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Formaldehyde physical properties

Butynediol. Butynediol, 2-butyne-l,4-diol, [110-65-6] was first synthesized in 1906 by reaction of acetylene bis(magnesium bromide) with paraformaldehyde (43). It is available commercially as a crystalline soHd or a 35% aqueous solution manufactured by ethynylation of formaldehyde. Physical properties are Hsted in Table 2. [Pg.105]

Physical properties. All colourless. Formaldehyde, HCHO, is a gas, and only its aqueous solution, which has a characteristic pungent odour, is considered metaformaldehyde or trioxymethylene , (CH20)3, is a solid polymer, insoluble in water and ethanol. [Pg.341]

At ordinary temperatures, pure formaldehyde is a colodess gas with a pungent, suffocating odor. Physical properties are summarized ia Table 1 thermodynamic values for temperatures ranging from 0—6000 K are given ia the Interim Thermochemica/ Tables (11,12). Other properties are Hsted ia... [Pg.490]

Table 7. Specifications and Physical Properties of Formaldehyde—Alcohol Solutions... Table 7. Specifications and Physical Properties of Formaldehyde—Alcohol Solutions...
Special resoles are obtained with amine catalysts, which affect chemical and physical properties because amine is incorporated into the resin. For example, the reaction of phenol, formaldehyde, and dimethylamine is essentially quantitative (28). [Pg.296]

The level of technical service support provided for a given product generally tracks in large part where the suppHer considers thek product to be located within the spectmm of commodity to specialty chemicals. Technical service support levels for pure chemicals usually provided in large quantities for specific synthetic or processing needs, eg, ammonia (qv), sulfuric acid (see SuLFURic ACID AND SULFURTRIOXIDe), formaldehyde (qv), oxygen (qv), and so forth, are considerably less than for more complex materials or blends of materials provided for multistep downstream processes. Examples of the latter are many polymers, colorants, flocculants, impact modifiers, associative thickeners, etc. For the former materials, providing specifications of purity and physical properties often comprises the full extent of technical service requked or expected by customers. These materials are termed undifferentiated chemicals (9),... [Pg.377]

Amino resins are lighter in color and have better tensile strength and hardness than phenoHc resins their impact strength and heat and water resistance are less than those of phenoHcs. The melamine—formaldehyde resins are harder and have better heat and moisture resistance than the urea resins, but they are also more expensive. The physical properties of the melamine—formaldehyde laminates are Hsted in Table 1. [Pg.328]

Phenolic Resins. PhenoHc resins [9003-35 ] (qv) are thermosets prepared by the reaction of phenol with formaldehyde, through either the base-cataly2ed one-stage or the acid-cataly2ed two-stage process. The Hquid intermediate may be used as an adhesive and bonding resin for plywood, particle board, ftberboard, insulation, and cores for laminates. The physical properties for typical phenoHc laminates made with wood are Hsted in Table 1. [Pg.328]

Physical and Chemical Properties. The reaction of urea and formaldehyde forms a white soHd. The solubihty varies with the methylene urea polymer chain length longer-chain, higher molecular-weight UF polymers are less water-soluble than short-chain polymers. Physical properties of the methylene urea polymers which have been isolated are compared to urea in Table 1. [Pg.130]

Isohutyhdene Diurea., This is the condensation product of urea and isobutyraldehyde. Unlike the condensation of urea with formaldehyde, which forms a distribution of different UF polymer chain lengths, the reaction of urea with isobutyraldehyde forms a single oligomer. Although similar in chemical stmcture to methylene diurea (MDU), its physical properties are quite different (Table 4). [Pg.132]

Some typical values of physical properties of mouldings from urea formaldehyde compositions are given in Table 24.1. [Pg.675]

Moulding powders based on melamine-phenol-formaldehyde resins were introduced by Bakelite Ltd, in the early 1960s. Some of the principal physical properties of mouldings from these materials are given in Table 24.1. [Pg.689]

Table 1 Physical Properties of Benzophenone-Formaldehyde Resins... Table 1 Physical Properties of Benzophenone-Formaldehyde Resins...
In summary, studies carried out with tissue surrogates25 highlight some of the problems that must be overcome before proteins extracted from FFPE tissues can be used for routine proteomic studies. First, these studies demonstrate that reversal of protein-formaldehyde adducts does not assure quantitative extraction of proteins from FFPE tissues or vice-versa. It may ultimately turn out that there is no one universal method that can accomplish both tasks, but that instead, each step will need to be optimized separately. Studies with tissue surrogates also suggest that failure to quantitatively extract the entire protein component from FFPE tissues may result in sampling bias due to the preferential extraction of certain proteins. This behavior may be linked to protein physical properties, such as the isoelectric point. The results of our... [Pg.246]

Lukowsky, D. (2002). Influence of the formaldehyde content of waterbased melamine formaldehyde resins on physical properties of Scots pine impregnated therewith. Holz als Roh- und Werkstoff, 60(5), 349-355. [Pg.214]


See other pages where Formaldehyde physical properties is mentioned: [Pg.393]    [Pg.141]    [Pg.296]    [Pg.260]    [Pg.486]    [Pg.28]    [Pg.337]    [Pg.714]    [Pg.355]    [Pg.64]    [Pg.66]    [Pg.256]    [Pg.16]    [Pg.238]    [Pg.343]    [Pg.189]    [Pg.5]    [Pg.77]    [Pg.91]    [Pg.115]    [Pg.486]    [Pg.2]    [Pg.260]    [Pg.393]    [Pg.178]   
See also in sourсe #XX -- [ Pg.597 ]




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