DIN ISO 976-2016 Rubber and plastics - Polymer dispersions and rubber latices - Determination of pH (ISO 976 2013)《橡胶和塑料 聚合物分散体和橡胶胶乳 pH值的测定(ISO 976-2013)》.pdf
《DIN ISO 976-2016 Rubber and plastics - Polymer dispersions and rubber latices - Determination of pH (ISO 976 2013)《橡胶和塑料 聚合物分散体和橡胶胶乳 pH值的测定(ISO 976-2013)》.pdf》由会员分享,可在线阅读,更多相关《DIN ISO 976-2016 Rubber and plastics - Polymer dispersions and rubber latices - Determination of pH (ISO 976 2013)《橡胶和塑料 聚合物分散体和橡胶胶乳 pH值的测定(ISO 976-2013)》.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、December 2016 English price group 9No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 83.040.10!%n=“2597526www.din.deD
2、IN ISO 976Rubber and plastics Polymer dispersions and rubber latices Determination of pH (ISO 976:2013),English translation of DIN ISO 976:2016-12Kautschuk und Kunststoffe PolymerDispersionen und KautschukLatices Bestimmung des pHWertes (ISO 976:2013),Englische bersetzung von DIN ISO 976:2016-12Caou
3、tchouc et plastiques Dispersions de polymres et latex de caoutchouc Dtermination du pH (ISO 976:2013),Traduction anglaise de DIN ISO 976:2016-12SupersedesDIN ISO 976:200807, withdrawn 201504www.beuth.deDocument comprises 13 pagesDTranslation by DIN-Sprachendienst.In case of doubt, the German-languag
4、e original shall be considered authoritative.01.17DIN ISO 976:2016-12 2 A comma is used as the decimal marker. Contents Page National foreword . 3 National Annex NA (informative) Bibliography 4 1 Scope 5 2 Normative references 5 3 Reagents . 5 4 Apparatus . 6 5 Sampling . 6 6 Procedure. 7 6.1 Genera
5、l 7 6.2 Maintenance of the electrode . 7 6.3 Calibration of the pH-meter 8 6.4 Measurement of the pH of the test sample. 9 7 Expression of results . 10 8 Test report 10 Annex A (informative) Precision . 11 Bibliography . 13 DIN ISO 976:2016-12 3 National foreword This document (ISO 976:2013) has bee
6、n prepared by Technical Committee ISO/TC 45 “Rubber and rubber products”, Subcommittee SC 3 “Raw materials (including latex) for use in the rubber industry”. The responsible German body involved in its preparation was DIN-Normenausschuss Kunststoffe (DIN Standards Committee Plastics), Working Commit
7、tee NA 054-01-03 AA Physikalische, rheologische und analytische Prfungen. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. DIN and/or DKE shall not be held responsible for identifying any or all such patent rights. The DIN Standard
8、s corresponding to the International Standards referred to in this document are as follows: ISO 123 DIN ISO 123 ISO 3696 DIN ISO 3696 ISO 15528 DIN EN ISO 15528 Amendments This standard differs from DIN ISO 976:2008-07 (withdrawn 2015-04) as follows: a) the scope has been revised; b) normative refer
9、ences have been updated; c) in Subclause 4.2, the contact data of a manufacturer of combined electrodes have been deleted; d) Annex A “Precision” has been revised; e) a Bibliography has been included; f) the standard has been editorially revised. Previous editions DIN 53785: 1971-12 DIN 53606: 1980-
10、08 DIN ISO 976: 1998-05, 2008-07 DIN ISO 976:2016-12 4 National Annex NA (informative) Bibliography DIN EN ISO 15528, Paints, varnishes and raw materials for paints and varnishes Sampling DIN ISO 123, Rubber latex Sampling DIN ISO 3696, Water for analytical laboratory use Specification and test meth
11、ods Rubber and plastics Polymer dispersions and rubber latices Determination of pHWARNING Persons using this International Standard should be familiar with normal laboratory practice. This International Standard does not purport to address all of the safety problems, if any, associated with its use.
12、 It is the responsibility of the user to establish appropriate safety and health practices and to ensure compliance with any national regulatory conditions.1 ScopeThis International Standard specifies a method for the determination of the pH of polymer dispersions and rubber latices (natural and syn
13、thetic) by means of a pH-meter equipped with a combined glass and silver reference electrode.The method is also suitable for prevulcanized latex and compounds containing polymer dispersions or rubber latices, including adhesives.NOTE The accuracy of the method decreases at pH values above 11.2 Norma
14、tive referencesThe following documents, in whole or in part, are normatively referenced in this document and are indispensable for its application. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) a
15、pplies.ISO 123, Rubber latex SamplingISO 3696, Water for analytical laboratory use Specification and test methodsISO 15528, Paints, varnishes and raw materials for paints and varnishes Sampling3 ReagentsUse commercially available analytical-grade buffer solutions of known pH or, in the absence of co
16、mmercial buffer solutions, prepare the solutions required (3.1, 3.2 and 3.3) using only reagents of recognized analytical grade and carbon dioxide-free distilled water or water of equivalent purity (grade 3 as defined in ISO 3696).3.1 Buffer solution, of nominal pH 7.Dissolve 3,40 g of potassium dih
17、ydrogen phosphate (KH2P04) and 3,55 g of disodium hydrogen phosphate (Na2HP04) in water and make up to 1 000 cm3in a volumetric flask.The pH of this solution is 6,87 at 23 C.Store the solution in a glass or polyethylene vessel, which is resistant to chemicals.3.2 Buffer solution, of pH 4.Dissolve 10
18、,21 g of potassium hydrogen phthalate (KOOC C6H4COOH) in water and make up to 1 000 cm3in a volumetric flask.The pH of this solution is 4,00 at 23 C.Store the solution in a glass or polyethylene vessel, which is resistant to chemicals.5 DIN ISO 976:2016-12 3.3 Buffer solution, of nominal pH 9Dissolv
19、e 3,814 g of sodium tetraborate decahydrate (Na2B4O710H2O) in water and make up to 1 000 cm3in a volumetric flask.The pH of this solution, when freshly prepared, is 9,20 at 23 C.Store the solution in a glass or polyethylene vessel, which is resistant to chemicals, and fitted with a soda-lime carbon
20、dioxide trap. Replace the solution after one month.Alkaline buffer solutions are unstable; they absorb carbon dioxide from the atmosphere. When an alkaline buffer has been used for calibration, the accuracy can be verified by means of the buffer solution of pH 4.3.4 Reference electrolyte.Use 3 mol/d
21、m3potassium chloride solution saturated with silver chloride.4 ApparatusUse usual laboratory equipment and the following.4.2 Combined electrode, in which the glass electrode is surrounded concentrically by the silver reference electrode. The reference electrolyte (3.4) is kept in electrical contact
22、with the test sample by a chemically inert diaphragm, e.g. a retractable sleeve made of polytetrafluoroethylene or glass. This is supplied with the electrode by the electrode manufacturer.A typical combined electrode is shown in Figure 1.The glass electrode used shall be one recommended by the manuf
23、acturer as suitable over the pH range to be encountered (0 to 14 in the case of polychloroprene latices).Electrical contact between the electrolyte and the test sample is maintained through a thin film of electrolyte between the sleeve and the electrode.The electrode functions linearly between pH 0
24、and the appearance of the alkaline error, which, depending on the sodium ion concentration, usually does not appear until the pH is over 11.4.3 Magnetic stirrer and magnetic bar.4.4 Electrode holder.5 SamplingCarry out the sampling of the rubber latex or polymer dispersion in accordance with one of
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