility of the (uncured) resin, these resins are gaining prominence as a key wood adhesive.

Despite their widespread use, formaldehyde based adhesives continue to trigger concerns, owing to their potential health impact. As formaldehyde is a suspected carcinogen, the rising toxicity concerns raised by health and environmental organizations, key regulators, and end-users are influencing urea formaldehyde manufacturers to develop new urea resins, formaldehyde resins and urea-formaldehyde resins, which emit formaldehyde in negligible amount.

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Sensing the severity of such toxic concerns, many manufacturers have introduced low emitting resin system. EcoBindTM by chemical company Hexion and E-Natural® by Arclin Group has been developed to keep emissions low without compromising on the quality.

Another prominent player in urea formaldehyde market, Georgia Pacific Chemicals, has introduced LEAF® low-emission resins, a group of wood adhesive technologies, such as LEAF C2 Resins, LEAF GB resins, etc., that work in compliance with diverse green building standards and CARB Airborne Toxic Control Measure (ATCM) for Composite Panels Phase 2 emission requirements. Based on the requirements and process followed by a manufacture, LEAF C2 adhesives can be a melamine urea formaldehyde or urea formaldehyde formulation. Manufacturers’ instant action to address such concerns is in turn likely to maintain buoyancy in the adoption of urea formaldehyde resins.

Applications in Automotive and Aircraft Sector Create Sustained Opportunities 

As formaldehyde has numerous useful chemical properties, it is increasingly gaining traction as an important chemical building block in a wide range of applications. The growing intermediate applications of formaldehyde-based resins in automotive, aircraft, construction, clothing and healthcare industries continues to create growth opportunities for the players in urea formaldehyde market.

Several formaldehyde-based resins and chemicals are witnessing growing adoption in manufacturing surface coatings, decorative laminates, molded automobile components, etc. for a wide range of end products, such as tires,  engine parts, fuel system components, brake pads, vehicle interiors, foams in car seats body part adhesives, bumpers, and engine lubricants.  These resins are also gaining demand from aircraft sector for the manufacturing of high performance thermoplastics, neopolyol esters, phenol composites, and PUFs for various end products, such as tyres, turbine lubricants, interior paneling, seat foam, brake pads, and seatbelts. Glues composed of formaldehyde-based chemistry are excellent bonding agents, and deliver high-quality performance that is extremely economical.

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