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Amino resins are thermosetting resins formed by copolymerization of amino compounds with an aldehyde. Amino resins are used in wood panels, coatings, laminates, molding compounds, adhesives, and other industry.Amino resins are majorly used as adhesives in wood panels such as particleboards, MDF, plywood, etc. The high performance of amino resin in terms of strength and resistance they provide to wood panels are major driver of amino resin market.
The Asia Pacific urea formaldehyde resin market is estimated to grow to $3,427.7 million by 2018 at a CAGR of 6.6% from the year 2013-2018. The market has grown considerably during the past few years and is expected to grow at a more rapid pace in the coming years.
The North American Urea Formaldehyde Resin Market report defines and segments the urea formaldehyde resin market in North America with analysis and forecast of revenue.
The report \"Amino Resin Market - by Types (Urea Formaldehyde, Melamine Formaldehyde, Melamine Urea Formaldehyde), Applications (Particle Board, MDF, Plywood, Laminates, Coatings) and Geography - Global Trends and Forecasts to 2018\" defines and segments the global amino resins market with analysis and forecasting of the global volume and revenue. It also identifies driving and restraining factors for the global amino resins market with analysis of trends, opportunities, burning issues, winning imperatives, and challenges. The market is segmented and revenues are forecasted on the basis of major regions such as North America, Europe, Asia-Pacific, and Rest of the World (ROW). The key countries are covered and forecasted for each region. Further, market is segmented and revenues are forecasted on the basis of applications.
The Europe Urea Formaldehyde Resin Market had around 37% of the market share value in 2013, and is growing at a CAGR of 8.6%, for the period 2013-2018.
The copolymer has been synthesized by the polycondesation technique of 2-hydroxyacetophenone with catechol and\nformaldehyde in the presence of 2M HCl as a catalyst. The copolymer has been characterized by UV-visible, IR and\n1H NMR spectra. The thermal decomposition behavior of new copolymer was studied using thermogravimetric\nanalysis in air atmosphere. Thermal decomposition curves are discussed with careful attention to minute details.\nThe freeman-Carroll and Sharp-Wentworth methods have been used to calculate activation energy and thermal\nstability. Thermal activation energy (Ea) calculated with the help of these methods are in agreement with each\nother. Thermodynamic parameters such as free energy change (âˆ†F), entropy change (âˆ†S), Apparent entropy\nchange(S*) and frequency factor Z are also determined on the basis of TG curves and by using data of the FreemanCarroll\nmethod. Scanning electron microscopy (SEM) was used to establish the surface morphology and nature of\nthe copolymer. \n
The North America Melamine Formaldehyde Resin Market report defines and segments the Melamine Formaldehyde Resin market in North America with analysis and forecast of revenue.
The Melamine Urea Formaldehyde Resin Market report defines and segments the market in Europe with analysis and forecast of revenue.
A copolymer was synthesized from resorcinol and melamine using formaldehyde as a cross linking agent at 126 0C\nin 2M HCl medium. The resin was characterized by elemental analysis, FTIR and NMR spectra. The RMF resin was\ntested for its inhibitory action against pathogenic bacteria and fungi. The resin show potent inhibitory action\nagainst bacteria such as Escherichia coli, Klebseilla, Staphylococcus aureus and Pseudomonas aeruginosa and\nfungi viz. Aspergillus flavus, Aspergillus niger, Pencillium species, Candida albicans, Cryptococcus neoformans\nand Mucor species. The copolymer resin is soluble in DMF, DMSO, THF, conc. H2SO4.
Formaldehyde. Regulation. Regulated areas. 1a. Regulation. Signs and markings. 1b. Regulation. Only authorized personnel may enter regulated areas Action level Permissible exposure limit. 1c. Regulation. Short-term exposure limit Engineering controls Work practices. 1d.