GB 1886.89-2015 English PDFUS$129.00 · In stock
Delivery: <= 3 days. True-PDF full-copy in English will be manually translated and delivered via email. GB 1886.89-2015: National Food Safety Standard -- Food Additives -- Licorice antioxidants Status: Valid
Basic dataStandard ID: GB 1886.89-2015 (GB1886.89-2015)Description (Translated English): National Food Safety Standard -- Food Additives -- Licorice antioxidants Sector / Industry: National Standard Classification of Chinese Standard: X40 Word Count Estimation: 6,673 Date of Issue: 2015-09-22 Date of Implementation: 2016-03-22 Regulation (derived from): PRC National Health and Family Planning Commission 2015 No.8 Issuing agency(ies): National Health and Family Planning Commission of the People's Republic of China GB 1886.89-2015: National Food Safety Standard -- Food Additives -- Licorice antioxidants---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.(National food safety standards for food additives licorice antioxidants) National Standards of People's Republic of China National Food Safety Standard Food Additives licorice antioxidants Issued on. 2015-09-22 2016-03-22 implementation People's Republic of China National Health and Family Planning Commission released National Food Safety Standard Food Additives licorice antioxidants 1 ScopeThis standard applies to liquorice (RadixGlycyrrhizae) root extract thus obtained was purified by physical methods of food additives with an organic solvent Licorice antioxidants.2 Technical Requirements2.1 Sensory requirements Sensory requirements shall comply with the requirements of Table 1. Table 1 Sensory requirements Project requires test methods Brown or tan color State powder Licorice smell slightly special smell Take the right amount of sample is placed in a clean, dry white porcelain dish, under natural light Observe the color and status, olfactory and taste it 2.2 Physical indicators Physical and chemical indicators should be consistent with the provisions of Table 2. Table 2. Physical and chemical indicators Item Index Test Method Licorice antioxidant content, w /% ≥ 63.0 Appendix A A.3 Total flavonoids, w /% ≥ 27.0 Appendix A A.4 Melting range/℃ 70 ~ 90 GB/T 617 Loss on drying, w /% ≤ 5.0 A.5 in Appendix A Arsenic (As)/(mg/kg) ≤ 3.0 GB 5009.76 Heavy metals (Pb)/(mg/kg) ≤ 10.0 GB 5009.74 AOM value (amount of 0.02%)/h ≥ 18.0 A.6 in Appendix AAppendix ATesting method A.1 General Provisions This standard reagents and water in the absence of other specified requirements, refer to the three water analytical reagent and GB/T 6682 regulations. Standard solutions used in the tests, the determination of impurities standard solution, preparations and products, did not indicate when the other requirements according to GB/T 601, GB/T 602, GB/T 603 provisions of preparation. Solution was used in the tests did not indicate what is formulated with solvent, it refers to an aqueous solution. A.2 Identification Test A.2.1 Reagents and materials A.2.1.1 ethanol. A.2.1.2 dichloromethane. A.2.1.3 ferric chloride in ethanol solution. 10g/L. A.2.1.4 diazotizing agent. A solution. 0.5g of p-nitroaniline was dissolved in 5mL of concentrated hydrochloric acid, diluted with water to 50mL. Solution B. 5g of sodium nitrite dissolved in 50mL water. Diazotizing agent in clinical use should, take the same amount of A, B two liquid mixture in an ice-water bath for use. A.2.1.5 sodium carbonate test solution. take sodium bicarbonate 3g, dissolved in 100mL of water. A.2.2 Identification method A.2.2.1 sample taken 0.5g, dissolved in 100mL of ethanol. Take the test solution 1mL, plus 1% ferric chloride solution drops 2 to 3 drops, green, blue or purple should produce precipitation. Take the test solution 2mL ~ 3mL, Add equal amount of sodium carbonate solution, boiling water bath 8min, after cooling add a new configuration of diazotization reagent drop 1 to 3 drops, should be significantly muddy crimson. A.2.2.2 sample taken 1g, each with 20mL dichloromethane was refluxed for 10min, filtered, the volatile dichloromethane concentrate with 50% ethanol 20mL dissolve filtration, the filtrate was collected, to learn the filtrate 1mL in a test tube, a solution of ferric chloride test solution 1 to 2 drops drops, solution should be significantly brown. A.3 Determination of the antioxidant content of licorice A.3.1 Method summary Licorice antioxidants in antioxidant ingredients easily extracted dichloromethane, after reflux extraction, weighing measurement. A.3.2 Analysis step Weigh finely licorice antioxidants sample 1g (accurate to 0.0001g), into a 50mL round bottom flask, each additional dichloromethane 20mL, reflux 15min, extract at 30 ℃ ~ 35 ℃ conditions, constant weight filter into a beaker, a total reflux for 5 times, and then with methylene Dioxane 30mL washing the filter paper several times with the washing liquid incorporated into a beaker, evaporated on a water bath, 105 ℃ drying to constant weight, and weighed. A.3.3 Calculation Results Licorice antioxidant content mass fraction w1, according to equation (A.1) Calculated. w1 = m1 m × 100% (A.1) Where. After m1 --- purified licorice anti-quality oxide units of grams (g); M --- the quality of the sample, in grams (g). The results parallel arithmetic mean of the measurement results shall prevail. Twice under the same condition of independent determination results obtained absolute difference Value of not more than 0.1% of the arithmetic mean. A.4 Determination of total flavonoids A.4.1 Method summary Flavonoids molecular structure having C3, can generate colored envelope with aluminum and other metal reagents C5-hydroxyl group or phthaloyl hydroxy Compound, at a wavelength of maximum absorbance at 510nm. A.4.2 Reagents and materials A.4.2.1 rutin standard. A.4.2.2 ethanol. 30%. A.4.2.3 ethanol. 60%. A.4.2.4 aluminum nitrate. 10%. A.4.2.5 Sodium hydroxide. 1mol/L. A.4.2.6 nitrite. 5%. A.4.3 Analysis step Preparation of standard solution. Weigh rutin standard 20mg (accurate to 0.1mg), 60% ethanol was dissolved in 100mL flask, and Dilute to the mark. Take this sample solution 20mL in 50mL volumetric flask, add 60% ethanol solution 5mL, diluted with water to the mark, that was standard Solution (1mL standard solution containing about 0.08mg rutin standard). Preparation of sample solution. Weigh a sample of approximately 20mg (accurate to 0.1mg), 60% ethanol and dissolved in hot 25mL 50mL volumetric flask, Cooled, diluted with distilled water to the mark, that was a sample solution. They were collected from each of the two liquid 5mL in 10mL volumetric flask, add 5% sodium nitrite solution 0.3mL, shake and let stand 6min, plus 10% aluminum nitrate solution, 0.3mL, shake and let stand 6min, added 1mol/L sodium hydroxide solution 4mL, shake, constant volume with 30% ethanol, Standing 15min, with a 1cm cuvette, at a wavelength of 510nm absorbance was measured at. A.4.4 Calculation Results Total flavonoid mass fraction w2, according to equation (A.2) Calculation w2 = 0.04 × A1 A2 m2 × K × 100% (A.2) Where. 0.04 --- standards in flavonoid content, in milligrams per milliliter (mg/mL); A1 --- absorbance of the sample; Absorbance A2 --- standard products; M2 --- the quality of the sample, in milligrams (mg); --- The K sample dilution. The results parallel arithmetic mean of the measurement results shall prevail. Twice under the same condition of independent determination results obtained absolute difference Value is not more than 0.2% of the arithmetic mean. A.5 Determination of loss on drying A.5.1 Analysis step Accurately weighed sample 2g (accurate to 0.0002g), placed in an oven, bake at 110 ℃ ± 1 ℃ to constant weight. A.5.2 Calculation Results Loss on drying mass fraction w3, according to equation (A.3) Calculated. w3 = m3-m4 m5 × 100% (A.3) Where. Quality m3 --- dried before weighing bottle and the sample, in grams (g); Quality, drying unit after m4 --- weighing bottle and sample in grams (g); m5 --- sample mass, in grams (g). The results parallel arithmetic mean of the measurement results shall prevail. Twice under the same condition of independent determination results obtained absolute difference Value of not more than 0.1% of the arithmetic mean. A.6 AOM value (addition amount of 0.02%) is measured A.6.1 Method summary AOM value is under the strict control of the test conditions, the inflatable oil sample to make peroxide value of 100 (equivalent in mg iodine/kg Time when oil sample count) required, as oil sample block index is automatically oxidation. A.6.2 Instruments and Equipment AOM value of the tester. A.6.3 Analysis step The home has a 20mL refined lard (lard antioxidant was added 0.02%) of the tube along the circumference of the circular bath lined up, start stirring Mix and electric thermostats, in order to maintain a constant temperature, oil samples taken at regular intervals, measured peroxide value, peroxide value was measured up 100mgI2/kg Time needed to (h), is the block index purified lard autoxidation. ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB 1886.89-2015_English be delivered?Answer: Upon your order, we will start to translate GB 1886.89-2015_English as soon as possible, and keep you informed of the progress. The lead time is typically 1 ~ 3 working days. The lengthier the document the longer the lead time.Question 2: Can I share the purchased PDF of GB 1886.89-2015_English with my colleagues?Answer: Yes. 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