DIN 55952-1981 Binders for paints and varnishes cellulose ethers testing《油漆和清漆的粘合剂 纤维素醚 试验》.pdf
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1、UDC 667.621 : 661.728.892 : 001.4 : 620.1 D EUTS C H E N O R M June 1981 Binders for paints and varnishes Ce1 lu lose et hers Testing I 55952 Bindemittel fr Anstrichstoffe; Celluloseether; Prfung As it is current practice in standards published by the International Organization for Standardization (
2、ISO), the comma has been used throughout as a decimal marker. The symbol % used in this standard for specifying concentrations of solutions means the percentage concentration by mass (percentage by weight). Unless otherwise specified, the reagents shall be of ,analytical reagent“ grade and the refer
3、ence temperature for the density of liquids shall be 20 OC. Solutions of reagents for which no solvent is specified shall be solutions in distilled water or water of equivalent purity. In the descriptions of analytical processes also, water means distilled water or water of equivalent purity. 1 Fiel
4、d of application The test methods specified in this standard apply to cellulose ethers as defined in clause 3, when they are used for paints and varnishes. 2 Designation of method The method of testing cellulose ethers (A) shall be designated as follows: Test DIN 55952 -A 4.2.2 Hydroxyethyl cellulos
5、e (HEC) This includes the hydroxyethyl ether of cellulose and its mixed ethers of the alkyl hydroxyethyl cellulose type, if they are soluble in hot water. 4.2.3 Methyl cellulose (MC) This includes the methyl ether of cellulose and also, on the basis of their common properties, the alkyl hydroxy- alk
6、yl celluloses, if they are insoluble in hot water. 5 Common symbols 3 Concept Cellulose ethers are the water soluble alkyl, hydroxy- alkyl or carboxyalkyl ethers of cellulose. They are prod- uced by etherification, part of the hydroxyl groups in the cellulose being substituted by one or more etherif
7、ying agents. The ethers produced are either simple ethers or mixed ethers with different degrees of substitution. 4 Classification of cellulose ethers 4.1 Conspectus Cellulose ethers lonogenic A Nonionogenic cellulose ethers (CMC) cellulose ethers Cold water soluble and hot water soluble Cold water
8、soluble cellulose ethers cellulose ethers (HEC) (MC, MC-mixed ethers) 4.2 Types 4.2.1 Sodium carboxymethyl cellulose (CMC) This includes the sodium sait of the glycolic acid ether of cellulose and mixed ethers containing this, for example of the type of the carboxymethyl hydroxyethyl or carboxymethy
9、l hydroxypropyl celluloses, if their ionogenic character is predominant. Table 1. Symbol MHEC Cellulose ether I suWause Ethyl hydroxyethyl cellulose 4.2.2 Hydroxyethyl cellulose I 4.2.2 Methyl cellulose 1 4.2.3 Methyl hydroxyethyl cellulose 1 4.2.3 I MHPC I Methyl hydroxypropyl cellulose 1 4.2.3 6 S
10、ampling A representative sample shall be taken from the product to be tested, as specified in DIN 53242 Part 1 (Pre- liminary standard) and Part 4. 7 Identification of cellulose ethers The specified tests will allow sufficiently accurate quali- tative identification of the cellulose ethers specified
11、 in clause 5. 7.1 Apparatus 7.1 .I Test tube, 16 cm long Continued on pages 2 to 5 Beuth Verlag GrnbH. Berlin 30, has exclusive sale rights for German Standards (DIN-Normen) 06.84 DIN 55 952 Engl. Price group 6 Sales No. 0106 Page 2 DIN 55 952 Cellulose ether CMC MHECIEHEC HEC MC MHPC 7.1.2 Filter p
12、aper 7.1.3 Silicone oil bath as specified in DIN 12 877 (at present at the stage of draft), with stirrer and thermostat 7.1.4 Ice bath 7.1.5 Water bath as specified in DIN 12 877 (at present at the stage of draft) Test No. 1 No. 2 No. 3 No. 4 No. 5 (subclause 7.3.1) (subclause 7.3.2) (subclause 7.3.
13、3) (subclause 7.3.4) (subclause 7.3.5) + - - - - - - + + + + - - - - - - + + + + + + - 7.2 Reagents 7.2.1 Manganese sulfate (MnSO4 . H201, powdered 7.2.2 96 % sulfuric acid 7.2.3 Iced water 7.2.4 5 % aluminium sulfate solution 7.2.5 10 % ammonia solution 7.2.6 20 % diethanol amine solution 7.2.7 10
14、% acetic acid 7.2.8 5 % copper sulfate solution 7.2.9 Ninhydrin reagent Dissolve 3 g of ninhydrin (2,2-Dihydroxy indandion-(I ,311 in 10 ml of a 4,55% aqueous solution of sodium pyro- su If i te. 7.2.10 5 % sodium nitroprusside (sodium nitro penta- cyano ferrate-111) solution 7.2.1 1 70 % sulfuric a
15、cid 7.2.12 1 %tannin solution 7.2.13 1 molh hydrochloric acid 7.2.14 20 % sodium hydroxide solution 7.3 Procedure 7.3.1 Coagulation by heat (test No. 1) Sprinkle 2 g of the sample while stirring, into 100 ml of water heated to 90 OC, continue stirring while the mixture cools to room temperature and
16、then top it up to 200 ml with iced water. Once it has completely dissolved, heat 100 ml of this solution in a water bath. Table 2. Identification methods In the presence of EHEC, MC or MC mixed ethers, the solution becomes turbid or a flocculant precipitate is produced at temperatures above 50 OC, w
17、hich disappears again on cooling. 7.3.2 Precipitation by tannin (test No. 2) Add five drops of 10% acetic acid and about the same volume of a 1 % tannin solution to 5.0 ml of the solution as prepared for test No. I. In the presence of EHEC, HEC, MC, MHEC and MHPC, yellowwhite flocculation occurs, wh
18、ich is soluble in a 10% ammonia solution. 7.3.3 Reaction on sodium nitroprusside (test No. 3) Mix about 39 of the sample in the test tube with 29 of powdered manganese sulfate. Insert 2 cm deep into the test tube a strip of filter paper that has previously been dipped into a solution freshly prepare
19、d as follows: Mix 1 part by volume of 20 % diethanol amine solution and 11 parts by volume of 5% sodium nitroprusside solution. Adjust the pH value of the mixture to 9,5 by adding hydrochloric acid. Then dip the test tube 8 cm deep into the silicone oil bath, heated to 190 to 200C. If HEC, MHEC/EHEC
20、 or MHPC are present, the filter paper will turn a clear blue colour within 15 minutes. Carry out a blanc test in the same manner without samples. 7.3.4 Coloration by ninhydrin (test No. 4) Dissolve about 0.2 g of the sample completely in 15 ml of 70% sulfuric acid. Stir this solution into 100ml of
21、iced water and top up to 250ml with iced water. Thoroughly mix 1 ml of this solution, whilst intensively cooling it, in drops with 8 ml of 96% sulfuric acid in a test tube, heat it for exactly three minutes in a boiling water bath and then cool it immediately in an ice bath. At room temperature, car
22、efully add 0.6 ml of freshly prepared ninhydrin reagent and shake the mixture thoroughly. Leave the solution to stand at 25C and observe it over a period of 100 minutes. If MHPC is present, violet coloration will occur within this time, otherwise the mixture will be pink coloured. Carry out a blanc
23、test in the same manner without sample. - negative reaction DIN 55952 Page 3 7.3.5 Precipitation reaction (test No. 5) Dilute 2,5 ml of solution prepared as for test No. 1, with the same quantity of water and then add, drop by drop, 1 ml of 5% alumininium sulfate solution or 5% copper sulfate soluti
24、on. If CMC is present, there will be a white or bright blue precipitate that is soluble in an excess of 20% sodium hydroxide solution or an excess of 1 O % ammonia solu- tion. 8 Average degree of substitution of CMC The average degree of substitution (DS) of CMC shall be determined by the copper met
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