GB 1886.247-2016 English PDFUS$279.00 · In stock
Delivery: <= 3 days. True-PDF full-copy in English will be manually translated and delivered via email. GB 1886.247-2016: National Food Safety Standard -- Food Additives -- Potassium Bicarbonate Status: Valid
Basic dataStandard ID: GB 1886.247-2016 (GB1886.247-2016)Description (Translated English): National Food Safety Standard -- Food Additives -- Potassium Bicarbonate Sector / Industry: National Standard Classification of Chinese Standard: X42 Word Count Estimation: 14,110 Date of Issue: 2016-08-31 Date of Implementation: 2017-01-01 Older Standard (superseded by this standard): GB 25589-2010 Regulation (derived from): Announcement of the State Administration of Public Health and Family Planning 2016 No.11 Issuing agency(ies): National Health and Family Planning Commission of the People's Republic of China, State Food and Drug Administration GB 1886.247-2016: National Food Safety Standard -- Food Additives -- Potassium Bicarbonate---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.(Food safety national standard - Food additive - Potassium bicarbonate) National Standards of People's Republic of China National Food Safety Standard Food additive potassium bicarbonate Issued on. 2016-08-31 2017-01-01 implementation People's Republic of China National Health and Family Planning Commission released ForewordThis standard replaces GB 25589-2010 "national food safety standards for food additives potassium bicarbonate." This standard compared with GB 25589-2010, the main changes are as follows. --- Modify the scope; --- Remove the heavy metal indicator; --- Increased the lead index requirements. National Food Safety Standard Food additive potassium bicarbonate1 ScopeThis standard applies to ion exchange or carbonate production of food additives potassium bicarbonate. 2 chemical name, molecular formula and relative molecular mass 2.1 Chemical Name Potassium bicarbonate Formula 2.2 KHCO3 2.3 relative molecular mass 100.12 (according to 2013 international relative atomic mass)3 Technical requirements3.1 Sensory requirements Sensory requirements shall comply with the requirements of Table 1. Table 1 Sensory requirements Project requires test methods Color White State crystal or powder Take appropriate 50mL sample is placed in a beaker, observe the color in natural light And state organizations 3.2 Physical and Chemical Indicators Physical and chemical indicators should be consistent with the provisions of Table 2. Table 2. Physical and chemical indicators Item Index Test Method Total alkali content (in terms KHCO3) (dry basis), w /% 99.0 ~ 101.5 Appendix A A.4 Water-insoluble, w /% ≤ 0.02 Appendix A A.5 Loss on drying, w /% ≤ 0.25 A.6 in Appendix A TABLE 2 (cont.) Item Index Test Method pH (100g/L solution) ≤ 8.6 Appendix A A.7 Lead (Pb)/(mg/kg) ≤ 2.0 GB 5009.75 Arsenic (As)/(mg/kg) ≤ 3.0 GB 5009.76Appendix ATesting method A.1 Warning Reagents The standard test methods used for toxic or corrosive shall be as careful operation splashed on the skin or eyes On immediately with plenty of water, severe cases should be treated immediately. Test used in the flammable and should not use an open flame during operation. A.2 General Provisions This standard reagents and water, did not indicate when the other requirements, refer to the three water analytical reagent and GB/T 6682 stipulated. Used in the test standard titration solution, preparations and products, did not indicate when the other requirements, according to GB/T 601, GB/T 603 system requirements Preparation. The solution in a solvent which does not indicate by when formulated, refers to an aqueous solution. A.3 Identification Test A.3.1 Reagents and materials A.3.1.1 hydrochloric acid. A.3.1.2 ethanol. A.3.1.3 saturated calcium hydroxide solution. Weigh 3g calcium hydroxide into 1000mL water, by vigorous stirring or shaking, place clarification, Take clear solution spare. A.3.1.4 magnesium sulfate solution. 120g/L. A.3.1.5 ethanol solution of sodium tetraphenylborate. 34g/L. A.3.1.6 red litmus paper. A.3.2 Identification method A.3.2.1 carbonate A.3.2.1.1 take 50mL0.1g/sample solution mL, placed in 250mL conical flask, a solution of hydrochloric acid, which release gases. This gas guide The saturated solution of calcium hydroxide, a white turbidity. A.3.2.1.2 take appropriate 0.1g/sample solution mL, solution of magnesium sulfate solution, namely a white precipitate. A.3.2.2 Potassium A.3.2.2.1 take appropriate 0.1g/sample solution mL, was added sodium tetraphenylborate ethanol solution, that is a lot of white precipitate formed. A.3.2.2.2 first to colorless combustion flame with hydrochloric acid in the colorless infiltration of platinum wire. Then dipped a little sample solution in a colorless flame combustion, By cobalt glass observe the flame was purple. A.4 Total alkali content (in terms KHCO3) (dry basis) of the Determination A.4.1 Reagents and materials A.4.1.1 hydrochloric acid standard titration solution. c (HCl) = 0.5mol/L. A.4.1.2 Bromocresol green - methyl red indicator solution. A.4.2 Analysis step Weigh about 1.5g sample was placed in a silica gel dryer after 4h, accurate to 0.0002g, placed in 250mL Erlenmeyer flask with 50mL water to dissolve, add 5 drops of Bromocresol green - methyl red indicator solution, titration with hydrochloric acid standard titration solution until the solution turns from green to dark red. The solution was boiled for 2min, after cooling, continue titration to dark red, do not fade in the 30s is the end. While doing the blank test. In addition to the blank test without the sample, but (except for standard titration solution) the type and amount of addition of reagents and other operations And the same test solution. A.4.3 Calculation Results Total Alkalinity potassium bicarbonate (KHCO3) mass fraction w1, according to equation (A.1) Calculated. w1 = c × (V-V0) × M m × 1000 × 100% (A.1) Where. C --- the exact concentration of hydrochloric acid standard titration solution, expressed in moles per liter (mol/L); Volume V --- hydrochloric acid standard titration solution consumed titration test solution, in milliliters (mL); Volume V0 --- hydrochloric acid standard titration titration solution consumed in the blank test solution, in milliliters (mL); --- The M potassium hydrogen carbonate (KHCO3 or) molar mass in grams per mole (g/mol) (M = 100.12); M --- the quality of the sample, in grams (g); 1000 --- conversion factor. The results parallel arithmetic mean of the measurement results shall prevail. Twice under the same condition of independent determination results obtained absolute difference Not more than 0.3%. A.5 Determination of insoluble matter A.5.1 Instruments and Equipment A.5.1.1 sintered glass crucible. filter plate aperture 5μm ~ 15μm. A.5.1.2 electric oven. temperature can be controlled to 105 ℃ ± 2 ℃. A.5.2 Analysis step Weighing about 50g sample, accurate to 0.1g, placed in 400mL beaker, add 300mL water dissolved by heating. Use was 105 ℃ ± At 2 ℃ dried to a constant mass of sintered glass crucible was filtered, washed with hot water until the filtrate was neutral (pH paper with test). The glass sand crucible Crucible placed in 105 ℃ ± 2 ℃ in electric oven dried to a constant mass. A.5.3 Calculation Results The mass fraction of water-insoluble w2, according to equation (A.2) Calculated. w2 = m1-m2 m3 × 100% (A.2) Where. Mass m1 --- debris and sand glass crucible, in grams (g); M2 --- quality glass sand crucible in grams (g); m3 --- 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 Not more than 0.002%. A.6 Determination of loss on drying A.6.1 Instruments and Equipment Weighing bottle. φ50mm × 30mm. A.6.2 Analysis step Silica gel was dried with a dryer to a constant mass weighing bottle Weigh about 2g samples, accurate to 0.0002g, tile in the sample said Bottom flask. The weighing bottle placed on silica gel dryer is placed after 4h weighing. A.6.3 Calculation Results Loss on drying mass fraction w3, according to equation (A.3) Calculated. w3 = m4-m5 m4 × 100% (A.3) Where. Quality before m4 --- drying of the sample, in grams (g); Quality, unit m5 --- after drying 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 Not more than 0.03%. A.7 pH (100g/L solution) was measured A.7.1 Reagents and materials Carbon dioxide-free water. A.7.2 Instruments and Equipment pH meter. indexing of 0.1 with a saturated calomel electrode and a glass electrode. A.7.3 Analysis step Weigh 10.00g ± 0.01g sample was placed in 100mL beaker, dissolved carbon dioxide-free water and transferred to 100mL volumetric flask, Dilute to the mark with carbon dioxide-free water and shake. Pour 100mL dry beaker, pH was measured by pH meter test solution. The results parallel arithmetic mean of the measurement results shall prevail. Twice under the same condition of independent determination results obtained absolute difference Not more than 0.2. ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB 1886.247-2016_English be delivered?Answer: Upon your order, we will start to translate GB 1886.247-2016_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 1886.247-2016_English with my colleagues?Answer: Yes. 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