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Ethylene diamine phosphate

Special considerations chemical composition of filler surface affects nucleation of filler traces of heavy metals decrease thermal stability and cause discoloration siuface free energy of fillers determines interaction large difference in thermal properties of fillers and polymer may cause stress hydrotalcite is used as acid neutralizer with stabilizing packages anatase titanium dioxide decreases UV stability presence of transition metals (Ni, Zn, Fe, Co) affects thermal and UV stability calcium carbonate and talc were found to immobilize HALS stabilizers in PP with organic masterbatches such as ethylene diamine phosphate V-0 classification can be obtained with 20-25 wt%, at the same time tensile strength and impact strength are substantially reduced... [Pg.663]

See Ammonium polyphosphate Amgard ND. See Dimelamine phosphate Amgard NH. See Melamine phosphate Amgard NK, Amgard NP. See Ethylene diamine phosphate... [Pg.207]

Ethylene diamine acid phosphate. See Ethylene diamine phosphate... [Pg.1712]

Ethylenediamine hydrochloride. See Ethylenediamine dihydrochloride Ethylenediamine, N-(1-naphthyl)-, dihydrochloride. See N-(1-Naphthyl) ethylenediamine dihydrochloride Ethylene diamine phosphate CAS 14852-17-6 EINECS/ELINCS 238-914-9 Synonyms EDAP 1,2-Ethanediamine, phosphate Ethylene diamine acid phosphate Empiricai C2H8N2 H3PO4 Formuia H2NCH2CH2NH2H3PO4 Properties Wh. powd. sol. 5% in water m.w. 158.1 m.p. 246 C (dec.)... [Pg.1712]

Ethylenebis (tetrabromophthalimide) Ethylene diamine phosphate Pentabromotoluene Sodium antimonate Tetradecabromodiphenoxybenzene flame retardant, PET Pentabromobenzyl acrylate Polypropylene/dibromostyrene copolymer Tetradecabromodiphenoxybenzene Tetrakis (2-chloroethyl) ethylene diphosphate flame retardant, phenolic resins 1,4-Diisobutyl-1,4-diphosphoryl-2,3,5,6-tetrahydroxycyclohexane flame retardant, phenolics Tris (2,3-dichloropropyl) phosphate flame retardant, pigment carriers Triaryl phosphate... [Pg.5264]

Barium metaborate Bis (P-chloroethyl) vinyl phosphonate Calcium sulfate dihydrate Chlorinated n-paraffins (C6-C18) Dibromostyrene Dimelamine phosphate Dimethyl hydrogen phosphite Ethylenebis dibromonorbornane dicarboximide Ethylene diamine phosphate Isobutylbis (hydroxypropyl) phosphine oxide Magnesium carbonate Magnesium hydroxide Melamine cyanurate... [Pg.5264]

Melamine phosphate Tetrabromo-p-xylene Tetrakis (2-chloroethyl) ethylene diphosphate Triethyl phosphate flame retardant, polyimides Ethylenebis (tetrabromophthalimide) flame retardant, polymeric nylon Poly (pentabromobenzyl) acrylate flame retardant, polymeric PBT Poly (pentabromobenzyl) acrylate flame retardant, polymeric PET Poly (pentabromobenzyl) acrylate flame retardant, polymeric PP Poly (pentabromobenzyl) acrylate flame retardant, polymeric PS Poly (pentabromobenzyl) acrylate flame retardant, polymers Ammonium octamolybdate Dimelamine phosphate Ethylene diamine phosphate Melamine borate Melamine pyrophosphate Polydibromophenylene oxide Tris (2-chloropropyl) phosphate flame retardant, polymethyl methacrylate Dimelamine phosphate Diphenyl octyl phosphate... [Pg.5265]

Polybrominated biphenyl Tris (2,3-dichloropropyl) phosphate flame retardant, PUs Melamine cyanurate flame retardant, PVAc Ethylene diamine phosphate Trixylenyl phosphate... [Pg.5266]

Graphites can be used alone as smoke suppressants giving a heat insulation effect but, for some applications, the expanded carbon layers are too unstable and other FRs, such as zinc borate, APP or ethylene diamine phosphate, can be used as stabilisers, to give a good span of properties and applications. [Pg.54]

Ethylene diamine phosphate Albright Wilson Amgard NK, NP.1222 Cellulose, Polyester, Polystyrene, PVC, Polyethylene... [Pg.52]

Buffer and chemicals pH 7.8 phosphate buffer (16.29g Na2HP04-2H20, 1.17g NaH2P04H20, 1000 ml distilled water), Ethylene Diamine Tetra Acetic Acid (EDTA), Methionine (Met), Polyvinylpyrrolidone (PVP), Triton X-100, Phenylmethylsulphonylfluoride (PMSF), Riboflavin, Nitro Blue Tetrazolium (NBT). [Pg.169]

To make an amine derivative of dextran, dissolve ethylene diamine (or another suitable diamine) in 0.1 M sodium phosphate, 0.15 M NaCl, pH 7.2, at a concentration of 3 M. Note Use of the hydrochloride form of ethylene diamine is more convenient, since it avoids having to adjust the pH of the highly alkaline free-base form of the molecule. Alternatively, to prepare a hydrazide-dextran derivative, dissolve adipic acid dihydrazide (Chapter 4, Section 8.1) in the coupling buffer at a concentration of 30 mg/ml (heating under a hot water tap may be necessary to completely dissolve the hydrazide compound). Adjust the pH to 7.2 with HC1 and cool to room temperature. [Pg.956]

Complexes with organic compounds have been reported. Solubility studies with tributyl phosphate (TBP) indicate the formation of a complex PoC14-2TBP (IS). Weighable amounts of polonium tetrachloride in dilute hydrochloric acid can be titrated to a colorless end point with ethylene-diamine tetra-acetic acid (EDTA) the results suggest a complex with two molecules of EDTA, but solubility studies favor a 1 1 complex. The EDTA complex is soluble in alkali and is more stable in alkaline than in acid media, but the ligand is rapidly destroyed by the radiation and solvent radiolysis products 12). However, EDTA can apparently be used to complex trace polonium in the separation of radium D-E-F mixtures (129). [Pg.215]

Prepare the antibody for reduction. For labeling IgG antibodies with thiol-reactive reagents, the antibody should be at 5-10 mg of pro-tein/mL in 20 mM sodium or potassium phosphate buffer, pH 7.5-8.0 containing 150 mill NaCl or 10 mM phosphate-buffered saline ethylene diamine tetraacetic acid (PBS-EDTA). When biotin maleimide or biocytin maleimide derivatives are used, the buffer used for the reduction and subsequent steps should be at pH 6.5-7.2. [Pg.77]

Degassed solution of phosphate-buffered saline (PBS) without calcium and magnesium, supplemented with 0.1% (w/v) bovine serum albumin and 2 mM ethylene diamine tetraacetic acid. [Pg.315]

Further applications of the determination of gas chromatography to the determination of anions in non saline waters are reviewed in Table 15.23. These include aminoacetates, arsenate, bromide, chloride, fluoride, iodide, cyanide, ethylene diamine tetraacetate, nitrate, phosphate, thiocyanate and sulphide. [Pg.370]

Reagents 50 mM potassium phosphate buffer, pH 7.8, containing 0.1 mM ethylene diamine tetraacetic acid, 0.76 mg xanthine in 10 ml 0.001 M sodium hydroxide solution, 24.8 mg cytochrome c in 100 ml phosphate buffer, pH 7.8. [Pg.202]

Abbreviations MIANS, 2-(4 -maleimidylanilino)naphthalene-6-sulfonic acid PBS, phosphate buffered saline 20 mM sodium phosphate containing 150 mM sodium chloride, pH 7.2 EDTA, ethylene diamine tetraacetic acid DTT, dithiothreitol GuHCl, guanidine hydrochloride 2-ME, 2-mercaptoethanol RB2L-MIANS, ricin B-chain covalently blocked by two affinity ligands and MIANS labeled TEA, Trifluoroacetic Acid. [Pg.246]

The aqueous process solution containing sodium thiocyanate with impurities was provided by a local industry. All the membrane modules, pressure vessels, and accessories for the nanofiltration pUot plant used in this study were purchased from Permionics Membranes Pvt. Ltd. (Baroda, India) and assembled in the laboratory. Citric acid, tetra sodium salt of ethylene diamine tetraacetic acid (EDTA), trisodium phosphate (TSP), and sodium metabisulfite for cleaning and maintenance of the membranes were procured from Lob a Chemie (Mumbai, India). [Pg.1114]

If the calcium phosphate fibers grown from ultraphosphate melts are slurried with a solution of sodium ethylene diamine tartaric acid the calcium crystals can be converted to a sodium phosphate glass that dissolves very slowly yielding very long chains. [Pg.93]

ADP AFP ab as ALAT AP ASAT ATP BQ BSA CEH CK CME COD con A CV d D E E EC ECME EDTA EIA /e FAD FET FIA G GOD G6P-DH HBg HCG adenosine diphosphate a-fetoprotein antibody antigen alanine aminotranferase alkaline phosphatase aspartate aminotransferase adenosine triphosphate benzoquinone bovine serum albumin cholesterol ester hydrolase creatine kinase chemically modified electrode cholesterol oxidase concanavalin A coefficient of variation (relative standard deviation) layer thickness diffusion coefficient enzyme potential Enzyme Classification enzyme-chemically modified electrode ethylene diamine tetraacetic acid enzyme immunoassay enzyme loading factor flavin adenine dinucleotide field effect transistor flow injection analysis amplification factor glucose oxidase glucose-6-phosphate dehydrogenase hepatitis B surface antigen human chorionic gonadotropin... [Pg.327]


See other pages where Ethylene diamine phosphate is mentioned: [Pg.1663]    [Pg.5067]    [Pg.5263]    [Pg.5265]    [Pg.5265]    [Pg.5267]    [Pg.5360]    [Pg.6437]    [Pg.6922]    [Pg.782]    [Pg.1663]    [Pg.5067]    [Pg.5263]    [Pg.5265]    [Pg.5265]    [Pg.5267]    [Pg.5360]    [Pg.6437]    [Pg.6922]    [Pg.782]    [Pg.257]    [Pg.97]    [Pg.462]    [Pg.126]    [Pg.296]    [Pg.401]    [Pg.440]    [Pg.240]    [Pg.656]    [Pg.105]    [Pg.500]    [Pg.847]   
See also in sourсe #XX -- [ Pg.128 ]

See also in sourсe #XX -- [ Pg.29 ]




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Phosphates diamines

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