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GB/T 1677-2023 PDF English

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GB/T 1677-2023: Determining the epoxy value of plasticizers
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GB/T 1677: Evolution and historical versions

Standard IDContents [version]USDSTEP2[PDF] deliveryName of Chinese StandardStatus
GB/T 1677-2023English110 Add to Cart 0-9 seconds. Auto-delivery Determining the epoxy value of plasticizers Valid
GB/T 1677-2008English85 Add to Cart 0-9 seconds. Auto-delivery Determination the epoxy value of plasticizers Obsolete
GB/T 1677-1981English199 Add to Cart 2 days Determination of the epoxy value of plasticizers (acetone-hydrochloride method) Obsolete

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GB/T 1677-2023: Determining the epoxy value of plasticizers

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GB NATIONAL STANDARD OF THE PEOPLE’S REPUBLIC OF CHINA ICS 71.100.40 CCS G 70 Replacing GB/T 1677-2008 Determining the epoxy value of plasticizers Issued on: DECEMBER 28, 2023 Implemented on: JULY 01, 2024 Issued by. State Administration for Market Regulation; Standardization Administration of the People's Republic of China.

Table of Contents

Foreword... 3 1 Scope... 5 2 Normative references... 5 3 Terms and definitions... 5 4 Reagents and solutions... 5 5 Instruments... 6 6 Test methods... 6 Annex A (informative) Preparation method of sodium hydroxide standard titration solution (0.15 mol/L)... 9

Foreword

This document was drafted in accordance with the rules given in GB/T 1.1-2020 "Directives for standardization - Part 1.Rules for the structure and drafting of standardizing documents". This document replaces GB/T 1677-2008 "Determination the epoxy value of plasticizers". Compared with GB/T 1677-2008, in addition to structural adjustments and editorial changes, the main technical changes in this document are as follows. a) Change the scope of the content (see Chapter 1 of this Edition; Chapter 1 of Edition 2008); b) Add potassium hydrogen phthalate [CAS No.. 877-24-7] reference reagent and its requirements (see 4.4 of this Edition); c) Delete the contents of pyridine and hydrochloric acid-pyridine solution (see 4.3 and 4.5 of Edition 2008); d) Change the content of sodium hydroxide standard titration solution (see 4.6 of this Edition; 4.7 of Edition 2008); e) Add instrument pipette (see 5.3 of this Edition). Delete instrument volumetric flask, straight condenser and oil bath (see 5.2, 5.4 and 5.5 of Edition 2008); f) Delete Method B for determination of epoxy value (see Chapter 6 of Edition 2008); g) Add the epoxy value determination method of hydrochloric acid-acetone- phenolphthalein method (see 6.1.2 of this Edition); h) Add the acid value determination method (see 6.2 of this Edition). Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. The issuing authority shall not be held responsible for identifying any or all such patent rights. This document was proposed by China Petroleum and Chemical Industry Federation. This document shall be under the jurisdiction of National Technical Committee on Rubber and Rubber Products of Standardization Administration of China (SAC/TC 35). The drafting organizations of this document. Shanxi Chemical Research Institute (Co., Ltd.), Zhejiang Jiaao Environmental Protection Technology Co., Ltd., Xinjinlong Bio- based Materials (Hubei) Co., Ltd., Shandong Kexing Chemical Co., Ltd., Nantong Haierma Technology Co., Ltd., and Xiamen University. Determining the epoxy value of plasticizers IMPORTANT NOT. People who use this document shall have practical experience in formal laboratory work. This document does not point out all possible safety issues. Users are responsible for taking appropriate safety and health measures and ensuring that the conditions stipulated by relevant national laws and regulations are met.

1 Scope

This document describes the test method for the epoxy value of a range of epoxy plasticizers. This document is applicable to the determination of epoxy value of epoxy plasticizer series products.

2 Normative references

The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. GB/T 601, Chemical reagent -- Preparations of reference titration solutions GB/T 603, Chemical reagent -- Preparations of reagent solutions for use in test methods GB 1257, Working chemicals -- Potassium hydrogen phthalate GB/T 6682, Water for analytical laboratory use -- Specification and test methods

3 Terms and definitions

For the purposes of this document, the following terms and definitions apply. 3.1 epoxy value The oxygen content of epoxy groups per 100 g of specimen.

4 Reagents and solutions

Unless otherwise specified, only analytically-pure reagents and grade 3 water that complies with GB/T 6682 are used in the analysis. The standard titration solutions and products used in the analysis shall be prepared in accordance with GB/T 601 and GB/T 603 unless other requirements are specified. 4.1 Hydrochloric acid [CAS No.. 7647-01-0]. 4.2 Acetone [CAS No.. 67-64-1]. 4.3 Ethanol [CAS No.. 64-17-5]. 95%. 4.4 Potassium hydrogen phthalate [CAS No.. 877-24-7] standard reagent. in accordance with the requirements of GB 1257. 4.5 Hydrochloric acid-acetone solution. the volume ratio of hydrochloric acid and acetone is 1.40.Store in a sealed glass bottle and prepare before use. 4.6 Standard sodium hydroxide titration solution. c NaOH = 0.01 mol/L, c NaOH = 0.1 mol/L, c NaOH = 0.15 mol/L (see Annex A for the preparation method). 4.7 Phenolphthalein [CAS No.. 77-09-8] Indicator solution. 10 g/L. Weigh 1 g of phenolphthalein and dissolve it in 95% ethanol. Make up to 100 mL with 95% ethanol. 4.8 Cresol red indicator solution. 1 g/L. Weigh 0.1 g of cresol red, accurate to 0.0001 g. Add 26 mL of 0.1 mol/L sodium hydroxide. Dissolve and dilute to 100 mL with distilled water. 4.9 Thymol blue indicator solution. 1 g/L. Weigh 0.1 g of thymol blue, accurate to 0.0001 g. Add 22 mL of 0.01 mol/L sodium hydroxide. After dissolving, add distilled water to dilute to 100 mL. 4.10 Mixed indicator solution. Take 10 mL of cresol red indicator solution. Add 30 mL of thymol blue indicator solution. Mix well. Adjust to neutral with 0.01 mol/L sodium hydroxide and 0.01 mol/L hydrochloric acid solution (the mixed indicator changes color at about pH=9.8).

5 Instruments

5.1 Conical flask with stopper. 250 mL. 5.2 Alkaline burette. 50 mL, with the graduation of 0.1mL. 5.3 Pipette. 20 mL.

6 Test methods

6.1 Sample determination

Annex A

(informative) Preparation method of sodium hydroxide standard titration solution (0.15 mol/L) A.1 Preparation Weigh 6 g of sodium hydroxide and dilute to 1000 mL with water. Shake well and set aside for later use. A.2 Calibration Weigh 3 portions of approximately 1 g each (accurate to 0.0001 g) and dry to a constant amount of potassium hydrogen phthalate standard reagent at 105℃±2℃. Dissolve it in carbon dioxide-free water and make up to 50 mL. Use phenolphthalein as an indicator. Titrate with the sodium hydroxide standard titration solution to be calibrated until it turns pink. Keep for 30 s. The volume consumed is V1.Perform a blank test at the same time. Take 50 mL of carbon dioxide-free water. Titrate with the sodium hydroxide standard titration solution to be calibrated until it turns pink. Keep for 30 s. The volume consumed is V0. A.3 Result calculation The concentration of sodium hydroxide standard titration solution is calculated as shown in formula (A.1). Where, c NaOH - the concentration of sodium hydroxide standard titration solution, in moles per liter (mol/L); m1 – the mass of potassium hydrogen phthalate, in grams (g); V1 - the volume of sodium hydroxide standard titration solution consumed for calibration, in milliliters (mL); V0 - the volume of sodium hydroxide standard titration solution consumed for calibration, in milliliters (mL); 204.22 - the molar mass of potassium hydrogen phthalate, in grams per mole (g/mol). ......
Source: Above contents are excerpted from the full-copy PDF -- translated/reviewed by: www.ChineseStandard.net / Wayne Zheng et al.


      

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